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Pollutant removal-oriented yeast biomass production from high-organic-strength industrial wastewater: A review

机译:高有机强度工业废水中污染物去除导向的酵母生物量生产研究进展

摘要

Microbial single-cell-protein (SCP) production from high-organic-strength industrial wastewaters is considered an attractive method for both wastewater purification and resource utilization. In the last two decades, pollutant removal-oriented yeast SCP production processes, i.e., yeast treatment processes, have attracted a great deal of attention from a variety of research groups worldwide. Different from conventional SCP production processes, yeast treatment processes are characterized by higher pollutant removal rates, lower production costs, highly adaptive yeast isolates from nature, no excess nutrient supplements, and are performed under non-sterile conditions. Furthermore, yeast treatment processes are similar to bacteria-dominated conventional activated sludge processes, which offer more choices for yeast SCP production and industrial wastewater treatment. This review discusses why highly adaptive yeast species isolated from nature are used in the yeast treatment process rather than commercial SCP producers. It also describes the application of yeast treatment processes for treating high-carboxyhydrate, oil-rich and high-salinity industrial wastewater, focusing primarily on high-strength biodegradable organic substances, which usually account for the major fraction of biochemical oxygen demand. Also discussed is the biodegradation of xenobiotics, such as color (including dye and pigment) and toxic substances (including phenols, chlorophenols, polycyclic aromatic hydrocarbons, etc.), present in industrial wastewater. Based on molecular information of yeast community structures and their regulation in yeast treatment systems, we also discuss how to maintain efficient yeast species in yeast biomass and how to control bacterial and mold proliferation in yeast treatment systems. (C) 2014 Elsevier Ltd. All rights reserved.
机译:从高有机强度工业废水中生产微生物单细胞蛋白(SCP)被认为是废水净化和资源利用的一种有吸引力的方法。在过去的二十年中,面向污染物去除的酵母SCP生产过程,即酵母处理过程,引起了全球众多研究小组的极大关注。与传统的SCP生产工艺不同,酵母处理工艺的特点是更高的污染物去除率,更低的生产成本,与自然界高度适应的酵母分离株,无过量营养补充剂且在非无菌条件下进行。此外,酵母的处理过程与以细菌为主的常规活性污泥过程相似,后者为酵母SCP生产和工业废水处理提供了更多选择。这篇评论讨论了为什么从自然界中分离出的高度适应性酵母物种用于酵母处理过程,而不是商业SCP生产者。它还描述了酵母处理工艺在处理高羧酸盐,富油和高盐度工业废水中的应用,主要集中于高强度可生物降解的有机物质,这些物质通常占生化需氧量的主要部分。还讨论了存在于工业废水中的异种生物的生物降解,例如颜色(包括染料和颜料)和有毒物质(包括酚,氯酚,多环芳烃等)。基于酵母菌群落结构的分子信息及其在酵母处理系统中的调控,我们还将讨论如何在酵母生物量中维持高效的酵母菌种,以及如何在酵母处理系统中控制细菌和霉菌的增殖。 (C)2014 Elsevier Ltd.保留所有权利。

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    Yang Min; Zheng Shaokui;

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  • 年度 2014
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