绿色氢能技术发展现状与趋势

田江南, 蒋晶, 罗扬, 马雄

分布式能源 ›› 2021, Vol. 6 ›› Issue (2) : 8-13.

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分布式能源 ›› 2021, Vol. 6 ›› Issue (2) : 8-13. DOI: 10.16513/j.2096-2185.DE.2106013
综述

绿色氢能技术发展现状与趋势

作者信息 +

Development Status and Trend of Green Hydrogen Energy Technology

Author information +
文章历史 +

摘要

氢能具有单位质量热值高、用途广泛和可再生等优点,备受关注。介绍了3种电解水制氢设备,指出风电制氢主要有3种连接形式:并网型风电制氢;离网型风电制氢;并网不上网型风电制氢。光伏制氢主要有2种类型:间接连接;直接连接。结论表明质子膜电解水制氢技术对新能源(风电、光伏发电)电源的波动性适应性较强,应从电极材料等方面入手,降低质子膜电解水制氢设备成本。

Abstract

Hydrogen energy has attracted much attention because of its high calorific value per unit mass, wide application and reproduce ability. Three kinds of electrolytic water hydrogen production equipment are introduced. It is pointed out that there are three main connection forms of wind power hydrogen production: grid-connected wind power hydrogen production; Off-grid wind power hydrogen production; Grid-connected wind power hydrogen production. There are two main types of photovoltaic hydrogen production: indirect connection; direct connection. The conclusion shows that the proton membrane electrolytic water hydrogen production technology has a strong adaptability to the fluctuation of new energy sources (wind power, photovoltaic power), and the cost of proton membrane electrolytic water hydrogen production equipment should be reduced from the aspects of electrode materials.

关键词

绿氢 / 新能源制氢 / 风电 / 光伏

Key words

green hydrogen / new energy hydrogen production / wind power / photovoltaic

引用本文

导出引用
田江南, 蒋晶, 罗扬, . 绿色氢能技术发展现状与趋势[J]. 分布式能源. 2021, 6(2): 8-13 https://doi.org/10.16513/j.2096-2185.DE.2106013
Jiangnan TIAN, Jing JIANG, Yang LUO, et al. Development Status and Trend of Green Hydrogen Energy Technology[J]. Distributed Energy Resources. 2021, 6(2): 8-13 https://doi.org/10.16513/j.2096-2185.DE.2106013
中图分类号: TK91   

参考文献

[1]
戴凡博. PEM电解水制氢催化剂及直接耦合光伏发电系统建模研究[D]. 杭州:浙江大学,2020.
DAI Fanbo. Study of catalyst in PEM water electrolysis and directly coupling photoboltaic system simulation[D]. Hangzhou: Zhejiang University, 2020.
[2]
张理,叶斌,尹晨旭,等. 风电制氢经济性及发展前景分析[J]. 东北电力技术2020, 41(7): 5-9, 37.
ZHANG Li, YE Bin, YIN Chenxu, et al. Economy and development prospects analysis of wind power hydrogen production[J]. Northeast Electric Power Technology, 2020, 41(7): 5-9, 37.
[3]
张钦. 新能源制氢技术发展现状及前景分析[J]. 中国石油和化工标准与质量2020, 40(15): 219-220.
[4]
王宇卫,卢海勇,孙培锋,等. 新能源制氢配置及经济性研究[J]. 电力与能源2020, 41(5): 610-613, 631.
WANG Yuwei, LU Haiyong, SUN Peifeng, et al. Configuration and economy of hydrogen production from new energy[J]. Power & Energy, 2020, 41(5): 610-613, 631.
[5]
李亚晓. 光伏电解水制氢加氢站概念设计与成本分析[D]. 新乡:河南师范大学,2019.
LI Yaxiao. Conceptual design and cost analysis of hydrogen refueling station combined with photovoltaic water eletrolysis[D]. Xinxiang: Henan Normal University, 2019.
[6]
彭树明. HM-200型制氢机电解槽温度高故障分析及处理[J]. 广东电力2018, 31(1): 40-43.
PENG Shuming. Fault analysis and treatment for high tem-perature of electrolytic cell in HM-200 hydrogen generator[J]. Guangdong Electric Power, 2018, 31(1): 40-43.
[7]
郭常青,伊立其,闫常峰,等. 太阳能光伏-PEM水电解制氢直接耦合系统优化[J]. 新能源进展2019, 7(3): 287-294.
GUO Changqing, YI Liqi, YAN Changfeng, et al. Optimization of photovoltaic-PEM electrolyzer direct coupling systems[J]. Advances in New and Renewable Energy, 2019, 7(3): 287-294.
[8]
郭梦婕,严正,周云,等. 含风电制氢装置的综合能源系统优化运行[J]. 中国电力2020, 53(1): 115-123, 161.
GUO Mengjie, YAN Zheng, ZHOU Yun, et al. Optimized operation design of integrated energy system with wind power hydrogen production[J]. Electric Power, 2020, 53(1): 115-123, 161.
[9]
韩舒淇,李文鑫,陈冲,等. 基于风电制氢与超级电容器混合储能的可控直驱永磁风电机组建模与控制[J]. 广东电力2019, 32(5): 1-12.
HAN Shuqi, LI Wenxin, CHEN Chong, et al. Modeling and control of controllable D-PMSG based on hybrid energy storage of wind power hydrogen production and supercapacitor[J]. Guangdong Electric Power, 2019, 32(5): 1-12.
[10]
马俊琳,刘业凤. 光伏发电制氢系统的研究[C]//上海市制冷学会2013年学术年会论文集. 上海市制冷学会:上海市制冷学会,2013: 94-97.
[11]
曹蕃,陈坤洋,郭婷婷,等. 氢能产业发展技术路径研究[J]. 分布式能源2020, 5(1): 1-8.
CAO Fan, CHEN Kunyang, GUO Tingting, et al. Research on technological path of hydrogen energy industry development[J]. Distributed Energy, 2020, 5(1): 1-8.
[12]
时璟丽,高虎,王红芳. 风电制氢经济性分析[J]. 中国能源2015, 37(2): 11-14.
[13]
孙一琳. 海上风电+制氢,Gigastack项目进展如何?[J]. 风能2020(3): 48-50.
[14]
李仁贵. 太阳能分解水制氢最近进展:光催化、光电催化及光伏-光电耦合途径[J]. 催化学报2017, 38(1): 5-12.
LI Rengui. Latest progress in hydrogen production from solar water splitting via photocatalysis, photoelectrochemical, and photovoltaic-photoelectrochemical solutions[J]. Chinese Journal of Catalysis, 2017, 38(1): 5-12. (in English)
[15]
张丽,陈硕翼. 风电制氢技术国内外发展现状及对策建议[J]. 科技中国2020(1): 13-16.

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