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首页> 外文期刊>International journal of hydrogen energy >Electrolytically generated silver and copper ions to treat cooling water: an environmentally friendly novel alternative
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Electrolytically generated silver and copper ions to treat cooling water: an environmentally friendly novel alternative

机译:电解生成的银和铜离子用于处理冷却水:一种环保的新型替代品

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The effect of electrolytically generated silver and copper ions on the abatement of iron-related bacteria, sulfate-reducing bacteria, slime-forming and coliform bacteria in the cooling systems was investigated in this work. These bacteria, commonly found in cooling tower systems, are usually controlled with chlorine. The effect of chlorine and its combination with these ions was also studied on the microbiology of the water. Silver/copper/chlorine concentration relationships (1.2 mg l~(-1) silver/0.6 mg l~(-1) copper/0.0 mg l~(-1) chlorine and 0.2 mg l~(-1) silver/1.2 mg l~(-1) copper/0.3 mg l~(-1) chlorine) proved to be good alternatives to replace or decrease appreciably the chlorine consumption in the cooling systems using relatively low concentrations of silver and copper with a minimum environmental impact. These relationships established a very effective treatment with 99% of control for the iron-related bacteria, sulfate-reducing bacteria and slime-forming bacteria abating more than 99% of such bacteria. Chlorine concentrations of 1.0 and 3.0 mg l~(-1) decreased more than 90% of some of the iron-related bacteria population. These systems have shown to decrease the aggressiveness of bacteria population that promote microbiologically influenced corrosion and biofilm formation to levels that compete with the traditional water treatment of cooling water. Coliform bacteria were also reduced below the levels accepted by the Mexican Official Norm.
机译:在这项工作中,研究了电解产生的银和铜离子对冷却系统中铁相关细菌,硫酸盐还原细菌,粘液形成细菌和大肠菌细菌消减的影响。这些细菌通常在冷却塔系统中发现,通常用氯控制。还研究了氯及其与这些离子的结合对水的微生物学的影响。银/铜/氯浓度关系(1.2 mg l〜(-1)银/0.6 mg l〜(-1)铜/0.0 mg l〜(-1)氯和0.2 mg l〜(-1)银/1.2 mg l〜(-1)铜/0.3 mg l〜(-1)氯被证明是替代或减少使用相对较低浓度的银和铜的冷却系统中的氯消耗的良好替代品,对环境的影响最小。这些关系建立了非常有效的治疗方法,控制了99%的铁相关细菌,硫酸盐还原细菌和形成粘液的细菌,这些细菌减少了99%以上。 1.0和3.0 mg l〜(-1)的氯浓度使部分铁相关细菌种群减少了90%以上。这些系统已显示出可降低细菌种群的侵略性,而细菌种群的侵略性可促进受微生物影响的腐蚀和生物膜形成,其水平可与传统的冷却水水处理竞争。大肠菌也减少到墨西哥官方标准所接受的水平以下。

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