02/09/2019

AgForce Backs Calls For Review Of Consensus Science On Great Barrier Reef

The Guardian - 

Exclusive: Top Queensland farmers’ group supports controversial scientist Peter Ridd’s questioning of climate science
AgForce says it agrees with Peter Ridd’s calls for Great Barrier Reef climate science ‘to be more thoroughly examined and tested’. Photograph: Photography by Mangiwau/Getty Images 
Queensland’s most influential farm lobby group, AgForce, has backed calls for a review of consensus science on the Great Barrier Reef, as the state’s agricultural sector intensifies its campaign against proposed water quality regulations.
On Friday the release of two key reports painted an alarming picture of the state of the reef. The Queensland-led water quality report – which rated the water quality at inner reefs as “poor” – highlighted the impact of land management practices that contribute to the degradation of the reef due to sediment and nutrient run-off.
The findings were released at a critical point in debate about the Queensland government’s proposed regulations, which would set variable pollution limits in separate reef catchments.
Agricultural groups say those regulations will have a significant impact on farmers; particularly graziers, sugarcane growers and tropical horticulture.
Some farmers accept the consensus science, but claim the regulations are ill thought out and will have unintended consequences for primary producers. This is also the formal position of the LNP opposition.
But increasingly, sober debate about the impact of the regulations has veered into science scepticism; pushed by the controversial scientist Peter Ridd, some of the larger peak industry bodies, backbench LNP MPs and opaque front groups.
The AgForce chief executive, Michael Guerin, in a statement to Guardian Australia sent before the release of the latest reef reports, said the organisation agreed with Ridd’s calls for the science “to be more thoroughly examined and tested”.
Last week Guardian Australia revealed that an expert panel led by the former chief scientist Ian Chubb had warned ministers that Ridd is misrepresenting robust science about the plight of the reef, and compared his claims to the strategy used by the tobacco industry to raise doubt about the impact of smoking.
Guerin said there “was no absolute consensus” on the reef.
“We are not scientists and have no position on the science. However, when eminent reef scientists call into question the research conducted by their peers, we as a community would be foolish not to listen.
“We are simply asking the government to make sure of the science before it implements such momentous changes with potentially devastating consequences for so many.”
The AgForce general president and ABC board member Georgie Somerset will speak at a protest rally of famers in Townsville on Tuesday to coincide with a sitting of the state parliament. The event is being promoted by the opaque front organisation Farmers United, with flyers quoting Ridd and featuring the AgForce logo.
The industry argues regulation is not necessary, and that “best management practice” measures, led by agricultural groups and funded by government, were the best method to address water quality issues. Earlier this year, in protest against the proposed regulations and citing privacy concerns, AgForce deleted a decade of data from its BMP database.
The Queensland environment minister, Leeanne Enoch, said on Friday that the reef water quality report showed that voluntary BMP programs were not working quickly enough, and that urgent action was needed to address the health of the reef.
“The report … shows land-based run-off still remains a problem and that urgent changes are needed if we are going to meet our targets,” Enoch said.
“The report also shows that many farmers have been doing good work to help improve the quality of run-off, but unfortunately the science is showing that uptake has not been fast enough.
“For example, we want 90% of sugarcane land across the reef catchments managed using best management practice systems by 2025. But, the results show this was happening on only 9.8% of land so far.
“Overall water quality modelling showed only a 0.3% reduction in dissolved inorganic nitrogen and a 0.5% reduction in sediment in 2017-2018 across all regions.
“This simply isn’t enough. There are also a lot of scores that are poor, or very poor.”
As large agricultural groups seek to question the science, largely on the basis of a single opinion rejected by scores of other reef scientists, questions have grown about whether they can continue to manage millions in grants allocated for reef water quality measures.
AgForce jointly manages Queensland-funded BMP programs.
AgForce last year lobbied in support of the controversial $433m federal grant to the Great Barrier Reef Foundation, and at the time noted that “agricultural land is one of many factors which can affect water quality and the long term health” of the reef.
The Greens senator Peter Whish-Wilson has written to the federal environment minister, Sussan Ley, suggesting groups that receive reef foundation grants to improve water quality, but who otherwise seek to question the underlying science, have a conflict of interest.
He cited support for Ridd’s recent lecture tour from regional branches of the peak organisation Canegrowers.
“On the face of it, this is a conflict of interest. The activity of Queensland Canegrowers (as a subcontractor) is impairing the ability of the foundation to improve water quality in the reef.”

