Biochar as a Sustainable Alternative to Pulverized Coal: Comprehensive Analysis of Physicochemical Properties, Combustion Performance, and Environmental Impact

IF 3.6 4区 工程技术 Q3 ENERGY & FUELS Energy technology Pub Date : 2024-08-07 DOI:10.1002/ente.202401048
Yuyan Liu, Wenqiang Sun
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Abstract

This study comprehensively evaluates the potential of biochar as a substitute for high‐rank pulverized coal in various aspects including physicochemical properties, combustion performance, environmental emissions, and application costs. Biochar, characterized by its small particle size, reduced emissions, high volatility, elevated calorific value, and facile combustion, emerges as a promising alternative fuel to pulverized coal. Despite a lower ignition temperature, biochar demonstrates superior burnout efficiency and combustion kinetics, as indicated by its lower activation energy compared to pulverized coal. Moreover, considering China's substantial energy consumption, the substitution of coal with biochar could significantly reduce CO2 and SO2 emissions, making it a viable strategy for mitigating environmental pollution. In addition, the application cost of biochar is not higher than that of pulverized coal. This study underscores the feasibility and effectiveness of utilizing biochar as a sustainable alternative to high‐rank pulverized coal, offering valuable insights into cleaner and more efficient energy utilization.
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生物炭作为煤粉的可持续替代品:理化性质、燃烧性能和环境影响的综合分析
本研究从理化性质、燃烧性能、环境排放和应用成本等多方面全面评估了生物炭替代高阶煤粉的潜力。生物炭具有粒度小、排放少、挥发性高、热值高和燃烧方便等特点,是一种很有前途的煤粉替代燃料。尽管生物炭的着火温度较低,但与煤粉相比,生物炭的活化能更低,这表明生物炭具有更高的燃烧效率和燃烧动力学性能。此外,考虑到中国巨大的能源消耗,用生物炭替代煤炭可显著减少二氧化碳和二氧化硫的排放,是减轻环境污染的可行策略。此外,生物炭的应用成本并不比煤粉高。这项研究强调了利用生物炭作为高阶煤粉的可持续替代品的可行性和有效性,为更清洁、更高效地利用能源提供了宝贵的见解。
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来源期刊
Energy technology
Energy technology ENERGY & FUELS-
CiteScore
7.00
自引率
5.30%
发文量
0
审稿时长
1.3 months
期刊介绍: Energy Technology provides a forum for researchers and engineers from all relevant disciplines concerned with the generation, conversion, storage, and distribution of energy. This new journal shall publish articles covering all technical aspects of energy process engineering from different perspectives, e.g., new concepts of energy generation and conversion; design, operation, control, and optimization of processes for energy generation (e.g., carbon capture) and conversion of energy carriers; improvement of existing processes; combination of single components to systems for energy generation; design of systems for energy storage; production processes of fuels, e.g., hydrogen, electricity, petroleum, biobased fuels; concepts and design of devices for energy distribution.
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