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广东地区"光伏+制氢"供能模式及其潜能

薛仕龙 李子诚 谭钦 杨龙翔 张立波

广东石油化工学院学报2025,Vol.35Issue(6):25-30,6.
广东石油化工学院学报2025,Vol.35Issue(6):25-30,6.DOI:10.26962/j.cnki.1991.2025.0051

广东地区"光伏+制氢"供能模式及其潜能

Energy Supply Model and Potential of"Photovoltaic+Hydrogen Production"in Guangdong Region

薛仕龙 1李子诚 1谭钦 1杨龙翔 1张立波1

作者信息

  • 1. 广东石油化工学院 化学工程学院,广东 茂名 525000
  • 折叠

摘要

Abstract

In the process of energy clean transformation,the photovoltaic(PV)plus hydrogen production model,as an emerging energy solution,is increasingly highlighted in the work of decarbonization and emission reduction.This model can effectively balance the instability of photovoltaic power and compensate for the consumption of electrical energy in electrolytic water splitting,while also increasing the rate of self-generation and self-consumption,promoting the local consumption of renewable energy.It has been found that the coupling of photovoltaic power generation with electrolytic hydrogen production can be connected with renewable energy sources and may perform excellently in practical applications.The combination of electrolytic hydrogen production with highly fluctuating renewable energy sources to improve energy utilization is a hot topic in current research.To gain a deeper understanding of the potential and challenges of the"PV+hydrogen production"model in practical applications,this study constructs a life cycle inventory of the PV power generation combined with electrolytic water splitting processes,identifies key process links,and explores their environmental impacts.Through in-depth case analysis,the aim is to verify the dual value of the process in ecological and economic terms,thereby confirming the feasibility of photovoltaic power generation coupled with electrolytic water splitting technology.

关键词

能源清洁化/光伏发电耦合电解水制氢/生命周期

Key words

energy cleanliness/photovoltaic power generation coupled with electrolytic hydrogen production/life cycle

分类

化学化工

引用本文复制引用

薛仕龙,李子诚,谭钦,杨龙翔,张立波..广东地区"光伏+制氢"供能模式及其潜能[J].广东石油化工学院学报,2025,35(6):25-30,6.

基金项目

国家自然科学基金项目(22368051) (22368051)

广东石油化工学院科研项目(2023rcyj2005) (2023rcyj2005)

广东石油化工学院学报

2095-2562

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