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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Mitigation of scaling in heat exchangers by physical water treatment using zinc and tourmaline
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Mitigation of scaling in heat exchangers by physical water treatment using zinc and tourmaline

机译:通过使用锌和电气石的物理水处理减轻热交换器中的结垢

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摘要

This paper presents a study on the mitigation of calcium carbonate scaling in a double-pipe heat exchanger by physical water treatment (PWT) using zinc and tourmaline as catalytic materials. Artificially-hardened water at 300 mgL~(-1) was utilized as the fluid medium to form fouling deposits. The cooling water (i.e., hard water) velocity was varied from 0.3 to 0.8 ms~(-1). The inlet temperatures were maintained at 86 ± 1℃ and 22 ± 1℃ for hot- and cold-water sides, respectively. The results show that in PWT-treatment case, the fouling resistances are 13-50% lower than those in no-treatment case. The SEM image of the deposit shows a blunt shape crystal structure in case of PWT-treatment, while a pointed crystal structure in case of no-treatment. The calcium content of deposits formed in the cases of PWT-treatment is lower by 17-22% than those of the no-treatment, which corresponds to a thinner fouling in case of PWT-treatment.
机译:本文提出了一种通过使用锌和电气石作为催化材料的物理水处理(PWT)减轻双管式热交换器中碳酸钙结垢的研究。以300 mgL〜(-1)的人工硬化水作为流体介质形成积垢。冷却水(即硬水)的速度在0.3到0.8 ms〜(-1)之间变化。热水和冷水侧的入口温度分别保持在86±1℃和22±1℃。结果表明,在PWT处理的情况下,耐污垢性比未处理的情况低13-50%。在PWT处理的情况下,沉积物的SEM图像显示出钝的晶体结构,而在未处理的情况下则显示出尖锐的晶体结构。在PWT处理的情况下形成的沉积物的钙含量比未处理的沉积物的钙含量低17-22%,这对应于在PWT处理的情况下更薄的结垢。

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