孟加拉国常规和非常规生物质资源的分类评估和特征

M. Hossen, Alfi Rahman, A. Kabir, M. Hasan, Shoeb Ahmed
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引用次数: 2

摘要

随着工业的快速发展,对可再生能源的需求也在快速增长。作为一个发展中国家,孟加拉国的目标是工业扩张,这总是伴随着能源消耗的增加。考虑到化石燃料不可持续,而生物质资源丰富且用途广泛,后者已成为石油基产品的一个有吸引力的替代品。此外,生物质的利用似乎也很有希望,因为生物可降解性和温室气体排放量较低,确保减少环境污染,这是化石燃料技术的一个严重问题。生物质的范围可以从农业副产品到工业和城市废物,但是,孟加拉国目前使用的生物质的来源非常少。此外,生物质还可用于生产有价值的化学品,这些化学品是孟加拉国若干现有工业的潜在原料。尽管在孟加拉国有巨大的潜力,但还没有对原料类型、数量、特性和应用进行有组织的研究。在这里,我们提出了一项有组织的研究,以确定潜在的生物质来源及其可用数量。考虑到来自不同来源的特定废物馏分,计算了可利用生物质资源的总量。还准备了不同生物量的分类近似分析数据摘要,可以在未来的研究中参考,以计算基于高效生物处理技术的理论可能的能源生产以及有用的生化物质。这项工作的目的是为目前的努力提供基准,并将为正在进行的在孟加拉国实现能源可持续性和能源安全的研究增加宝贵的资料资源。DOI: http://dx.doi.org/10.3329/cerb.v17i1.22910化学工程研究通报17(2015)1-10
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CATEGORICAL ASSESSMENT AND CHARACTERIZATION OF CONVENTIONAL AND UNCONVENTIONAL BIOMASS RESOURCES IN BANGLADESH
With the rapid industrial growth, the need for renewable energy sources is rising fast. Being a developing country, Bangladesh aims towards industrial expansion, which is always followed by increased energy consumption. Considering the fact that fossil fuel is not sustainable and biomass sources are abundant and offer more versatility, the latter have become an attractive alternative to petroleum-based products. Moreover, utilization of biomass also seems promising because of biodegradability and lower greenhouse gas emissions, ensuring reduced environmental pollution, a grave concern with fossil-fuel technology. Biomass can range from agricultural byproducts to industrial and municipal wastes, however, very few biomass sources are currently being used in Bangladesh. Moreover, biomass can also be utilized to derive valuable chemicals, which are potential raw materials in several existing industries in Bangladesh. Despite having massive potential in Bangladesh, there haven't been organized studies on feedstock types, quantities, characterization and applications. Here we present an organized study to identify potential biomass sources and their available quantities. Considering specific waste fractions from varying sources, total amount of utilizable biomass resources have been calculated. A categorized proximate analysis data summary of varying biomass is also prepared that can be consulted in the future studies to calculate the theoretical possible production of energy as well as useful bio-chemicals based on efficient bio-processing techniques. This work is intended to benchmark the current efforts, and would add valuable information resources for the ongoing research towards achieving energy-sustainability and energy-security in Bangladesh. DOI: http://dx.doi.org/10.3329/cerb.v17i1.22910 Chemical Engineering Research Bulletin 17(2015) 1-10
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