Progress in theoretical and experimental investigation on seawater electrolysis: opportunities and challenges

Literature Information

Publication Date 2021-10-12
DOI 10.1039/D1SE01347E
Impact Factor 6.367
Authors


View Original

Abstract

Hydrogen energy is considered as an renewable and interminable source to combat the present energy crises and it is capable of balancing the environmental impact due to the extensive use of fossil fuels. Hydrogen production emerges as a contemporary technique to get rid of this energy crises and environmental issues. This review focuses on the clean/fresh-water electrolysis and its commercialization aspects. Seawater is a great source of water that can be used for electrolysis as a substitute of clean water. Several issues impede the widespread use of seawater electrolysis as the substitute of fresh water. In this review, an extensive discussion on theoretical and experimental investigations has been presented to explore the most effective pathway to achieve the highest performance of seawater electrolysis. The basic parameters such as pH of seawater, use of buffer solution over the electrolyte, applied potential, effect of dissolved ions, and nature of electrocatalyst are systematically studied to explore the most effective route for direct seawater electrolysis. The overview of this article offers a through understanding of the existing shortcomings and the possible way out related to seawater electrolysis for the benefit of mankind.

Related Literature

Contents list

2024-01-03 Front/Back Matter

DOI: 10.1039/D4CP90007C

Study on a direct hydrazine borane fuel cell based on an anion exchange membrane

Yang Zhang, Wenxing Jiang, Zhenying Chen, Yingying Liu, Chengwei Deng, Xiaodong Zhuang, Junliang Zhang, Changchun Ke

2023-11-30 Paper

DOI: 10.1039/D3SE01401K

An efficient particulate photocatalyst for overall water splitting based on scandium and magnesium co-doped strontium titanate

Riku Okamoto, Akira Kimura, Yuhi Nakayasu, Akira Yamakata, Ryota Tomizawa, Taizo Masuda, Koichiro Nakatani

2023-11-29 Paper

DOI: 10.1039/D3SE01408H

The effect of temperature and oxygen partial pressure on the concentration of iron and manganese ions in La1/3Sr2/3Fe1−xMnxO3−δ

Sergey S. Nikitin, Alexander D. Koryakov, Elizaveta A. Antipinskaya, Mikhail V. Patrakeev

2023-12-15 Paper

DOI: 10.1039/D3CP05421G

Contents list

2024-01-16 Front/Back Matter

DOI: 10.1039/D4SE90007C

Inside front cover

2023-12-21 Cover

DOI: 10.1039/D4CP90002B

Effect of a single methyl substituent on the electronic structure of cobaltocene studied by computationally assisted MATI spectroscopy

Sergey Yu. Ketkov, Sheng-Yuan Tzeng, Elena A. Rychagova, Anton N. Lukoyanov, Wen-Bih Tzeng

2023-12-05 Paper

DOI: 10.1039/D3CP05120J

Front cover

2023-12-21 Cover

DOI: 10.1039/D4CP90001D

Graphene and graphene–cellulose nanocrystal composite films for sustainable anodes in biophotovoltaic devices

Laura T. Wey, Jouko Peltonen, Yagut Allahverdiyeva

2023-12-01 Paper

DOI: 10.1039/D3SE01185B

You might also like

Compound Q&A

How should waste containing N-Methoxy-N-methyl-1,3-thiazole-5-carboxamide (CAS: 898825-89-3) be handled?

Waste containing N-Methoxy-N-methyl-1,3-thiazole-5-carboxamide (CAS: 898825-89-3...

898825-89-3N-Methoxy-N-methyl-1...
Compound Q&A

How should N-(4-Biphenylyl)dibenzo[b,d]furan-4-amine (CAS: 1318338-47-4) be stored?

N-(4-Biphenylyl)dibenzo[b,d]furan-4-amine should be stored in a tightly sealed c...

1318338-47-4N-(4-Biphenylyl)dibe...
Compound Q&A

What is the market or research trend for 3-Acetamido-5-amino-2,4,6-triiodobenzoic acid (CAS: 1713-07-1)?

The market for 3-Acetamido-5-amino-2,4,6-triiodobenzoic acid (CAS: 1713-07-1) is...

1713-07-13-Acetamido-5-amino-...
Compound Q&A

How should Benzyl 2-O-acetyl-3,4,6-tri-O-benzyl-beta-D-galactopyranoside (CAS: 61820-03-9) be stored?

Benzyl 2-O-acetyl-3,4,6-tri-O-benzyl-beta-D-galactopyranoside (CAS: 61820-03-9) ...

61820-03-9Benzyl 2-O-acetyl-3,...
Compound Q&A

What regulatory guidelines apply to 2-Ethylpiperazine dihydrochloride (CAS: 438050-52-3)?

2-Ethylpiperazine dihydrochloride (CAS: 438050-52-3) is regulated under the Glob...

438050-52-32-Ethylpiperazine di...
Compound Q&A

What regulatory guidelines apply to 1,1'-[1,3-Phenylenebis(methylene)]bis(3-methyl-1H-pyrrole-2,5-dione) (CAS: 119462-56-5)?

1,1'-[1,3-Phenylenebis(methylene)]bis(3-methyl-1H-pyrrole-2,5-dione) (CAS: 11946...

119462-56-51,1'-[1,3-Phenyleneb...
Compound Q&A

Are there alternatives to 5-Fluoro-2-(1-pyrrolidinyl)pyridine (CAS: 1287217-79-1) in synthesis?

Several alternatives can be used in the synthesis of 5-Fluoro-2-(1-pyrrolidinyl)...

1287217-79-15-Fluoro-2-(1-pyrrol...
Compound Q&A

What precautions should be taken when handling 6-Bromoimidazo[1,2-a]pyridin-8-amine (CAS: 676371-00-9)?

When handling 6-Bromoimidazo[1,2-a]pyridin-8-amine, it is important to wear appr...

676371-00-96-Bromoimidazo[1,2-a...
Compound Q&A

Are there alternatives to (2S,4R)-4-(4-Nitrobenzyl)pyrrolidine-2-carboxylic acid hydrochloride (CAS: 1049740-22-8) in synthesis?

Alternatives to (2S,4R)-4-(4-Nitrobenzyl)pyrrolidine-2-carboxylic acid hydrochlo...

1049740-22-8(2S,4R)-4-(4-Nitrobe...
Disclaimer
This page provides academic journal information for reference and research purposes only. We are not affiliated with any journal publishers and do not handle publication submissions. For publication-related inquiries, please contact the respective journal publishers directly.
If you notice any inaccuracies in the information displayed, please contact us at support@chemtradehub.com. We will promptly review and address your concerns.