乙烯
温室气体
乙醇燃料
化石燃料
化学
废物管理
环境科学
乙醇
生产(经济)
工程类
生物
有机化学
生态学
经济
宏观经济学
催化作用
作者
Pahola Thathiana Benavides,Ulises R. Gracida-Alvarez,Kirti Richa,Jennifer Port,Troy R. Hawkins
标识
DOI:10.1016/j.biortech.2025.132565
摘要
Conventional ethylene production heavily depends on fossil-derived feedstocks via steam cracking, a very energy- and emission-intensive process. Researchers have been exploring alternatives to reduce CO2emissions including producing ethylene from biobased feedstocks. This paper evaluates the cradle-to-gate greenhouse gas (GHG) emissions of bioethylene produced from U.S. corn ethanol. The analysis includes different pathways for the dehydration of corn ethanol to ethylene and co-processing routes via fluid catalytic cracking (FCC) processes. For the FCC co-processing route carbon-14 analysis is used to determine bioethanol yields. A 127% reduction in life cycle GHG emissions of bioethylene is estimated compared to fossil-derived ethylene for the base case. Additional case studies are also discussed to understand the reduction ofGHG emissionsdue tosustainable corn farming and renewable power use, biogenic carbon capture, and fuel switch with biofuels at the ethanol plant, and its impact on bioethylene GHG emissions.
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