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Spiders Are Threatened By Climate Change – And Even The Biggest Arachnophobes Should Be Worried

The Conversation - 

As the world warms, male ladybird spiders are hatching too early in the year to meet a mate. MF Photo / shutterstock
Is climate change making spiders more aggressive? A recent scientific study suggests so, as the researchers link aggressiveness to tropical cyclones, events that are expected to become more frequent and powerful with climate change. 
Unsurprisingly, the findings got considerable media coverage. After all, it matches justified fears of catastrophic climate change impacts, with the unjustified fear many people have of harmless spiders.
However, I have studied these arachnids for more than 15 years and I am not too concerned about tropical cyclones making them more aggressive. It is worth worrying about spiders themselves though.
People who dislike spiders will of course be alarmed by any news of them getting more aggressive or even bigger due to climate change. But beyond the headlines, it is important to note that they might be getting bigger for a number of reasons, and that these are localised studies made on target species. Therefore warming temperatures are unlikely to impact the recorded 48,359 species globally in the same way.
In any case, a study found that people who fear spiders are more likely to view them as larger than people who do not. And as I write this article at the end of summer in the Northern Hemisphere, one of the biggest common spiders in Europe (the garden-orb-weaver, or Araneus diadematus)) is now reaching maturity, so you might just come across “large” spiders in the middle of their webs more often at this time of year.
Orb spiders: big in late summer. Sergey / shutterstock
As for aggression, the study that reportedly shows an increase with climate change only actually looked at the impact of tropical cyclones on a single species: the group-living spider (Anelosimus studiosus). Also known as the communal spider, these are often found alone or in groups of up to a few hundred individuals, and each individual is born with either an “aggressive” or “docile” behavioural type (the new study showed that after cyclones the ratio between the two would consistently change towards more aggressive colonies).Communal behaviour is fairly rare in spiders, which is why this species is so interesting to study. But it is also what makes it less representative of other spiders behaviour, and not the best model to understand climate change impact on spiders globally.
But what if you’re still worried about that one harmless species, smaller than a centimetre, potentially becoming more aggressive? In that case, it might be useful to note that aggressiveness in this context was measured as speed and number of spiders that respond to prey (who wouldn’t run to food if they were really hungry), prey-sharing efficiency and reduce wastage (aka, want not waste not), tendency to cannibalise males and eggs (desperate times call for desperate measures) and less susceptibility to infiltration by foreign spiders (aka, when the going gets tough, the tough don’t like sharing). Therefore, if you are not an insect, there is no cause for alarm – their “aggression” is not aimed at humans.

Don’t be afraid of spiders – be afraid for spiders
But, although there is no reason to be concerned about their size or aggressiveness, you should be worried about spider survival under climate change. To take one example, just last year I was researching the beautiful ladybird spider in the western Asian highlands (I’m keeping the location secret as these animals are sought after by the illegal pet trade). Where I observed the males maturing much earlier in the year than they would normally do, thanks to an unusual hot period in winter.
For them, this was a disaster.
These male ladybird spiders usually leave their nests in spring to find suitable females, but this time they would emerge into the wider world only to find no females yet available to mate, as females appear to depend on food intake to reach sexual maturity rather than wait for environmental cues, such as temperature. Like Romeo, these males died without their Juliet.
A jumping spider tucks into a mosquito. vinit thongtue / shutterstock
You should care about all this because spiders eat an astronomical amount of insects, many of which are agricultural pests or the carries of human diseases, their loss will become ours as it impacts future ecosystems.
Furthermore, although unappreciated and understudied, spiders have untapped potential to help us develop new medicine or materials with their venom or silk. You should also care because this type of impact might be particularly dire in desert dwelling animals, which already live at the threshold of what they can tolerate, so even small temperature increases and more frequent heat waves, can wipe entire populations and drastically change those ecosystems.
Which is more likely to happen in regions where losing key biocontrol agents such as spiders, might put even more pressure on crops and on the human populations disproportionately affected by climate change.
If we continue to disregard the value of these animals, not only will our fear likely cause disruption or put us in actual danger, but ignoring them now might drive them to disappear forever.
In the famous aeroplane analogy, species are compared with losing a couple of bolts that still allow the plane to fly, but as you lose more and more parts, you’re getting dangerously close to crashing. Well, spiders are part of the engine in this analogy. Wouldn’t you be worried if the aeroplane you are flying in, the spaceship we are all in, was losing engine parts in front of your eyes?

