首页> 外文期刊>International journal of hydrogen energy >Hydrogen production through the sulfur-iodine cycle using a steam boiler heat source for risk and techno-socio-economic cost (RSTEC) reduction
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Hydrogen production through the sulfur-iodine cycle using a steam boiler heat source for risk and techno-socio-economic cost (RSTEC) reduction

机译:通过硫 - 碘循环使用蒸汽锅炉热源产生风险和技术 - 社会经济成本(RSTEC)减少的氢气产生

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A modified sulfur-iodine cycle with a non-nuclear heat source is proposed to enhance the economics and reduce risk and damage to society in terms of cost. A modified sulfur cycle employs a steam boiler as a heat source. The modified sulfur iodine cycle is composed of fewer reactions than the original. Thermodynamic feasibility analysis, economic evaluation, risk assessment, and socio-economic analysis are carried out on both the sulfur-iodine cycle and modified sulfur-iodine cycle, and the results are compared. 50.9 kJ/mol of steam was required for the minimum entropy range without the violation of the second law. The results show that the modified process is thermodynamically feasible with a positive entropy region at operating temperatures. The capital cost and operating cost are reduced by 40% and 29% for 1 kmol/h hydrogen production, respectively. The failure rate in the modified process is reduced by 64% compared to that of the original. The social health cost in the modified cycle is reduced by 41% compared to that of the original. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种具有非核热源的改性硫 - 碘循环,以提高经济学,并在成本方面降低社会风险和损害。改性的硫循环采用蒸汽锅炉作为热源。改性硫碘循环由比原始的更少的反应组成。热力学可行性分析,经济评价,风险评估和社会经济分析在硫磺 - 碘循环和改性硫 - 碘循环中进行,并进行了比较结果。未经违反第二法律,最低熵范围需要50.9 kJ / mol蒸汽。结果表明,改进的方法在操作温度下的正熵区域具有热力学上可行的。资本成本和运营成本分别降低了40%和29%,分别为1 kmol / h氢生产。与原始工艺相比,修改过程中的故障率降低了64%。与原版相比,修改周期中的社会健康成本减少了41%。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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