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Analysis of Selected Heavy Metals in Tap Water by Inductively Coupled Plasma-Optical Emission Spectrometry After Pre-Concentration Using Chelex-100 Ion Exchange Resin

机译:使用Chelex-100离子交换树脂预浓缩后电感耦合等离子体 - 光发射光谱法分析自来水中选择的重金属

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A sensitive, specific, precise, accurate, and fast method Swas suitably developed for the determination of selected heavy metals including Cd, Cu, Fe, Pb, and Zn in tap water samples by inductivity coupled plasma-optical emission spectrometry (ICP-OES) after pre-concentration using Chelex-100 ion exchange resin. This method is based on studying several parameters including pH, weight of Chelex-100, HNO3 concentration, flow rate, and column diameter. It was found that the suitable conditions used for pH, weight of Chelex-100, HNO3 concentration, flow rate, and column diameter were 6, 4 g, 2 M, 1 mL/min, and 1 cm, respectively. Under these conditions, high recoveries were achieved with values of 95%, 106%, 77%, and 91% for Cu, Fe, Pb, and Zn, respectively. A total of 90 tap water samples were collected from five sampling zones of Irbid City, North Jordan, including (A: Barha zone; B: West and Zabda zone, C: South zone, D: East and city center zone, and E: North zone), and analyzed for Cd, Cu, Fe, Pb, and Zn; also the pH and electric conductivity (EC) values were measured. Moreover, the correlations between metals' concentrations and type of tanks (iron, plastic, or semantic), type of pipes (iron or plastic), age of tanks, and age of pipes were evaluated. The mean concentrations of tested metals in tap water samples collected from zone A, zone B, zone C, zone D, and zone E, respectively, were the following: Cu (9.9 mu g/L, 56.2 mu g/L, 139.3 mu g/L, 139.5 mu g/L, and ND mu g/L), Fe (463.6 mu g/L, 237.8 mu g/L, 55.4 mu g/L, 142.5 mu g/L, and 359.4 mu g/L), Pb (60.6 mu g/L, 25.6 mu g/L, ND, 7.7 mu g/L, and 40.3 mu g/L), and Zn (189.4 mu g/L, 275.8 mu g/L, 265.6 mu g/L, 307.1 mu g/L, and 147.6 mu g/L), whereas Cd levels in all zones were below the detection limit. In addition, results indicated that Pb and Fe had the same trend that is exceeding the permissible limit set by WHO, EPA, and Jordanian guidelines. A high positive correlation (r = 0.93) was found between Pb and Fe. Also, the altitude had a positive correlation between Pb and Fe concentrations, that is, as the altitude increases the concentration of Pb and Fe increases.
机译:适用于通过电感耦合等离子体 - 光发射光谱法(ICP-OES)在敲击水样中的选定重金属的敏感,具体,精确,精确,快速的方法SWas。使用Chelex-100离子交换树脂预浓缩后。该方法基于研究包括pH,Chelex-100,HNO3浓度,流速和柱直径的pH值,重量的参数。发现,用于pH,CHELEX-100,HNO 3浓度,流速和柱直径的合适条件分别为6,4g,2m,1ml / min和1cm。在这些条件下,分别以95%,106%,77%和91%的值达到高回收率,分别为Cu,Fe,Pb和Zn。共有90个自来水样本从北约旦的五个采样区收集,包括(A:Barha区; B:西和Zabda区,C:南区,D:East和City Center区,以及E:北区),分析CD,Cu,Fe,Pb和Zn;还测量pH和电导率(EC)值。此外,评估了金属浓度与坦克(铁,塑料或语义),管道(铁或塑料),坦克的年龄和管龄的年龄之间的相关性。分别从区域A,区域B,区C,区D和区E分别收集的自来水样品中测试金属的平均浓度如下:CU(9.9μg/ L,56.2μg/ L,139.3亩G / L,139.5μg和Nd mu g / l),Fe(463.6μg/ L,237.8μg/ L,55.4μg/ L,142.5μg/ L和359.4μg/ L. ),Pb(60.6μg/ L,25.6μg/ L,Nd,7.7μg/ L和40.3μg/ L),和Zn(189.4μg/ L,275.8μg/ L,265.6μg / L,307.1μg/ L和147.6μg/ L),而所有区域的Cd水平低于检测限。此外,结果表明,PB和FE具有与世卫组织,EPA和约旦指南为由的允许限制的相同趋势。 PB和Fe之间发现了高阳性相关性(R = 0.93)。而且,海拔高度在PB和Fe浓度之间具有正相关,即,随着海拔高度增加Pb和Fe的浓度增加。

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