首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Value-added use of residual glycerol from biodiesel production process via the optimized synthesis of alkyd resins
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Value-added use of residual glycerol from biodiesel production process via the optimized synthesis of alkyd resins

机译:通过优化的醇酸树脂的优化合成来自生物柴油生产过程的增值甘油

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Current research work describes the value-added use of residual glycerol from biodiesel production process via the optimized synthesis of alkyd resins. Response surface methodology based on central composite response surface design was used for the optimization of alkyd resins synthesis. Various reaction parameters including phthalic anhydride to oil molar ratio, catalyst concentration, reaction temperature, reaction time and rate of stirring were optimized to obtain the optimum yield of alkyd resin by using alcoholysis-polyesterification method. The optimized reaction parameters to obtain the highest alkyd resin yield (84%) were depicted to be 0.4:1 molar ratio (phthalic anhydride to oil), 0.6% catalyst concentration, 250 degrees C reaction temperature, 7.5 h reaction time and 650 rpm rate of stirring. Elucidation of the chemical structure of alkyd resin was done through FT-IR analysis which confirmed the presence of ester links and aromatic C=C which resulted from polymerization reaction. Physico-chemical properties, chemical resistance and adhesive properties of synthesized alkyd resins were also evaluated which depicted that the resin films were highly resistant to brine, water and acid. These results ascertained technical compatibility of the synthesized alkyd resin for potential uses comparable to standard alkyd resins with additional eco-friendly benefits due to its biodegradability and biocompatible nature. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:目前的研究工作描述了通过优化的醇酸树脂的优化合成来自生物柴油生产过程的剩余甘油的增值使用。基于中央复合响应表面设计的响应面方法用于醇酸树脂合成的优化。优化包括邻苯二甲酸酐,催化剂浓度,反应温度,反应时间和搅拌速率的各种反应参数被优化,通过使用醇解 - 聚酯化方法获得醇酸树脂的最佳产率。获得最高醇酸树脂产率(84%)的优化反应参数被描绘为0.4:1摩尔比(邻苯二甲酸酐至油),0.6%催化剂浓度,250℃反应温度,7.5小时反应时间和650rpm速率搅拌。通过FT-IR分析阐明醇酸树脂的化学结构,通过FT-IR分析来确认由聚合反应产生的酯链路和芳族C = C的存在。还评估了合成醇酸树脂的物理化学性质,耐化学性和粘合性能,描绘了树脂薄膜对盐水,水和酸具有高抗性。这些结果确定了合成的醇酸树脂的技术兼容性,用于潜在用途与标准醇酸树脂相当,由于其生物降解性和生物相容性的性质,具有额外的生态友好益处。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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