Aceves-Lara César Arturo, Trably Eric, Bastidas-Oyenadel Juan-Rodrigo, Ramirez Ivan, Latrille Eric, Steyer Jean-Philippe
INRA, UR50, Laboratoire de Biotechnologie de l'Environnement, Avenue des Etangs, 11100 Narbonne, France.
J Soc Biol. 2008;202(3):177-89. doi: 10.1051/jbio:2008020. Epub 2008 Nov 4.
This new century addresses several environmental challenges among which distribution of drinking water, global warming and availability of novel renewable energy sources to substitute for fossil fuels are of utmost importance. The last two concerns are closely related because the major part of carbon dioxide (CO(2)), considered as the main cause of the greenhouse effect, is widely produced from fossil fuel combustion. Renewable energy sources fully balanced in CO(2) are therefore of special interest, especially the issue of biological production from organic wastes. Among the possibilities of bioenergy production from wastes, two approaches are particularly interesting: The first one is relatively old and related to the production of biomethane by anaerobic digestion while the second one, more recent and innovative, relies on biohydrogen production by microbial ecosystems.
这个新世纪面临着诸多环境挑战,其中饮用水分配、全球变暖以及新型可再生能源替代化石燃料的可用性最为重要。最后两个问题紧密相关,因为被视为温室效应主要成因的二氧化碳(CO₂)大部分是由化石燃料燃烧广泛产生的。因此,二氧化碳完全平衡的可再生能源备受关注,尤其是有机废物生物生产的问题。在利用废物生产生物能源的可能性中,有两种方法特别值得关注:第一种相对古老,与通过厌氧消化生产生物甲烷有关;而第二种更新颖且具有创新性,依赖于微生物生态系统生产生物氢。