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A process-level water conservation and pollution control performance evaluation tool of cleaner production technology in textile industry

机译:纺织工业清洁生产技术的过程级节水和污染控制绩效评估工具

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摘要

Industrial manufacturers are required to adopt water conservation and pollution control technologies because of increasingly serious water scarcity and water pollution, especially in textile industry. An effective performance evaluation tool for these technologies is greatly needed for textile manufacturers. However, the existing tools for textile industry can only evaluate on plant level and ignore pollution effect of water consumption. In order to help textile manufacturers know about water conservation and pollution control performance of technologies more systematically and comprehensively, we developed a process-level water conservation and pollution control performance evaluation tool of cleaner production technology in textile industry. The new tool includes three indicators: water withdrawal reduction, water consumption reduction and water assimilation reduction. Comparison between the new tool and old ones by evaluating the low-pollution-concentration effluent reuse technology in a polyester flannel fabric dyeing and printing plant demonstrates that the new tool can help textile manufacturers to not only understand operation mechanism of a technology on specific processes and then take specific improvement measures on different processes to optimize water conservation and pollution control performance, but also find out indiscoverable disadvantages of a technology and then adopt complementary technologies to reduce negative effect of the technology. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于越来越严重的缺水和水污染,特别是在纺织工业中,要求工业制造商采用节水和污染控制技术。纺织品制造商非常需要针对这些技术的有效性能评估工具。但是,现有的纺织工业工具只能在工厂级别进行评估,而忽略了用水的污染影响。为了帮助纺织品制造商更系统,更全面地了解技术的节水和污染控制性能,我们开发了一种过程级的清洁生产技术,用于纺织工业中的节水和污染控制性能评估工具。新工具包括三个指标:减少取水量,减少耗水量和减少同化水量。通过评估聚酯绒布染整厂的低污染废水回用技术,将新工具与旧工具进行了比较,结果表明,该新工具不仅可以帮助纺织制造商了解特定工艺上的技术运行机理,而且还可以帮助纺织制造商了解新技术。然后针对不同的过程采取具体的改进措施,以优化节水和污染控制的性能,同时找出技术中难以发现的缺点,然后采用互补技术以减少技术的负面影响。 (C)2016 Elsevier Ltd.保留所有权利。

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