Development of Sustainable assessment Model of solar hydrogen production techniques: An integrated MCDM approach

M. Ismail, S. Zaki, M. Ibrahim
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引用次数: 0

Abstract

Energy has a critical role in human survival and societal progress. Hydrogen is a possible energy carrier for long-term power generation. Known as both an environmental nuisance and an essential hydrogen source, Hydrogen Sulfide (H2S) may be found in large quantities in the waters of the Black Sea. The primary goal of this research is to determine which breakdown processes, such as thermal, thermochemical, electrochemical, plasma, photochemical and thermal suit sustainability requirements better than others. The most acceptable hydrogen generation technique is chosen based on characteristics such as financial viability, environmental viability, effectiveness, simplicity of the process, energy consumption, safety and dependability, application and operational adaptability, and technological maturity. This paper proposes innovative additions to the CoCoSo approach. The COCOSO method is used to compute the weights of criteria and rank the alternatives. This paper proposed 8 criteria and 5 alternatives.
太阳能制氢技术可持续评价模型的建立:综合MCDM方法
能源对人类生存和社会进步起着至关重要的作用。氢是长期发电的一种可能的能源载体。众所周知,硫化氢(H2S)既是环境公害,也是必不可少的氢源,在黑海水域中可能发现大量的硫化氢(H2S)。本研究的主要目标是确定哪种击穿过程,如热、热化学、电化学、等离子体、光化学和热服的可持续性要求比其他过程更好。根据经济可行性、环境可行性、有效性、工艺简单性、能耗、安全性和可靠性、应用和操作适应性以及技术成熟度等特征选择最可接受的制氢技术。本文提出了对CoCoSo方法的创新补充。采用COCOSO方法计算标准的权重,并对备选方案进行排序。本文提出了8个标准和5个备选方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.70
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