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September 10, 2025Nature Communications16 citationsOpen Access

Electrochemical valorization of H2S in natural gas to sulfate under mild conditions

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CZChunyu ZhangALAn-Zhen LiBYBo‐Jun Yuan

Key Points

  • H2S removal from natural gas reached <15 ppm, demonstrating the method's effectiveness.
  • The process achieved >70% selectivity for K2SO4, highlighting its conversion efficiency.
  • Electrochemical oxidation utilized in-situ generated H2O2 for deep H2S conversion, crucial for high yields.
  • Life-cycle and techno-economic analyses support the method's sustainability and economic potential.

Abstract

H2S capture and valorization from polluted natural gas offer environmental and resource recovery benefits, but current approaches produce moderate-value sulfur with intensive carbon footprint. Herein, we develop an electrochemical deep oxidation method that converts H2S from polluted natural gas into value-added K2SO4 using in-situ cathodically generated H2O2. We first validate this concept using commercial H2O2 and then in-situ generated H2O2 in H-cell, revealing the importance of high H2O2 concentration for deep H2S oxidation, especially sluggish S2O32--to-SO32- conversion. We then showcase its application potential in 4-cm2 and then 100-cm2 flow reactor with high interfacial H2O2 concentration and large current, with the latter achieving H2S removal (100,000 ppm to 70% K2SO4 selectivity, and 100-h stable operation. Life-cycle assessment and techno-economic analysis confirm the strategy's sustainability advantages and economic viability. We finally extend this method to produce a 1.4 wt% H2SO4 solution by modifying the flow reactor with a solid-electrolyte type.

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Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/68c1b18b54b1d3bfb60e86cehttps://doi.org/10.1038/s41467-025-62445-y
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