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Minimisation and recycling of spent acid wastes from galvanizing plants

机译:最大限度地减少和回收镀锌厂中的废酸废料

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The galvanizing process introduces environmental stresses from solid, liquid and air-borne emissions. Spent pickling acid represents the largest mass of such waste production, but its major constituent, iron chloride, could be used in the wastewater treatment industry to remove phosphate. A survey of the operational procedures adopted and the acid wastes produced by UK Galvanizers are reported. Various methods to produce spent acid of suitable composition have been investigated but elimination of zinc contamination of the acid was considered to be the only feasible method. Careful acid management is necessary to maintain low zinc levels, whilst substitution of titanium for mild steel jigs not only assists in reducing zinc in spent acid but also produces considerable savings in zinc carry-over on the jig. Application of the Kleingarn acid management system reduces waste volume, saves hydrochloric acid (HCl) and increases component throughput whilst, in conjunction with zinc elimination, could allow recycling of the majority of galvanizer's acid wastes. © 2004 Elsevier B.V. All rights reserved.
机译:镀锌工艺会导致固体,液体和空气传播的排放物对环境造成压力。废酸洗酸代表了此类废物产生的最大量,但其主要成分氯化铁可用于废水处理行业以去除磷酸盐。报告了对英国电镀厂采用的操作程序和产生的酸废料的调查。已经研究了各种制备合适组成的废酸的方法,但是消除酸的锌污染被认为是唯一可行的方法。为了保持低锌含量,必须谨慎地进行酸管理,同时用钛替代低碳钢夹具不仅有助于减少废酸中的锌,而且还可以节省大量锌残留在夹具上。 Kleingarn酸管理系统的应用减少了废料量,节省了盐酸(HCl)并提高了组件的产量,同时与消除锌相结合,可以回收大多数镀锌厂的酸废料。 &复制; 2004 Elsevier B.V.保留所有权利。

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