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Waste snail shell derived heterogeneous catalyst for biodiesel production by the transesterification of soybean oil

机译:废蜗牛壳衍生的大豆油酯交换反应生产生物柴油的非均相催化剂

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A waste snail shell ( Pila spp. ) derived catalyst was used to produce biodiesel from soybean oil at room temperature for the first time. The snail shell was calcined at different temperatures of 400–1000 °C. The synthesized catalysts underwent XRD, SEM, TEM, EDS, FTIR, XRF, TG/DTA and N _(2) adsorption–desorption isotherm (BET) analysis. The major component CaO was determined at a calcination temperature of 900 °C as depicted in the XRD results. 100% conversion of soybean oil to methyl ester biodiesel was obtained, as confirmed by ~(1) H NMR. A biodiesel yield of 98% was achieved under optimized reaction conditions such as a calcination temperature of 900 °C, a catalyst loading of 3 wt%, a reaction time of 7 h and a methanol to oil ratio of 6?:?1, and biodiesel conversion was confirmed by FT-NMR and IR spectroscopies. A total of 9 fatty acid methyl esters (FAMEs) were identified in the synthesized biodiesel by the retention time and fragmentation pattern data of GC-MS analysis. The catalyst was recycled 8 times without appreciable loss in its catalytic activity. A high biodiesel yield of 98% was obtained under these optimised conditions. The catalyst has the advantage of being a waste material, therefore it is easily prepared, cost free, highly efficient, biogenic, labor effective and environmentally friendly, making it a potential candidate as a green catalyst for low cost production of biodiesel at an industrial scale.
机译:首次使用蜗牛壳(Pila spp。)衍生的催化剂在室温下从大豆油中生产生物柴油。蜗牛壳在400–1000°C的不同温度下煅烧。对合成的催化剂进行了XRD,SEM,TEM,EDS,FTIR,XRF,TG / DTA和N _(2)吸附-解吸等温线(BET)分析。如XRD结果所示,在900℃的煅烧温度下测定了主要成分CaO。如〜(1)1 H NMR所证实,获得了大豆油向甲酯生物柴油的100%转化。在优化的反应条件下(例如煅烧温度为900°C,催化剂负载量为3 wt%,反应时间为7小时,甲醇与油的比例为6?:?1),生物柴油的收率为98%。通过FT-NMR和IR光谱证实了生物柴油的转化。通过GC-MS分析的保留时间和裂解模式数据,在合成的生物柴油中共鉴定出9种脂肪酸甲酯(FAME)。将该催化剂循环使用8次而其催化活性没有明显损失。在这些优化条件下获得了98%的高生物柴油收率。该催化剂具有作为废料的优点,因此易于制备,无成本,高效,生物成因,劳动有效且对环境友好,使其成为工业规模低成本生产生物柴油的绿色催化剂的潜在候选者。 。

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