OPTIMIZATION OF RAWHIDE COLLAGEN DEFIBRILLIZATION PROCESS

A. Danylkovych, V. Lishchuk, O. Sanginova, A. Shakhnovsky
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Abstract

The paper features the rawhide collagen defibrillization process in the elastic leather materials manufacturing. Optimal colloid-chemical properties of semi-processed products were defined by way of using mathematical optimization of rowhide liming process. It was found that during the alkaline treatment of raw material (in the operating temperature range) the degree of defibrillation of raw material raises (in proportion to the derm collagen swelling) with increase in the ratio of process solution to the mass of raw material, and the extremum of hydrothermal stability and leather yield can be estimated. It was also shown that the degree of swelling decreases with a decreasing ratio of sodium sulphide and sodium hydrosulphide, and the leather area yield reaches the maximum value at the equal proportion of these reagents. Multicriteria optimization of rawhide liming process using the Harrington’s desirability function was carried out. The developed technology of soaking and liming was tested under production conditions. The above-mentioned low-waste technology provides elastic leather materials with a yield increase by 3.5%, which meet the industry standards requirements.
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生皮胶原蛋白去纤化工艺的优化
介绍了弹性皮革材料生产中生皮胶原蛋白的除纤工艺。采用数学优化的方法,确定了半加工产品的最佳胶体化学性能。研究发现,在原料碱性处理过程中(在操作温度范围内),随着工艺溶液与原料质量之比的增加,原料的除颤程度(与真皮胶原蛋白膨胀成正比)提高,水热稳定性和革产率的极值可以估计出来。结果表明,随着硫化钠与氢硫化钠用量比例的减小,溶胀程度减小,革面积产率在两种试剂用量比例相同时达到最大值。利用哈林顿期望函数对生皮石灰化工艺进行了多指标优化。在生产条件下对所开发的浸渍和石灰化工艺进行了试验。上述低废工艺提供的弹性皮革材料收率提高3.5%,符合行业标准要求。
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