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Implementation of batchwise bioscouring of cotton knits

机译:棉针织物分批生物精练的实施

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摘要

The examination of critical factors determining the performance of bioscouring showed that a short treatment of the fabric at greater than 80°C after pectinase treatment at 60°C was essential for removal of waxes from the fabric as demonstrated by diminished intensities of methylene peaks in FT-IR measurements. Batch-wise bioscouring of cotton knits was carried out several times with post-treatment at 80°C using a rapid dyeing machine. The dye-ability of bioscoured knits was as good as the company's alkaline scoured ones with slightly higher K/S values. Water pollution caused by effluents of bioscouring and alkaline processes were estimated, as well as that due to the input of chemicals and enzymes. Higher BOD:CODCr ratios for enzymes indicated their biodegradable character. After calculation of energy consumption using a simulation program, an economic evaluation of the two processes was done on the basis of one ton production by considering the costs of chemicals and enzyme, water usage, energy consumption and waste water treatment charge.
机译:对决定生物洗涤性能的关键因素的检查表明,在60°C下进行果胶酶处理后,在高于80°C的温度下对织物进行短时处理对于从织物上去除蜡是必不可少的,这可以通过FT中亚甲基峰强度的降低来证明。 -IR测量。使用快速染色机在80°C下进行后处理,对棉编织物进行分批生物精练。生物精练针织物的染色能力与公司的碱性精练针织物一样好,其K / S值略高。估算了由生物煮练和碱性过程产生的废水造成的水污染,以及由于化学品和酶的投入造成的水污染。酶的更高BOD:CODCr比值表明它们具有可生物降解的特性。在使用模拟程序计算能耗之后,在考虑到化学品和酶的成本,用水量,能耗和废水处理费用的基础上,以一吨生产为基础对这两个过程进行了经济评估。

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