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Technology Won't Save Us From Climate Change

Salon - Keith A. Spencer

It's not hard to save the planet. But not if we insist on enriching entrepreneurs on the way
Climeworks C02 Capture Device (Climeworks)
Keith A. Spencer
Keith A. Spencer is a senior editor for Salon. He manages Salon's science, tech, economy and health coverage.
Keith is the author of "A People's History of Silicon Valley: How the Tech Industry Exploits Workers, Erodes Privacy and Undermines Democracy".

If the Roman Republic understood the conditions that caused climate change, they could have easily put a stop to it. That’s because all you have to do to halt climate change is stop using fossil fuels and plant a huge number of trees. Together, these acts would reduce the surfeit of man-made carbon dioxide currently tainting the atmosphere and wreaking havoc on our planet.
That idea — that an ancient civilization with no electricity and no technological-industrial complex akin to Silicon Valley could solve climate change — might sound sacrosanct to the sophistic entrepreneurs and their journalistic lackeys who invest in these kinds of things. Indeed, for at least a decade, the media landscape has been littered with casuist puff-pieces with headlines like:
  • “This Machine Just Started Sucking CO2 Out Of The Air To Save Us From Climate Change” (Fast Company, May 2017)
  • “Start-Ups Hoping to Fight Climate Change Struggle as Other Tech Firms Cash In” (New York Times, May 2019)
  • “Sucking carbon from air, Swiss firm wins new funds for climate fix” (Reuters, August 2018)
  • “These companies are leading the fight against climate change” (CNN Business, October 2018)
  • “Why and how business must tackle climate change now” (Forbes, October 2018)
The unsaid message behind these stories? Climate change is the kind of monetizable “problem” that business can “solve” — as if it were akin to smoothing over a supply chain hiccup or a PR crisis.
But it isn’t. Climate change is a political problem with a political solution. The Roman Republic had, at its peak, a well-organized, representative government capable of large-scale public works project, like the Roman aqueducts or the vast Roman road system that stretched across North Africa and southern Europe. If the political will existed among the citizenry, the republic could certainly organize itself to solve the climate crisis.
With a reorganization of society and industry, we could easily do as the Romans. Yet our civilization has been collectively hypnotized by the tech industry into believing that everything can be solved by more gadgetry and more money thrown at the tech sector.
Because of the entrancing nature of Silicon Valley’s gadgetmakers, we often can’t see this when it’s happening in front of us. But you need only look to other industries that Silicon Valley has “innovated” in to see the results.
Take Juicero, for instance: a $400 juicer that squeezes proprietary packets that could easily be wrung with one’s hand, and offer no marked improvement over the millennia-old citrus squeezer “technology.” What the now-defunct Juicero did do, however, was make its users dependent on its absurd and wasteful juice packet subscriptions. Google invested hundreds of millions in Juicero before it went bankrupt. “Innovation,” indeed.
Or you might consider another Silicon Valley "innovation" like social media, an elaborate digital social system whose primary function seems to be getting us hooked on using it. It has demonstrably made humans more narcissistic and less happy. Now, the social media companies are doing a collective hand-wringing to come up with strategies to undo the damage.
This is how Silicon Valley fixes things, or rather, pretends do: first, by inventing problems in the first place, then issuing their own "solve." It’s not a model I would apply to the thorny issue of the survival of all life on Earth.
But the more pressing concern here is that technology simply cannot solve the problems that it created. Never forget that 100 companies are responsible for 71% of all global emissions; or that tech giants are some of the worst offenders when it comes to producing disposable goods or being complicit in an endless cycle of planned obsolescence.
Recently, the consumer-facing tech industry has transformed to a rentier model. In this model, you don’t necessarily ever own gadgets, software or media; you merely rent them from a corporation forever. Businesses prefer this model, as rather than buying something once, you pay to rent it forever — and that means far more money for them in the long run.
I have no doubt that if we let techno-capitalists tackle climate change, we will end up with a similar situation: world governments will contract out carbon capture to a group of tech behemoths whom we will pay forever to rent their equipment and keep things in a stable state. If they fix the problem and remove all the excess carbon from the atmosphere, their services will become useless — and their shareholders and investors certainly wouldn’t like that. Better to keep the problem intact as long as possible to wring dry the public sector for all eternity — ironically, fixing the problems that technology, largely, created. It's the perfect grift.
Unfortunately, Silicon Valley’s brand of magical thinking has so poisoned us that few are capable of seeing the notion of a technological fix for climate change as a farce. Capitalism treats the environment as an externality and insatiably creates waste and pollution. That’s a doctrine that is incompatible with the survival of life on Earth.

