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首页> 外文期刊>Journal of Cleaner Production >Management of total dissolved solids in tanning process through improved techniques
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Management of total dissolved solids in tanning process through improved techniques

机译:通过改进技术管理鞣制过程中的总溶解固体

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Pickling, one of the pre-tanning operations in leather processing, carried out for conditioning skins prior to tanning contributes to about 35% total dissolved solids (TDS) in the effluents. Treatment of TDS is a technological challenge. Treatment methodologies to combat TDS such as membrane separation have disadvantages of generating large quantities of solid sludge containing concentrated salts and they also suffer from operational difficulties. In-plant process control is necessary for combating TDS issues. In this paper, two approaches viz., recycle/reuse of pickle liquor for the subsequent batches as well as resorting to pickle free alum—chrome combination tanning systems have been studied. Pickle liquor from the first batch has been successfully recycled for subsequent batches with appropriate replenishments. The use of potash alum for the pH reduction process has been successfully employed in place of the conventional process. Significant levels of TDS reduction were observed through using both approaches. The strength property and organoleptic property assessments indicate that experimental leathers were comparable with those of leathers processed by the conventional process. It is believed that pickle liquor recycling and pickle free alum chrome combination tanning systems could be gainfully employed to overcome the environmental problems of TDS and chromium problems in the effluent and at the same time effectively obtain economic benefits.
机译:酸洗是皮革加工中的鞣制前操作之一,用于在鞣制之前对皮肤进行调理,这有助于废水中总溶解固体(TDS)的35%。 TDS的治疗是一项技术挑战。对抗TDS的处理方法,例如膜分离,具有产生大量含有浓盐的固体污泥的缺点,并且还存在操作困难。工厂过程控制对于解决TDS问题是必需的。本文研究了两种方法,即用于后续批次的腌制液的回收/再利用以及诉诸无腌制明矾-铬组合鞣制系统。第一批的腌制液已通过适当的补充成功地循环用于后续的各批次。已经成功地将钾矾用于pH降低过程中来代替常规过程。通过使用这两种方法,可以观察到显着水平的TDS降低。强度性能和感官性能评估表明,实验皮革与通过常规方法加工的皮革相当。可以认为,可以有效地利用腌制液再循环和无腌制的铝铬组合鞣制系统来克服TDS的环境问题和废水中的铬问题,同时有效地获得经济效益。

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