Yuanlian Zhao, Jie Yang, Anchan Zhou, 等. Design and Operation of Water Treatment System for Central Sterile Supply Department Based on Energy Conservation and Consumption Reduction[J]. 消毒供应, 2024,3(2):93-100.
Zhao Yuanlian,Yang Jie,Zhou Anchan,et al.Design and Operation of Water Treatment System for Central Sterile Supply Department Based on Energy Conservation and Consumption Reduction[J].Sterile Supply,2024,03(02):93-100.
Yuanlian Zhao, Jie Yang, Anchan Zhou, 等. Design and Operation of Water Treatment System for Central Sterile Supply Department Based on Energy Conservation and Consumption Reduction[J]. 消毒供应, 2024,3(2):93-100. DOI: 10.11910/j.issn.2791-2043.2024.2.07.
Zhao Yuanlian,Yang Jie,Zhou Anchan,et al.Design and Operation of Water Treatment System for Central Sterile Supply Department Based on Energy Conservation and Consumption Reduction[J].Sterile Supply,2024,03(02):93-100. DOI: 10.11910/j.issn.2791-2043.2024.2.07.
Design and Operation of Water Treatment System for Central Sterile Supply Department Based on Energy Conservation and Consumption Reduction
The present study scientifically and reasonably designs a water treatment system for the central sterile supply department (CSSD) to achieve standardized water use
ensure the safety of instrument treatment
and reduce water resource waste.
Methods
2
Following the principle of using water in the CSSD
the design concept of the water treatment system is sorted out
and the implementation plan of the water treatment system is scientifically designed. Two sets of water treatment systems are connected in parallel to ensure an uninterrupted water supply in case of equipment failure. At the same time
the concentrated water produced during the production of pure water and the hot and soft water for sterilization cooling is recycled and reused
and the relevant operation of the water treatment system is monitored.
Results
2
Pure water and soft water were sampled from the sampling ports of the water treatment system. The conductivity monitoring of pure water was qualified. The hardness of the soft water was once found to be unqualified
but after replacing the failed resin
the hardness test passed. About 10 tons of concentrated water as well as about 30 tons of hot and soft water were recycled and reused daily.
Conclusion
2
When designing a water treatment system
it is necessary to fully understand instrument processing capacity and the usage of softened and purified water in the hospital
configure equipment according to peak usage
and recycle concentrated water and water for sterilization to achieve the goal of energy conservation and consumption reduction.
关键词
Keywords
references
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相关作者
Fengjuan Yuan
Haitao Li
Yujing Zhou
Haofeng Ma
Shasha Zhu
Shuran Wang
Huanxi Zhang
Ying Wang
相关机构
School of Nursing, Pingdingshan University
Central Sterile Supply Department I, Hunan Provincial People’ s Hospital (The First Affiliated Hospital of HunanNormal University), No. 61 Jiefang West Road, Changsha City
Infection Management Department, The Second Affiliated Hospital of Chongqing Medical University
Disinfection Supply Center, The Second Affiliated Hospital of Chongqing Medical University
Infection Management Department, Hospital of Chengdu University of Traditional Chinese Medicine