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Thermal properties of biopolyol from oil palm fruit fibre (OPFF) using solvolysis liquefaction technique

机译:使用溶剂液化技术从油棕水果纤维(OPFF)的杀菌阳性热性能

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Liquefaction is known to be an effective method for converting biomass into a biopolyol. The biomass liquefaction of oil palm fruit waste (PFW) in the presence of liquefaction solvent/polyhydric alcohol (PA): polyethylene glycol 400 (PEG400) using sulfuric acid as catalyst was studied. For all experiments, the liquefaction was conducted at 150°C and atmospheric pressure. The mass ratio of OPFW to liquefaction solvents used in all the experiments was, 1/3. Thermogravimetric analyses (TGA) were used to analyze their biopolyol and residue behaviors. It was found that thermal stability of oil palm mesocarp fibre (PM), oil palm shell (PS) and oil palm kernel (PK) fibre exhibited the first degradation of hard segment at (232, 104, 230°C) and the second degradation of soft segment at (314, 226, 412°C) as compared to PM, PS and PK residue which (229, 102, 227°C) of hard segment and (310, 219, 299°C) of segment, respectively. This behavior of thermal degradation of the hard segment and soft segment of biopolyol was changes after undergo solvolysis liquefaction process. The result analysis showed that the resulting biopolyol and its residue was suitable monomer for polyurethane (PU) synthesis for the production of PU foams.
机译:液化是已知的,用于将生物质转化为biopolyol的有效方法。的油棕榈果废物的生物质液化(PFW)在液化溶剂/多元醇(PA)的存在:使用硫酸作为催化剂的聚乙二醇400(PEG400)进行了研究。对于所有的实验中,将液化物在150℃和大气压力下进行的。液化的溶剂在所有实验中使用的OPFW的质量比为1/3。热重分析(TGA)来分析他们的biopolyol和残留的行为。据发现,油棕中果皮纤维(PM),油棕榈壳(PS)和油棕榈仁的热稳定性(PK)纤维表现出硬链段的第一降解在(232,104,230℃)和第二降解中的(314,226,412℃)相比,硬链段的PM,PS和PK残基,其(229,102,227℃)和(310,219,299°C)链段,分别软链段。硬链段的热降解和biopolyol的软段的这种行为是更改后进行溶剂解液化过程。结果分析表明,所得到的biopolyol及其残余物为聚氨酯(PU)合成用于制备PU泡沫的合适的单体。

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