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Improving Sorbents for Glycerol Capture in Biodiesel Refinement

机译:改善生物柴油精制中甘油捕获的吸附剂

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摘要

Biodiesel is produced by transesterification of animal fat, vegetable oil, or waste cooking oil with alcohol. After production costs, the economic viability of biodiesel is dependent on what steps are necessary to remove impurities following synthesis and the effectiveness of quality control analysis. Solid-phase extraction offers a potentially advantageous approach in biodiesel processing applications. Nanoporous scaffolds were investigated for adsorption of glycerol, a side product of biodiesel synthesis that is detrimental to engine combustion when present. Materials were synthesized with varying pore wall composition, including ethane and diethylbenzene bridging groups, and sulfonated to promote hydrogen bonding interactions with glycerol. Materials bearing sulfonate groups throughout the scaffold walls as well as those post-synthetically grafted onto the surfaces show notably superior performance for uptake of glycerol. The sorbents are effective when used in biodiesel mixtures, removing greater than 90% of glycerol from a biodiesel preparation.
机译:生物柴油是通过动物脂肪,植物油或废食用油与酒精的酯交换反应生产的。在扣除生产成本后,生物柴油的经济可行性取决于合成后去除杂质所需的步骤以及质量控制分析的有效性。固相萃取在生物柴油加工应用中提供了潜在的有利方法。研究了纳米孔支架对甘油的吸附,甘油是生物柴油合成的副产物,存在时对发动机的燃烧有害。合成了具有不同孔壁组成的材料,包括乙烷和二乙苯桥连基团,并对它们进行了磺化以促进与甘油的氢键相互作用。在整个支架壁上带有磺酸盐基团的材料以及合成后接枝到表面上的材料均表现出优异的甘油吸收性能。当用于生物柴油混合物中时,吸附剂有效,可从生物柴油制剂中去除大于90%的甘油。

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