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评估可再生氢的经济应用:绿色经济绩效和政策措施的前进之路。

Evaluating an economic application of renewable generated hydrogen: A way forward for green economic performance and policy measures.

机构信息

Chengde Medical University, Chengde, China.

Faculty of Hospitality, Tourism and Wellness, Universiti Malaysia Kelantan, Pengkalan Chepa, Malaysia.

出版信息

Environ Sci Pollut Res Int. 2022 Feb;29(10):15144-15158. doi: 10.1007/s11356-021-16770-6. Epub 2021 Oct 9.

Abstract

Energy security and environmental measurements are incomplete without renewable energy; therefore, there is a dire need to explore new energy sources. Hence, this study aimed to measure the wind power potential to generate renewable hydrogen (H), including its production and supply cost. This study used first-order engineering model and net present value to measure the levelized cost of wind-generated renewable hydrogen by using the data source of the Pakistan Meteorological Department and State Bank of Pakistan. Results showed that the use of surplus wind and renewable hydrogen energy for green economic production is suggested as an innovative project option for large-scale hydrogen use. The key annual running expenses for hydrogen are electricity and storage costs, which have a significant impact on the costs of renewable hydrogen. The results also indicated that the project can potentially cut carbon dioxide (CO) pollution by 139 million metric tons and raise revenue for wind power plants by US$2998.52 million. The renewable electrolyzer plants avoided CO at a rate of US$24.9-36.9/ton under baseload service, relative to US$44.3/ton for the benchmark. However, in the more practical mid-load situation, these plants have significant benefits. Further, the wind-generated renewable hydrogen delivers 6-11% larger annual rate of return than the standard CO catch plant due to their capacity to remain running and supply hydrogen to the consumer through periods of plentiful wind and heat. Also, the measured levelized output cost of hydrogen (LCOH) was US$6.22/kgH, and for the PEC system, it was US$8.43/kgH. Finally, it is a mutually agreed consensus among environmental scientists that the integration of renewable energy is the way forward to increase energy security and environmental performance by ensuring uninterrupted clean and green energy. This application has the potential to address Pakistan's urgent issues of large-scale surplus wind- and solar-generated energy, as well as rising energy demand.

摘要

能源安全和环境测量离不开可再生能源;因此,迫切需要探索新能源。因此,本研究旨在测量风力发电潜力,以产生可再生氢(H),包括其生产成本和供应成本。本研究使用一阶工程模型和净现值,利用巴基斯坦气象局和巴基斯坦国家银行的数据来源,测量风力发电产生的可再生氢的平准化成本。结果表明,建议利用剩余风能和可再生氢能进行绿色经济生产,作为大规模使用氢能的创新项目选择。氢气的关键年度运行费用是电力和存储成本,对可再生氢气的成本有重大影响。结果还表明,该项目有可能减少 1.39 亿吨二氧化碳(CO)污染,并为风力发电厂带来 2.9985 亿美元的收入。可再生电解槽厂在基荷服务下以 24.9-36.9 美元/吨的速度避免 CO,而基准为 44.3 美元/吨。然而,在更实际的中载情况下,这些工厂具有显著的优势。此外,由于能够在风能和热能充足的时期保持运行并向消费者供应氢气,风力发电产生的可再生氢能提供 6-11%更大的年度回报率,高于标准的 CO 捕获工厂。此外,氢气的平准化输出成本(LCOH)为 6.22 美元/千克 H,而对于 PEC 系统,LCOH 为 8.43 美元/千克 H。最后,环境科学家一致认为,可再生能源的整合是提高能源安全和环境绩效的途径,通过确保不间断的清洁和绿色能源。该应用具有解决巴基斯坦大规模剩余风能和太阳能发电以及能源需求上升的紧迫问题的潜力。

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