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Modified graphene‐based materials as effective catalysts for transesterification of rapeseed oil to biodiesel fuel 被引量:6
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作者 Justina Gaidukevic Jurgis Barkauskas +4 位作者 Anna Malaika Paulina Rechnia-Goracy Aleksandra Mozdzynska Vitalija Jasulaitiene Mieczyslaw Kozlowski 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第10期1633-1645,共13页
Production of biodiesel by the transesterification process using different modified graphene‐based materials as catalysts was studied.Solid acid graphene‐based samples were prepared by grafting sulfonic or phosphate... Production of biodiesel by the transesterification process using different modified graphene‐based materials as catalysts was studied.Solid acid graphene‐based samples were prepared by grafting sulfonic or phosphate groups on the surface of thermally reduced graphene oxide.The obtained materials were thoroughly characterized using scanning electron microscopy,X‐ray diffraction,thermogravimetric analysis,X‐ray photoelectron spectroscopy,N2 adsorption‐desorption measurements,potentiometric titration,elemental analysis,and Fourier transform infrared spectroscopy.The prepared catalysts were tested in the transesterification of rapeseed oil with methanol at 130°C under pressure,and their activities were compared to the performance of a commercially available heterogeneous acidic catalyst,Amberlyst‐15.All modified samples were active in the transesterification process;however,significant differences were observed in the yield of biodiesel,depending on the method of catalyst preparation and strength of the acidic sites.The highest yield of fatty acid methyl esters of 70%was obtained for thermally reduced graphene oxide functionalized with 4‐benzenediazonium sulfonate after 6 h of processing,and this result was much higher than that obtained for the commercial catalyst Amberlyst‐15.The results of the reusability test were also promising. 展开更多
关键词 GRAPHENE Surface functionalization Acidic catalyst Sulfonic group TRANSESTERIFICATION BIODIESEL
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含Gemini表面活性剂的PVA分散液晶的微结构与性能 被引量:2
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作者 毕曙光 彭海炎 +3 位作者 廖永贵 杨亚江 Bogumil Brycki 解孝林 《高分子学报》 SCIE CAS CSCD 北大核心 2012年第6期628-632,共5页
采用N,N'-二(十二烷基)-N,N,N',N',N″-五甲基-1,4,7-三氮杂双碘化氨为Gemini表面活性剂,液晶为4-正戊基-4'-氰基联苯(5CB),通过微胶囊法制备了聚乙烯醇(PVA)分散液晶薄膜,着重研究Gemini表面活性剂对PVA分散液晶薄膜... 采用N,N'-二(十二烷基)-N,N,N',N',N″-五甲基-1,4,7-三氮杂双碘化氨为Gemini表面活性剂,液晶为4-正戊基-4'-氰基联苯(5CB),通过微胶囊法制备了聚乙烯醇(PVA)分散液晶薄膜,着重研究Gemini表面活性剂对PVA分散液晶薄膜的微结构、电光特性的影响.结果表明,加入Gemini表面活性剂仅略微增加了PVA与5CB液晶的相容性,PVA分散液晶仍保持较高的相分离程度,但是Gemini表面活性剂使液晶微滴尺寸明显变小,液晶相均匀分散地于PVA基体中,液晶指向矢构型由两极型变化为径向型,PVA分散液晶薄膜的对比度和响应速度明显提高,同时保持较低的驱动电压. 展开更多
关键词 聚合物分散液晶 GEMINI表面活性剂 微结构 电光特性
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