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Integrated hydrogen supply networks for waste biogas upgrading and hybrid carbon-hydrogen pinch analysis under hydrogen demand uncertainty

机译:用于废弃沼气升级和杂交碳 - 氢捏合分析的集成氢气供应网络在氢气需求不确定性下

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摘要

This study aims to develop integrated hydrogen supply networks (IHSNs) by combining a natural gas hydrogen supply network and a sludge-biogas-biomethane-hydrogen supply network which is an environmentally benign hydrogen production system. Sludge from wastewater treatment plants is converted into biogas by anaerobic digestion, biomethane is generated using amine technology, which is one of the biogas upgrading technologies, and finally, hydrogen is produced by steam reforming. Multi-objective two-stage stochastic mixed integer linear programming is used to simultaneously optimize the total annual cost and the total environmental cost under hydrogen demand uncertainty. An c-constraint method is employed to solve the multi-objective function, and Pareto analysis is performed to compare the results from the economic cost and the environmental cost. Then, hybrid carbon-hydrogen pinch analysis is suggested to investigate two distinct hydrogen supply networks in IHSNs, and is verified by the results and a sensitivity analysis based on supplementary wind power. Gyeongsangdo where is one of the five provinces in the Republic of Korea is applied for a case study to validate the proposed model and the results illustrate the feasibility of IHSNs.
机译:本研究旨在通过组合天然气氢气供应网络和污泥 - 沼气 - 生物甲烷 - 氢气供应网络来开发集成的氢气供应网络(IHSN),这是一种环境良性氢气生产系统。废水处理厂的污泥通过厌氧消化转化为沼气,使用胺技术产生生物甲烷,即沼气升级技术之一,最后,氢气通过蒸汽重整产生。多目标两阶段随机混合整数线性编程用于同时优化年度成本总成本和氢需求不确定性的总环境成本。采用C-约束方法来解决多目标函数,并且进行帕累托分析以比较经济成本和环境成本的结果。然后,建议杂交碳 - 氢捏合分析来研究IHSN中的两个不同的氢供应网络,并通过结果和基于补充风力的敏感性分析来验证。京畿道在大韩民国的五个省份之一申请了案例研究,以验证拟议的模型,结果说明了IHSN的可行性。

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