正聚磷酸盐试样“SeaQuest Liquid”的防腐稳定水处理研究

M. Romashchenko, O. Kovalenko, E. Matselyuk, D. Charny, V. Prokopov
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A characteristic feature of this water supply system is the use of various sources of water supply - groundwater and surface waters of the Desna and Dnieper rivers. \nThe results of the calculation of water corrosivity carried out at the Institute based on the chemical analysis of the quality of water taken from 29 wells at the research object showed that the Langelier indices obtained using the calculation formulas for all sampling points are in the range from 0,89 to 1,77, which indicates the continuous and significant corrosive activity of water at all sampling point. The Risner index in all samples was in the range from 7.8 to 8.8, which indicates the significant pipeline corrosion. That is especially typical for the water from the well № 232, the Rizner index of which is 9.58, which indicates very intensive corrosion of the pipeline. \nIndicators rH2, for all samples, calculated both by F.U. Clarke and by the formula of A.I. Trufanov, indicate that the studied aquatic environment is very favorable for the vital activity of iron bacteria in general, and the pH - Eh zone of water samples indicates that there is an active vital activity of various strains: Leptothrix, Gallionella , Thiobacillus thiooxcidans or their combined activity. \nAll the studied factors indicate that the most likely there is a complex genesis of corrosion processes in water supply networks, which combines both physicochemical and biological processes. This combination usually contributes to the processes of active secondary water pollution by the products of pipeline corrosion. \nIndicators rH2, for all samples, calculated by the formulas of F.U. Clark and of A.I. Trufanov, indicate that the studied aquatic environment is very favorable for the activity of iron bacteria in general, and the pH - Eh zone of water samples indicates that there is a rather high activity of different strains: Leptothrix, Gallionella, Thiobacillus thiooxcidans or their combined activity. \nThe results of the research showed that for all ways to use of \"SeaQuest Liquid\" spicemen in the water of all sampling points there were no deviations from the standards of basic physicochemical parameters: the average pH of water was 7,67 ± 0.01, total water hardness was 4,3 ± 0,03, total alkalinity - 4,4 ± 0,05 mmol/dm,3 calcium content - 58,6 ± 0,7 mg/dm3, magnesium - 16,1 ± 0.2 mg/dm3, hydrocarbons - 261,4 ± 4,8 mg/dm3, manganese <0,01 mg/dm3, sulfates - 21,9 ± 1,2 mg/dm3, chlorides - 44,3 ± 1,4 mg/dm3, sodium and potassium - 44,0 ± 2,0 mg/dm3, residual chlorine - 0,35 ± 0,02 mg/dm3, ammonium - 0,2 ± 0.01 mg/dm3, permanganate oxidation - 2,3 ± 0,1 mgО2/dm3, nitrites - 0,09 ± 0,01 mg/dm3, nitrates - 1,53 ± 0,14 mg/dm3, total mineralization - 459,9 ± 15,1 mg/dm3. In some samples of water treated with “SeaQuest Liquid”, the iron content exceeded the hygienic standard (0,2 mg/dm3) and exceeded the maximum allowable level (1,0 mg/dm3). In drinking water samples, the levels of substances that are the part of \"SeaQuest Liquid\" specimen (polyphosphates, orthophosphates), varied at different sampling points but were within the normative values. The anticipated biological component of corrosion according to the calculated Rh2 index, was confirmed. In the presence of sulfate-reducing and thiobacteria in water, \"SeaQuest Liquid\" specimen increases the corrosion rate of steel by 2,9-7,2 times; subject to additional disinfection of water when treating with sodium hypochlorite, it reduces this indicator by 1,4-2,7 times. Under the action of \"SeaQuest Liquid\" in water treated with sodium hypochlorite, there was a decrease in the Langelier index: from -2,23 to -2,08 and from -1,79 to -1,70, indicating a decrease in its corrosive activity. In water untreated with sodium hypochlorite under the action of \"SeaQuest Liquid\" there was some increase in the Langelier index: from -1.80 to -1,95 and from -1,85 to -2,78; from -2,01 to -2,13, which indicates an increase in its corrosive aggressiveness. \n ","PeriodicalId":298682,"journal":{"name":"Міжвідомчий тематичний науковий збірник \"Меліорація і водне господарство\"","volume":"34 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-05-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Study of the orthopolyphosphate specimen \\\"SeaQuest Liquid\\\" for anticorrosion and stabilization water treatment\",\"authors\":\"M. Romashchenko, O. Kovalenko, E. Matselyuk, D. Charny, V. 