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01/09/2019

Where Are The Architects Who Will Put The Environment First?

The Guardian - 

Should we stop building airports? Return to mud and thatch? The climate crisis is an opportunity for creative thinking, but the values of architecture need a radical overhaul
Ilford community market in east London, opening next year, will have no concrete foundations and a timber structure stabilised by rocks in metal cages. Photograph: Interrobang Architecture and Engineering
Nearly 40% of UK greenhouse gas emissions, to use a figure architects love to bandy, are caused by the built environment. Or a bit more, depending on the definitions used.
It’s an arresting figure. It suggests that the design of buildings and the planning of cities can do much to counter climate crisis.
Architects like to think of themselves as public-spirited, well-intentioned people. The profession tends to attract people who want to change the world for the better. And what could matter more than the prevention of environmental and societal collapse? It makes squabbles about architectural style or form seem trivial by comparison.
So what would architecture look like – more importantly, what would it be – if all involved really and truly put climate at the centre of their concerns? Would there be no more concrete, given the material has been fingered as particularly destructive? Or an end to towers clad in panels that have to be replaced every 30 years? Or much less building altogether?
It is a question raised earlier this year by the launch of Architects Declare, in which 17 winners of the Stirling prize proclaimed a set of principles by which they and – they hoped – others would from now on work, and by the debate that followed.
How serious could these architects really be, went one of the reactions, given that a number of them are designing major airports? A more radical version of the question will be put by the young curators of the Oslo Architecture Triennale, Maria Smith, Phin Harper and Cecilie Sachs Olsen, which opens later this month. “Just fiddling around with what the market gives us is not enough,” says Harper.
What is considered sustainable differs wildly depending on who you ask.
The World Green Building Council, an organisation supported by members from the construction industry, holds up the seemingly surprising example of Barangaroo, a huge high-rise development on the Sydney waterfront. Harper and Smith cite traditional earth-building techniques and ingenious experiments in building structures without cement or steel.
Somewhere in between is a building like the Stirling prize-shortlisted Cork House in Eton, about which nobody has a bad word to say.
The Stirling prize-shortlisted Cork House in Eton. Photograph: Ricky Jones
The argument of Architects Declare – which might be called the sensible middle ground – goes something like this: architects (and for that matter contractors, clients, engineers and everyone else involved in making buildings) have no excuse for not giving their utmost to make their work have as little impact on the environment as possible. They have to consider everything – how far stone might have to travel from quarry to site, for example, and whether or not a building’s components will end up as landfill when it is demolished.
It is not enough to reduce what are called the “in-use” costs – heating, ventilation, lighting, water, waste, maintenance – but also the “embodied energy” that goes into construction and demolition: quarrying cement, smelting steel, firing bricks, shipping materials to site, putting them in place, taking them down again and disposing of them.
Until recently the construction industry has concentrated on in-use costs. The British building regulations, for example, set reasonably high standards for the performance of buildings, but are silent on embodied energy. This makes no sense – there’s little point building something that performs magnificently in use, if it takes decades or centuries to pay back the expenditure of energy that went into its construction.
Painful choices may be required – giving up some dearly beloved brutalist-style concrete or a favourite brick. It might mean some genuinely difficult dilemmas: concrete, if used right, slows the rates at which a building cools down and warms up (good) but is made with cement, a material that singlehandedly accounts for about 8% of the world’s carbon dioxide emissions (not good).
It should be possible to make a humble kitchen extension using materials dug up from the ground around it
Sustainable design shouldn’t be seen as just a technical fix, a matter of paying the right consultant enough money to make sure the building ticks enough boxes, or of buying the most magical available piece of cooling technology. It should rather be integrated into the art of architecture.
The ideal is that it should help buildings be all round better, longer-lasting, more pleasurable, more beautiful – “generosity, quality of materials, what people want – it kind of makes them endure” is how Alison Brooks, one of the Architects Declare signatories puts it. It could mean more natural stone, more timber. This is why the Cork House appeals – its material is lovely stuff, which also happens to be renewable, recyclable and highly insulating.
