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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Production and characterization of biopolyols and polyurethane foams from crude glycerol based liquefaction of soybean straw
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Production and characterization of biopolyols and polyurethane foams from crude glycerol based liquefaction of soybean straw

机译:大豆秸秆的粗甘油液化生产生物多元醇和聚氨酯泡沫的特性

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The feasibility of using crude glycerol to liquefy soybean straw for the production of biopolyols and polyurethane (PU) foams was investigated in this study. Liquefaction conditions of 240°C, >180min, 3% sulfuric acid loading, and 10-15% biomass loading were preferred for the production of biopolyols with promising material properties. Biopolyols produced under preferential conditions showed hydroxyl numbers from 440 to 540mg KOH/g, acid numbers below 5mg KOH/g, and viscosities from 16 to 45Pa.s. PU foams produced under preferential conditions showed densities from 0.033 to 0.037g/cm~3 and compressive strength from 148 to 227kPa. These results suggest that crude glycerol can be used as an alternative solvent for the liquefaction of lignocellulosic biomass such as soybean straw for the production of biopolyols and PU foams. The produced biopolyols and PU foams showed material properties comparable to their analogs from petroleum solvent based liquefaction processes.
机译:在这项研究中调查了使用粗甘油液化大豆秸秆生产生物多元醇和聚氨酯(PU)泡沫的可行性。对于生产具有良好材料性能的生物多元醇,优选使用240°C,> 180min,3%硫酸负载和10-15%生物量负载的液化条件。在优先条件下生产的生物多元醇的羟值为440至540mg KOH / g,酸值为5mg KOH / g以下,粘度为16至45Pa.s。在优先条件下生产的PU泡沫的密度为0.033至0.037g / cm〜3,抗压强度为148至227kPa。这些结果表明,粗甘油可用作木质纤维素纤维素生物质液化的替代溶剂,例如用于生产生物多元醇和PU泡沫的大豆秸秆。所生产的生物多元醇和PU泡沫材料的材料性能与石油溶剂基液化工艺的类似物相当。

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