从高灰分煤、天然气和城市固体废物中提取甲醇的井到泵生命周期评估

IF 11.8 1区 工程技术 Q1 ENERGY & FUELS Energy Conversion and Management Pub Date : 2025-03-01 Epub Date: 2025-02-08 DOI:10.1016/j.enconman.2025.119573
Srijit Biswas, Arpit Yadav, Avinash Kumar Agarwal
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引用次数: 0

摘要

随着能源需求的增长和气候变化威胁的增加,有必要研究替代燃料与传统化石燃料相比的影响和可行性。其中一种替代燃料是甲醇,它也广泛用于化学和制药工业。它可以与汽油/柴油混合或用作100%甲醇。通常,甲醇是由天然气生产的。该途径的可行性在印度的背景下进行了调查,并与其他途径进行了比较。本研究评估了从城市固体废物和高灰分印度煤中(通过热部分氧化法)生产甲醇的生命周期环境和经济影响。它展示了利用可再生能源(太阳能光伏)途径整合水电解产生的绿色氢的见解。本研究考虑了基于原料、绿色氢的整合和避免城市固体废物排放的七种方案。研究发现,与使用天然气相比,将城市生活垃圾与绿色氢结合使用,可以减少2.4倍的温室气体排放,对环境产生积极影响,这是实现“净零”目标的积极一步。没有绿色氢整合的高灰分煤途径对环境的影响最大(是天然气的2.9倍)。通过将绿色氢纳入生产阶段,高灰分煤途径的排放量可以比目前的情况减少86%,使总排放量达到与天然气途径相当的水平。
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Well-to-Pump life cycle Assessment of methanol derived from high ash Coal, natural Gas, and municipal solid waste
With growing energy needs and the increasing threat of climate change, it becomes necessary to study the impact and feasibility of alternative fuels compared to conventional fossil fuels. One such alternative fuel is Methanol, which is also used widely in the chemical and pharmaceutical industries. It can be blended with gasoline/ diesel or used as 100% Methanol. Conventionally, Methanol is produced from natural gas. This pathway’s viability is investigated in the Indian context and compared with other pathways in this study. This study assesses the life cycle environmental and economic impact of Methanol production (by thermal partial oxidation methods) from municipal solid waste and high-ash Indian coal. It shows insights into integrating green hydrogen produced from the electrolysis of water using renewable energy (solar photovoltaic, in this study) pathways. This study considers seven scenarios based on feedstocks, integration of green hydrogen and the avoided emissions from the municipal solid waste. Using municipal solid waste with green hydrogen integration is found to have a positive environmental impact by reducing greenhouse gas emissions by 2.4 times compared to natural gas, which is a positive step in the direction of attaining “Net Zero” goals. The high-ash coal pathway without green hydrogen integration exhibited the most environmental impact (∼2.9 times compared to natural gas). The high ash coal pathway emissions could be reduced by 86% from the current scenario by integrating green hydrogen into the production stage, bringing the overall emissions to a level comparable to the natural gas pathway.
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来源期刊
Energy Conversion and Management
Energy Conversion and Management 工程技术-力学
CiteScore
19.00
自引率
11.50%
发文量
1304
审稿时长
17 days
期刊介绍: The journal Energy Conversion and Management provides a forum for publishing original contributions and comprehensive technical review articles of interdisciplinary and original research on all important energy topics. The topics considered include energy generation, utilization, conversion, storage, transmission, conservation, management and sustainability. These topics typically involve various types of energy such as mechanical, thermal, nuclear, chemical, electromagnetic, magnetic and electric. These energy types cover all known energy resources, including renewable resources (e.g., solar, bio, hydro, wind, geothermal and ocean energy), fossil fuels and nuclear resources.
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