Slightly more radically, the architectural profession needs to reconsider its value systems, what is considered good and what bad. Architects are still trained from studenthood to perform in what Steve Tompkins, one of the driving forces behind Architects Declare, calls a “competitive and individualistic profession”. They get more glory for designing a singular new building than they would if they worked out a good way of insulating old houses.
Yet, as most of the building stock of the future is already with us, and as demolition and rebuilding entails the chucking away of whatever went into making the original building, the latter is likely to be more useful than the former.
All of which, if every architect pursued it with full commitment, would be a significant advance. This collection of good principles, however, doesn’t answer the airport question, which highlights the limits on architects’ powers: it is not up to them to decide how much air travel there is in the world, which leaves them with the choice of refusing the commission to design airport buildings, or helping them to be as “green” as they possibly can be.
Grimshaw Architects, Foster and Partners and Zaha Hadid Architects, signatories of Architects Declare, have opted for the latter. They are working on terminals in Heathrow, Mexico City and Beijing, respectively.
For Jeremy Till, head of Central Saint Martins school of art and design, these architects’ choice is a “farce.” “You can’t have a carbon-neutral airport,” he says. Architects have to do more than be well-intentioned instruments of what he calls “an extractive industry.” They have to be activists as well as designers.
Maria Smith and Phin Harper believe drastic times call for drastic actions. If, as the Intergovernmental Panel on Climate Change said last autumn, there were only 12 years left to limit climate change catastrophe (make that 11, as nearly a year has passed since then), the conventional processes of architecture are too slow to make any difference.
By the time a well-considered, carefully calculated development has successfully traded off the inputs and outputs that went into its construction, it will be too late. Rather the whole attitude to construction has to change now. Which also requires the economic system behind it – that is to say, capitalism – to change.
Their Triennale in Oslo, a series of displays and performances starting on 26 September, will apply to architecture the economic and political idea of degrowth – the beliefs that an alternative has to be found to the continuously rising GDPs that are fundamental to capitalist economies.
For Smith and Harper it is about using resources that already exist and, rather than serving “utilitarian goals of investment and profit”, concentrating on “what really makes life worth living”. “All the ingredients for a good life exist somewhere in the world,” they say – it’s just a question of enabling everyone to have access to them.
Hy-Fi, a temporary tower outside MoMA PS1, New York, made of mushroom mycelium. Photograph: Living New York
For architecture this might mean learning from indigenous building techniques based on using renewable materials close at hand, such as mud walls or thatch, enhanced with modern technology. Smith and Harper give as examples machines for making bricks out of mud, wall panels made of hemp and lime, materials made from compressed recycled denim or from ground-up pine needles mixed with pine resin. There is a technique for building columns by filling heavy duty fabric with sand or rubble. There is mycelium, a form of fungus that can be made into bricks.
A practical example of this thinking is the Ilford community market, a project by Smith’s practice, Interrobang, which is due to open next year. Here there will be no concrete foundations, but a timber structure stabilised by rocks in metal cages that can be demounted and reassembled with minimal waste or impact.
It should also be possible to make a humble kitchen extension, argue Smith and Harper, using materials dug up from the ground around it, “rather than importing steel reinforcement from China”. It would only require a different idea of what a kitchen extension should look like.
There are a few gaps in the thinking articulated by Smith and Harper. If action on climate is urgent, we probably can’t wait for the entire economic and social basis of the modern construction industry to change first. It’s also not obvious how some of the experimental techniques they mention can be developed at speed and realised at sufficient scale to make a meaningful impact.
They themselves don’t pretend to have all the answers. But then, it’s also clear that more moderate members of the profession don’t have all the answers, either. What is clear is that everyone involved in the design and making of buildings has to do everything they can to mitigate their effect on climate. Which, if we’re really lucky, will also lead to better architecture.

Material change: reinventing how we build
Barangaroo, Sydney Harbour.
Barangaroo, Sydney
A large-scale commercial development that tries to modify conventional processes rather than replace them; for example, by reducing the amount of cement in concrete, or using water from an adjoining bay to help cool the towers of homes and offices. Its approach has won awards.

Sandbag columns
The Canadian architectural practice YYYY-MM-DD are developing what might be called super sandbags: structural columns made by containing sand or rubble in the type of heavy-duty fabric used for shipping construction materials. In principle, it means you could build using whatever is available on a building site, but it’s still at a speculative stage.

