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姓名 林貞如(Chen-Ju Lin) 查詢紙本館藏 畢業系所 化學工程與材料工程學系 論文名稱
(Hydrogenolysis of Dimethyl Adipate to Hexanediol on Supported Copper and Supported Ruthenium Catalysts)相關論文 檔案 [Endnote RIS 格式] [Bibtex 格式] [相關文章] [文章引用] [完整記錄] [館藏目錄] 至系統瀏覽論文 ( 永不開放) 摘要(中) 聚己内酯具有良好的生物可降解性和生物相容性,廣泛應用於工業、醫療、包裝及環保材料。隨著生物醫學和環保的需求增加,聚己内酯的需求量也逐漸擴大。因此,聚己内酯為一種極具發展前景的化工產品。由於己內酯單體生產過程較複雜,且成本較高,因此在聚己内酯的生產過程多數廠商使用更為常見也易於生產的單體,進而導致現今市場上己內酯單體供應不足。
本研究擬開發一種生產己內酯的製程。其方法以己二酸二甲酯為原料,先透過脫甲醇形成6-羥基己酸甲酯,再脫甲醇合環成己內酯,所用的觸媒是銅-錳-鋁觸媒、釕-錫觸媒和釕-錫-鈷觸媒。摘要(英) Polycaprolactone has good biodegradability and biocompatibility and is widely used in industrial, medical, packaging and environmental protection materials. With the increasing demand for biomedical and environmental protection, the demand for polycaprolactone is gradually expanding. Therefore, polycaprolactone is a highly promising chemical product. Since the production process of caprolactone monomer is more complicated and costly, most manufacturers use more common and easy to produce monomers in the production of polycaprolactone, which leads to the short supply of caprolactone monomer in the market today.
In this study, we propose to develop a process for the production of caprolactone. The method is based on the formation of methyl 6-hydroxycaproate from dimethyl adipate by demethanolization, followed by demethanolization to form caprolactone using copper-manganese-aluminum, ruthenium-tin and ruthenium-tin-cobalt catalysts.關鍵字(中) ★ 聚己内酯
★ 氫解反應關鍵字(英) ★ DMA 論文目次 中文摘要 i
英文摘要 ii
誌謝 iv
目錄 v
圖目錄 viii
表目錄 x
第一章 緒論 1
第二章 文獻回顧與研究目標 3
2-1 己二酸二甲酯氫解反應 3
2-2 Cu-Mn/Al2O3觸媒 1
2-3 Ce-Cu-Mn/Al2O3觸媒 1
2-4 Ru-Sn觸媒 1
2-5 Ru-Sn-Co觸媒 1
2-6 觸媒製備方法 1
2-6-1 初濕含浸法 1
第三章 實驗內容 4
3-1 實驗藥品與儀器設備 4
3-2 觸媒製備 5
3-2-1 Cu-Mn-Al觸媒的改質 5
3-2-2 Ru-Sn觸媒的合成 5
3-2-3 Ru-Sn-Co觸媒的合成 5
3-3 儀器分析原理與樣品製備 6
3-3-1 儀器分析樣品製備 6
3-3-2 X-光繞射分析 (XRD) 7
3-3-3 氮氣吸附孔隙分析 (BET) 8
3-3-4 高解析掃描穿透式電子顯微鏡 (HRTEM)分析 9
3-3-5 熱重分析 (TGA) 10
3-4 反應設定 10
3-4-1 己二酸二甲酯氫解反應 10
第四章 結果與討論 12
4-1 Cu-Mn-Al觸媒對DMA氫解反應之影響 12
4-1-1觸媒表徵 12
4-1-1-1 XRD分析 12
4-1-1-2 HRTEM分析 13
4-1-1-3 TGA分析 15
4-1-2觸媒性能 16
4-1-3 結論 16
4-2 Ru-Sn觸媒之DMA氫解反應之影響 17
4-2-1 觸媒表徵 17
4-2-1-1 XRD分析 17
4-2-1-2 HRTEM分析 18
4-2-1-3 TGA分析 20
4-2-2 觸媒性能 20
4-2-3 結論 21
4-3 Ru-Sn-Co觸媒之DMA氫解反應之影響 21
4-3-1 觸媒表徵 21
4-3-1-1 XRD分析 21
4-3-1-2 HRTEM分析 24
4-3-1-3 TGA分析 25
4-3-2 觸媒性能 25
4-3-3 結論 26
第五章 結論 27
參考文獻 28參考文獻 Agrawal, C., & Ray, R. (2001). Biodegradable polymeric scaffolds for musculoskeletal tissue engineering. Journal of Biomedical Materials Research, 55(2), 141-150.
Gong, W., Wang, X., Ji, S., & Wang, H. (2022). Amorphous RuCoP Ultrafine Nanoparticles Supported on Carbon as Efficient Catalysts for Hydrogenation of Adipic Acid to 1,6-Hexanediol. Materials (Basel), 15(22). https://doi.org/10.3390/ma15228084
Ikada, Y., & Tsuji, H. (2000). Biodegradable polyesters for medical and ecological applications. Macromolecular Rapid Communications, 21(3), 117-132.
Kojima, Y.-u., Kotani, S., Sano, M., Suzuki, T., & Miyake, T. (2013). Hydrogenation of Dimethyl Adipate to 1,6-Hexanediol on Supported Rh–Sn Catalysts. Journal of the Japan Petroleum Institute, 56(3), 133-141. https://doi.org/10.1627/jpi.56.133
Li, X., Luo, J., & Liang, C. (2020). Hydrogenation of adipic acid to 1,6-hexanediol by supported bimetallic Ir-Re catalyst. Molecular Catalysis, 490. https://doi.org/10.1016/j.mcat.2020.110976
Paulsson, C., Nikkila, K., & Bjornberg, H. (2013). Production of 1,6-hexanediol.
Perego, C., & Villa, P. (1997). Catalyst preparation methods. Catalyst Today, 34(3-4), 281-305.
Santos, S. M., Silva, A. M., Jordão, E., & Fraga, M. A. (2004). Hydrogenation of dimethyl adipate over bimetallic catalysts. Catalysis Communications, 5(7), 377-381. https://doi.org/10.1016/j.catcom.2004.05.002
Tu, C.-C., Tsou, Y.-J., To, T. D., Chen, C.-H., Lee, J.-F., Huber, G. W., & Lin, Y.-C. (2019). Phyllosilicate-Derived CuNi/SiO2 Catalysts in the Selective Hydrogenation of Adipic Acid to 1,6-Hexanediol. ACS Sustainable Chemistry & Engineering, 7(21), 17872-17881. https://doi.org/10.1021/acssuschemeng.9b04418
李瑞祥, 蒋红斌, 陈华, & 李贤均 (2011). 1,6-己二酸二甲酯加氢制备1,6-己二醇的方法.指導教授 陳郁文(Yu-Wen Chen) 審核日期 2023-7-28 推文 facebook plurk twitter funp google live udn HD myshare reddit netvibes friend youpush delicious baidu 網路書籤 Google bookmarks del.icio.us hemidemi myshare