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有机固体废物厌氧消化综合研究:构型、运行参数、技术经济分析及当前趋势综述

A comprehensive study on anaerobic digestion of organic solid waste: A review on configurations, operating parameters, techno-economic analysis and current trends.

作者信息

Prasanna Kumar D Jaya, Mishra Ranjeet Kumar, Chinnam Sampath, Binnal Prakash, Dwivedi Naveen

机构信息

Department of Chemical Engineering, Ramaiah Institute of Technology Bengaluru, Karnataka, 560054, India.

Department of Chemical Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal, Karnataka, 576104, India.

出版信息

Biotechnol Notes. 2024 Feb 26;5:33-49. doi: 10.1016/j.biotno.2024.02.001. eCollection 2024.

Abstract

The excessive discharge and accumulation of solid organic waste into the environment is of severe concern across the globe. Thus, an efficient waste management system is important to mitigate health risks to humans, minimize harmful impacts on the environment, and ensure a sustainable ecosystem. The organic waste is converted into value-added products either using microorganisms or heat energy; these methods are commonly known as biochemical and thermochemical techniques. The biochemical process has the advantage of higher selectivity of the products and lower processing temperatures. The principal conversion processes of this category are fermentation and anaerobic digestion (AD). This review article focuses on AD, a potential method for treating organic waste and creating a variety of products with added value. Here we present the digestibility of various organic wastes, the role of microorganisms, the decomposition process, co-substrates, digester designs, biogas yields, by-products, environmental impacts, and overall techno-economical effectiveness of the process. Further, this review offers insights into new directions for AD for waste treatment and future research without compromising the overall feasibility and environmental sustainability.

摘要

固体有机废物过度排放和堆积到环境中已成为全球严重关切的问题。因此,高效的废物管理系统对于降低对人类健康的风险、减少对环境的有害影响以及确保生态系统的可持续性至关重要。有机废物可通过微生物或热能转化为增值产品;这些方法通常被称为生化和热化学技术。生化过程具有产品选择性高和加工温度低的优点。该类别的主要转化过程是发酵和厌氧消化(AD)。这篇综述文章聚焦于厌氧消化,这是一种处理有机废物并创造多种增值产品的潜在方法。在此,我们介绍了各种有机废物的可消化性、微生物的作用、分解过程、共底物、消化器设计、沼气产量、副产品、环境影响以及该过程的整体技术经济有效性。此外,本综述还为厌氧消化在废物处理方面的新方向以及未来研究提供了见解,同时不影响整体可行性和环境可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/11630644/49d44bbdeb71/gr1.jpg

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