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Optimisation of tannin extraction from Coriaria nepalensis bark as a renewable resource for use in tanning

机译:优化心脏Nepaleensis Bark作为鞣制的人造资源

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摘要

Tannin as a renewable resource with the potential to play an increased role in the tanning of leather by the virtue of its low pollution and biodegradability. In this work, a valuable tannin resource was obtained from the Coriaria nepalensis bark (CNB), the extraction of tannin from CNB with sodium hydroxide was optimized by the Box-Behnken design response surface. The effects of extraction time, extraction temperature, liquid-solid ratio and sodium hydroxide concentration on the yield of CNB tannin were examined. Extracting the bark at 82 degrees C over 63 min with 0.22 % sodium hydroxide at a 23 mL g(-1) liquid-solid ratio, the CNB tannin extraction yield was 16.02 +/- 0.08 %. Nuclear magnetic resonance spectroscopy revealed that CNB tannin is a hydrolysable tannin that contains carbonyl, phenolic hydroxyl and glycosyl, with relative molecular weights between 424 Da and 1464 Da, as determined by gel permeation chromatography. CNB tannins were used to tan sheep skin, and the shrinkage temperature of the tanned leather was found to be 76.4 degrees C. Other physical properties, including elongation at break (75.8 %), tear strength (38.2 N mm(-1)) and tensile strength (6.1 MPa), were comparable to those achieved using commercial valonia tannin reagents. Scanning electron microscope and atomic force microscope revealed that CNB tannin penetrates into the collagen fibers of leather to provide stable cross-linking, resulting in firm and delicately grained surfaces.
机译:单宁作为可再生资源,潜力在皮革淡化的淡化中发挥着增加的作用,其缺乏的污染和生物降解性。在这项工作中,从Coriaria Nepalensis Bark(CNB)获得了有价值的单宁资源,通过箱形设计响应表面优化了来自CNB的CNB的单宁的提取。研究了提取时间,提取温度,液态比和氢氧化钠浓度对CNB单宁产量的影响。用0.22%氢氧化钠以23mL g(-1)液体 - 固体比例在82℃下将树皮提取63分钟,CNB单宁提取产率为16.02 +/- 0.08%。核磁共振光谱显示CNB Tannin是一种可水解的单宁,其含有羰基,酚羟基和糖基,424de和1464Da之间的相对分子量,如通过凝胶渗透色谱法测定。 CNB单宁用于棕褐色皮肤,发现鞣制皮革的收缩温度为76.4摄氏度。其他物理性质,包括断裂处的伸长(75.8%),撕裂强度(38.2nmm(-1))和拉伸强度(6.1MPa),与使用商业缬氨酸单宁试剂实现的抗拉强度相当。扫描电子显微镜和原子力显微镜显示CNB单宁穿入皮革的胶原纤维中以提供稳定的交联,导致坚固且粗糙的表面。

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