某成衣生产能耗与排放调查及节能潜力评估

IF 3.2 4区 工程技术 Q3 ENERGY & FUELS Energy Efficiency Pub Date : 2024-12-03 DOI:10.1007/s12053-024-10281-2
Md. Uddin, Khaled Mohammad Shifullah Bhuiya, Sabbir Ahmed Udoy, Mim Mashrur Ahmed, Md. Nahid Hossan
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引用次数: 0

摘要

服装产品是国际贸易项目和基本消费项目。孟加拉国的成衣服装业是世界第二大服装出口国。孟加拉国的服装业消耗了该国工业总能源的三分之一。这类工业消耗大量能源,并向大气中排放温室气体。服装产品的能耗和温室气体排放评估有助于了解生产的基线状态,并对标产品的能耗和排放水平。本文旨在调查孟加拉国成衣(t恤)生产的能源消耗和温室气体排放。门到门的生产阶段已被考虑用于调查。分析了节能策略和温室气体减排潜力。结果表明,天然气、石油、电力的总能耗分别为15105立方米/天、49.93千克/天、36265千瓦时/天。发现的二氧化碳总排放量为56.65吨/天。比能耗为12 MJ/片,CO2、CO、CH4、NOx和SOx的比排放量分别为0.94 kg/片、1.69 gm/片、3.53 gm/片、4.1 gm/片和0.89gm/片。所提出的策略可在机械部分节省22-70%的能源。采用所提出的电动蒸汽发生器,可以在蒸汽产生部门节省25%的能源潜力。蒸汽发生段的CO2排放量最高,压缩机段的CO2排放量最低。孟加拉国制造的服装的具体能源消耗和碳足迹与文献研究非常接近。
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Investigation of the energy consumption and emission for a readymade garment production and assessment of the saving potential

Garment products are international trade items and essential consumption items. The readymade garment industry of Bangladesh is the second largest garment exporter in the world. The garment industry of Bangladesh consumes one-third of the country's total industrial energy. Such industry consumes significant energy and contributes greenhouse gas (GHG) emissions into the atmosphere. Assessment of energy consumption and GHG emission of garment products helps to understand the baseline status of the production and benchmarking the energy and emission leveling of the product. This paper aims to investigate the energy consumption and GHG emissions of readymade garment (T-shirt) production in Bangladesh. Gate-to-gate production stages have been considered for the investigation. The strategies for the energy and GHG emission-saving potential have been also analyzed. The result showed that the total energy consumption in terms of natural gas, oil, and electricity found are 15,105 m3, 49.93 kg, and 36,265 kWh respectively per day. The total CO2 emission found is 56.65 tons per day. The specific energy consumption found is 12 MJ/piece and the specific emissions of the CO2, CO, CH4, NOx, and SOx are 0.94 kg/piece, 1.69 gm/piece, 3.53 gm/piece, 4.1 gm/piece, and 0.89gm/piece, respectively. The proposed strategies could save energy in the machinery section in the range of 22–70%. The energy saving potential of 25% is possible in the steam generation sector by employing the proposed electric steam generator. The steam generation section gives the highest CO2 emission and the compressor section gives the lowest emission. The specific energy consumption and carbon footprint of Bangladesh-manufactured garments are in very close agreement with the literature studied.

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来源期刊
Energy Efficiency
Energy Efficiency ENERGY & FUELS-ENERGY & FUELS
CiteScore
5.80
自引率
6.50%
发文量
59
审稿时长
>12 weeks
期刊介绍: The journal Energy Efficiency covers wide-ranging aspects of energy efficiency in the residential, tertiary, industrial and transport sectors. Coverage includes a number of different topics and disciplines including energy efficiency policies at local, regional, national and international levels; long term impact of energy efficiency; technologies to improve energy efficiency; consumer behavior and the dynamics of consumption; socio-economic impacts of energy efficiency measures; energy efficiency as a virtual utility; transportation issues; building issues; energy management systems and energy services; energy planning and risk assessment; energy efficiency in developing countries and economies in transition; non-energy benefits of energy efficiency and opportunities for policy integration; energy education and training, and emerging technologies. See Aims and Scope for more details.
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