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Using catalyst and electrolysis diaphragm method to produce multiple oxidants to remove the scaling and slime in cooling system

机译:使用催化剂和电解隔膜法产生多种氧化剂,以除去冷却系统中的缩放和粘液

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Increasing cycle of water circulation in industrial cooling water system caused accumulation of dissolving materials in circulating water. Subsequently, the problems including scaling, fouling, corrosion and slime occurred. The multiple oxidants including chlorine dioxide, ozone, peroxide hydrogen, and chlorine were prepared using diaphragm electrolysis method to alleviate the problems above in the cooling system. Meanwhile multiple oxidants can also inhibit the accumulation of biological dirt and erosion effectively. The efficiency of multiple oxidants to inhibit precipitation of magnesium carbonate and calcium carbonate can be increased by adjustment of pH value in the whole pipeline system to reduce corrosion rate of the pipeline and to achieve energy-water saving goal. The results showed that the high efficiency of chlorine dioxide mixture was an excellent bio-corrosion inhibitor and bio-accumulation bactericide. The residue concentration of mixture oxidants are at the range of 0.05~0.25 mg ClO{sub}2/L that is high enough to restrain the growth of micro-organisms.
机译:产业冷却水系统中水循环循环的增加导致溶解材料在循环水中的积累。随后,发生了包括缩放,污垢,腐蚀和粘液的问题。使用隔膜电解方法制备包括二氧化氯,臭氧,过氧化物氢和氯等多种氧化剂,以减轻冷却系统中的上述问题。同时,多种氧化剂还可以有效地抑制生物污垢和侵蚀的积累。通过调整整个管道系统中的pH值,可以增加多种氧化剂以抑制碳酸镁和碳酸钙沉淀的效率,以减少管道的腐蚀速率并实现节能目标。结果表明,二氧化氯混合物的高效率是优异的生物腐蚀抑制剂和生物积累杀菌剂。混合物氧化剂的残余浓度为0.05〜0.25mg ClO {sub} 2 / L的范围,足以抑制微生物的生长。

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