Experts endorse rapid scale-up of China's H2S-to-hydrogen tech after successful pilot

As detailed in the initial report on this breakthrough, experts at a Beijing evaluation conference on Tuesday praised the 'off-field electrocatalysis' technology developed by academician Li Can's team at the Dalian Institute of Chemical Physics. They recommended immediate industrial scale-up, following over 1,000 hours of uninterrupted operation at a Xinxiang pilot plant that eliminates nearly 100% of hydrogen sulfide emissions while producing high-value hydrogen and sulfur.

The pilot facility in Xinxiang, Henan province, processes waste gas from a nearby methanol plant operated by Shandong Sunway Chemical Group. It has demonstrated exceptional performance, yielding sulfur with 99.95%+ purity and hydrogen at 99.999% purity—premium products for global markets.

Key innovations include 'electron mediators' that shift H2S decomposition from electrode surfaces to a separate tank, preventing sulfur clogging, hydrogen bubble adhesion, and filter contamination. This keeps electrical components clean and efficient under ambient conditions.

The skid-mounted design occupies 20% less space than traditional Claus plants (which require >1,200°C and waste hydrogen potential), enabling easy transport and integration into refineries.

Li Can highlighted global challenges: China removes 8 billion cubic meters of H2S yearly (global emissions >70 billion), with the tech potentially supplying 40% of China's 1.8 million tons green hydrogen goal by 2030, aligning with 'dual carbon' targets.

مقالات ذات صلة

ETH Zurich scientists with single-atom indium catalyst converting CO2 to methanol in a high-tech lab reactor, sustainable energy theme.
صورة مولدة بواسطة الذكاء الاصطناعي

Scientists develop single-atom catalyst for CO2-to-methanol conversion

من إعداد الذكاء الاصطناعي صورة مولدة بواسطة الذكاء الاصطناعي

Researchers at ETH Zurich have engineered a catalyst using isolated indium atoms on hafnium oxide to convert CO2 and hydrogen into methanol more efficiently than previous methods. This single-atom design maximizes metal use and enables clearer study of reaction mechanisms. The breakthrough could support sustainable chemical production if powered by renewables.

A team at the University of Hong Kong has created a new stainless steel alloy that resists corrosion in seawater electrolysis. The material could replace expensive titanium components in hydrogen production systems.

من إعداد الذكاء الاصطناعي

China has started a project in Shandong province to blend hydrogen into natural gas, providing energy to 100,000 households while cutting gas use. The equipment can handle up to 30,000 cubic metres of hydrogen-blended gas with up to a 10 per cent hydrogen mix, according to state broadcaster CCTV. The initiative forms part of a national green energy push.

Werner Ponikwar, CEO of Thyssenkrupp Nucera, calls in a guest commentary for more commitment to electrolysis technologies. Diversified energy imports are insufficient to reduce dependency. Electrolysis links renewable electricity to industrial value creation and produces hydrogen as a storable energy carrier.

من إعداد الذكاء الاصطناعي

Researchers have found that ancient rocks beneath Ontario are naturally producing hydrogen gas in measurable quantities. The discovery could offer a new domestic source of clean energy for Canada.

China is examining coal refuse as a potential source of critical metals including germanium, aluminium, lithium and gallium. The effort builds on existing coal processing infrastructure. A leading researcher noted both opportunities and technical challenges.

من إعداد الذكاء الاصطناعي

China General Nuclear Power Group announced on Monday the start of construction for a 50 MW trough-based concentrated solar power plant at 4,550 meters altitude in Damxung County, Xizang Autonomous Region. The facility, located near Lhasa, integrates a 400 MW photovoltaic system and is set for full operation by 2027. Xinhua reported preparatory digging began that day amid efforts to diversify power sources.

 

 

 

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