Techno-Economic Analysis and CO2 Emissions of the Bioethanol-to-Jet Fuel Process

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초록

A model for the bioethanol-to-jet fuel process, based on ethanol dehydration, ethylene oligomerization, and hydrogenation, was developed to analyze its techno-economics and CO2emissions. A reactor model of ethanol dehydration with estimated kinetic parameters and experimental data-driven reactor models for oligomerization and hydrogenation were used for the process simulator. The techno-economic analysis of the process using the developed model showed that the total production cost (TPC) surpassed the total capital investment, and the bioethanol price contributed the most (approximately 75%) toward TPC with a normalized sensitivity of 0.80. The minimum selling price was calculated to be 120 per barrel. However, the process was found to be environmentally friendly, exhibiting a negative value of net CO2emissions per unit mass of the product (-1.54 kg CO2equivalents/kg) after considering the biomass credit, indicating that CO2reduction was achievable. Further analysis demonstrated that the hydrogen production methods significantly influenced CO2emissions with a normalized sensitivity of 0.18.

키워드

bioethanol-to-jet fuelprocess modeltechno-economic analysisCO2 emissionsethanol dehydrationethylene oligomerizationhydrogenationETHANOL DEHYDRATIONETHYLENEOLIGOMERIZATIONADSORPTIONBIOMASSROUTES
제목
Techno-Economic Analysis and CO2 Emissions of the Bioethanol-to-Jet Fuel Process
저자
Park, HyeonChae, Ho-JeongSuh, Young WoongChung, Young-MinPark, Myung-June
DOI
10.1021/acssuschemeng.2c03853
발행일
2022-09
유형
Article; Early Access
저널명
ACS Sustainable Chemistry and Engineering
10
36
페이지
12016 ~ 12022