Radical recycling
Ma-tt-er, a London-based “materials research design studio”, are pushing the possibilities of natural and recycled materials – plaster made from mussel shells, floors made from seaweed, denim from old jeans compressed into a load-bearing material.
 Mussel shell plaster. Photograph: Ma-tt-er 
Mycelium
The fungal substance that gives mushrooms their structure is now touted as both an organic substitute for plastic and a vegetarian substitute for beef. Architects are exploring its possibilities too, most conspicuously with temporary towers built outside MoMA’s PS1 gallery in New York.

Engineered timber
The processing of wood such that it’s strong enough to build multistorey buildings is proof that experimental techniques can become mainstream. Engineered timber is now frequently used as an alternative to concrete, at large scales.
The only snag, as the engineer Mark Skelly points out, is that there isn’t enough sustainably sourced timber in the world to make all buildings out of it. The simplest way to build green is not to build at all: existing building stock is a vast store of carbon and of resources that are lost when a building is demolished.
Re-use is usually seen as less glamorous than building new, but it’s a good use of architects skills to find ways to adapt rather than replace.

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We Have The Blueprint For Liveable, Low-Carbon Cities. We Just Need To Use It

The Conversation - 

Increasing heat in Sydney and other Australian cities highlights the urgent need to apply our knowledge of how to create liveable low-carbon cities. Taras Vyshnya/Shutterstock
Over the past seven years more than 100 research projects at the Co-operative Research Centre for Low Carbon Living, in collaboration with industry across Australia, have pondered a very big question: How do we build future cities that are sustainable, liveable and affordable?
This is exactly what Australians want, as the recent Greater Sydney Commission report, The Pulse of Greater Sydney, revealed. People want cities in which they live close to jobs and have reasonable commuting times. They want access to parks and green space, and relief from ever-increasing urban heat.
The good news is we already know what it will take to deliver on much of this wish list. Since 2012, I have headed the A$100 million Low Carbon Living CRC, which has brought together Australian businesses, industries, communities and many of our brightest researchers to work out how to steer change.
Our Cooling Sydney Strategy, for instance, is the result of years of research into how to combat urban heatwaves. The burden of this heat is unevenly spread across our cities.
For example, residents of Sydney’s western suburbs are exposed to many more days hotter than 35 degrees than Sydneysiders living in the CBD and the city’s north. Last summer that meant over a month’s worth of intense heat in the suburb of Penrith, including nine days in a row above 35°C.
While the recent winter sun might feel welcome, the negative impacts of increasingly hot cities on our health, lifestyle and energy use greatly outweigh any winter comfort.

So what are the solutions?
Our researchers have already found how we can offset increasing heat. The strategies includes cool and permeable pavements, water features and evaporative cooling, shade structures, vertical gardens, street trees and other plants – even special heat refuge stations.
Keeping cool inside, without huge power bills, is possible too. During last summer’s heatwave, our pilot 10-star energy-efficient house in Perth remained a comfortable 24°C inside, without air conditioning, when it was over 40°C outside. The exceptional thermal performance of the house was down to its evidence-based design.

Josh Byrne explains how his house keeps temperatures comfortable year-round with low energy use and no net emissions.

This work is just one part of our wider remit. Our UNSW-based centre is on track to deliver independently verified cuts of 10 megatonnes of carbon emissions generated by Australia’s built environment by 2020. By integrating renewable energy systems, smart technologies, low-carbon materials and people-centred design into buildings and urban precincts, we have developed a sustainable, liveable and affordable urban blueprint for Australia. A PwC study (yet to be released) estimated cumulative economic benefits totalling A$684 million by 2027.
To put this another way, we have identified and verified evidence-based pathways to cut emissions equivalent to taking some 2.1 million cars off the road.
Some of the progress to date is not immediately obvious to the casual observer. Take an otherwise unremarkable stretch of road along the back way to Sydney Airport. Recently, a 30-metre section of concrete was installed, which looks more like an ad hoc road repair than an important scientific pilot study.
Bu 15 metres is paved with a new geopolymer concrete that slashes greenhouse gas emissions by 50%. The other 15 metres is conventional concrete, the most widely used man-made material on the planet. Concrete production, using cement as its binder, accounts for about 8% of all global emissions.
The geopolymer concrete developed through our research centre is a similarly high-performance product but its binder safely incorporates otherwise noxious industrial waste streams, such as fly ash from coal-fired power stations and slag from blast furnaces. Australia has stockpiled about 400 million tonnes of waste from coal-fired power generation and steelmaking.
In Alexandria, in collaboration with the City of Sydney, we are testing this low-carbon concrete as a road surface that could help clean up industrial waste while slashing emissions. Working with NSW Ports, we’ve also shaped it into low-carbon bollards to form a breakwater to protect the coastline at Port Kembla from extreme weather.

