Results 191 to 200 of about 16,502 (256)
Abstract Nitrogen pollution has severely impacted inland and coastal waters, contributing to eutrophication, harmful algal blooms, and drinking water contamination. Reducing nitrogen inputs is widely expected to improve water quality, but watershed responses to changing nitrogen surplus are often nonlinear and delayed, complicating expectations of ...
D. K. Byrnes +2 more
wiley +1 more source
Evaluating the nutritional and economic potential of defatted algae cake in aquaculture: A review. [PDF]
Mohamad A +10 more
europepmc +1 more source
Bio-Oil from Phototrophic Microorganisms: Innovative Technologies and Strategies. [PDF]
Bolatkhan K +6 more
europepmc +1 more source
Advances in microbial biofuel production by metabolic and enzyme engineering, synthetic biology, metagenomics, and genome editing applications. [PDF]
Alam SS +10 more
europepmc +1 more source
Dataset for investigating triacylglycerol accumulation in PBCV-1 infected <i>Chlorella</i>. [PDF]
Lopez AM, Choi Y, Zhou Z.
europepmc +1 more source
Biomanufacturing and Scale‐Up: Pathways to Biochemicals, Biofuels, and Biomaterials
Microbial Biotechnology, Volume 19, Issue 8, August 2026.
Carolina A. Barcelos +6 more
wiley +1 more source
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Cellobiose dehydrogenase in biofuel cells
Current Opinion in Biotechnology, 2022Enzymatic biofuel cells utilize oxidoreductases as highly specific and highly active electrocatalysts to convert a fuel and an oxidant even in complex biological matrices like hydrolysates or physiological fluids into electric energy. The hemoflavoenzyme cellobiose dehydrogenase is investigated as a versatile bioelectrocatalyst for the anode reaction ...
Scheiblbrandner, Stefan +2 more
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Extended lifetime biofuel cells
Chemical Society Reviews, 2008Over the last 40 years, researchers have been studying and improving enzymatic biofuel cells, but until the last five years, the technology was plagued by short active lifetimes (typically 8 hours to 7 days) that prohibited the commercial use of this technology.
Michael J, Moehlenbrock +1 more
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Current Opinion in Biotechnology, 2007
Enzyme-based biofuel cells possess several positive attributes for energy conversion, including renewable catalysts, flexibility of fuels (including renewables), and the ability to operate at room temperature. However, enzyme-based biofuel cells remain limited by short lifetimes, low power densities and inefficient oxidation of fuels.
Shelley D, Minteer +2 more
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Enzyme-based biofuel cells possess several positive attributes for energy conversion, including renewable catalysts, flexibility of fuels (including renewables), and the ability to operate at room temperature. However, enzyme-based biofuel cells remain limited by short lifetimes, low power densities and inefficient oxidation of fuels.
Shelley D, Minteer +2 more
openaire +2 more sources

