Combined experimental and simulation study on H2 storage in oxygen and nitrogen co-doped activated carbon derived from biomass waste: superior pore size and surface chemistry development

Author:

Anuchitsakol Suphakorn1,Dilokekunakul Waralee2,Khongtor Numphueng3,Chaemchuen Somboon4ORCID,Klomkliang Nikom15ORCID

Affiliation:

1. School of Chemical Engineering, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand

2. Aachener Verfahrenstechnik – Chemical Process Engineering, RWTH Aachen University, Aachen 52074, Germany

3. Institute of Research and Development, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand

4. State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, China

5. Research Unit of Adsorption, Catalysis & Energy Storage, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand

Abstract

Modification enhanced the pyridinic-N oxide and superior pore sizes in activated carbon derived from biomass waste for improved H2 storage.

Funder

Suranaree University of Technology

Thailand Science Research and Innovation

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

Reference68 articles.

1. BP , bp Energy Outlook 2023 edition , https://www.bp.com/content/dam/bp/business-sites/en/global/corporate/pdfs/energy-economics/energy-outlook/bp-energy-outlook-2023.pdf , accessed Jun 20, 2023

2. Extinction risk from climate change

3. Ecological responses to recent climate change

4. Recent Advances and Reliable Assessment of Solid‐State Materials for Hydrogen Storage: A Step Forward toward a Sustainable H 2 Economy

5. Static and dynamic studies of hydrogen adsorption on nanoporous carbon gels

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