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Biogas production from different lignocellulosic biomass sources: advances and perspectives

机译:来自不同木质纤维素生物质来源的沼气生产:进展和观点

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摘要

The present work summarizes different sources of biomass used as raw material for the production of biogas, focusing mainly on the use of plants that do not compete with the food supply. Biogas obtained from edible plants entails a developed technology and good yield of methane production; however, its use may not be sustainable. Biomass from agricultural waste is a cheap option, but in general, with lower methane yields than those obtained from edible plants. On the other hand, the use of algae or aquatic plants promises to be an efficient and sustainable option with high yields of methane produced, but it necessary to overcome the existing technological barriers. Moreover, these last raw materials have the additional advantage that they can be obtained from wastewater treatment and, therefore, they could be applied to the concept of biorefinery. An estimation of methane yield per hectare per year of the some types of biomass and operational conditions employed is presented as well. In addition, different strategies to improve the yield of biogas, such as physical, chemical, and biological pretreatments, are presented. Other alternatives for enhanced the biogas production such as bioaugmentation and biohythane are showed and finally perspectives are mentioned.
机译:本工作总结了用作生产沼气原料的生物质的不同来源,主要侧重于与食物供应不竞争的植物的使用。从食用植物获得的沼气需要先进的技术和良好的甲烷产量。但是,其使用可能不是可持续的。农业废物产生的生物质是一种廉价的选择,但总的来说,甲烷的产量要比食用植物的甲烷低。另一方面,藻类或水生植物的使用有望成为一种高产甲烷的有效且可持续的选择,但有必要克服现有的技术障碍。此外,这些最后的原料还具有可以从废水处理中获得的额外优势,因此可以将它们应用于生物精炼的概念。还介绍了某些生物质类型和所用操作条件下每公顷每年甲烷产量的估算值。另外,提出了提高沼气产量的不同策略,例如物理,化学和生物预处理。显示了用于增强沼气产量的其他替代方案,例如生物强化和生物乙烷,最后提到了前景。

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