Affiliation:
1. Rearch Center of Energy & Environment,E & Chem Solution Corp.,Korea (the Republic of)
2. Plant Process Development Center,Hydrogen Energy Solution Center,,Korea (the Republic of)
Abstract
Biogas, one of renewable energies, is a key element necessary for a carbon-neutral policy and to build a hydrogen economy. In order to utilize biogas, impurities of biogas such as moisture, hydrogen sulfide(H2S), siloxanes, and VOCs should be removed. In particular, since H2S causes corrosiveness of equipment by sulfur oxides, and is harmful to the human body if leaked, it is a major target material to be removed. The minimum concentration of H2S obtainable from the wet method is several ppm. It is known, however that the iron hydroxide-based adsorbent in the dry method can obtain ultimately low concentration of H2S down to 0.1 ppm or less. The DeHyS was manufactured through a series of processes such as mixing iron cloride solution or iron sulfate solution, NaOH solution, and inorganic binder. During the adsorption process, H2S was removed in the form of iron sulfide through a chemical reaction, and siloxanes are known to be removed through physical adsorption. It was also applied to various biogas plant sites such as landfill gas, sewage sludge, livestock manure, and food waste. At this time, the H2S removal efficiency was known to be 99.9% or more, while simultaneous removal of 90% or more of the total siloxanes was possible. Moreover, the biogas produced at the Chungju Food Bioenergy Center was pretreated using the DeHyS and supplied to the nearby Chungju Bio Green Hydrogen Charging Station to produce hydrogen through steam methane reforming(SMR), producing 500 kg of hydrogen from 8,000 m3 of biogas per day.
Subject
Waste Management and Disposal,Environmental Chemistry,Environmental Engineering
Reference11 articles.
1. IPCC. Special Report on Global Warming of 1.5°C. 2018. Retrieved from https://www.c40knowledgehub.org/s/article/IPCC-Special-Report-on-Global-Warming-of-1-5-C?language=en_US&gclid=EAIaIQobChMIr7uxh9L1-QIV2MFMAh1oTQJAEAAYAiAAEgKyhfD_BwE#RelatedKnowledge
2. A systematic study of the iron hydroxide-based adsorbent for removal of hydrogen sulphide from biogas
3. Desiloxanation process of biogas using an amorphous iron hydroxide-based adsorbent: A comparison between laboratory and field-scale experiments
4. Ministry of Environment of the Republic of Korea. Roadmap to expand bio-water energy using environmental facilities. 2022. Retrieved from https://eiec.kdi.re.kr/policy/ callDownload. do? num=227143 &filenum=2&dtime=20220621204205
5. Adsorption Characteristics of Hydrogen Sulfide on Iron Hydroxide-based Adsorbent