Waste from coal-fired power stations has been used to make low-carbon bollards to protect the coastline at Port Kembla.

We now have the know-how to do better
There are many such success stories, but with 150 CRC Low Carbon Living projects the list is too long to detail. What’s more important, as our funding period comes to an end and Australia loses its only innovation hub committed to lowering carbon in the built environment, is to note how we got to where we are today.
The federal government’s Co-operative Research Centre program fosters co-operation and collaboration on a grand scale. Industries, businesses, government organisations and communities with a stake in solving big, complex challenges partner with researchers from a wide range of academic fields. This structure brings together sectors and people whose paths might otherwise rarely cross.
The cross-fertilisation of ideas, expertise and skills delivers innovative solutions. Research worldwide has consistently shown that collaboration drives innovation, and that innovation drives economic growth. Our experience confirms that as we partnered with organisations such as Multiplex, AECOM, BlueScope Steel, Sydney Water, ISCA, CSIRO and the United Nations Environment Program.
Cities are complex, exciting beasts, but we have the knowledge and expertise to live better, more comfortable urban lives in Australia while reducing demand for energy, water and materials. That is, we have the blueprint for low-carbon urban living. We must now choose to use it.

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Great Barrier Reef Outlook Now 'Very Poor', Australian Government Review Says

The Guardian -  |

Five-yearly report says climate change is escalating the threat and window of opportunity for action is now
The outlook for the health of the Great Barrier Reef is now ‘very poor’, a major Australian government review has said. Photograph: Arterra/Universal Images Group via Getty Images
The outlook for the Great Barrier Reef has deteriorated from poor to very poor according to an exhaustive government report that warns the window of opportunity to improve the natural wonder’s future “is now”.
The Great Barrier Reef Marine Park Authority’s outlook report, published every five years, finds coral reefs have declined to a very poor condition and there is widespread habitat loss and degradation affecting fish, turtles and seabirds.
It warns the plight of the reef will not improve unless there is urgent national and global action to address the climate crisis, which it described as its greatest threat.
The report says rising sea temperatures and extreme events linked to climate change, such as the marine heatwaves that caused mass coral bleaching in the northern two-thirds of the reef in 2016 and 2017, are the most immediate risks.
Other major threats include farming pollution, coastal development and human use, such as illegal fishing. The report says water quality is improving too slowly and continues to affect many inshore areas, largely due to farming practices that had not improved rapidly enough.
“Without additional local, national and global action on the greatest threats, the overall outlook for the Great Barrier Reef’s ecosystem will remain very poor, with continuing consequences for its heritage values also,” the report says.
“The window of opportunity to improve the reef’s long-term future is now.”
The authority’s chief executive, Josh Thomas, said the reef was widely recognised as one of the best managed marine protected areas in the world and its world heritage values remained intact, but it was at a critical point in its history.
“While the reef is already experiencing the impacts of climate change, its future is one we can change – and are committed to changing,” he said.
The report maps the health of the reef, which it says has declined from what was described as a crossroads in 2009 to “under pressure” in 2014 to being a “changed and less resilient reef” in 2019.
It says not all areas of the reef have been equally affected and the challenge to restore the reef is big, but not insurmountable. It would require action to effectively address the climate crisis and effective implementation of the government’s 2050 reef plan.
The environment minister, Sussan Ley, said the reef had been hit over the past five years by two mass coral bleachings, several cyclones, an ongoing crown-of-thorns starfish outbreak and the impacts of climate change. She said the “very poor” outlook was something “we can change and are committed to changing”.
Other key findings of the report include that: seagrass meadows are in poor condition; some species populations are being substantially affected by habitat loss and degradation; the size of the reef is becoming a less effective buffer to widespread and cumulative impacts; reef-dependent economies need to prepare for the impacts of a less diverse ecosystem caused by rising ocean temperatures.
The outlook report was one of two major reports published about the reef on Friday. A separate report card on the condition of inshore reefs released by the federal and state governments rated their condition in 2017-18 as a “D”, largely due to poor water quality driven by land management practices including farming.
The reports come amid a campaign by farmers in Queensland against state government plans to tighten regulations on agricultural run-off that flows into reef catchments. Information in the report will form part of the evidence considered by the Unesco world heritage committee when it examines the reef’s health and status next year.
Australia successfully campaigned in 2015 for the reef’s world heritage listing not to be considered in danger. The Guardian reported this week that the government was pushing Unesco to resolve how it would deal with climate impacts on world heritage properties, including the Great Barrier Reef.
Richard Leck, from WWF-Australia, said the outlook report was a sombre reminder of the challenges facing the reef. He said solutions were available and must be included in a revamped Reef 2050 plan due from the federal and state governments next year.
He said the plan must take climate change seriously and Queensland needed to pass regulations to reduce farm runoff.
“The science is irrefutable. The time for delay is over,” he said.
Jon Brodie, a professorial fellow at James Cook University in Townsville, said the report showed that, while there were some small areas of progress, Australia was failing the reef.
“Overall, there is very little good to report whatsoever,” he said.

