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一维和二维微通道反应器技术在从热解生物油中分离杀虫和抗菌特性方面的应用。

Application of 1D and 2D MFR reactor technology for the isolation of insecticidal and anti-microbial properties from pyrolysis bio-oils.

作者信息

Hossain Mohammad M, Scott Ian M, Berruti Franco, Briens Cedric

机构信息

a Department of Chemical and Biochemical Engineering , Institute for Chemicals and Fuels from Alternative Resources (ICFAR), Faculty of Engineering, Western University , London , Ontario , Canada.

b Agriculture and Agri-Food Canada (AAFC) , London , Ontario , Canada.

出版信息

J Environ Sci Health B. 2016 Dec;51(12):860-867. doi: 10.1080/03601234.2016.1211908. Epub 2016 Aug 12.

Abstract

Valuable chemicals can be separated from agricultural residues by chemical or thermochemical processes. The application of pyrolysis has already been demonstrated as an efficient means to produce a liquid with a high concentration of desired product. The objective of this study was to apply an insect and microorganism bioassay-guided approach to separate and isolate pesticidal compounds from bio-oil produced through biomass pyrolysis. Tobacco leaf (Nicotianata bacum), tomato plant (Solanum lycopersicum), and spent coffee (Coffea arabica) grounds were pyrolyzed at 10°C/min from ambient to 565°C using the mechanically fluidized reactor (MFR). With one-dimensional (1D) MFR pyrolysis, the composition of the product vapors varied as the reactor temperature was raised allowing for the selection of the temperature range that corresponds to vapors with a high concentration of pesticidal properties. Further product separation was performed in a fractional condensation train, or 2D MFR pyrolysis, thus allowing for the separation of vapor components according to their condensation temperature. The 300-400°C tobacco and tomato bio-oil cuts from the 1D MFR showed the highest insecticidal and anti-microbial activity compared to the other bio-oil cuts. The 300-350 and 350-400°C bio-oil cuts produced by 2D MFR had the highest insecticidal activity when the bio-oil was collected from the 210°C condenser. The tobacco and tomato bio-oil had similar insecticidal activity (LC of 2.1 and 2.2 mg/mL) when the bio-oil was collected in the 210°C condenser from the 300-350°C reactor temperature gases. The 2D MFR does concentrate the pesticidal products compared to the 1D MFR and thus can reduce the need for further separation steps such as solvent extraction.

摘要

通过化学或热化学方法可以从农业残留物中分离出有价值的化学物质。热解的应用已被证明是生产高浓度所需产品液体的有效手段。本研究的目的是采用昆虫和微生物生物测定引导的方法,从生物质热解产生的生物油中分离和分离出农药化合物。使用机械流化床反应器(MFR),将烟叶(烟草)、番茄植株(番茄)和咖啡渣(阿拉伯咖啡)在10℃/min的速率下从环境温度热解至565℃。通过一维(1D)MFR热解,随着反应器温度升高,产物蒸汽的组成发生变化,从而可以选择对应于具有高农药性质蒸汽的温度范围。在分馏冷凝装置或二维MFR热解中进行进一步的产物分离,从而根据蒸汽的冷凝温度分离蒸汽成分。与其他生物油馏分相比,一维MFR中300-400℃的烟草和番茄生物油馏分表现出最高的杀虫和抗菌活性。当从210℃冷凝器收集生物油时,二维MFR产生的300-350℃和350-400℃生物油馏分具有最高的杀虫活性。当从300-350℃反应器温度的气体中在210℃冷凝器收集生物油时,烟草和番茄生物油具有相似的杀虫活性(LC为2.1和2.2mg/mL)。与一维MFR相比,二维MFR确实能浓缩农药产品,因此可以减少溶剂萃取等进一步分离步骤的需求。

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