Suppr超能文献

用于评估游泳池处理方法和材料的实验室原型“豚鼠池”的开发。

Development of the laboratory prototype "CavyPool" for assessing treatments and materials for swimming pools.

作者信息

Valeriani F, Gianfranceschi G, Vitali M, Protano C, Romano Spica V

机构信息

Public Health Unit, University of Rome "Foro Italico", Rome, Italy.

Department of Public Health and Infectious Diseases, Sapienza University of Rome, Italy.

出版信息

Ann Ig. 2017 Nov-Dec;29(6):548-560. doi: 10.7416/ai.2017.2184.

Abstract

BACKGROUND

Hygiene and surveillance in swimming pools are established by WHO Guidelines and national laws. Progress in water management and pool construction is revolutionizing the field, introducing new materials, systems, disinfection procedures or monitoring markers. Innovation advances challenge the upgrading of safety and quality in pools and the appropriate implementation of guidelines.

STUDY DESIGN

In order to provide a device for laboratory test, a prototype was realized and applied to study and compare swimming pool materials and treatments.

METHODS

A pool scale-model was engineered and evaluated by computational fluid dynamics algorithms. An automated real time monitoring assured steady state. Critical control points along the water circuit were made accessible to allow the placing of different biocides or water sampling. Simulations were safely performed in a standard hood. Materials for pool surfaces and pipelines were evaluated for biofilm formation under different disinfection conditions. Adherent microorganisms were assayed by mfDNA analysis using real time PCR.

RESULTS

The prototype reached the steady state within 5-25 hours under different conditions, showing chemical, physical and fluid-dynamic stability. A method was optimized for testing materials showing their different response to biofilm induction. Several innovative PVC samples displayed highest resistance to bacterial adhesion.

CONCLUSIONS

A device and method was developed for testing swimming pool hygienic parameters in laboratory. It allowed to test materials for pools hygiene and maintenance, including biofilm formation. It can be applied to simulate contaminations under different water treatments or disinfection strategies. It may support technical decisions and help policymakers in acquiring evidences for comparing or validating innovative solutions.

摘要

背景

世界卫生组织指南和国家法律确立了游泳池的卫生与监测标准。水管理和泳池建设方面的进展正在彻底改变这一领域,引入了新材料、系统、消毒程序或监测指标。创新进步对泳池安全与质量的提升以及指南的恰当实施提出了挑战。

研究设计

为了提供一种实验室测试装置,制作了一个原型并将其应用于研究和比较游泳池材料及处理方法。

方法

设计了一个泳池比例模型,并通过计算流体动力学算法进行评估。自动实时监测确保了稳态。水回路中的关键控制点便于放置不同的杀菌剂或进行水样采集。模拟在标准通风橱中安全进行。评估了泳池表面和管道材料在不同消毒条件下的生物膜形成情况。使用实时聚合酶链反应通过宏基因组DNA分析对附着的微生物进行检测。

结果

该原型在不同条件下5 - 25小时内达到稳态,显示出化学、物理和流体动力学稳定性。优化了一种测试材料的方法,该方法显示出它们对生物膜诱导的不同反应。几种创新的聚氯乙烯样品对细菌黏附表现出最高抗性。

结论

开发了一种在实验室测试游泳池卫生参数的装置和方法。它能够测试泳池卫生和维护用材料,包括生物膜形成情况。它可用于模拟不同水处理或消毒策略下的污染情况。它可能支持技术决策,并帮助政策制定者获取证据以比较或验证创新解决方案。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验