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A review on microwave pyrolysis of lignocellulosic biomass

机译:微波热解木质纤维素生物质的研究进展

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This article briefly reviews the technique of lignocellulosic biomass pyrolysis by using microwave heating. Lignocellulosic biomass, such as crops, wood, agricultural and forestry residues, is a major biomass resource and has been recognized as a sustainable feedstock for the production of bioenergy and green materials. Microwave heating can be better than conventional heating because of various advantages. Hot spots, which form under microwave irradiation, would have significant influence on the yield and characteristics of microwave processing products. The solid products of microwave pyrolysis at proper microwave power levels can have high heating values and specific surface areas with higher gas and solid yields but lower liquid yield than conventional pyrolysis. By using microwave pyrolysis, almost half of lignocellulosic biomass can be converted into gas product, which is mainly composed of H 2 , CH 4 , CO, and CO 2 , with more bioenergy because of its high H 2 and CO yields. The addition of proper catalysts provides substantial influence on the product selectivity of microwave pyrolysis. The gas and liquid yields as well as the heating performance of microwave pyrolysis can be dramatically promoted by adding catalysts. The activation energy and pre-exponential factor of microwave pyrolysis are much lower than those of conventional pyrolysis, revealing that the reaction kinetics for the two methods could be different. According to various advantages, microwave pyrolysis of lignocellulosic biomass can be a promising bioenergy technique.
机译:本文简要回顾了利用微波加热木质纤维素生物质热解技术。木质纤维素生物质,例如农作物,木材,农业和林业残留物,是主要的生物质资源,已被公认为是生产生物能源和绿色材料的可持续原料。由于各种优点,微波加热可以比常规加热更好。在微波辐射下形成的热点将对微波加工产品的产量和特性产生重大影响。在适当的微波功率水平下,微波热解的固体产物可以具有较高的热值和比表面积,与常规热解相比,具有较高的气体和固体产率,但液体产率较低。通过微波热解,几乎一半的木质纤维素生物质可以转化为主要由H 2,CH 4,CO和CO 2组成的气体产物,由于其H 2和CO的高产率而具有更多的生物能。适当催化剂的添加对微波热解的产物选择性产生实质性影响。通过添加催化剂,可以显着提高气体和液体的产率以及微波热解的加热性能。微波热解的活化能和指数因子远低于常规热解,表明两种方法的反应动力学可能不同。根据各种优点,木质纤维素生物质的微波热解可以是有前途的生物能源技术。

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