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Australia's Carbon Emissions Continue To Rise Despite Government Assurances About Climate Change Policy

ABC News - Claudia Long

Emissions Reductions Minister Angus Taylor said the increase is due to growth in LNG exports. (Supplied: GRACosway)
Key points
  • Emissions Reduction Minister Angus Taylor said the increase is due to growth in LNG exports
  • The report shows a drop in emissions from electricity and agriculture have been offset by increases from transport and waste
  • Labor says the Coalition should not solely blame LNG exports for the increase
New figures show Australia's carbon emissions are continuing to climb despite Federal Government assurances it has the policy framework to address climate change.In the year to March, emissions rose 0.6 per cent on the previous year, according to data released by Energy and Emissions Reduction Minister Angus Taylor
There was, however, a drop in greenhouse gas emissions of 0.4 per cent recorded in the March quarter of this year.
The Opposition and environment groups have seized on the data and accused the Government of failing to respond to a changing climate.
Mr Taylor rejected that and insisted the increase in emissions is due to growth in the LNG industry.
"In the last year there is a 0.6 per cent increase but it was more than accounted for by the very strong growth in LNG exports that are reducing global emissions," Mr Taylor said.
"We're seeing a reduction in emissions as a result of Australia's gas exports, but we have to wear a small increase as a result of that.
"While that is not great for carbon accounting it is a good outcome for the world."
Labor and environmental groups have rejected Angus Taylor's claims about climate change action. (ABC News: Jake Evans)
The increase of around 3.1 million tonnes resulted in a total of 538.9 million tonnes of carbon emissions over the year to March 2019.
The report also showed a continued drop in emissions from the electricity and agriculture sectors have been offset by increases in emissions from transport, waste and other sectors.

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Despite the overall increase, Mr Taylor echoed the Prime Minister's previous comments that Australia would meet its Paris Agreement obligations "in a canter".
"We've laid out to the last tonne how we're going to reach those Paris commitments," he said.
"No government 12 years ahead of a target has laid out to the last tonne how they're going to achieve those obligations."
Head of research for the Climate Council Martin Rice disputed that claim, telling the ABC the results weren't good enough, despite the quarterly drop.
"The emissions figures clearly show the Federal Government is failing to act," Dr Rice said.
"Even the Government's own data confirms we are not on track to meet our woefully inadequate emissions reduction target.
"The emissions data today is another example of reckless reporting from the Federal Government.
"They cherrypick the data, they don't look at the big pictures."


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 the strong climate policy we need?
Policymakers need to realise the climate will respond to our emissions, not our accounting, writes environment reporter Nick Kilvert.

Labor's climate change and energy spokesman Mark Butler said the Coalition should not solely blame LNG exports for the increase.
"The report shows that year-on-year emissions are rising in every sector of the economy except for two," he said.
"One of them is electricity because of the renewable energy target and some state renewable energy policies that Angus Taylor has opposed vociferously.
"And the other sector of the economy that's seen emissions go down is agriculture, unfortunately because of the impact of the drought.
"Every other sector of the economy, not just LNG, sees emissions rising and has seen emissions rising ever since this Government was elected."

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