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Hydroxyl carboxylate based non-phosphorus corrosion inhibition process for reclaimed water pipeline and downstream recirculating cooling water system

机译:再生水管道及下游循环冷却水系统中基于羟基羧酸盐的无磷缓蚀工艺

摘要

A combined process was developed to inhibit the corrosion both in the pipeline of reclaimed water supplies (PRWS) and in downstream recirculating cooling water systems (RCWS) using the reclaimed water as makeup. Hydroxyl carboxylate-based corrosion inhibitors (e. g., gluconate, citrate, tartrate) and zinc sulfate heptahydrate, which provided Zn2+ as a synergistic corrosion inhibition additive, were added prior to the PRWS when the phosphate (which could be utilized as a corrosion inhibitor) content in the reclaimed water was below 1.7 mg/L, and no additional corrosion inhibitors were required for the downstream RCWS. Satisfactory corrosion inhibition was achieved even if the RCWS was operated under the condition of high numbers of concentration cycles. The corrosion inhibition requirement was also met by the appropriate combination of PO43- and Zn2+ when the phosphate content in the reclaimed water was more than 1.7 mg/L. The process integrated not only water reclamation and reuse, and the operation of a highly concentrated RCWS, but also the comprehensive utilization of phosphate in reclaimed water and the application of non-phosphorus corrosion inhibitors. The proposed process reduced the operating cost of the PRWS and the RCWS, and lowered the environmental hazard caused by the excessive discharge of phosphate. Furthermore, larger amounts of water resources could be conserved as a result. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:开发了一种组合工艺,以使用再生水作为补充剂来抑制再生水供应(PRWS)的管道和下游循环冷却水系统(RCWS)中的腐蚀。在PRWS之前,当磷酸盐(可用作腐蚀抑制剂)的含量增加时,添加基于羟基羧酸盐的腐蚀抑制剂(例如,葡萄糖酸盐,柠檬酸盐,酒石酸盐)和七水合硫酸锌,以提供Zn2 +作为协同腐蚀抑制剂。再生水中的水含量低于1.7 mg / L,下游RCWS不需要其他腐蚀抑制剂。即使在高浓度循环次数下操作RCWS,也能达到令人满意的腐蚀抑制效果。当再生水中的磷酸盐含量大于1.7 mg / L时,通过适当组合PO43-和Zn2 +也可以满足腐蚀抑制要求。该工艺不仅集水回收和再利用,高浓度RCWS的运行于一体,而且还综合了再生水中磷酸盐的综合利用和无磷腐蚀抑制剂的应用。拟议的流程降低了PRWS和RCWS的运营成本,并降低了磷酸盐过多排放所造成的环境危害。此外,结果可以节省大量的水资源。 (C)2015中国科学院生态环境研究中心。由Elsevier B.V.发布

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