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Production of UV-curable palm oil resins/oligomers usingudlaboratory scale and pilot scale systems

机译:使用 ud生产可紫外线固化的棕榈油树脂/低聚物实验室规模和中试规模系统

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摘要

In recent years, there are growing trends in using palm oil as raw materials in radiation curable resins production. In this study, the acrylated palm oil resins i.e. the EPOLA (epoxidized palm oil acrylate) and the POBUA (palm oil based urethane acrylate) were synthesized using two different systems, i.e. the 25 liter pilot scale reactor synthesis system and the 2 liter (L) laboratory scale reactor synthesis system through chemical processes known as acrylation and isocyanation. In this paper, the property of the acrylated resins which were produced by these two systems were evaluated and compared between each other. Their properties were characterized using the Fourier transform infrared (FTIR) spectrophotometer for functional group identification; the gel permeation chromatography (GPC) for molecular weight (Mw) determination, the Brookfield viscometer for viscosity measurements, the acid values (AV) and the oxirane oxygen contents (OOC) analysis. As a result, the production process for both the 2 L and 25 L reactor system were found to be time consuming and the main advantages for the 25 L reactor was its higher productivity as compared with the 2 L reactor system with the same synthesis process parameters i.e. the temperatures and the experimental methods. Besides that, the 25 L reactor synthesis process was found to be safe, easy to control and served unpolluted process to the environments. The final products, the acrylated palm oil resins were formulated into ultraviolet (UV) curable compounds before subjecting them under UV irradiation. As a result, the UV-curable palm oil resins showed potential uses as pressure sensitive adhesives, printing inks including overprint varnishes (OPV) and coatings.
机译:近年来,在放射线固化性树脂生产中使用棕榈油作为原料的趋势正在增长。在这项研究中,丙烯酸酯化的棕榈油树脂即EPOLA(环氧化棕榈油丙烯酸酯)和POBUA(棕榈油基聚氨酯丙烯酸酯)是使用两种不同的系统合成的,即25升中试规模反应器合成系统和2升L )实验室规模的反应器合成系统通过称为丙烯酸酯化和异氰酸酯化的化学过程合成。在本文中,评估并比较了这两种体系生产的丙烯酸酯树脂的性能。使用傅里叶变换红外(FTIR)分光光度计对官能团进行鉴定,以表征其性质;凝胶渗透色谱法(GPC)测定分子量(Mw),布鲁克菲尔德粘度计测定粘度,酸值(AV)和环氧乙烷氧含量(OOC)分析。结果,发现2 L和25 L反应器系统的生产过程都很耗时,并且25 L反应器的主要优点是与具有相同合成工艺参数的2 L反应器系统相比,其生产率更高即温度和实验方法。除此之外,还发现25 L反应器合成过程安全,易于控制,并且对环境没有污染。将最终产品丙烯酸酯化的棕榈油树脂配制成紫外线(UV)可固化的化合物,然后再进行紫外线照射。结果,可紫外线固化的棕榈油树脂显示出潜在用途,可作为压敏胶,包括套印清漆(OPV)的印刷油墨和涂料。

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