Synergistic decomposition of H2S into H2 by Ni3S2 over ZrO2 support via a sulfur looping scheme with CO2 enabled carrier regeneration

Author:

Jangam Kalyani V.,Joshi Anuj S.,Chen Yu-Yen,Mahalingam Shailaja,Sunny Ashin A.,Fan Liang-Shih

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry

Reference72 articles.

1. Study on H2S monitoring technique for high risk wellsite;Gao;Procedia Eng.,2012

2. Energy Production and Consumption, Our World in Data. (n.d.). https://ourworldindata.org/energy-production-consumption (accessed June 3, 2021).

3. Statistical Review of World Energy | Energy economics | Home, Bp Global. (n.d.). https://www.bp.com/en/global/corporate/energy-economics/statistical-review-of-world-energy.html (accessed June 3, 2021).

4. Hydrogen sulfide capture: from absorption in polar liquids to oxide, zeolite, and metal-organic framework adsorbents and membranes;Shah;Chem. Rev.,2017

5. Advances in sulfur chemistry for treatment of acid gases;Gupta;Prog. Energy Combust. Sci.,2016

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