首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Reducing pollution from the deliming-bating operation in a tannery. Wastewater reuse by microfiltration membranes
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Reducing pollution from the deliming-bating operation in a tannery. Wastewater reuse by microfiltration membranes

机译:减少制革厂脱灰操作的污染。通过微滤膜对废水进行再利用

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摘要

This paper presents experimental results from the implementation of two measures aimed at reducing the nitrogen concentration in a tannery wastewater. Specifically, this research has focused on the wastewater from the delim-ing/bating operations. The proposed measures are the replacement of ammonium salts by carbon dioxide in the deliming process and the reuse of wastewater and chemicals after membrane filtration of the deliming/bating liquor. The experimental study covered different wastewater pretreatment alternatives and experiments with two membranes (with different separation properties): one in the range of microfiltration (MF) and one in the range of the ultrafiltration (UF). Results of the pretreatment study indicated that neither settling nor protein precipitation were feasible. Only a security filtration prior to membrane filtration was recommended. The tested MF membrane was selected due to the higher flux (around 25 L/(m~2 h)) in comparison with the UF membrane. The MF permeate was successfully reused in the deliming/bating process. The delimed leather quality was excellent according to both visual and organoleptic inspection from process technicians and phenolphthalein test, confirming the technical feasibility of the proposal. Globally, the implementation of the above mentioned two measures resulted in 53% total nitrogen reduction.
机译:本文介绍了旨在降低制革废水中氮浓度的两种措施的实施结果。具体而言,这项研究集中于脱灰/软化操作产生的废水。拟议的措施是在脱灰过程中用二氧化碳代替铵盐,以及在对脱灰/软化液进行膜过滤后再利用废水和化学物质。实验研究涵盖了不同的废水预处理方案,并使用两种膜(具有不同的分离特性)进行了实验:一种在微滤(MF)范围内,另一种在超滤(UF)范围内。预处理研究的结果表明沉降和蛋白质沉淀均不可行。建议仅在膜过滤之前进行安全过滤。选择测试的MF膜是因为与UF膜相比,通量更高(约25 L /(m〜2 h))。 MF渗透物已成功地在脱灰/软化过程中重复使用。根据工艺技术人员的视觉和感官检查以及酚酞测试,脱胶后的皮革质量极佳,证实了该建议的技术可行性。在全球范围内,上述两项措施的实施使总氮减少了53%。

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