Rasheed Tahir, Anwar Muhammad Tuoqeer, Ahmad Naeem, Sher Farooq, Khan Salah Ud-Din, Ahmad Ashfaq, Khan Rawaiz, Wazeer Irfan
School of Chemistry & Chemical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.
COMSATS University Islamabad (Sahiwal Campus), Off G.T. Rd., Sahiwal, Punjab, 57000, Pakistan.
J Environ Manage. 2021 Jun 1;287:112257. doi: 10.1016/j.jenvman.2021.112257. Epub 2021 Mar 6.
The economic developments around the globe resulted in the increased demand of energy, which overburdened the supply chain sources of energy. Fossil fuel reserves are exploited to meet the high demand of energy and their combustion is becoming the main source of environmental pollution. So there is dire need to find safe, renewable and sustainable energy resources. Waste to energy (WtE) may be viewed as a possible alternate source of energy, which is economically and environmentally sustainable. Municipal solid waste (MSW) is a major contributor to the development of renewable energy and sustainable environment. At present the scarcity of renewable energy resources and disposal of MSW is a challenging problem for the developing countries, which has generated a wide ranging socioeconomic and environmental problems. This situation stimulates the researchers to develop alternatives for converting WtE under a variety of scenarios. Herein, the present scenario in developing the WtE technologies such as, thermal conversion methods (Incineration, Gasification, Pyrolysis, Torrefaction), Plasma technology, Biochemical methods, Chemical and Mechanical methods, Bio-electrochemical process, Mechanical biological treatment (MBT), Photo-biological processes for efficacious energy recovery and the challenges confronted by developing and developed countries. In this review, a framework for the evaluation of WtE technologies has been presented for the ease of researchers working in the field. Furthermore, this review concluded that WtE is a potential renewable energy source that will partially satisfy the demand for energy and ensure an efficient MSW management to overcome the environmental pollution.
全球经济的发展导致能源需求增加,这给能源供应链资源带来了过重负担。人们开采化石燃料储备以满足对能源的高需求,而其燃烧正成为环境污染的主要来源。因此,迫切需要寻找安全、可再生且可持续的能源资源。垃圾转化能源(WtE)可被视为一种可能的替代能源,在经济和环境方面都具有可持续性。城市固体废物(MSW)是可再生能源发展和可持续环境的主要贡献者。目前,可再生能源资源的稀缺以及城市固体废物的处理对发展中国家来说是一个具有挑战性的问题,这引发了一系列广泛的社会经济和环境问题。这种情况促使研究人员在各种场景下开发将垃圾转化为能源的替代方法。在此,介绍了当前开发垃圾转化能源技术的情况,如热转化方法(焚烧、气化、热解、烘焙)、等离子体技术、生化方法、化学和机械方法、生物电化学过程、机械生物处理(MBT)、用于有效能源回收的光生物过程,以及发展中国家和发达国家所面临的挑战。在本综述中,为方便该领域的研究人员,提出了一个评估垃圾转化能源技术的框架。此外,本综述得出结论,垃圾转化能源是一种潜在的可再生能源,将部分满足能源需求,并确保有效的城市固体废物管理以克服环境污染。