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Why is deoxygenation necessary for demineralized water? Answer: Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this demineralized water. If it is introduced directly into a waste heat boiler, this oxygen can damage the material structure of the boiler, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines. Therefore, the deionized water entering the waste heat boiler must be deoxygenated.
Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this water. If demineralized water enters a waste heat boiler, it can damage the structure of the boiler’s materials, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines.
Answer: Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called deionized water. However, a small amount of oxygen remains dissolved in this deionized water. If such water is introduced directly into a waste heat boiler, the oxygen present can damage the material structure of the boiler, and it can also cause the steam produced to contain…
Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this demineralized water. If it is introduced directly into a waste heat boiler, this oxygen can damage the material structure of the boiler, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines. Therefore, the deionized water entering the waste heat boiler must be deoxygenated.
Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this demineralized water. If it is introduced directly into a waste heat boiler, this oxygen can damage the material structure of the boiler, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines. Therefore, the deionized water entering the waste heat boiler must be deoxygenated.
Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this demineralized water. If it is introduced directly into a waste heat boiler, this oxygen can damage the material structure of the boiler, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines. Therefore, the deionized water entering the waste heat boiler must be deoxygenated.
Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this demineralized water. If it is introduced directly into a waste heat boiler, this oxygen can damage the material structure of the boiler, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines. Therefore, the deionized water entering the waste heat boiler must be deoxygenated.
Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this demineralized water. If it is introduced directly into a waste heat boiler, this oxygen can damage the material structure of the boiler, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines. Therefore, the deionized water entering the waste heat boiler must be deoxygenated.
Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this demineralized water. If it is introduced directly into a waste heat boiler, this oxygen can damage the material structure of the boiler, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines. Therefore, the deionized water entering the waste heat boiler must be deoxygenated.
Steam contains a certain amount of oxygen, which causes corrosion of equipment and pipelines.
Water that has been chemically treated to remove ions such as Ca2+, Mg2+, and CO32- is called demineralized water. However, a small amount of oxygen remains dissolved in this water. If demineralized water enters a waste heat boiler, it can damage the structure of the boiler’s materials, and it also causes the steam produced to contain a certain amount of oxygen, leading to corrosion of the equipment and pipelines.