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Assessment of sorption capability of montmorillonite clay for lead removal from water using laser-induced breakdown spectroscopy and atomic absorption spectroscopy

机译:利用激光诱导的击穿光谱和原子吸收光谱评估Montmorillonite粘土的吸附能力,从水中从水中除去

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摘要

Laser-induced breakdown spectroscopy (LIBS) and atomic absorption spectroscopy (AAS) techniques were applied for quantitative analysis of the remaining Pb content in water samples after treatment with a raw montmorillonite (MMT) and an organic derivative (MMO) clays for heavy metal removal, an issue of crucial importance for decontamination of water bodies. The Pb sorption capabilities of MMT and MMO clays were assessed by using solutions with known Pb concentrations, in the range 100-500 ppm. To carry out the LIBS analysis, the samples were prepared in the form of solid pellets with powdered calcium hydroxide addition. The measurement conditions were optimized to achieve reliable analytical results and the plasma parameters, i.e., temperature and electron density, were obtained. For quantification purpose, a calibration curve was constructed with the Pb I emission line at 4057.8 angstrom measured at the time window 30-45 mu s by using reference samples with Pb concentrations in the range 56-715 ppm. The Pb residual content in the liquid samples determined with LIBS showed a good agreement with those measured with AAS. The sorption efficiency of Pb from contaminated water was calculated through a sorption percentage S-pb%. The calculated S-pb% was higher for MMT (56%-100%) than for MMO (27%-47%). The results also demonstrated the usefulness of LIBS method for the determination of Pb concentrations in liquid samples.
机译:应用激光诱导的击穿光谱(LIB)和原子吸收光谱(AAS)技术用于用原料蒙脱石(MMT)和有机衍生物(MMO)粘土处理后水样中的剩余PB含量的定量分析,用于重金属去除,对水体净化至关重要的问题。通过使用具有已知PB浓度的溶液评估MMT和MMO粘土的PB吸附能力,在100-500ppm的范围内。为了进行LIBS分析,将样品以固体颗粒的形式制备,具有粉末状氢氧化物添加。优化测量条件以获得可靠的分析结果,并获得等离子体参数,即温度和电子密度。为了定量目的,通过使用具有PB浓度的参考样品在56-715ppm范围内,在时间窗口30-45μs下测量的4057.8埃校准曲线。用Libs测定的液体样品中的PB残留含量显示出与用AAS测量的那些良好的一致性。通过吸附百分比S-PB%计算来自受污染水的Pb的吸附效率。对于MMT(56%-100%),计算的S-PB%比MMO(27%-47%)更高。结果还证明了Libs方法用于测定液体样品中Pb浓度的有用性。

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  • 作者单位

    Fac Ciencias Exactas UNCPBA CICPBA Ctr Invest Fis &

    Ingn Ctr Prov Buenos Aires CIFICEN CONICET Campus Univ B7000GHG Buenos Aires DF Argentina;

    Fac Ciencias Exactas UNLP Dept Fis CONICET IFLP RA-7000 La Plata Buenos Aires Argentina;

    UNCPBA Fac Ciencias Humanas Ctr Invest &

    Estudios Ambientales CINEA Campus Univ B7000GHG Tandil Buenos Aires Argentina;

    Fac Ciencias Exactas UNCPBA CICPBA Ctr Invest Fis &

    Ingn Ctr Prov Buenos Aires CIFICEN CONICET Campus Univ B7000GHG Buenos Aires DF Argentina;

    UNCPBA Fac Ciencias Vet CONICET CICPBA Ctr Invest Vet Tandil CIVETAN Campus Univ B7000GHG Tandil Buenos Aires Argentina;

    UNCPBA Fac Ciencias Vet CONICET CICPBA Ctr Invest Vet Tandil CIVETAN Campus Univ B7000GHG Tandil Buenos Aires Argentina;

    Consejo Nacl Invest Cient &

    Tecn CICPBA Ctr Tecnol Recursos Minerales &

    Ceram CETMIC Camino Centenario &

    506 B1897ZCA Gonnet Argentina;

    Fac Ciencias Exactas UNCPBA CICPBA Ctr Invest Fis &

    Ingn Ctr Prov Buenos Aires CIFICEN CONICET Campus Univ B7000GHG Buenos Aires DF Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

    Pb; Montmorillonite; LIES; AAS; Water; Decontamination;

    机译:Pb;蒙脱石;谎言;aas;水;去污;

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