KLI

배관 내 아연 장치에 의한 녹과 스케일 억제 효과와 유효거리

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Alternative Title
Effect and effective distance of rust and scale suppression by zinc device in piping
Abstract
The electrical connection between zinc metal and iron in contact with water prevents oxidation of iron until all zinc is dissolved, which is called a zinc sacrificial anode phenomenon. In the case of water pipes, zinc is often attached to the outside of the pipe, but examples of mounting zinc inside the pipe to prevent iron corrosion are not well known. Zinc devices sold for water pipes vary in the amount of zinc installed depending on the diameter of the pipe and the conditions of use, but the life of the product is generally expected to be 10-20 years until all zinc dissolves and disappears. Zinc ions dissolved from zinc to water in the pipe react with the calcium carbonate scale generated inside the pipe to consume zinc ions, and it was confirmed that the needle-shaped aragonite was converted into highly crystalline calcium after observing the scale crystal through an electron microscope. In addition, it is estimated that calcium ions of scale are replaced by zinc ions, gradually losing crystallinity, being deintercalated into the pipe, and oxygen in the water is consumed during the dissolution of zinc ions from zinc metals, turning red rust hematite (Fe2O3) into magnetite (Fe3O4). In addition, zinc ions were expected to move hundreds to thousands of meters depending on the diameter of the pipe in the new pipe, but it was confirmed that the travel distance was shortened in the case of pipes with many corrosion products.
Author(s)
염경택유미선우상진양성봉심학섭
Issued Date
2023
Type
Article
Keyword
수도관 아연아연이온 농도아연 수명스케일 억제 유효거리배관 폐쇄율Zinc in water pipeZinc cation concentrationZinc lifespanScale suppression effective distancePiping closure rate
DOI
10.11001/jksww.2023.37.2.77
URI
https://oak.ulsan.ac.kr/handle/2021.oak/15901
Publisher
상하수도학회지
Language
한국어
ISSN
1225-7672
Citation Volume
37
Citation Number
2
Citation Start Page
77
Citation End Page
87
Appears in Collections:
Engineering > Civil and Environmental Engineering
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