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Fears for heritage site as gas plant expansion approved

Fears for heritage site as gas plant expansion approved

West Australian2 days ago

Industrial pollution is damaging priceless rock art, an expert says amid protests over a decision to extend the life of a major gas hub.
Woodside's North West Shelf project - which hosts Australia's biggest gas export plant - has been given the green light by the federal government to keep operating until 2070.
The Australian energy giant still has to accept conditions around heritage and air quality at the project on Western Australia's Burrup Peninsula, home to ancient rock art, before the approval is made official.
The approval has angered traditional owners, climate activists and scientists who have researched the impact of industrial pollution on the rock art at Murujuga.
A report into pollution at the site, linked to a $27 million rock art monitoring project, was only released by the WA government a week before federal Environment Minister Murray Watt announced the approval.
Benjamin Smith, an archaeologist at the University of Western Australia, said the executive summary did not reflect the key findings of the 800-page report by Curtin University scientists who he claimed were gagged from speaking publicly about it.
"They were outraged that their report and the integrity of their academic findings had been misrepresented."
Professor Smith told AAP the Curtin scientists felt the summary had "lied about their findings" so he was speaking out about a cover-up by departmental "spin doctors".
The Cook government has dismissed the claims as offensive and factually incorrect.
The Curtin scientists subjected rocks in a climate chamber to acidic pollution equivalent to emissions from the Burrup gas plants and found all the rocks showed evidence of degradation.
Prof Smith said the Curtin research and his own studies showed the pollutants would eat away at the manganese in the rocks until they developed "holes like a Swiss cheese" that then caused the rock surfaces to break down.
"It is direct evidence for the first time from a government study that industrial pollution is damaging the rock art of Murujuga," he said.
The damage could be mitigated by putting scrubbers on the industrial stacks to filter emissions and reduce pollution but the best solution was to switch the plants' power from gas to electricity, Prof Smith said.
"If you transformed all of those plants to electricity ... they could operate cleanly and we could have the perfect solution, which is profitable industry operating responsibly alongside the world's most important rock art site."
Prof Smith said the famous Lascaux caves in France held only a few hundred wall paintings and dated back 17,000 years.
But the rock art at Murujuga has a million images going back at least 50,000 years, including the world's first-known depiction of a human face and images of now-extinct animals.
Murujuga has been put forward as a UNESCO world heritage site, with strong indications it will be accepted as such.
But the application has been referred back to the federal and WA governments with recommendations to stop building on the site, to stop the pollution and to prepare a decommissioning report.

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'Salty soup': climate threat to vital lagoon ecosystems
'Salty soup': climate threat to vital lagoon ecosystems

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'Salty soup': climate threat to vital lagoon ecosystems

