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Prediction and Process Optimization of Bioscouring of Organic Cotton Fabrics through Specific Mixed Enzymatic System using Artificial Neural Network (ANN)

机译:人工神经网络(ANN)通过特定的混合酶系统预测有机棉织物的生物精练过程及工艺优化

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摘要

The objective is to develop an improved enzymatic cotton scouring process on the basis of a fast enzyme reaction to efficiently remove pectin and wax compounds from an organic cotton fabric by using a specific mixed enzymatic system. An attempt has been made to study the pectinolytic activity on the organic cotton fabric using four selective enzymes-alkaline pectinase, protease, lipase, and cellulose-and three process parameters-enzyme concentra tion, temperature, and reaction time. These process parameters are selected based on an artificial neural network (ANN) using the MATLAB 7.0 software, and the output of the experiment was described in terms of fabric physical properties-weight loss, water absorbency, wetting area, whiteness index, yellowness index, and brightness index. The bioscoured organic cotton fabric was tested for wax content and pectin degradation rate and the results were optimized with minimum error. The test results were ana lyzed to predict the optimum process parameters to achieve the required bioscouring fabric properties and the required level of pectin degradation rate, and were compared with the results of the actual trials. The performance of the specific mixed enzymatic system during bioscouring was assessed using ruthenium red dye test and FTIR (Fourier transform infrared spectroscopy) to confirm the degradation of pectin in the bioscoured organic cotton fabrics.
机译:目的是在快速酶反应的基础上开发改进的酶棉精练工艺,以通过使用特定的混合酶体系从有机棉织物中有效去除果胶和蜡化合物。已尝试使用四种选择性酶(碱性果胶酶,蛋白酶,脂肪酶和纤维素)以及三个工艺参数(酶浓度,温度和反应时间)研究有机棉织物上的果胶分解活性。使用MATLAB 7.0软件基于人工神经网络(ANN)选择这些工艺参数,并根据织物物理性能-失重,吸水率,润湿面积,白度指数,黄度指数,和亮度指数。测试了生物精练的有机棉织物的蜡含量和果胶降解率,并以最小的误差优化了结果。分析测试结果以预测最佳工艺参数,以实现所需的生物精练织物性能和所需的果胶降解率水平,并将其与实际试验的结果进行比较。使用钌红染料测试和FTIR(傅里叶变换红外光谱)评估了生物煮练过程中特定混合酶系统的性能,以确认果胶在生物煮练的有机棉织物中的降解。

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