A novel synthesis of zirconium tannate with high stability: new insight into the structure of the catalyst for hydrogenation
[Display omitted] •`We first synthesized a novel zirconium tannate (Zr-TA) catalyst by the reaction of tannic acid and ZrCl4 for the CTH reaction of FF to FA with the isopropanol.•Homogeneous zirconium tannate can be synthesized from heterogeneous tannic acid, which is conducive to the recovery and...
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Published in | Applied catalysis. A, General Vol. 602; p. 117666 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Amsterdam
Elsevier B.V
25.07.2020
Elsevier Science SA |
Subjects | |
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Abstract | [Display omitted]
•`We first synthesized a novel zirconium tannate (Zr-TA) catalyst by the reaction of tannic acid and ZrCl4 for the CTH reaction of FF to FA with the isopropanol.•Homogeneous zirconium tannate can be synthesized from heterogeneous tannic acid, which is conducive to the recovery and reuse of the catalyst.•The activity of the Zr-TA catalyst is hardly reduced after reused eight times.
With the increasing demand for fossil energy and carbon resources, improving the efficiency of fossil resource utilization and exploring new ways of carbon resource utilization have become the key issues facing social development. Here, we successfully synthesized zirconium tannate(Zr-TA) from tannic acid(TA) and zirconium tetrachloride(ZrCl4) for catalytic transfer hydrogenation(CTH) of furfural(FF) to furfurfuryl alcohol(FA) with 100 % conversion of FF and 98.2 % yield of FA at 120 °C for 80 min. The physical properties of the catalysts and the optimum conditions for hydrogenation reaction were explored through different characterization techniques and experiments. In addition, the Zr-TA could be recycled eight times without significant loss of activity and possible reaction mechanism were proposed. |
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AbstractList | With the increasing demand for fossil energy and carbon resources, improving the efficiency of fossil resource utilization and exploring new ways of carbon resource utilization have become the key issues facing social development. Here, we successfully synthesized zirconium tannate(Zr-TA) from tannic acid(TA) and zirconium tetrachloride(ZrCl4) for catalytic transfer hydrogenation(CTH) of furfural(FF) to furfurfuryl alcohol(FA) with 100 % conversion of FF and 98.2 % yield of FA at 120 °C for 80 min. The physical properties of the catalysts and the optimum conditions for hydrogenation reaction were explored through different characterization techniques and experiments. In addition, the Zr-TA could be recycled eight times without significant loss of activity and possible reaction mechanism were proposed. [Display omitted] •`We first synthesized a novel zirconium tannate (Zr-TA) catalyst by the reaction of tannic acid and ZrCl4 for the CTH reaction of FF to FA with the isopropanol.•Homogeneous zirconium tannate can be synthesized from heterogeneous tannic acid, which is conducive to the recovery and reuse of the catalyst.•The activity of the Zr-TA catalyst is hardly reduced after reused eight times. With the increasing demand for fossil energy and carbon resources, improving the efficiency of fossil resource utilization and exploring new ways of carbon resource utilization have become the key issues facing social development. Here, we successfully synthesized zirconium tannate(Zr-TA) from tannic acid(TA) and zirconium tetrachloride(ZrCl4) for catalytic transfer hydrogenation(CTH) of furfural(FF) to furfurfuryl alcohol(FA) with 100 % conversion of FF and 98.2 % yield of FA at 120 °C for 80 min. The physical properties of the catalysts and the optimum conditions for hydrogenation reaction were explored through different characterization techniques and experiments. In addition, the Zr-TA could be recycled eight times without significant loss of activity and possible reaction mechanism were proposed. |
ArticleNumber | 117666 |
Author | Hu, Aiyun Wang, Haijun Xu, Guangzhi Liu, Chen Wang, Shan |
Author_xml | – sequence: 1 givenname: Guangzhi surname: Xu fullname: Xu, Guangzhi – sequence: 2 givenname: Chen surname: Liu fullname: Liu, Chen – sequence: 3 givenname: Aiyun surname: Hu fullname: Hu, Aiyun – sequence: 4 givenname: Shan surname: Wang fullname: Wang, Shan – sequence: 5 givenname: Haijun orcidid: 0000-0003-2857-5861 surname: Wang fullname: Wang, Haijun email: wanghj329@hotmail.com |
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Keywords | Tannic acid Reaction mechanism Furfural Furfuryl alcohol Catalytic transfer hydrogenation |
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•`We first synthesized a novel zirconium tannate (Zr-TA) catalyst by the reaction of tannic acid and ZrCl4 for the CTH reaction of FF to FA... With the increasing demand for fossil energy and carbon resources, improving the efficiency of fossil resource utilization and exploring new ways of carbon... |
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SubjectTerms | Carbon Catalysts Catalytic transfer hydrogenation Energy conversion efficiency Furfural Furfuryl alcohol Hydrogenation Physical properties Reaction mechanism Reaction mechanisms Resource utilization Tannic acid Zirconium |
Title | A novel synthesis of zirconium tannate with high stability: new insight into the structure of the catalyst for hydrogenation |
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