Once considered a stable carbon reserve, the Congo Basin may now be leaking ancient carbon to the atmosphere.... Read More
Universities
Tire pollution is an invisible yet significant source of microplastics that contribute to salmon deaths, raising urgent environmental justice concerns.... Read More
Among forest restoration efforts, natural regeneration is potentially a more cost-effective approach than tree planting, with proper support.... Read More
The terrestrial landscapes are changing as fast-growing and naturalized tree species increasingly dominate forest ecosystems.... Read More
Animal testing has long been questioned for blatant exploitation. As technology evolves, innovations continue to emerge as alternatives to the practice.... Read More
A study discovers a major factor in changing rainfall patterns, presenting a new variable, especially for farmers.... Read More
What is lacking (in corporate sustainability) is not knowledge, but the political will and corporate courage to make the necessary changes at the speed required.... Read More
In this era of disruptions, strengthening societal resilience becomes vital in determining our collective survival and prosperity.... Read More
Innovating ways to transform agricultural waste into biomaterials can reduce pollution while advancing a circular and low-carbon economy.... Read More
Amid environmental degradation due to pollution, studies emerge to explore the use of fungi for decontamination, called mycoremediation.... Read More

Congo Basin Peatlands Are Releasing Ancient Carbon
The Hidden Threat of Tire Pollution to Salmon Populations
Natural Regeneration for a More Cost-Effective Forest Restoration
Global Shifts in Forest Dynamics and Their Impact on Biodiversity and Resilience
Exploring Technological Advancement to Replace Animal Testing
A Major Cause of Changing Rainfall Patterns
An Interview with May Tan-Mullins, CEO and Provost of University of Reading Malaysia
Strengthening Societal Resilience in the Age of Disruptions
Turning Agricultural Waste into Biomaterials
Harnessing the Power of Fungi for Environmental Restoration Through Mycoremediation