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利用未定义混合培养物进行废物生物转化:羧酸盐平台。

Waste to bioproduct conversion with undefined mixed cultures: the carboxylate platform.

机构信息

Department of Biological and Environmental Engineering, Cornell University, Riley-Robb Hall, Ithaca, NY 14853, USA.

出版信息

Trends Biotechnol. 2011 Feb;29(2):70-8. doi: 10.1016/j.tibtech.2010.11.006. Epub 2010 Dec 27.

Abstract

Our societies generate increasing volumes of organic wastes. Considering that we also need alternatives to oil, an opportunity exists to extract liquid fuels or even industrial solvents from these abundant wastes. Anaerobic undefined mixed cultures can handle the complexity and variability of organic wastes, which produces carboxylates that can be efficiently converted to useful bioproducts. However, to date, barriers, such as inefficient liquid product separation and persistence of methanogens, have prevented the production of bioproducts other than methane. Here, we discuss combinations of biological and chemical pathways that comprise the 'carboxylate platform', which is used to convert waste to bioproducts. To develop the carboxylate platform into an important system within biorefineries, we must understand the kinetic and thermodynamic possibilities of anaerobic pathways, understand the ecological principles underlying pathway alternatives, and develop superior separation technologies.

摘要

我们的社会产生的有机废物越来越多。考虑到我们也需要石油的替代品,那么从这些丰富的废物中提取液体燃料甚至工业溶剂是一个机会。厌氧未定义混合培养物可以处理有机废物的复杂性和可变性,产生的羧酸可以有效地转化为有用的生物制品。然而,迄今为止,诸如液体产物分离效率低下和产甲烷菌持续存在等障碍,阻止了除甲烷以外的生物制品的生产。在这里,我们讨论了组成“羧酸盐平台”的生物和化学途径的组合,该平台用于将废物转化为生物制品。为了将羧酸盐平台发展成为生物精炼厂中的一个重要系统,我们必须了解厌氧途径的动力学和热力学可能性,了解途径替代的生态原理,并开发出更优越的分离技术。

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