Healthy, well-balanced coastal lagoons at the intersection of salty seas and fresh waterways make ideal fish nurseries and attractive spots for migratory birds. Yet a warming climate paired with competition for water upstream is degrading these ecological hotspots, ramping up their salt content and putting marine life under stress. Emerging research suggests the potential for lagoon wetlands to act as carbon sinks - when an ecosystems draws down more carbon dioxide than it releases - is hindered when in a degraded state. University of Adelaide microbial ecologist Christopher Keneally said the habitats tend to emit more methane and nitrous oxide, both potent greenhouse gas emissions, when in poor shape. His post-doctoral research focused on the Ramsar-listed Coorong in South Australia, the traditional lands of the Ngarrindjeri people, underlines the importance of keeping these critical habitats in good health. It's not just an Australian problem, he explained, with brackish wetlands in arid and temperate climate zones worldwide under threat from rising temperatures. Characterised by somewhat choked ocean access, lagoons are already under pressure from human activity as freshwater use by towns, farms and industry leaves less for the environment at the end of river basins. Now higher rates of evaporation under rising temperatures, less rainfall, and sea level rise bringing in more saltwater from the ocean are contributing to higher salt and nutrient concentrations. "A single hot, dry summer, like the one we have recently experienced, can completely shift this important habitat into a salty, green soup," Dr Keneally said. Such conditions upset the invisible and delicate "microbiomes" of lagoon waters, with microbial diversity diminished while salt-tolerant species survive. Unbalanced microbial communities can potentially lead to harmful algae blooms and low-oxygen "dead zones" that kill fish. In addition, microbial species with anaerobic metabolisms favour high salinity environments. These species tend to produce methane, undermining the habitat's role as a productive carbon sink. While an emerging area of research, Dr Keneally said estimations of methane production were "probably underestimated" and should be better integrated into global climate models. Occasional heavy rainfall and floods serve to "freshen up" coastal wetlands, rebalancing salt and other nutrient levels, as occurred in the South Australia's Coorong region in 2022. Yet sporadic downpours cannot be relied upon. "Conditions might improve for a couple of years, but those high rainfall events are not dependable, and in the dry periods, we often see permanent losses of biodiversity, Dr Keneally said. Careful management of freshwater releases to keep salinity and nutrient levels at optimal levels was billed as part of the solution. Listed as an internationally-important wetland under the Ramsar convention for migratory birds in the 1980s, the Coorong has long been a research priority and its condition taken seriously. The Millennium Drought led to the creation of the Murray Darling Basin to better manage water flows in the region, though balancing the needs of irrigators, towns and the environment has long been a fraught issue. Long-time Coorong fisherman Glen Hill believes the limited water reserved for the environment - half the amount recommended by scientists - should be released more strategically. The owner of Coorong Wild Seafood said the north of the lagoon was in great shape as freshwater from the river mouth could be easily released into it, while the more isolated south area was in a "terrible" state. He said better-timed water releases to coincide with favourable winds and weather conditions could help more freshwater enter the troubled southern lagoon. Mr Hill has been fishing the area for the prized Yellow-eye mullet and other commercially-important species for decades. Situated at the end of the Murray Darling Basin, Mr Hill said the Coorong was a highly productive fishery thanks to the high levels of nutrient "building blocks" swept downstream. Yet he was acutely familiar with the "domino effect" of harmfully-high salinity levels, knocking out species low on the food chain and leaving fish with little to eat. "When you get to around two times sea water salinity, things start to really go wrong," he said. A spokesperson from the South Australian Department for Environment and Water said the government was committed to protecting the Coorong's ecological character. "This work is achieved by optimising delivery of water for the environment and investing in infrastructure and restoration strategies to improve and protect the health of the system," the spokesperson said. The health of the lagoon vastly improved during the 2022 River Murray floods but the spokesperson said more needed to be done to restore its long-term health. This included refining freshwater flows and working with other basin states to ensure climate science informs its broader management. Healthy, well-balanced coastal lagoons at the intersection of salty seas and fresh waterways make ideal fish nurseries and attractive spots for migratory birds. Yet a warming climate paired with competition for water upstream is degrading these ecological hotspots, ramping up their salt content and putting marine life under stress. Emerging research suggests the potential for lagoon wetlands to act as carbon sinks - when an ecosystems draws down more carbon dioxide than it releases - is hindered when in a degraded state. University of Adelaide microbial ecologist Christopher Keneally said the habitats tend to emit more methane and nitrous oxide, both potent greenhouse gas emissions, when in poor shape. His post-doctoral research focused on the Ramsar-listed Coorong in South Australia, the traditional lands of the Ngarrindjeri people, underlines the importance of keeping these critical habitats in good health. It's not just an Australian problem, he explained, with brackish wetlands in arid and temperate climate zones worldwide under threat from rising temperatures. Characterised by somewhat choked ocean access, lagoons are already under pressure from human activity as freshwater use by towns, farms and industry leaves less for the environment at the end of river basins. Now higher rates of evaporation under rising temperatures, less rainfall, and sea level rise bringing in more saltwater from the ocean are contributing to higher salt and nutrient concentrations. "A single hot, dry summer, like the one we have recently experienced, can completely shift this important habitat into a salty, green soup," Dr Keneally said. Such conditions upset the