李相呈

发布时间:2025.10.31 11:12

李相呈

副研究员、硕士导师

基本情况

出生年月:1991.10

最高学位:博士

工作单位:中石化(上海)石油化工研究院有限公司

工作地址:上海市浦东新区浦东北路1600599

Email: lixch.sshy@sinopec.com

教育及工作经历

2021.12 – 至今    中石化(上海)石油化工研究院有限公司副研究员

2018.06            毕业于华东理工大学,工业催化专业,博士

学术兼职

研究领域及主要成果

长期从事生物化工领域研究工作:研究方向为1生物基化学品与材料(生物基二元酸、二元醇等);2多相催化(分子筛、酸催化、加氢等)。迄今为止在Chinese Journal of CatalysisIndustrial & Engineering Chemistry ResearchJournal of CatalysisMicroporous and Mesoporous Materials等期刊发表论文SCI 9篇,中国发明专利10项。

主持科研项目

[1]中国石化科技项目生物基对二甲苯合成研究1100万元,2022–2024年,主持,结题

[2]中国石化重点实验室项目SCM-14分子筛催化应用开发1800万元,2022–2023年,主持,结题

[3] 2023年度“上海市青年科技英才扬帆计划”Sn-MWW分子筛催化2,5-己二酮与乙烯制生物基对二甲苯反应的构-效关系和机理研究20万元,2023–2026年,主持,在研

获奖情况

无。

代表性论文、专著和专利等(不超过10项)

  1. Xiangcheng Li. Efficient hydrogenolysis of 5-hydroxymethylfurfural to 2,5-dimethylfuran over Ni-C3N4catalysts with ultra-low Ni loading. Chinese Journal of Catalysis.2024.

  2. Xiangcheng Li. Highly Selective Production of the Biobased Polymeric Monomer Tetrahydrofuran-2,5-dimethanol from 5-Hydorxymethylfurfural over the Ni@U-Silicalite-1 Catalyst.Industrial & Engineering Chemistry Research.2023.

  3. Xiangcheng Li. Ni-Supported Germanosilicate Zeolite SCM-14 for Efficient Hydrogenolysis of 5-Hydroxymethylfurfural to 2,5-Dimethylfuran.Industrial & Engineering Chemistry Research.2024.

  4. Xiangcheng Li. Production of Renewable p‑Xylene from 2,5-Dimethylfuran and Ethylene over MWW Zeolite Catalysts.Industrial & Engineering Chemistry Research.2024.

  5. Xiangcheng Li. Catalytic production of c-valerolactone from xylose over delaminated Zr-Al-SCM-1 zeolite via a cascade process. Journal of Catalysis. 2020.

  6. Xiangcheng Li. Postsynthesis of Delaminated MWW-Type Stannosilicate as a Robust Catalyst for Sugar Conversion to Methyl Lactate.Industrial & Engineering Chemistry Research.2021.

  7. Xiangcheng Li. SCM-36 zeolite nanosheets applied in the production of renewable p-xylene from ethylene and 2,5-dimethylfuran. Chinese Journal of Catalysis. 2023.

  8. Xiangcheng Li. SCM-39, the direct synthesized ATS aluminosilicate zeolite as a promising solid acid catalyst. Microporous and Mesoporous Materials. 2021.

  9. Xiangcheng Li. Hydrothermally stable ITH-type zeolite directed by a simple nonquaternary ammonium pyrrolidine derivative: Synthesis, characterization and catalytic performance. Microporous and Mesoporous Materials.2021.



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