废物管理
二氧化碳
碳纤维
环境科学
材料科学
化学
工程类
有机化学
复合数
复合材料
作者
Pravin Kannan,G. Lakshmanan,Ahmed Al Shoaibi,C. Srinivasakannan
标识
DOI:10.1177/0734242x17736946
摘要
Utilization of carbon dioxide (CO 2 ) in thermochemical treatment of waste plastics may significantly help to improve CO 2 recycling, thus simultaneously curtailing dioxins/furans and CO 2 emissions. Although CO 2 is not such an effective gasifying agent as steam, a few investigations have explored the utilization of CO 2 in conjunction with steam to achieve somewhat higher carbon conversion. This work presents a comparative evaluation study of CO 2 and steam gasification of a typical post-consumer waste plastics mixture using an Aspen Plus equilibrium model. The effect of flow rate of gasifying medium (CO 2 and/or steam) and gasification temperature on product gas composition, carbon conversion, and cold gas efficiency has been analyzed. Simulation results demonstrate that CO 2 can serve as a potential gasifying agent for waste plastics gasification. The resulting product gas was rich in CO whereas CO 2 –steam blends yield a wider H 2 /CO ratio, thus extending the applications of the product gas.
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