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Sustainable biogas mitigation and value-added resources recovery using methanotrophs intergrated into wastewater treatment plants

机译:可持续沼气缓解和增值资源恢复使用甲胰蛋白层叠成废水处理厂

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摘要

Methane is classified as the second major greenhouse gas with a global warming potential 25 times higher than carbon dioxide. Wastewater treatment plants (WWTPs) are considered as one of the main anthropogenic sources for global methane emissions. Utilizing the anaerobic digestion driven biogas, methanotrophs can offer a prominent solution for coupling methane mitigation with value-added resources recovery. Hence, methanotrophs can play a pivotal role in the paradigm shift to consider wastewater streams as proactive energy and value-added material resource instead of waste requiring further treatment. This review is destined to summarize the recent accomplishments in three methanotrophic-based biotechnological applications which are methanol, biopolymers production and biological nitrogen removal processes. Moreover, methanotrophs taxonomy, metabolism, and growth conditions are reviewed. In addition, the possibility to link the aforementioned applications within the operation of existing WWTPs in order to transform "energy-consuming treatment processes" into "energy-saving and energy-positive systems" is discussed.
机译:甲烷被归类为第二主要温室气体,具有比二氧化碳高25倍的全球变暖潜力。废水处理植物(WWTPS)被认为是全球甲烷排放的主要人为来源之一。利用厌氧消化驱动的沼气,甲蛋白可以提供突出的解决方案,用于通过增值资源恢复来偶联甲烷缓解。因此,甲基丙醇可以在范式转变中发挥关键作用,以考虑废水流作为主动能量和增值材料资源而不是需要进一步治疗的废物。本综述注定要总结最近在三种基于甲脂蛋白的生物技术应用中的成就,这些应用是甲醇,生物聚合物生产和生物氮去除方法。此外,综述了甲蛋白植物分类,新陈代谢和生长条件。此外,讨论了将上述应用链接到现有WWTP的操作中,以便将“能量消耗处理过程”转换为“节能和能量正系统”。

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