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A characteristic feature of this water supply system is the use of various sources of water supply - groundwater and surface waters of the Desna and Dnieper rivers. \\nThe results of the calculation of water corrosivity carried out at the Institute based on the chemical analysis of the quality of water taken from 29 wells at the research object showed that the Langelier indices obtained using the calculation formulas for all sampling points are in the range from 0,89 to 1,77, which indicates the continuous and significant corrosive activity of water at all sampling point. The Risner index in all samples was in the range from 7.8 to 8.8, which indicates the significant pipeline corrosion. That is especially typical for the water from the well № 232, the Rizner index of which is 9.58, which indicates very intensive corrosion of the pipeline. \\nIndicators rH2, for all samples, calculated both by F.U. Clarke and by the formula of A.I. 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Trufanov, indicate that the studied aquatic environment is very favorable for the activity of iron bacteria in general, and the pH - Eh zone of water samples indicates that there is a rather high activity of different strains: Leptothrix, Gallionella, Thiobacillus thiooxcidans or their combined activity. \\nThe results of the research showed that for all ways to use of \\\"SeaQuest Liquid\\\" spicemen in the water of all sampling points there were no deviations from the standards of basic physicochemical parameters: the average pH of water was 7,67 ± 0.01, total water hardness was 4,3 ± 0,03, total alkalinity - 4,4 ± 0,05 mmol/dm,3 calcium content - 58,6 ± 0,7 mg/dm3, magnesium - 16,1 ± 0.2 mg/dm3, hydrocarbons - 261,4 ± 4,8 mg/dm3, manganese <0,01 mg/dm3, sulfates - 21,9 ± 1,2 mg/dm3, chlorides - 44,3 ± 1,4 mg/dm3, sodium and potassium - 44,0 ± 2,0 mg/dm3, residual chlorine - 0,35 ± 0,02 mg/dm3, ammonium - 0,2 ± 0.01 mg/dm3, permanganate oxidation - 2,3 ± 0,1 mgО2/dm3, nitrites - 0,09 ± 0,01 mg/dm3, nitrates - 1,53 ± 0,14 mg/dm3, total mineralization - 459,9 ± 15,1 mg/dm3. 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引用次数: 0

摘要

在乌克兰运行的大多数供水系统是由钢或铸铁制成的,容易腐蚀。乌克兰国家科学院水问题和土地复垦研究所进行了关于正磷酸盐缓蚀剂对饮用水质量的影响以及由于在供水网络中使用不同剂量的缓蚀剂而造成的腐蚀速率的实验研究。选取基辅市Obolon区的供水系统作为研究对象。这个供水系统的一个特点是使用各种水源供水-地下水和德斯纳河和第聂伯河的地表水。通过对研究对象29口井的水质进行化学分析,研究所对水的腐蚀性进行了计算,结果表明,利用计算公式得到的各采样点的Langelier指数范围在0.89 ~ 1.77之间,表明各采样点的水具有持续而显著的腐蚀性。所有样品的Risner指数在7.8 ~ 8.8之间,表明管道腐蚀严重。这对于232号井的水来说尤其典型,它的里兹纳指数为9.58,这表明管道的腐蚀非常严重。根据F.U. Clarke和A.I. Trufanov公式计算的所有样品的rH2指标表明,所研究的水生环境总体上非常有利于铁细菌的生命活性,水样的pH - Eh区表明各种菌株的生命活性都很活跃:细链菌、Gallionella、硫氧化硫杆菌或它们的组合活性。研究结果表明,供水管网的腐蚀过程很可能是物理化学和生物化学双重作用的复杂成因。这种组合通常会导致管道腐蚀产物对水的二次污染。根据F.U. Clark和A.I. Trufanov公式计算的所有样品的rH2指标表明,所研究的水生环境总体上非常有利于铁细菌的活性,水样的pH - Eh区表明,不同菌株的活性都很高:细链菌、Gallionella、硫氧化硫杆菌或它们的组合活性。研究结果表明,对于“SeaQuest Liquid”香料在所有采样点的水中的各种使用方式,基本理化参数没有偏离标准:水的平均pH值67±0.01,总水硬度4 3±0,03年,总碱度- 4,4±0,05年更易与dm, 3钙含量- 58岁6±0、7毫克/ dm3镁- 16、1±0.2毫克/ dm3,碳氢化合物- 261、4±4、8毫克/ dm3锰< 0 01毫克/ dm3硫酸盐- 21日9±1,2毫克/ dm3氯化物- 44,3±1,4毫克/ dm3,钠和钾- 44,0±2 0 mg / dm3,余氯- 0,35±0,2 mg / dm3 - 0,铵2±0.01毫克/ dm3,高锰酸盐氧化- 2、3±0,1毫克О2 / dm3,亚硝酸盐- 0,09年±0,1毫克/ dm3,硝酸盐- 1.53±0.14 mg/dm3,总矿化- 459.9±15.1 mg/dm3。经“SeaQuest Liquid”处理的部分水样中,铁含量超过卫生标准(0.2 mg/dm3),超过最大允许水平(1.0 mg/dm3)。在饮用水样品中,作为“SeaQuest Liquid”样品一部分的物质(多磷酸盐、正磷酸盐)的含量在不同的采样点有所不同,但都在正常值范围内。根据计算的Rh2指数,确定了预期的腐蚀生物组分。在水中存在硫酸盐还原菌和硫杆菌的情况下,“SeaQuest Liquid”试样使钢的腐蚀速率提高了2,9-7,2倍;在用次氯酸钠处理时对水进行额外消毒,可将该指标降低1,4,2,7倍。“SeaQuest Liquid”在次氯酸钠处理过的水中作用后,langier指数从-2,23下降到-2,08,从-1,79下降到-1,70,表明其腐蚀活性下降。在次氯酸钠处理的水中,在“SeaQuest Liquid”的作用下,Langelier指数从-1.80增加到-1,95,从-1,85增加到-2,78;从-2,01到-2,13,表明其腐蚀性增强。
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Study of the orthopolyphosphate specimen "SeaQuest Liquid" for anticorrosion and stabilization water treatment
