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Titlebook: Biogenesis of Hydrocarbons; Alfons J. M. Stams,Diana Z. Sousa Reference work 2019 Springer Nature Switzerland AG 2019 methane.microbial co

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Metagenomics of Methanogenic Communities in Rice Paddy: The Importance of ,hropogenic source contributing about 5% of annual global CH. emission. It is important to understand the mechanism of CH. production and emission in order to understand carbon cycling and develop mitigation technology for CH. emissions. In this chapter, I review the research advances of methanogenes
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Metagenomics of Methanogenic Communities in Anaerobic Digesters,o methane and carbon dioxide. The adoption of high-throughput molecular methods and the holistic “omics” approach in applied microbial ecology has greatly extended our view on the manifold metabolic diversity and trophic networks in the microbiomes thriving in anaerobic bioreactors. In this chapter,
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,Anaerobic Digestion as Key Technology in the Bio-based Economy,e recovery of energy and production of bio-based chemicals for the industry. For several decades, anaerobic digestion has been the technology . to deal with organic waste streams for waste stabilization and energy recovery in the form of biogas. This contributed a central role to anaerobic digestion
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Contribution of Methane Formation and Methane Oxidation to Methane Emission from Freshwater Systems Biogeochem Cycles 18:1–12, 2004; St. Louis et al., Bioscience 50:766–775, 2000). With an estimated yearly amount of 12–29.6 Tg CH. for reservoirs (Deemer et al., Bioscience 66:949–964, 2016) and up to 71.6 Tg CH. for lakes (Bastviken et al., Science 331:50–50, 2011), they represent up to 10% of tot
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Diversity and Taxonomy of Aliphatic Hydrocarbon Producers,dustrial, medical, and consumer products. While the production of hydrocarbons by bacteria was first reported in the literature over half a century ago, most biosynthetic gene clusters and biochemical pathways have only been uncovered within the past decade. A deepened understanding of the genes and
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Alkane Biosynthesis in Bacteria,% to the EU retail fuel market. These biofuels are derived from the fermentation of sugars by yeast (ethanol) and from the chemical modification of animal fats and plant oils (biodiesel). However, these biofuel molecules are chemically distinct from the petroleum fuels that they are blended with. Pe
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ane, other alkanes, and oil components.Enriches understandinThe book covers the microbiological, environmental and biotechnological aspects of alkane production. Alkanes are important energy-rich compounds on earth. Microbial synthesis of methane and other alkanes is an essential part of the geochem
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