Department of Biotechnology, St. Joseph's College of Engineering, Chennai 600119, India; School of Chemical Engineering, Jeonbuk National University, 54896, Republic of Korea.
Department of Biotechnology, St. Joseph's College of Engineering, Chennai 600119, India.
Bioresour Technol. 2021 Oct;337:125498. doi: 10.1016/j.biortech.2021.125498. Epub 2021 Jul 5.
Researcher's all around works on a copious technique to lessen waste production and superintend the waste management for long-term socio-economic and environmental benefits. Value-added products can be produced from municipal waste by using holistic and integrated approaches. In this review, a detail about the superiority of the different methods like anaerobic digestion, biofuel production, incineration, pyrolysis and gasification were used for the conversion of municipal waste to feedstock for alternate energy and its economic- environmental impacts were consolidated. Most conversion techniques were environmentally friendly to manage municipal waste. The biological process was more economically feasible compare to the thermal process, for the reason thermal process required a large amount of capital investment and energy utilization. In the thermal process, gasification shows low emission, and pyrolysis shows low capital investment and economically feasible compare to other thermal processes. Waste to energy technology significantly reduced the emission and energy demand.
研究人员一直在努力寻找大量的技术来减少浪费的产生,并从长远的社会经济和环境效益出发来管理废物。通过整体和综合的方法,可以从城市废物中生产增值产品。在这篇综述中,详细介绍了不同方法的优势,如厌氧消化、生物燃料生产、焚烧、热解和气化,用于将城市废物转化为替代能源的原料,以及它们的经济-环境影响。大多数转化技术对管理城市废物都是环保的。生物过程比热过程在经济上更可行,因为热过程需要大量的资本投资和能源利用。在热过程中,气化显示出低排放,而热解与其他热过程相比,显示出低资本投资和经济可行性。废物能源技术显著减少了排放和能源需求。