Razzak Shaikh Abdur
Chemical Engineering Department, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Saudi Arabia.
Interdisciplinary Research Center for Refining & Advanced Chemicals, King Fahd University of Petroleum & Minerals, Dhahran, 31261, Saudi Arabia.
Chem Asian J. 2024 Sep 2;19(17):e202400307. doi: 10.1002/asia.202400307. Epub 2024 Aug 1.
The substantial rise in global energy demand, propelled by industrial expansion, population growth, and transportation needs, poses a formidable challenge. The concurrent urbanization places pressure on the disposal of solid municipal solid waste and the management of plastic waste. Addressing the global waste crisis requires innovative and sustainable garbage disposal solutions with an environmentally friendly approach. This review tackles the challenges of worldwide waste management, focusing on renewable and sustainable fuels and waste recycling through the exploration of co-pyrolysis as an innovative method. It explores the characteristics and environmental impact of municipal solid waste (MSW) and plastic waste (PW), delving into pyrolysis fundamentals, processes, and challenges. The primary emphasis is on co-pyrolysis, elucidating its integration of municipal and plastic waste, synergistic effects, and advantages. The manuscript thoroughly analyzes reaction kinetics, thermodynamics, and the feasibility of co-pyrolysis for energy recovery. It also delves into the synthesis of renewable fuels and valuable chemical intermediates, considering optimization of product distribution. Environmental and economic sustainability aspects, including impact assessment, greenhouse gas emissions, life cycle analysis, and cost analysis of co-pyrolysis processes, are comprehensively investigated. The review underscores the economic benefits of renewable fuel and chemical materials synthesis. The conclusion addresses challenges, proposes future directions, outlines limitations, technical challenges, environmental considerations, and recommends further exploration and integration with other waste management techniques. The manuscript emphasizes the ongoing importance of research in this critical field, aiming to contribute to the development of effective solutions for the escalating global waste management crisis.
由工业扩张、人口增长和交通需求推动的全球能源需求大幅上升,构成了一项艰巨的挑战。与此同时,城市化进程给城市固体废弃物的处理和塑料垃圾的管理带来了压力。应对全球垃圾危机需要采用创新且可持续的垃圾处理解决方案,并采取环保的方法。本综述探讨了全球废物管理面临的挑战,重点关注可再生和可持续燃料以及通过探索共热解作为一种创新方法进行废物回收利用。它探讨了城市固体废弃物(MSW)和塑料垃圾(PW)的特性及环境影响,深入研究了热解的基本原理、过程和挑战。主要重点是共热解,阐明其对城市垃圾和塑料垃圾的整合、协同效应及优势。该论文详细分析了共热解用于能源回收的反应动力学、热力学和可行性。它还深入探讨了可再生燃料和有价值化学中间体的合成,同时考虑了产品分布的优化。全面研究了环境和经济可持续性方面,包括共热解过程的影响评估、温室气体排放、生命周期分析和成本分析。该综述强调了可再生燃料和化学材料合成的经济效益。结论阐述了挑战,提出了未来方向,概述了局限性、技术挑战、环境考量,并建议进一步探索以及与其他废物管理技术相结合。该论文强调了这一关键领域研究的持续重要性,旨在为日益严重的全球废物管理危机开发有效解决方案做出贡献。