Water and dialysis fluid purity for contemporary hemodialysis

重症监护医学 医学 透析 血液透析 持续性 水处理 经济短缺 环境规划 环境科学 外科 环境工程 生态学 生物 语言学 哲学 政府(语言学)
作者
Bernard Canaud,Rui Lucena,Richard Ward
出处
期刊:Seminars in Dialysis [Wiley]
被引量:4
标识
DOI:10.1111/sdi.13174
摘要

Abstract Introduction The purity of water and dialysis fluids is of utmost importance in ensuring the safe and effective administration of hemodialysis treatment to patients with chronic kidney disease. It is crucial to enforce compliance with international standards for dialysis water and fluids, as this is mandatory in reducing chemical hazards, mitigating the adverse effects of bioincompatibility resulting from contaminated water and ultimately enhancing long‐term patient outcomes. Standards and Risks Within this comprehensive review, we highlight the presence of water contaminants and thoroughly assess the existing international standards for dialysis water and fluids, spanning from pure to ultrapure. Additionally, we delve into the fundamental components of water purification and present a comprehensive range of water treatment options, encompassing pre‐treatment, primary treatment (reverse osmosis), and tertiary water treatment. Furthermore, we outline recommended monitoring and maintenance procedures, ensuring the consistent delivery of high‐quality water and dialysis fluids at the point of care. Water Purification and Monitoring Sustainability and Future Challenges Importantly, we raise concerns regarding the sustainability and conservation of water resources in hemodialysis treatment. It is imperative that these concerns be addressed in the future to avert the potential shortage of this essential resource. Conclusion In conclusion, the contemporary landscape of hemodialysis conditions has engendered an urgent necessity for advanced water treatment systems and optimized delivery of dialysis fluids. This review serves as a comprehensive update on the latest technological advancements aimed at meeting these critical demands. Dialysis water and fluids must adhere to increasingly stringent purity constraints, encompassing both biochemical and microbiological perspectives.

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