KU Leuven, Department of Chemical Engineering, Process and Environmental Technology Lab, Jan Pieter De Nayerlaan 5, B-2860 Sint-Katelijne-Waver, Belgium.
Department of Environmental Health, Wollo University, Dessie, 1145, Amhara, Ethiopia.
J Environ Manage. 2022 Oct 15;320:115772. doi: 10.1016/j.jenvman.2022.115772. Epub 2022 Aug 6.
Palm oil mill waste has a complex cellulosic structure, is rich in nutrients, and provides a habitat for diverse microbial communities. Current research focuses on how the microbiota and organic components interact during the degradation of this type of waste. Some recent studies have described the microbial communities present in different biodegradation processes of palm oil mill waste, identifying the dominant bacteria/fungi responsible for breaking down the cellulosic components. However, understanding the degradation process's mechanisms is vital to eliminating the need for further pretreatment of lignocellulosic compounds in the waste mixture and facilitating the commercialization of palm oil mill waste treatment technology. Thus, the present work aims to review microbial community dynamics via three biological treatment systems comprehensively: composting, vermicomposting, and dark fermentation, to understand how inspiration from nature can further enhance existing degradation processes. The information presented could be used as an umbrella to current research on biological treatment processes and specific research on the bioaugmentation of indigenous microbial consortia isolated during the biological degradation of palm oil mill waste.
棕榈油厂废料具有复杂的纤维素结构,富含营养物质,并为各种微生物群落提供了栖息地。目前的研究重点是微生物群和有机成分在这种废物降解过程中如何相互作用。一些最近的研究描述了不同的棕榈油厂废料生物降解过程中存在的微生物群落,确定了负责分解纤维素成分的主要细菌/真菌。然而,了解降解过程的机制对于消除对废物混合物中木质纤维素化合物进一步预处理的需求以及促进棕榈油厂废料处理技术的商业化至关重要。因此,本工作旨在通过三种生物处理系统(堆肥、蚯蚓堆肥和暗发酵)全面综述微生物群落动态,以了解从自然界中获得的灵感如何进一步增强现有的降解过程。所提供的信息可以作为当前生物处理过程研究和对在棕榈油厂废料生物降解过程中分离的土著微生物群落进行生物增强的具体研究的总体概述。