A comparative analysis of different hydrogen production methods and their environmental impact

Date

2023-11-29

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Publisher

MDPI

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Article

ISSN

2571-8797

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Citation

Nnabuife SG, Darko CK, Obiako PC, et al., (2023) A comparative analysis of different hydrogen production methods and their environmental impact. Clean Technologies, Volume 5, Issue 4, November 2023, pp. 1344-1380

Abstract

This study emphasises the growing relevance of hydrogen as a green energy source in meeting the growing need for sustainable energy solutions. It foregrounds the importance of assessing the environmental consequences of hydrogen-generating processes for their long-term viability. The article compares several hydrogen production processes in terms of scalability, cost-effectiveness, and technical improvements. It also investigates the environmental effects of each approach, considering crucial elements such as greenhouse gas emissions, water use, land needs, and waste creation. Different industrial techniques have distinct environmental consequences. While steam methane reforming is cost-effective and has a high production capacity, it is coupled with large carbon emissions. Electrolysis, a technology that uses renewable resources, is appealing but requires a lot of energy. Thermochemical and biomass gasification processes show promise for long-term hydrogen generation, but further technological advancement is required. The research investigates techniques for improving the environmental friendliness of hydrogen generation through the use of renewable energy sources. Its ultimate purpose is to offer readers a thorough awareness of the environmental effects of various hydrogen generation strategies, allowing them to make educated judgements about ecologically friendly ways. It can ease the transition to a cleaner hydrogen-powered economy by considering both technological feasibility and environmental issues, enabling a more ecologically conscious and climate-friendly energy landscape.

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Keywords

hydrogen, environment, greenhouse gases, carbon emission, electrolysis, electrolyser

Rights

Attribution 4.0 International

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