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Utilization of Ion-Exclusion Chromatography for Water Quality Monitoring in a Suburban River in Jakarta, Indonesia

机译:离子排斥色谱法在印度尼西亚雅加达郊区河水质监测中的应用

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We evaluated the use of ion-exclusion chromatographic systems for analyzing the behavior of inorganic ions (e.g., bicarbonate, sulfate, chloride, nitrate, phosphate, dissolved silicate, sodium, ammonium, potassium, magnesium, and calcium ions) in a suburban river located in Jakarta, Indonesia. Carbonate, phosphate, and silicate ion concentrations were determined using ion-exclusion chromatography (IEC) on a weakly acidic cation-exchange resin column (WCX) in the H+-form with water eluent. Other ions were identified by ion-exclusion/cation-exchange chromatography (IEC/CEC) on a WCX column with tartaric acid eluent. The use of IEC systems for water quality monitoring was advantageous for the following reasons: (1) the concentrations of analyte ions, except NO3− and silicate ions, increased from upstream to downstream; and (2) the speciation of inorganic nitrogen ions could be analyzed by single injection into the IEC/CEC. The IEC approach provided beneficial information for the construction of sewage treatment facilities in our study area. Results showed that (1) the analyte concentrations for samples obtained in the downstream area were higher than those in the upstream area owing to contamination by domestic sewage; (2) the concentrations of NO3− and NH4+ correlated with the concentration of dissolved oxygen; and (3) bicarbonate concentrations increased downstream, likely due to respiration of bacteria and dissolution of concrete under low-oxygen conditions.
机译:我们评估了使用离子排斥色谱系统分析郊区河流中无机离子(例如碳酸氢根,硫酸根,氯离子,硝酸根,磷酸根,溶解的硅酸盐,钠,铵,钾,镁和钙离子)的行为。在印度尼西亚雅加达。碳酸根离子,磷酸根离子和硅酸根离子的浓度是通过离子排斥色谱法(IEC)在弱酸性阳离子交换树脂柱(WCX)上以H + 形式用水洗脱来测定的。在具有酒石酸洗脱液的WCX色谱柱上通过离子排斥/阳离子交换色谱法(IEC / CEC)鉴定其他离子。使用IEC系统进行水质监测的优势在于:(1)除了上游的NO 3 -和硅酸根离子外,分析物离子的浓度增加到下游(2)可以通过单次注入IEC / CEC分析无机氮离子的形态。 IEC方法为我们研究区域的污水处理设施建设提供了有益的信息。结果表明:(1)由于生活污水的污染,下游地区样品的分析物浓度高于上游地区。 (2)NO 3 -和NH 4 + 的浓度与溶解氧的浓度相关; (3)碳酸氢盐的下游浓度增加,这可能是由于细菌的呼吸作用以及低氧条件下混凝土的溶解所致。

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