Page 189 - 《精细化工》2021年第9期
P. 189
第 9 期 郭林新,等: 马桑皮植物鞣剂与铝盐结合鞣制性能及机理 ·1903·
稳定的交联,从而使得鞣制后皮革胶原纤维的酰胺 persimmon veneer and their antioxidation activit[J]. Fine Chemicals
A 带特征峰产生蓝移。鞣制后皮革胶原纤维变粗, (精细化工), 2015, 32(11): 1236-1242.
[12] DE H P, MERLE J, LABIDI J, et al. Tannins extraction: A key point
形成紧密的网状结构。 for their valorization and cleaner production[J]. Journal of Cleaner
(3)在鞣制过程中马桑皮植物鞣剂含有的水解 Production, 2019, 206: 1138-1155.
[13] GUO L X, QIANG T T, MA Y M, et al. Purification and
单宁中的酚羟基等结构可以与皮革胶原纤维中的氨 characterization of hydrolysable tannins extracted from Coriaria
基产生氢键交联作用;添加铝盐进行结合鞣制时, nepalensis bark using macroporous resin and their application in
铝盐中的铝离子与皮革胶原纤维中结合的单宁酚羟 gallic acid production[J]. Industrial Crops & Products, 2021, 162:
113302.
基产生络合,使交联作用增强,从而显著提高成革 [14] GUO L X, QIANG T T, MA Y M, et al. Optimisation of tannin
的机械性能和热稳定性能。 extraction from Coriaria nepalensis bark as a renewable resource for
use in tanning[J]. Industrial Crops & Products, 2020, 149: 112360.
参考文献: [15] SHI B (石碧), DI Y (狄莹). Plant polyphenol[M]. Beijing: Science
Press (科学出版社), 2000.
[1] PINTO P C R, SOUSA G, CRISPIM F, et al. Eucalyptus globulus [16] PENG W L (彭文利), ZHANG X L (张晓镭), WU Q X (吴清向).
bark as source of tannin extracts for application in leather industry[J]. Study on testing principle and method of the leather's fullness and
ACS Sustainable Chemistry & Engineering, 2013, 1(8): 950-955. softness[J]. China Leather (中国皮革), 2003, 32(9): 8-10.
[2] ZHANG J (张杰). Performance evaluation and application of tannin [17] LI J (李静), WANG Y N (王亚楠), SHI B (石碧). Application of
extract and compound nitrogen foam system plugging agent[J]. cationic polymeric textile fixing agents in color fixing of leather
Fault-Block Oil and Gas Field (断块油气田), 2012, 19(5): 642-645. (Ⅱ)[J]. Leather Science and Engineering (皮革科学与工程), 2018,
[3] FAN S Q (范圣茜), LUO W (骆微), ZHOU J F (周建飞), et al. 28(4): 44-49.
Hydrothermal synthesis of nano-TiO 2 using tannins as templates and [18] XU W (许伟), SHI S B (师少博), HAO L F (郝丽芬). Studies on
its adsorption performance for uranium[J]. Fine Chemicals (精细化 technology of chrome-free tanning for goat crust leather[J]. Journal
工), 2019, 36(8): 1650-1659. of Shaanxi University of Science & Technology (陕西科技大学学
[4] ZHONG X (钟鑫), ZHOU L (周雷), YUAN H (袁花), et al. 报), 2008, 26(6): 76-79.
Preparation of tannin-based phenol-amine chelating resin and its [19] DU K (杜凯), MA Y M (马养民), GUO L X (郭林新). Study on
adsorption for Cr(Ⅵ)[J]. Fine Chemicals (精细化工), 2021, 38(4): tanning of tannin extracts of almond skin with metal salt[J]. Applied
838-845. Chemical Industry (应用化工), 2020, 49(9): 2238-2241.
[5] ONEM E, GULUMSER G, RENNER M, et al. High pressure [20] DING W (丁伟), LIU H T (刘海腾), GAO L F (高凌峰), et al.
vegetable tanning of sheepskins using supercritical carbon dioxide[J]. Application of bio-based aldehyde tanning agent in retanning of
Journal of Supercritical Fluids, 2015, 104: 259-264. chrome tanned leather[J]. China Leather (中国皮革), 2021, 50(1):
[6] SIVAKUMAR V, GOPI K, HARIKRISHNAN M V, et al. Ultrasound 15-23.
assisted diffusion in vegetable tanning for leather processing[J]. [21] DANG X G, SHAN Z H, CHEN H. Biodegradable films based on
Journal of the American Leather Chemists Association, 2008, gelatin extracted from chrome leather scrap[J]. International Journal
103(10): 330-337. of Biological Macromolecules, 2018, 107: 1023-1029.
[7] QIANG T T, GAO X, REN J, et al. A chrome-free and chrome-less [22] IBBA F, PUPO G, THOMPSON A L, et al. Impact of multiple
tanning system based on the hyperbranched polymer[J]. ACS hydrogen bonds with fluoride on catalysis: Insight from NMR
Sustainable Chemistry & Engineering, 2016, 4(3): 701-707. spectroscopy[J]. Journal of the American Chemical Society, 2020,
[8] ZHANG L, ZHAO X Y, WANG C H, et al. A novel approach for 142(46): 19731-19744.
lightfast wet-white leather manufacture based on sulfone syntan- [23] ZHAO X, WANG X Z, JIANG X K, et al. Hydrazide-based
aluminum tanning agent combination tannage[J]. Journal of the quadruply hydrogen-bonded heterodimers. Structure, assembling
American Leather Chemists Association, 2018, 113(6): 192-197. selectivity, and supramolecular substitution[J]. Journal of the
[9] LUO J X, FENG Y J, SHAN Z H. Complex combination tannage American Chemical Society, 2003, 125(49): 15128-15139.
with phosphonium compounds, vegetable tannins and aluminum [24] QI H R (齐红蕊), ZHAO H B (赵鸿斌), LUO H A (罗和安), et al.
tanning agent[J]. Journal of the Society of Leather Technologists & Spectral study of meso-tetrakis (alkoxyphenyl) porphyrins and their
Chemists, 2011, 95(5): 215-220. metallic complexes[J]. Chinese Journal of Analytical Chemistry (分
[10] CHEN Z L (陈宗良), LI W X (李闻欣). Research progress in 析化学), 2004, 32(12): 1608-1612.
metal-organic combination tannage[J]. Leather and Chemicals (皮革 [25] HE X Q (何先祺), WANG Y L (王远亮). Mechanism of vegetable
与化工), 2008, 25(3): 13-18. aluminium combination tannage(Ⅴ), crosslinkages of polyphenol
[11] YANG Q Q (杨琼琼), LIU X M (刘雄民), LAI F (赖芳), et al. aluminium complexes onto carboxyl and amino compounds[J]. China
Optimization of ultrasonic-assisted extraction of tannin from Leather (中国皮革), 1996, 25(6): 15-19.