2020
DOI: 10.3390/su122310148
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An Overview of Economic Analysis and Environmental Impacts of Natural Gas Conversion Technologies

Abstract: This study presents an overview of the economic analysis and environmental impact of natural gas conversion technologies. Published articles related to economic analysis and environmental impact of natural gas conversion technologies were reviewed and discussed. The economic analysis revealed that the capital and the operating expenditure of each of the conversion process is strongly dependent on the sophistication of the technical designs. The emerging technologies are yet to be economically viable compared t… Show more

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Cited by 20 publications
(5 citation statements)
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“…The blue and green ammonia production processes involve high costs. Ayodele et al (2020) estimated the total capital costs for the SMR-HB process with carbon capture at US$831 million. Green ammonia production costs can be around US$500 million.…”
Section: Steam Methane Reforming With the Haber-bosch Process (Gray A...mentioning
confidence: 99%
“…The blue and green ammonia production processes involve high costs. Ayodele et al (2020) estimated the total capital costs for the SMR-HB process with carbon capture at US$831 million. Green ammonia production costs can be around US$500 million.…”
Section: Steam Methane Reforming With the Haber-bosch Process (Gray A...mentioning
confidence: 99%
“…Reports on the economic analysis of the biochemical and photocatalytic conversion of natural gas are relatively scarce,a nd studies on the economic analysis of the direct conversion of natural gas to valueadded products are mostly focused on various thermochemical processes. [147] Thee conomic analysis of photocatalytic methane conversion is helpful for providing practical directions for future developments.…”
Section: Practical Applications Of the Photooxidation Of Methanementioning
confidence: 99%
“…Furthermore, it reduces the overall greenhouse gas emissions (carbon dioxide and methane) by using them as reagents for the catalytic process [40]. This is particularly true in the case of design modifications of SRM technology, which can make it more economically viable, e.g., storage and utilization, carbon capture, and solar concentrators [49]. Additionally, it has a H 2 :CO ratio of 1:1, which is ideal for selecting long-chain hydrocarbons in FT [23,[50][51][52][53][54][55][56].…”
Section: Critical Comparison Of the Different Reforming Technologiesmentioning
confidence: 99%