invisible and delicate "microbiomes" of lagoon waters, with microbial diversity diminished while salt-tolerant species survive. Unbalanced microbial communities can potentially lead to harmful algae blooms and low-oxygen "dead zones" that kill fish. In addition, microbial species with anaerobic metabolisms favour high salinity environments. These species tend to produce methane, undermining the habitat's role as a productive carbon sink. While an emerging area of research, Dr Keneally said estimations of methane production were "probably underestimated" and should be better integrated into global climate models. Occasional heavy rainfall and floods serve to "freshen up" coastal wetlands, rebalancing salt and other nutrient levels, as occurred in the South Australia's Coorong region in 2022. Yet sporadic downpours cannot be relied upon. "Conditions might improve for a couple of years, but those high rainfall events are not dependable, and in the dry periods, we often see permanent losses of biodiversity, Dr Keneally said. Careful management of freshwater releases to keep salinity and nutrient levels at optimal levels was billed as part of the solution. Listed as an internationally-important wetland under the Ramsar convention for migratory birds in the 1980s, the Coorong has long been a research priority and its condition taken seriously. The Millennium Drought led to the creation of the Murray Darling Basin to better manage water flows in the region, though balancing the needs of irrigators, towns and the environment has long been a fraught issue. Long-time Coorong fisherman Glen Hill believes the limited water reserved for the environment - half the amount recommended by scientists - should be released more strategically. The owner of Coorong Wild Seafood said the north of the lagoon was in great shape as freshwater from the river mouth could be easily released into it, while the more isolated south area was in a "terrible" state. He said better-timed water releases to coincide with favourable winds and weather conditions could help more freshwater enter the troubled southern lagoon. Mr Hill has been fishing the area for the prized Yellow-eye mullet and other commercially-important species for decades. Situated at the end of the Murray Darling Basin, Mr Hill said the Coorong was a highly productive fishery thanks to the high levels of nutrient "building blocks" swept downstream. Yet he was acutely familiar with the "domino effect" of harmfully-high salinity levels, knocking out species low on the food chain and leaving fish with little to eat. "When you get to around two times sea water salinity, things start to really go wrong," he said. A spokesperson from the South Australian Department for Environment and Water said the government was committed to protecting the Coorong's ecological character. "This work is achieved by optimising delivery of water for the environment and investing in infrastructure and restoration strategies to improve and protect the health of the system," the spokesperson said. The health of the lagoon vastly improved during the 2022 River Murray floods but the spokesperson said more needed to be done to restore its long-term health. This included refining freshwater flows and working with other basin states to ensure climate science informs its broader management. Healthy, well-balanced coastal lagoons at the intersection of salty seas and fresh waterways make ideal fish nurseries and attractive spots for migratory birds. Yet a warming climate paired with competition for water upstream is degrading these ecological hotspots, ramping up their salt content and putting marine life under stress. Emerging research suggests the potential for lagoon wetlands to act as carbon sinks - when an ecosystems draws down more carbon dioxide than it releases - is hindered when in a degraded state. University of Adelaide microbial ecologist Christopher Keneally said the habitats tend to emit more methane and nitrous oxide, both potent greenhouse gas emissions, when in poor shape. His post-doctoral research focused on the Ramsar-listed Coorong in South Australia, the traditional lands of the Ngarrindjeri people, underlines the importance of keeping these critical habitats in good health. It's not just an Australian problem, he explained, with brackish wetlands in arid and temperate climate zones worldwide under threat from rising temperatures. Characterised by somewhat choked ocean access, lagoons are already under pressure from human activity as freshwater use by towns, farms and industry leaves less for the environment at the end of river basins. Now higher rates of evaporation under rising temperatures, less rainfall, and sea level rise bringing in more saltwater from the ocean are contributing to higher salt and nutrient concentrations. "A single hot, dry summer, like the one we have recently experienced, can completely shift this important habitat into a salty, green soup," Dr Keneally said. Such conditions upset the invisible and delicate "microbiomes" of lagoon waters, with microbial diversity diminished while salt-tolerant species survive. Unbalanced microbial communities can potentially lead to harmful algae blooms and low-oxygen "dead zones" that kill fish. In addition, microbial species with anaerobic metabolisms favour high salinity environments. These species tend to produce methane, undermining the habitat's role as a productive carbon sink. While an emerging area of research, Dr Keneally said estimations of methane production were "probably underestimated" and should be better integrated into global climate models. Occasional heavy rainfall and floods serve to "freshen up" coastal wetlands, rebalancing salt and other nutrient levels, as occurred in the South Australia's Coorong region in 2022. Yet sporadic downpours cannot be relied upon. "Conditions might improve for a couple of years, but those high rainfall events are not dependable, and in the dry periods, we often see permanent losses of biodiversity, Dr Keneally said. Careful management of freshwater releases to keep salinity and nutrient levels at optimal levels was billed as part of the solution. Listed as an internationally-important wetland under the Ramsar convention for migratory birds in the 1980s, the Coorong has long been a research priority and its condition taken seriously. The Millennium Drought led to the creation of the Murray Darling Basin to better manage water flows in the region, though balancing the needs of irrigators, towns and the environment has long been a fraught issue. Long-time Coorong fisherman Glen Hill believes the limited water reserved for the environment - half