Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Mohamad H. Yassine"'
Publikováno v:
Chemosphere
Biotransformation of soybean biodiesel and its biodiesel/petrodiesel blends were investigated under sulfate-reducing conditions. Three blends of biodiesel, B100, B50, and B0, were treated using microbial cultures pre-acclimated to B100 (biodiesel onl
Publikováno v:
Water research. 87
Biotransformation of soybean biodiesel and the inhibitory effect of petrodiesel were studied under methanogenic conditions. Biodiesel removal efficiency of more than 95% was achieved in a chemostat with influent biodiesel concentrations up to 2.45 g/
Publikováno v:
Environmental sciencetechnology. 47(9)
The aerobic biodegradation kinetics and mineralization of six petrodiesel/soybean-biodiesel blends (B0, B20, B40, B60, B80, and B100), where B100 is 100% biodiesel, were investigated by acclimated cultures. The fatty acid methyl esters (FAMEs) of bio
Publikováno v:
Environmental sciencetechnology. 46(14)
The partitioning behavior of six petrodiesel/soybean-biodiesel blends (B0, B20, B40, B60, B80, and B100, where B100 is 100% unblended biodiesel) in water was investigated at various oil loads by the 10-fold dilution method. Five fatty acid methyl est
Publikováno v:
Water research. 47(4)
A novel mechanistic model is presented that describes the aerobic biodegradation kinetics of soybean biodiesel and petroleum diesel in batch experiments. The model was built on the assumptions that biodegradation takes place in the aqueous phase acco
Publikováno v:
Environmental toxicology and chemistry. 31(12)
The acute Microtox toxicity of the water accommodated fraction (WAF) of six commercial soybean biodiesel/petrodiesel blends was investigated at different oil loads. We analyzed five fatty acid methyl esters (FAMEs), C10–C24 n-alkanes, four aromatic
Publikováno v:
Environmental Toxicology & Chemistry; Dec2012, Vol. 31 Issue 12, p2757-2762, 6p