Biodegradability during Anaerobic Fermentation Process Impacted by Heavy Metals

Yonglan Tian, Huayong Zhang, E. Sanganyado
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引用次数: 2

Abstract

In the past decades, biotechnologies for reutilizing the biomass harvested from the metal-contaminated land draw attention to many scientists. Among those technologies, anaerobic fermentation is proven as an efficient conversion process for biowaste reduction with simultaneous recovery of biogas as an energy source. During the process of anaerobic fermentation, the release of metals from the biomass will impact the growth and performance of microorganisms in reactors, which then results the variation of substrate degradation. In this chapter, the impact of metals on the degradation of substrate at different stages of fermentation process, as indicated by variations of lignocelluloses, chemical oxygen demands (COD), volatile fatty acids (VFAs), etc., will be summarized. The objective is to rationalize the relationship between metal presence and substrate degradability and give suggestions for future research on metal-contaminated biomass reutilization.
重金属对厌氧发酵过程生物降解性的影响
在过去的几十年里,利用从金属污染土地上收获的生物质的生物技术引起了许多科学家的关注。在这些技术中,厌氧发酵被证明是一种有效的转化过程,可以减少生物废物,同时回收沼气作为能源。在厌氧发酵过程中,生物质中金属的释放会影响反应器中微生物的生长和性能,从而导致底物降解的变化。在本章中,将总结金属对发酵过程中不同阶段底物降解的影响,如木质纤维素、化学需氧量(COD)、挥发性脂肪酸(VFAs)等的变化。目的是理性化金属存在与底物可降解性之间的关系,并为金属污染生物质再利用的未来研究提出建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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