the amount recommended by scientists - should be released more strategically. The owner of Coorong Wild Seafood said the north of the lagoon was in great shape as freshwater from the river mouth could be easily released into it, while the more isolated south area was in a "terrible" state. He said better-timed water releases to coincide with favourable winds and weather conditions could help more freshwater enter the troubled southern lagoon. Mr Hill has been fishing the area for the prized Yellow-eye mullet and other commercially-important species for decades. Situated at the end of the Murray Darling Basin, Mr Hill said the Coorong was a highly productive fishery thanks to the high levels of nutrient "building blocks" swept downstream. Yet he was acutely familiar with the "domino effect" of harmfully-high salinity levels, knocking out species low on the food chain and leaving fish with little to eat. "When you get to around two times sea water salinity, things start to really go wrong," he said. A spokesperson from the South Australian Department for Environment and Water said the government was committed to protecting the Coorong's ecological character. "This work is achieved by optimising delivery of water for the environment and investing in infrastructure and restoration strategies to improve and protect the health of the system," the spokesperson said. The health of the lagoon vastly improved during the 2022 River Murray floods but the spokesperson said more needed to be done to restore its long-term health. This included refining freshwater flows and working with other basin states to ensure climate science informs its broader management. Healthy, well-balanced coastal lagoons at the intersection of salty seas and fresh waterways make ideal fish nurseries and attractive spots for migratory birds. Yet a warming climate paired with competition for water upstream is degrading these ecological hotspots, ramping up their salt content and putting marine life under stress. Emerging research suggests the potential for lagoon wetlands to act as carbon sinks - when an ecosystems draws down more carbon dioxide than it releases - is hindered when in a degraded state. University of Adelaide microbial ecologist Christopher Keneally said the habitats tend to emit more methane and nitrous oxide, both potent greenhouse gas emissions, when in poor shape. His post-doctoral research focused on the Ramsar-listed Coorong in South Australia, the traditional lands of the Ngarrindjeri people, underlines the importance of keeping these critical habitats in good health. It's not just an Australian problem, he explained, with brackish wetlands in arid and temperate climate zones worldwide under threat from rising temperatures. Characterised by somewhat choked ocean access, lagoons are already under pressure from human activity as freshwater use by towns, farms and industry leaves less for the environment at the end of river basins. Now higher rates of evaporation under rising temperatures, less rainfall, and sea level rise bringing in more saltwater from the ocean are contributing to higher salt and nutrient concentrations. "A single hot, dry summer, like the one we have recently experienced, can completely shift this important habitat into a salty, green soup," Dr Keneally said. Such conditions upset the invisible and delicate "microbiomes" of lagoon waters, with microbial diversity diminished while salt-tolerant species survive. Unbalanced microbial communities can potentially lead to harmful algae blooms and low-oxygen "dead zones" that kill fish. In addition, microbial species with anaerobic metabolisms favour high salinity environments. These species tend to produce methane, undermining the habitat's role as a productive carbon sink. While an emerging area of research, Dr Keneally said estimations of methane production were "probably underestimated" and should be better integrated into global climate models. Occasional heavy rainfall and floods serve to "freshen up" coastal wetlands, rebalancing salt and other nutrient levels, as occurred in the South Australia's Coorong region in 2022. Yet sporadic downpours cannot be relied upon. "Conditions might improve for a couple of years, but those high rainfall events are not dependable, and in the dry periods, we often see permanent losses of biodiversity, Dr Keneally said. Careful management of freshwater releases to keep salinity and nutrient levels at optimal levels was billed as part of the solution. Listed as an internationally-important wetland under the Ramsar convention for migratory birds in the 1980s, the Coorong has long been a research priority and its condition taken seriously. The Millennium Drought led to the creation of the Murray Darling Basin to better manage water flows in the region, though balancing the needs of irrigators, towns and the environment has long been a fraught issue. Long-time Coorong fisherman Glen Hill believes the limited water reserved for the environment - half the amount recommended by scientists - should be released more strategically. The owner of Coorong Wild Seafood said the north of the lagoon was in great shape as freshwater from the river mouth could be easily released into it, while the more isolated south area was in a "terrible" state. He said better-timed water releases to coincide with favourable winds and weather conditions could help more freshwater enter the troubled southern lagoon. Mr Hill has been fishing the area for the prized Yellow-eye mullet and other commercially-important species for decades. Situated at the end of the Murray Darling Basin, Mr Hill said the Coorong was a highly productive fishery thanks to the high levels of nutrient "building blocks" swept downstream. Yet he was acutely familiar with the "domino effect" of harmfully-high salinity levels, knocking out species low on the food chain and leaving fish with little to eat. "When you get to around two times sea water salinity, things start to really go wrong," he said. A spokesperson from the South Australian Department for Environment and Water said the government was committed to protecting the Coorong's ecological character. "This work is achieved by optimising delivery of water for the environment and investing in infrastructure and restoration strategies to improve and protect the health of the system," the spokesperson said. The health of the lagoon vastly improved during the 2022 River Murray floods but the spokesperson said more needed to be done to restore its long-term health. This included refining freshwater flows and working with other basin states to ensure climate science informs its broader management.

