循环冷却水系统阻垢剂的分离、合成及应用

Wei Zhao , Liuyang Shi , Xingbiao Wang , Yifan Han , Xiaoxia Zhang , Zhiyong Huang , Xiaojie Pan , Caigui Yang
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引用次数: 0

摘要

循环冷却水系统(CCWS)的运行会导致无机水垢沉积,从而导致传热效率降低和管道堵塞等技术问题。在工业中,化学品通常用作阻垢剂;然而,其中许多,如含磷和含氮化合物,可以促进富营养化。日益增长的环境问题和排放法规已将重点转向可生物降解、无毒和具有成本效益的阻垢剂。本研究旨在鉴定具有阻垢能力的菌株,为CCWS的治疗创造潜在的微生物制剂。通过分离、筛选和组合试验,研制出3株具有抑垢活性的复合微生物。采用10 L和100 L循环水动态反应装置优化处理CCWS的最佳菌种组合和配方。将研制的阻垢剂应用于某电厂持水量2800 m3的实际CCWS中,在实际应用中表现出比化学药剂更高效稳定的阻垢效果。本研究为在循环冷却水系统中采用生物处理技术提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The isolation, compound, and application of scale inhibition biological agents for treating recirculating cooling water system
The operation of circulating cooling water systems (CCWS) can lead to inorganic scale deposition, causing technical issues such as reduced heat transfer efficiency and pipe obstruction. In industry, chemicals are commonly used as scale inhibitors; however, many of these, such as phosphorus and nitrogen-containing compounds, can contribute to eutrophication. Growing environmental concerns and discharge regulations have shifted focus towards scale inhibitors that are biodegradable, non-toxic, and cost-effective. This study aimed to identify strains with scale inhibition capabilities to create a microbial agent for potential use for treating CCWS. Compound microorganism including three strains with scale inhibition activity was developed through isolation, screening and combination test. The 10 L and 100 L circulating water dynamic reaction device was used to optimize the best strain combination and formulation for CCWS treatment. The developed agent was applied in an actual CCWS at a power plant with a holding water volume of 2800 m3, and exhibited a more efficient and stable scale inhibition effect compared to chemical agents during practical application. This research contributes valuable insights for the adoption of biological treatment technologies in circulating cooling water systems.
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