Most water supply systems operating in Ukraine are made of steel or cast iron, which are subject to corrosion. The Institute of Water Problems and Land Reclamation of the National Academy of Sciences of Ukraine carried out the experimental studies on the effect of an orthophosphate corrosion inhibitor on the quality of drinking water and the rate of corrosion as a result of its appliance in various doses in the water supply network. The water supply system of Obolon district of the city of Kiev was selected as the object of research. A characteristic feature of this water supply system is the use of various sources of water supply - groundwater and surface waters of the Desna and Dnieper rivers. The results of the calculation of water corrosivity carried out at the Institute based on the chemical analysis of the quality of water taken from 29 wells at the research object showed that the Langelier indices obtained using the calculation formulas for all sampling points are in the range from 0,89 to 1,77, which indicates the continuous and significant corrosive activity of water at all sampling point. The Risner index in all samples was in the range from 7.8 to 8.8, which indicates the significant pipeline corrosion. That is especially typical for the water from the well № 232, the Rizner index of which is 9.58, which indicates very intensive corrosion of the pipeline. Indicators rH2, for all samples, calculated both by F.U. Clarke and by the formula of A.I. Trufanov, indicate that the studied aquatic environment is very favorable for the vital activity of iron bacteria in general, and the pH - Eh zone of water samples indicates that there is an active vital activity of various strains: Leptothrix, Gallionella , Thiobacillus thiooxcidans or their combined activity. All the studied factors indicate that the most likely there is a complex genesis of corrosion processes in water supply networks, which combines both physicochemical and biological processes. This combination usually contributes to the processes of active secondary water pollution by the products of pipeline corrosion. Indicators rH2, for all samples, calculated by the formulas of F.U. Clark and of A.I. Trufanov, indicate that the studied aquatic environment is very favorable for the activity of iron bacteria in general, and the pH - Eh zone of water samples indicates that there is a rather high activity of different strains: Leptothrix, Gallionella, Thiobacillus thiooxcidans or their combined activity. The results of the research showed that for all ways to use of "SeaQuest Liquid" spicemen in the water of all sampling points there were no deviations from the standards of basic physicochemical parameters: the average pH of water was 7,67 ± 0.01, total water hardness was 4,3 ± 0,03, total alkalinity - 4,4 ± 0,05 mmol/dm,3 calcium content - 58,6 ± 0,7 mg/dm3, magnesium - 16,1 ± 0.2 mg/dm3, hydrocarbons - 261,4 ± 4,8 mg/dm3, manganese <0,01 mg/dm3, sulfates - 21,9 ± 1,2 mg/dm3, chlorides - 44,3 ± 1,4 mg/dm3, sodium and potassium - 44,0 ± 2,0 mg/dm3, residual chlorine - 0,35 ± 0,02 mg/dm3, ammonium - 0,2 ± 0.01 mg/dm3, permanganate oxidation - 2,3 ± 0,1 mgО2/dm3, nitrites - 0,09 ± 0,01 mg/dm3, nitrates - 1,53 ± 0,14 mg/dm3, total mineralization - 459,9 ± 15,1 mg/dm3. In some samples of water treated with “SeaQuest Liquid”, the iron content exceeded the hygienic standard (0,2 mg/dm3) and exceeded the maximum allowable level (1,0 mg/dm3). In drinking water samples, the levels of substances that are the part of "SeaQuest Liquid" specimen (polyphosphates, orthophosphates), varied at different sampling points but were within the normative values. The anticipated biological component of corrosion according to the calculated Rh2 index, was confirmed. In the presence of sulfate-reducing and thiobacteria in water, "SeaQuest Liquid" specimen increases the corrosion rate of steel by 2,9-7,2 times; subject to additional disinfection of water when treating with sodium hypochlorite, it reduces this indicator by 1,4-2,7 times. Under the action of "SeaQuest Liquid" in water treated with sodium hypochlorite, there was a decrease in the Langelier index: from -2,23 to -2,08 and from -1,79 to -1,70, indicating a decrease in its corrosive activity. In water untreated with sodium hypochlorite under the action of "SeaQuest Liquid" there was some increase in the Langelier index: from -1.80 to -1,95 and from -1,85 to -2,78; from -2,01 to -2,13, which indicates an increase in its corrosive aggressiveness.  
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