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MyJournals.org - Science - '[ASAP] Exogenous Electroactive Microbes Regulate Soil Geochemical Properties and Microbial Communities by Enhancing the Reduction and Transformation of Fe(III) Minerals' (Environmental Science & Technology)

MyJournals.org - Science - [ASAP] Exogenous Electroactive Microbes Regulate Soil Geochemical Properties and Microbial Communities by Enhancing the Reduction and Transformation of Fe(III) Minerals (Environmental Science & Technology)
Minerals Environmental Science Technology Exogenous Electroactive Microbes Regulate Soil Geochemical Properties Microbial Communities Environmental Science Exposure Timing Lipid Utilization

Microbial Marvels: Scientists Discover How Microbes from the Alps to the Arctic Can Digest Plastic Waste

Finding, cultivating, and bioengineering organisms that can digest plastic not only aids in the removal of pollution, but is now also big business. Several microorganisms that can do this have already been found, but when their enzymes that make this possible are applied at an industrial scale, they typically only work at temperatures above 30°C.
Getty Images Recycled Plastics Harm Environment Leaking Hazardous Chemicals Igest Plastic Waste

BBCNEWS BBC News June 4, 2024 18:56:00

Lower temperatures, youre to degrade plastic with at lowertemperatures, it youre to degrade plastic with at lower temperatures, it means that we can save energy. i lower temperatures, it means that we can save energy-— can save energy. i am like lots of our audience, recycle _ can save energy. i am like lots of our audience, recycle plastic, i i can save energy. i am like lots of. our audience, recycle plastic, i put it in the black been in the apartment block which i live and at what point ar...
Recycle Plastic At Lowertemperatures Eating Microbes

BBCNEWS BBC News June 4, 2024 18:54:00

Speaking to me earlier. we turn our attention now as we often due to plastic eating microbes. scientists have identified microbes in the alps and the arctic able to digest plastics at low temperatures which could lead to a breakthrough in recycling. the researchers sampled strains of bacteria and fungi found growing on free lying or intentionally buried plastic in greenland, svalbard and switzerland. they found that eleven fungi and eight bacteria were able to digest bio degradeable polyurethane...
Eating Microbes Plastic Mixtures Bio Degradeable Court Environments

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Welcome To IANS Live - NATION - IIT Mandi team to turn agriculture residue, paper waste to useful chemicals

Plant dry matter, also known as lignocellulose, is one of the most abundant renewable materials on Earth. Lignocellulosic waste from agriculture, forests, and industries can be converted into valuable chemicals such as bioethanol, biodiesel, lactic acid, and fatty acids using a process called bioprocessing.Biop
Shyam Kumar Masakapalli Bioresource Technology Indian Institute Of Technology Mandi Indian Institute Technology Mandi

Welcome To IANS Live - SCIENCE-AND-TECHNOLOGY - IIT Mandi team to turn agriculture residue, paper waste to useful chemicals

Plant dry matter, also known as lignocellulose, is one of the most abundant renewable materials on Earth. Lignocellulosic waste from agriculture, forests, and industries can be converted into valuable chemicals such as bioethanol, biodiesel, lactic acid, and fatty acids using a process called bioprocessing.Biop
Shyam Kumar Masakapalli Indian Institute Of Technology Mandi Bioresource Technology Indian Institute Technology Mandi

Welcome To IANS Live - LatestNews - IIT Mandi team to turn agriculture residue, paper waste to useful chemicals

Plant dry matter, also known as lignocellulose, is one of the most abundant renewable materials on Earth. Lignocellulosic waste from agriculture, forests, and industries can be converted into valuable chemicals such as bioethanol, biodiesel, lactic acid, and fatty acids using a process called bioprocessing.Biop
Shyam Kumar Masakapalli Indian Institute Of Technology Mandi Bioresource Technology Indian Institute Technology Mandi

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