Physiology of Biodegradative Microorganisms. Formation and physiological role of biosurfactants produced by g microorganisms.
Physiology of Biodegradative Microorganisms. eBook 101,14 €. price for Russian Federation (gross).
Physiology of Biodegradative Microorganisms book.
Other readers will always be interested in your opinion of the books you've read. Whether you've loved the book or not, if you give your honest and detailed thoughts then people will find new books that are right for them. Распространяем знания с 2009. Пользовательское соглашение. The isolation of microorganisms from soil samples which are able to degrade phenol was carried out at 45°C. How we measure 'reads'. A strain (KT2) which was identified as thermophilic bacteria showed the ability of phenol biodegradation up to 1000 mg/l. The effects of operational factors on phenol biodegradation by the isolated strain were investigated in batch experiments in the presence and the absence of glucose.
Life on the planet depends on microbial activity. The recycling of carbon, nitrogen, sulphur, oxygen, phosphate and all the other elements that constitute living matter are continuously in flux: microorganisms participate in key steps in these processes and without them life would cease within a few short years.
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Some microorganisms, such as A. borkumensis, are able to use hydrocarbons as their source for carbon in metabolism.
Interest in the microbial biodegradation of pollutants has intensified in recent years, and recent major methodological breakthroughs have enabled detailed genomic, metagenomic, proteomic, bioinformatic and other high-throughput analyses of environmentally relevant microorganisms, providing new insights into biodegradative pathways and the ability of organisms to adapt to changing environmental conditions. Some microorganisms, such as A.
Physiology of microorganism 1. 1. How micro-organism function (microbial physiology) Mr. rown. 2. Introduction, In this unit, we be focusing on population of microbial cells and how their numbers increase through growth and decrease or disappear as a result of death.