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International Journal of Automotive Technology > Volume 26(7); 2025 > Article
International Journal of Automotive Technology 2025;26(7): 1839-1856.
doi: https://doi.org/10.1007/s12239-025-00276-y
A Comparative Environmental Life Cycle Assessment (LCA) Study of Hydrogen Fuel Production from Different Waste Feedstock in South Korea
Ahmad Adib Rosyadi1,2, Ocktaeck Lim3
1Graduate School of Mechanical Engineering, University of Ulsan, Ulsan, 44610, South Korea
2Department of Mechanical Engineering, University of Jember, Jember, 68121, Indonesia
3School of Mechanical Engineering, University of Ulsan, Ulsan, 44610, South Korea
PDF Links Corresponding Author.  Ocktaeck Lim , Email. otlim@ulsan.ac.kr
Received: January 2, 2025; Revised: February 19, 2025   Accepted: May 10, 2025.  Published online: August 11, 2025.
ABSTRACT
This paper offers a comprehensive numerical investigation of carbon dioxide (CO2) emissions from hydrogen production using various renewable feedstocks. With the increasing demand for hydrogen, its production is experiencing rapid development. However, environmental considerations are very important because of the pollution associated with the production process. This study specifically examines CO2 emissions associated with hydrogen production. CO2 emissions are a significant contributor to the greenhouse effect. This research focuses on renewable raw materials, such as landfill gas (LFG), animal waste (AW), food waste (FW), and wastewater sludge (WSW), for hydrogen production using SMR. This research uses GREET® to analyze and is supported by UniSim Design R460 to calculate the Steam Methane Reforming (SMR) system. The finding that WSW as a raw material produces the lowest CO2 emissions, namely−26.83 kg CO2/kg H2, deserves special attention. Besides that, using LFG produces the highest CO2 emissions, reaching 3.92 kg CO2/kg H2. Of course, not only CO2 emissions are considered when considering the use of renewable feedstock for hydrogen production, but other emission factors, such as carbon monoxide (CO), nitrogen oxide (NOx), and other relevant pollutants, are also considered in selecting renewable feedstock.
Key Words: SMR · Landfill gas · Animal waste · Food waste · Wastewater sludge · Emissions
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