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首页> 外文期刊>Brazilian journal of chemical engineering >BIODIESEL SYNTHESIS FROM WASTE COOKING OIL USING A VARIETY OF WASTE MARBLE AS HETEROGENEOUS CATALYSTS
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BIODIESEL SYNTHESIS FROM WASTE COOKING OIL USING A VARIETY OF WASTE MARBLE AS HETEROGENEOUS CATALYSTS

机译:使用各种废物大理石作为异质催化剂,生物柴油从废物烹饪油中合成

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The research article is based on biodiesel synthesis by the transesterification of waste cooking oil with methanol in the presence of heterogeneous catalysts prepared from different marble.Eight samples of marble were successfully converted into potential catalysts by calcination.The thermal treatment of waste marbles at 300°C-1000°C converted the metal carbonates(CaCO3)to metal oxides(CaO).The calcined marble was analyzed by chemical tests,flame atomic absorption spectroscopy(FAAS),Fourier transform infrared spectroscopy(FT-IR),and X-ray diffraction studies(XRD).The presence of CaO in these catalysts made them highly reactive for biodiesel synthesis.The basicity and percentage of calcium in marble catalysts were calculated to know their basic strength.The transesterification was performed by fast stirring using waste cooking oil,methanol and nine different types of marble catalysts for 5 min at five different conditions,i.e.,room temperature,hot plate stirring,solar ordinary irradiations,solar concentrated reflected irradiations and solar concentrated refracted irradiations.The solid catalysts were easily separated from the product for re-use.All marble catalysts were found to be active and basic except one namely silver pun(I).The production of biodiesel was confirmed by ASTM standards,TLC examination and by gas chromatography(GC).
机译:该研究制品基于生物柴油通过在由不同大理石制备的异质催化剂存在的异质催化剂存在下,通过煅烧成功转化为潜在催化剂的异质催化剂的生物柴油。通过煅烧成功转化为潜在的催化剂。在300°的废物大理石的热处理C-1000℃C-1000℃将金属碳酸盐(Caco3)转化为金属氧化物(CAO)。通过化学试验分析煅烧的大理石,火焰原子吸收光谱(FAAS),傅里叶变换红外光谱(FT-IR)和X射线衍射研究(XRD)。在这些催化剂中的CaO存在使它们对生物柴油合成具有高度反应性。计算大理石催化剂中钙的碱度和百分比,以了解它们的基本强度。通过使用废物烹饪油快速搅拌进行酯交换,在五种不同的条件下甲醇和九种不同类型的大理石催化剂,即室温,热板搅拌,太阳普通辐射ONS,太阳浓缩反射照射和太阳浓缩折射照射。固体催化剂容易与产物分离,用于重新使用。发现所有大理石催化剂是活性的,除了一个即即银色双关(I)。生物柴油的生产是活性的。通过ASTM标准,TLC检查和气相色谱(GC)证实。

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