School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China.
School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Environ Res. 2023 Sep 15;233:116444. doi: 10.1016/j.envres.2023.116444. Epub 2023 Jun 17.
The effective conversion and recycling of organic solid waste contribute to the resolution of widespread issues such as global environmental pollution, energy scarcity and resource depletion. The anaerobic fermentation technology provides for the effective treatment of organic solid waste and the generation of various products. The analysis, which is based on bibliometrics, concentrates on the valorisation of affordable and easily accessible raw materials with high organic matter content as well as the production of clean energy substances and high value-added platform products. The processing and application status of fermentation raw materials such as waste activated sludge, food waste, microalgae and crude glycerol are investigated. To analyse the status of the preparation and engineering applications of the products, the fermentation products biohydrogen, VFAs, biogas, ethanol, succinic acid, lactic acid, and butanol are employed as representatives. Simultaneously, the anaerobic biorefinery process with multiple product co-production is sorted out. Product co-production can reduce waste discharge, enhance resource recovery efficiency, and serve as a model for improving anaerobic fermentation economics.
有机固体废物的有效转化和回收有助于解决全球环境污染、能源短缺和资源枯竭等广泛问题。厌氧发酵技术为有机固体废物的有效处理和各种产品的生成提供了可能。本分析基于文献计量学,重点关注具有高有机物含量的经济实惠和易于获取的原料的增值利用,以及清洁能源物质和高附加值平台产品的生产。考察了废物活性污泥、食物垃圾、微藻和粗甘油等发酵原料的处理和应用现状。为了分析产品的制备和工程应用现状,以生物氢、VFAs、沼气、乙醇、琥珀酸、乳酸和丁醇等发酵产品为代表。同时,对多产物联产的厌氧生物炼制过程进行了分类。产物联产可以减少废物排放,提高资源回收效率,是改善厌氧发酵经济性的典范。