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生物质到灰分的利用:替代能源潜在资源概述

Utilization of Biomass to Ash: An Overview of the Potential Resources for Alternative Energy.

作者信息

Makul Natt, Fediuk Roman, Amran Mugahed, Al-Akwaa Mohammed S, Pralat Karol, Nemova Darya, Petropavlovskii Kirill, Novichenkova Tatiana, Petropavlovskaya Victoria, Sulman Mikhail

机构信息

Department of Civil Engineering Technology, Faculty of Industrial Technology, Phranakhon Rajabhat University, Bangkok 10220, Thailand.

Polytechnic Institute, Far Eastern Federal University, 690922 Vladivostok, Russia.

出版信息

Materials (Basel). 2021 Oct 28;14(21):6482. doi: 10.3390/ma14216482.

Abstract

Climate change and the potential depletion of fossil fuels have increased international demand for alternative and renewable energy sources. In terms of the energy sector, for example, most of the South-East Asian countries (SACs) have a large number of biomass sources due to their vast forest resources and agriculture-based economies. Thus, the critical review was aimed at highlighting the overview of biomass energy in South-East Asia as a dynamically developing region, in order to obtain economic and environmental benefits from the existing sources of biomass in the world. The current review analyzed the sources of biomass, as well as their energy potential, use, and management, based on reports from different countries, published studies, and scientific articles. In SAC, the main sources of biomass were found to be coconut residues, oil palm residues, sugar cane residues, rice straw, rice husks, wood waste, and firewood. The combined annual biomass potentials in the forestry and agricultural sectors in South-East Asia were approximately over 500 million tons per year and more than 8 gigajoule of total energy potentials. The study identified the challenges and barriers to using biomass in these countries to achieve sustainable use of biomass sources and recommended sustainable approaches to using biomass energy by comparing traditional uses of biomass. Smart grid technologies have ways for solutions for better electric power production and efficient ways for distribution and transmission of electricity. Smart grids require less space and can be more easily installed when compared to traditional grids because of their versatilities. Upcoming challenges include technology optimization for the following uses of biomass energy: direct combustion of woody biomass; pyrolysis and gasification of biomass; anaerobic digestion of organic waste to produce biogas; landfill gas production direct incineration of organic waste. The barriers in this technology are emissions of carbon and nitrogen oxides, unpleasant odors, as well as the uncontrolled harvesting of biomass, which can harm nature.

摘要

气候变化和化石燃料的潜在枯竭增加了国际社会对替代能源和可再生能源的需求。例如,在能源领域,由于拥有广袤的森林资源和以农业为基础的经济,大多数东南亚国家有大量生物质资源。因此,本次批判性综述旨在突出东南亚作为一个动态发展地区的生物质能源概况,以便从世界上现有的生物质资源中获取经济和环境效益。本综述基于不同国家的报告、已发表的研究和科学文章,分析了生物质的来源及其能源潜力、利用和管理情况。在东南亚国家,发现生物质的主要来源是椰子残渣、油棕残渣、甘蔗残渣、稻草、稻壳、木材废料和木柴。东南亚林业和农业部门的年生物质总潜力约超过5亿吨,总能源潜力超过8吉焦。该研究确定了这些国家在利用生物质以实现生物质资源可持续利用方面面临的挑战和障碍,并通过比较生物质的传统用途,推荐了生物质能源的可持续利用方法。智能电网技术为更好地进行电力生产提供了解决方案,以及高效的电力分配和传输方式。与传统电网相比,智能电网所需空间更小,因其多功能性而更易于安装。即将面临的挑战包括对生物质能源的以下用途进行技术优化:木质生物质的直接燃烧;生物质的热解和气化;有机废物的厌氧消化以生产沼气;垃圾填埋气生产;有机废物的直接焚烧。这项技术存在的障碍包括碳和氮氧化物的排放、难闻的气味,以及生物质的无节制采伐,这可能会对自然造成损害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/943b/8585428/e450fe2c8d28/materials-14-06482-g001.jpg

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