'Salty soup': climate threat to vital lagoon ecosystems
'Salty soup': climate threat to vital lagoon ecosystems

West Australian

time19 hours ago

  • West Australian

'Salty soup': climate threat to vital lagoon ecosystems

Healthy, well-balanced coastal lagoons at the intersection of salty seas and fresh waterways make ideal fish nurseries and attractive spots for migratory birds. Yet a warming climate paired with competition for water upstream is degrading these ecological hotspots, ramping up their salt content and putting marine life under stress. Emerging research suggests the potential for lagoon wetlands to act as carbon sinks - when an ecosystems draws down more carbon dioxide than it releases - is hindered when in a degraded state. University of Adelaide microbial ecologist Christopher Keneally said the habitats tend to emit more methane and nitrous oxide, both potent greenhouse gas emissions, when in poor shape. His post-doctoral research focused on the Ramsar-listed Coorong in South Australia, the traditional lands of the Ngarrindjeri people, underlines the importance of keeping these critical habitats in good health. It's not just an Australian problem, he explained, with brackish wetlands in arid and temperate climate zones worldwide under threat from rising temperatures. Characterised by somewhat choked ocean access, lagoons are already under pressure from human activity as freshwater use by towns, farms and industry leaves less for the environment at the end of river basins. Now higher rates of evaporation under rising temperatures, less rainfall, and sea level rise bringing in more saltwater from the ocean are contributing to higher salt and nutrient concentrations. "A single hot, dry summer, like the one we have recently experienced, can completely shift this important habitat into a salty, green soup," Dr Keneally said. Such conditions upset the invisible and delicate "microbiomes" of lagoon waters, with microbial diversity diminished while salt-tolerant species survive. Unbalanced microbial communities can potentially lead to harmful algae blooms and low-oxygen "dead zones" that kill fish. In addition, microbial species with anaerobic metabolisms favour high salinity environments. These species tend to produce methane, undermining the habitat's role as a productive carbon sink. While an emerging area of research, Dr Keneally said estimations of methane production were "probably underestimated" and should be better integrated into global climate models. Occasional heavy rainfall and floods serve to "freshen up" coastal wetlands, rebalancing salt and other nutrient levels, as occurred in the South Australia's Coorong region in 2022. Yet sporadic downpours cannot be relied upon. "Conditions might improve for a couple of years, but those high rainfall events are not dependable, and in the dry periods, we often see permanent losses of biodiversity, Dr Keneally said. Careful management of freshwater releases to keep salinity and nutrient levels at optimal levels was billed as part of the solution. Listed as an internationally-important wetland under the Ramsar convention for migratory birds in the 1980s, the Coorong has long been a research priority and its condition taken seriously. The Millennium Drought led to the creation of the Murray Darling Basin to better manage water flows in the region, though balancing the needs of irrigators, towns and the environment has long been a fraught issue. Long-time Coorong fisherman Glen Hill believes the limited water reserved for the environment - half the amount recommended by scientists - should be released more strategically. The owner of Coorong Wild Seafood said the north of the lagoon was in great shape as freshwater from the river mouth could be easily released into it, while the more isolated south area was in a "terrible" state. He said better-timed water releases to coincide with favourable winds and weather conditions could help more freshwater enter the troubled southern lagoon. Mr Hill has been fishing the area for the prized Yellow-eye mullet and other commercially-important species for decades. Situated at the end of the Murray Darling Basin, Mr Hill said the Coorong was a highly productive fishery thanks to the high levels of nutrient "building blocks" swept downstream. Yet he was acutely familiar with the "domino effect" of harmfully-high salinity levels, knocking out species low on the food chain and leaving fish with little to eat. "When you get to around two times sea water salinity, things start to really go wrong," he said. A spokesperson from the South Australian Department for Environment and Water said the government was committed to protecting the Coorong's ecological character. "This work is achieved by optimising delivery of water for the environment and investing in infrastructure and restoration strategies to improve and protect the health of the system," the spokesperson said. The health of the lagoon vastly improved during the 2022 River Murray floods but the spokesperson said more needed to be done to restore its long-term health. This included refining freshwater flows and working with other basin states to ensure climate science informs its broader management.

