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Effect of Ion migration of Multiple Copper-zinc Alloy on the Crystal Structure of Calcium Carbonate Scale

机译:多铜锌合金离子迁移对碳酸钙晶晶晶体结构的影响

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Multiple copper-zinc alloy was used to treat water in order to restrict the formation of hard scale during heating process. Trace amounts of metal ions were dissolved from the alloy under the action of tiny battery corrosion, which took part in the crystallization of calcium carbonate crystal. The ion migration rules and its effect on the crystal structure of water scale were studied. The ICP test results show that after immersion in the water for 20 min, the zinc ion concentration increased to 0.35mg·L{sup}(-1) compared with contrast group. The simulating experiment of the scale crystal growth demonstrated that the calcium carbonate scale after treated with the alloy showed a transformation from calcite to aragonite, and the ratio of calcite to aragonite changed from 1:0.125 to 1:2.30. Meanwhile, the heat transfer efficiency was increased to 2.19%.
机译:使用多种铜锌合金来处理水以限制加热过程中的耐垢的形成。在微小电池腐蚀的作用下,散射量的金属离子从合金中溶解,这取决于碳酸钙晶体的结晶。研究了离子迁移规则及其对水垢晶体结构的影响。 ICP测试结果表明,与对比度组相比,浸入水中20分钟后,锌离子浓度增加至0.35mg·l {sup}( - 1)。刻度晶体生长的模拟实验表明,用合金处理后的碳酸钙尺度显示从方解石对化石转化,方解石与金属石的比例从1:0.125变为1:2.30。同时,传热效率增加到2.19%。

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