2021
DOI: 10.1016/j.rser.2021.111403
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Experimental data supported techno-economic assessment of the oxidative dehydrogenation of ethane through chemical looping with oxygen uncoupling

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Cited by 16 publications
(5 citation statements)
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“…10b). Significant effort was made 180 for the techno-economic analysis of O 2 -CL-ODH of ethane. The authors compared the capital costs, energy efficiency, and ecological risks for this process with SC and concluded that noticeable benefits for energy saving, final ethylene price, and lower CO 2 emission could be achieved in O 2 -CL-ODH due to a higher product yield, reduction of temperature used, lower safety risks, absence of air separation and exothermic character of the process.…”
Section: Alkane Oxidative Dehydrogenationmentioning
confidence: 99%
“…10b). Significant effort was made 180 for the techno-economic analysis of O 2 -CL-ODH of ethane. The authors compared the capital costs, energy efficiency, and ecological risks for this process with SC and concluded that noticeable benefits for energy saving, final ethylene price, and lower CO 2 emission could be achieved in O 2 -CL-ODH due to a higher product yield, reduction of temperature used, lower safety risks, absence of air separation and exothermic character of the process.…”
Section: Alkane Oxidative Dehydrogenationmentioning
confidence: 99%
“…The use of renewable electricity significantly improved process sustainability, with emission compensation reaching up to 97%. It is important to note that 84,90] this approach does not consider CO 2 emissions during reactor manufacturing and other stages, more detailed analysis is required. Nevertheless, this approach provides insight into CO 2 emission compensation during the operational stage, and similar assessments can be conducted to evaluate the CO 2 compensation of other plasma-based CO 2 conversion processes.…”
Section: Electricity and Energy Supplymentioning
confidence: 99%
“…The characteristics of the OC play a key role in the performance of the CLHP process . The Ellingham diagram of the transition metal oxide system can be used to select a proper OC with a high H 2 O splitting ability.…”
Section: Introductionmentioning
confidence: 99%
“…The characteristics of the OC play a key role in the performance of the CLHP process. 18 The Ellingham diagram of the transition metal oxide system can be used to select a proper OC with a high H 2 O splitting ability. Iron-based OC is widely used in CLHP processes as a result of their high H 2 O splitting performance, high oxygen storage capacity (OSC), abundant raw materials, low price, and non-toxicity.…”
Section: Introductionmentioning
confidence: 99%