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Pretreatment methods of lignocellulosic biomass for anaerobic digestion

机译:木质纤维素生物质厌氧消化的预处理方法

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摘要

Agricultural residues, such as lignocellulosic materials (LM), are the most attractive renewable bioenergy sources and are abundantly found in nature. Anaerobic digestion has been extensively studied for the effective utilization of LM for biogas production. Experimental investigation of physiochemical changes that occur during pretreatment is needed for developing mechanistic and effective models that can be employed for the rational design of pretreatment processes. Various-cutting edge pretreatment technologies (physical, chemical and biological) are being tested on the pilot scale. These different pretreatment methods are widely described in this paper, among them, microaerobic pretreatment (MP) has gained attention as a potential pretreatment method for the degradation of LM, which just requires a limited amount of oxygen (or air) supplied directly during the pretreatment step. MP involves microbial communities under mild conditions (temperature and pressure), uses fewer enzymes and less energy for methane production, and is probably the most promising and environmentally friendly technique in the long run. Moreover, it is technically and economically feasible to use microorganisms instead of expensive chemicals, biological enzymes or mechanical equipment. The information provided in this paper, will endow readers with the background knowledge necessary for finding a promising solution to methane production.
机译:诸如木质纤维素材料(LM)的农业残留物是最有吸引力的可再生生物能源,并且在自然界中被大量发现。厌氧消化已被广泛研究,以有效利用LM生产沼气。为了开发可用于合理设计预处理过程的机械有效模型,需要对预处理过程中发生的物理化学变化进行实验研究。各种先进的预处理技术(物理,化学和生物)正在试验规模上进行测试。这些不同的预处理方法在本文中得到了广泛的描述,其中,有氧预处理(MP)作为降解LM的潜在预处理方法已引起关注,该方法仅需要在预处理过程中直接供应有限量的氧气(或空气)步。 MP在温和的条件下(温度和压力)涉及微生物群落,使用较少的酶和较少的甲烷来生产甲烷,从长远来看,它可能是最有希望和最环保的技术。此外,使用微生物代替昂贵的化学药品,生物酶或机械设备在技术上和经济上都是可行的。本文提供的信息将为读者提供寻找有前景的甲烷生产解决方案所必需的背景知识。

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