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Hard porous chromium containing macrospheres as new catalysts for the esterification reaction of acetic acid with epichlorohydrin

机译:含硬质多孔铬的大球体作为乙酸与环氧氯丙烷酯化反应的新催化剂

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This paper reports a systematic study on the preparation, characterization and testing of metallosilicate macrobeads that contain chromium ions as active catalytic centers. In order to obtain hard macrospheres, four metals (Cr, Al, Zr and Zn) were incorporated into the silica matrix using chitosan as a template and shape generator. Metallosilicate macrospheres were synthesized at room temperature using tetraethylorthosilicate as silicon source and chlorohydric acid as catalyst. The size of metallosilicate macrospheres was in the range 0.9 – 1.1 mm. The catalyst was characterised by means of water sorption technique, FTIR spectroscopy and SEM/EDX analyses. FTIR spectra put into evidence the presence of metallic ions within the silica framework. EDX analyses confirmed the efficient incorporation of metals within the silica matrix (the content of metals from the calcined catalyst is almost the same as that from the initial gel mixture). Porous structure of catalyst investigated by water sorption technique and by pycnometric methods (with n-heptan and mercury respectively) proved that the synthesized catalyst had micro, meso and macropores. Catalyst was tested in the esterification reaction of acetic acid with epichlorohydrin. The temperature and the amount of catalyst exerted a marked influence on reaction rate. This work opens new perspectives for heterogeneous catalysis encouraging the replacement of powder catalysts with macrospherical catalysts that are easy to recover and to reuse.
机译:本文对含铬离子作为活性催化中心的金属硅酸盐大珠的制备,表征和测试进行了系统的研究。为了获得坚硬的大球体,以壳聚糖为模板和形状发生剂,将四种金属(Cr,Al,Zr和Zn)掺入二氧化硅基质中。在室温下以原硅酸四乙酯为硅源,氯酸为催化剂合成金属硅酸盐大球。金属硅酸盐大球的尺寸范围为0.9 – 1.1 mm。通过吸水技术,FTIR光谱和SEM / EDX分析对催化剂进行了表征。 FTIR光谱证明了二氧化硅骨架内存在金属离子。 EDX分析证实,金属可以有效地掺入二氧化硅基质中(煅烧催化剂中的金属含量与初始凝胶混合物中的金属含量几乎相同)。通过吸水技术和比重法研究了催化剂的多孔结构(分别用正庚烷和汞),证明该催化剂具有微孔,中孔和大孔。在乙酸与表氯醇的酯化反应中测试了催化剂。温度和催化剂量对反应速率有显着影响。这项工作为非均相催化开辟了新的前景,鼓励用易于回收和再利用的大球形催化剂替代粉末催化剂。

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