School of Chemistry and Biochemistry, Thapar Institute of Engineering and Technology, Patiala, 147004, India.
Center for Electrochemical Science and Materials, Department of Chemistry, K.L.E. Institute of Technology, Hubballi, 580 027, Karnataka, India.
Environ Pollut. 2020 Dec;267:115501. doi: 10.1016/j.envpol.2020.115501. Epub 2020 Aug 27.
An upsurge in global population due to speedy urbanization and industrialization is facing significant challenges such as rising energy-demand, enormous waste-generation and environmental deterioration. The waste-to-energy nexus based on the 5R principle (Reduce, Reuse, Recycle, Recovery, and Restore) is of paramount importance in solving these Gordian knots. This review essentially concentrates on latest advancements in the field of 'simultaneous waste reduction and energy production' technologies. The waste-to-energy approaches (thermal and biochemical) for energy production from the agricultural residues are comprehensively discussed in terms environmental, techno-economic, and policy analysis. The review will assess the loopholes in order to come up with more sophisticated technologies that are not only eco-friendly and cost-effective, but also socially viable. The waste-to-energy nexus as a paradigm for sustainable development of restoring waste is critically discussed considering future advancement plans and agendas of the policy-makers.
由于快速的城市化和工业化,全球人口剧增,面临着能源需求上升、大量废物产生和环境恶化等重大挑战。基于 5R 原则(减少、再利用、再循环、回收和恢复)的废物能源协同关系对于解决这些难题至关重要。本综述主要集中于废物能源协同领域“同步减少废物和生产能源”技术的最新进展。本文从环境、技术经济和政策分析等方面综合讨论了农业废弃物能源生产的废物能源方法(热法和生物化学法)。该综述将评估其中的漏洞,以提出更复杂的技术,这些技术不仅环保且具有成本效益,而且在社会上也可行。考虑到未来政策制定者的发展计划和议程,本文批判性地讨论了废物能源协同关系作为废物可持续发展模式的问题。