首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Biofuel production from distillers dried grains with solubles (DDGS) co-fed with waste agricultural plastic mulching films via microwave-assisted catalytic fast pyrolysis using microwave absorbent and hierarchical ZSM-5/ MCM-41 catalyst
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Biofuel production from distillers dried grains with solubles (DDGS) co-fed with waste agricultural plastic mulching films via microwave-assisted catalytic fast pyrolysis using microwave absorbent and hierarchical ZSM-5/ MCM-41 catalyst

机译:利用微波吸收剂和分级ZSM-5 / MCM-41催化剂,通过微波辅助催化快速热解,从酒糟与农用农用地膜覆盖物中蒸馏出干粮,生产生物燃料

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摘要

Microwave-assisted catalytic fast co-pyrolysis (co-MACFP) of distillers dried grains with solubles (DDGS) and waste agricultural plastic mulching films (WAPMFs) with SiC as microwave absorbent and hierarchical ZSM-5/MCM-41 as catalyst are implemented in a microwave-induced reactor. MCM-41 mesoporous structure is formed in hierarchical ZSM-5/MCM-41 catalyst as the outer shell layer coupled with ZSM-5 as the inside core. Experimental results show that the use of both microwave absorbent and hierarchical ZSM-5/MCM-41 catalyst significantly increase the carbon yield of hydrocarbons in bio-oil. The influence of co-MACFP temperature and the mass ratio of WAPMFs to DDGS (W/D ratio) on product distribution and hydrocarbon composition is investigated. The total liquid yield and total hydrocarbon carbon yield in bio-oil first increase with the augment of temperature from 500 to 650 degrees C, and then decrease when temperature continues to rise. Besides, a higher W/D ratio can favor bio-oil production and retard coke formation, and a significant synergy between DDGS and WAPMFs is observed during co-MACFP. Additionally, from the perspective of hydrocarbon carbon yield in bio-oil, W/D ratio of 1.0 is the best option.
机译:实施了以SiC为微波吸收剂和分级ZSM-5 / MCM-41为催化剂的酒糟与可溶物(DDGS)和废农用农用覆盖膜(WAPMF)的微波辅助催化快速共热解(co-MACFP)。微波感应反应堆。 MCM-41介孔结构在分层的ZSM-5 / MCM-41催化剂中形成为外壳层,并以ZSM-5作为内芯。实验结果表明,同时使用微波吸收剂和分级ZSM-5 / MCM-41催化剂可显着提高生物油中碳氢化合物的碳收率。研究了共MACFP温度和WAPF与DDGS的质量比(W / D比)对产物分布和烃组成的影响。随着温度从500到650摄氏度的升高,生物油中的总液体收率和总烃碳收率先增加,然后在温度继续升高时降低。此外,较高的W / D比可促进生物油的生产并延缓焦炭的形成,在共MACFP期间可观察到DDGS与WAPMF之间的显着协同作用。此外,从生物油中碳氢化合物的碳产率来看,W / D比为1.0是最佳选择。

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