首页> 外文期刊>Chemical Engineering Science >Fabrication and characterization of novel hollow fiber catalytic packing of PFSA-PES-ZrO2 (shell)-TiO2 (core) solid superacid via wet-spinning method
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Fabrication and characterization of novel hollow fiber catalytic packing of PFSA-PES-ZrO2 (shell)-TiO2 (core) solid superacid via wet-spinning method

机译:湿纺法制备新型PFSA-PES-ZrO2(壳)-TiO2(核)固体超强酸中空纤维催化填料

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摘要

In this work, a novel hollow fiber catalytic packing (HFCP) was fabricated of ZrO2 (shell)/TiO2 (core) (12) solid superacid nanoparticles, perfluorinated sulfonic acid resin (PFSA) and polyethersulfone (PES) via wet-spinning method. TZ was a homemade binary solid superacid nanoparticles with core-shell structure using superfine titania (5 nm) as the core and mesoporous tetragonal phase zirconia as the shell. It was synthesized through the hydrolysis of zirconium oxychloride in the presence of titania nanoparticles and cetyltrimethylammonium bromide (CTAB) hexagonal crystals covered on the titania core and followed by calcination and acidification. HFCPs demonstrated well catalytic performance in the esterification test of ethanol and acetic add due to the superacid sites on the surface of TZ and PFSA polymer chain. And the superacid sites on the PFSA polymer chain could be sufficiently exposed by the embedding of the nanopartides. At the same time, HFCPs also showed ultrahigh recovery which was more than 99.5% in 6 runs because of the well integrality benefited from the wet-spinning method. The specific surface area (SSA) and pore size distribution were analyzed by N-2 adsorption-desorption, the result showed that the SSA of HFCPs decreased with the increasing of the PFSA additive amount. The SSA of the HFCP with the best catalytic performance could be up to 90.60 m(2)/g, in which the PFSA weight proportion was 13%. The XRD pattern and HRTEM image showed the HFCPs i.e. the zirconia shell of TZ formed uniform tetragonal phase. Other characterizations such as FT-IR, XPS, SEM and TEM were utilized to determine the chemical composition and morphology of the HFCPs and TZ, the results showed the novel catalytic packing was a suitable catalyst for the acid catalyzed reactions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,通过湿纺方法由ZrO2(壳)/ TiO2(核)(12)固体超强酸纳米颗粒,全氟磺酸树脂(PFSA)和聚醚砜(PES)制成了新型中空纤维催化填料(HFCP)。 TZ是一种自制的二元固体超强酸纳米粒子,具有核-壳结构,以超细二氧化钛(5 nm)为核,中孔四方相氧化锆为壳。它是通过在二氧化钛纳米粒子和十六烷基三甲基溴化铵(CTAB)覆盖在二氧化钛核心上的六方晶体存在下水解三氯氧化锆合成的,然后进行煅烧和酸化。由于TZ和PFSA聚合物链表面的超强酸位,HFCP在乙醇和乙酸的酯化试验中表现出良好的催化性能。 PFSA聚合物链上的超酸位点可以通过纳米粒子的嵌入而充分暴露。同时,HFCP还表现出超高的回收率,因为湿法纺丝技术具有很好的整体性,因此在6次运行中回收率超过99.5%。通过N-2吸附-解吸分析比表面积(SSA)和孔径分布,结果表明,随着PFSA添加量的增加,HFCPs的SSA降低。具有最佳催化性能的HFCP的SSA可能高达90.60 m(2)/ g,其中PFSA的重量比为13%。 XRD图谱和HRTEM图像显示HFCP,即TZ的氧化锆壳形成均匀的四方相。利用FT-IR,XPS,SEM和TEM等表征方法确定了HFCPs和TZ的化学组成和形貌,结果表明该新型催化填料是用于酸催化反应的合适催化剂。 (C)2016 Elsevier Ltd.保留所有权利。

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