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Catalysts derived from waste sources in the production of biodiesel using waste cooking oil

机译:使用废食用油生产生物柴油过程中源自废源的催化剂

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摘要

Catalysts fully derived from waste materials in order to make sustainable chemical reactions have been a recent topic of interest. Calcined (900 °C, 2 h) calcium oxide (CaO)sourced from waste mud crab shells and cockleshells were mixed in a 1:1 mass ratio to be used for transesterification of waste cooking oil (WCO) at 5wt.% catalyst and a methanol to oil molar ratio of 13:1 for 3h at methanol refluxing temperature to give 98% conversion. Then, boiler ash (BA) from agricultural waste was used to transesterify WCO at 3 wt.% catalyst and a methanol to oil molar ratio of 15:1 for 0.5 h at methanol refluxing temperature to give 89% conversion. In order to reduce the reaction time (for CaO-catalyzed reaction) and to increase the conversion (for BA-catalyzed reaction) various amounts of BA were added to 5 wt.% of mixed CaO and optimized using Central Composite Design (CCD). The optimized conditions predicted by CCD were found to be 3.39 wt.% boiler ash, with a reaction time of 32.3 min and a conversion of 99.5%. The predicted results agree with the experimental results (3 wt.% boiler ash, reaction time of 30 min with 99% conversion).
机译:完全衍生自废料以进行可持续的化学反应的催化剂已成为近期引起关注的话题。将来自废泥蟹壳和海藻壳的煅烧(900°C,2小时)氧化钙(CaO)以1:1的质量比混合,用于以5wt。%的催化剂和一定比例的废食用油(WCO)进行酯交换。在甲醇回流温度下,甲醇与油的摩尔比为13:1持续3h,得到98%的转化率。然后,使用农业废料中的锅炉灰分(BA)在甲醇回流温度下以3 wt。%的催化剂和15:1的甲醇与油的摩尔比对WCO进行酯交换0.5小时,以产生89%的转化率。为了减少反应时间(对于CaO催化的反应)和增加转化率(对于BA催化的反应),将各种数量的BA添加到5 wt。%的混合CaO中,并使用Central Composite Design(CCD)进行了优化。由CCD预测的最优化条件为3.39重量%的锅炉灰分,反应时间为32.3分钟,转化率为99.5%。预测结果与实验结果一致(锅炉灰分3 wt。%,反应时间30分钟,转化率99%)。

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