'Salty soup': climate threat to vital lagoon ecosystems
'Salty soup': climate threat to vital lagoon ecosystems

Perth Now

time19 hours ago

  • Perth Now

'Salty soup': climate threat to vital lagoon ecosystems

Healthy, well-balanced coastal lagoons at the intersection of salty seas and fresh waterways make ideal fish nurseries and attractive spots for migratory birds. Yet a warming climate paired with competition for water upstream is degrading these ecological hotspots, ramping up their salt content and putting marine life under stress. Emerging research suggests the potential for lagoon wetlands to act as carbon sinks - when an ecosystems draws down more carbon dioxide than it releases - is hindered when in a degraded state. University of Adelaide microbial ecologist Christopher Keneally said the habitats tend to emit more methane and nitrous oxide, both potent greenhouse gas emissions, when in poor shape. His post-doctoral research focused on the Ramsar-listed Coorong in South Australia, the traditional lands of the Ngarrindjeri people, underlines the importance of keeping these critical habitats in good health. It's not just an Australian problem, he explained, with brackish wetlands in arid and temperate climate zones worldwide under threat from rising temperatures. Characterised by somewhat choked ocean access, lagoons are already under pressure from human activity as freshwater use by towns, farms and industry leaves less for the environment at the end of river basins. Now higher rates of evaporation under rising temperatures, less rainfall, and sea level rise bringing in more saltwater from the ocean are contributing to higher salt and nutrient concentrations. "A single hot, dry summer, like the one we have recently experienced, can completely shift this important habitat into a salty, green soup," Dr Keneally said. Such conditions upset the invisible and delicate "microbiomes" of lagoon waters, with microbial diversity diminished while salt-tolerant species survive. Unbalanced microbial communities can potentially lead to harmful algae blooms and low-oxygen "dead zones" that kill fish. In addition, microbial species with anaerobic metabolisms favour high salinity environments. These species tend to produce methane, undermining the habitat's role as a productive carbon sink. While an emerging area of research, Dr Keneally said estimations of methane production were "probably underestimated" and should be better integrated into global climate models. Occasional heavy rainfall and floods serve to "freshen up" coastal wetlands, rebalancing salt and other nutrient levels, as occurred in the South Australia's Coorong region in 2022. Yet sporadic downpours cannot be relied upon. "Conditions might improve for a couple of years, but those high rainfall events are not dependable, and in the dry periods, we often see permanent losses of biodiversity, Dr Keneally said. Careful management of freshwater releases to keep salinity and nutrient levels at optimal levels was billed as part of the solution. Listed as an internationally-important wetland under the Ramsar convention for migratory birds in the 1980s, the Coorong has long been a research priority and its condition taken seriously. The Millennium Drought led to the creation of the Murray Darling Basin to better manage water flows in the region, though balancing the needs of irrigators, towns and the environment has long been a fraught issue. Long-time Coorong fisherman Glen Hill believes the limited water reserved for the environment - half the amount recommended by scientists - should be released more strategically. The owner of Coorong Wild Seafood said the north of the lagoon was in great shape as freshwater from the river mouth could be easily released into it, while the more isolated south area was in a "terrible" state. He said better-timed water releases to coincide with favourable winds and weather conditions could help more freshwater enter the troubled southern lagoon. Mr Hill has been fishing the area for the prized Yellow-eye mullet and other commercially-important species for decades. Situated at the end of the Murray Darling Basin, Mr Hill said the Coorong was a highly productive fishery thanks to the high levels of nutrient "building blocks" swept downstream. Yet he was acutely familiar with the "domino effect" of harmfully-high salinity levels, knocking out species low on the food chain and leaving fish with little to eat. "When you get to around two times sea water salinity, things start to really go wrong," he said. A spokesperson from the South Australian Department for Environment and Water said the government was committed to protecting the Coorong's ecological character. "This work is achieved by optimising delivery of water for the environment and investing in infrastructure and restoration strategies to improve and protect the health of the system," the spokesperson said. The health of the lagoon vastly improved during the 2022 River Murray floods but the spokesperson said more needed to be done to restore its long-term health. This included refining freshwater flows and working with other basin states to ensure climate science informs its broader management.

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