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Retention Effects of Soil Humic Substances on the Diffusive Transportation of Metal Ions During Sediment Porewater Membrane Dialysis Sampling

机译:沉积物孔隙水膜透析采样中土壤腐殖质对金属离子扩散运输的保留作用

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摘要

In situ sampling techniques such as membrane dialysis are widely applied to the monitoring of heavy metal contamination in water-saturated environments. In this study, batch experiments were conducted to investigate the influence of humic substances (HS) on the diffusive transportation of metal ions across sampling membranes. The presence of HS substantially slowed the transportation of metal ions by 22.2, 20.3, 17.4, 16.6, and 14.9 % for Zn~(2+), Cu~(2+), Ni~(2+), Co~(2+), and Mn~(2+), respectively, in the 100-mg/L HS-amended treatments relative to the treatments without HS under acidic conditions (pH=5.0). The retention effect of HS on the metal ions appeared to be relieved at a higher pH of 8.5. However, HS also slowed the transportation of metal ions (Cu~(2+), Zn~(2+), Ni~(2+) and Co~(2+)) into the sampling cells when membranes soaked previously in porewater solution. The retention effects of HS can be attributed to the enhanced adsorption of metal ions on the surfaces of the membranes. Further study in saturated sediments verified that the membrane dialysis technique could underestimate the concentrations of metal ions by 13.3-40.2 % at the presences of HS. These findings suggest that collected porewater data using the membrane dialysis technique should be interpreted with caution with the consideration of in situ geochemical conditions such as HS or pH in water-saturated environments.
机译:原位采样技术(例如膜透析)已广泛应用于水饱和环境中的重金属污染监测。在这项研究中,进行了批处理实验,以研究腐殖质(HS)对金属离子跨采样膜扩散传输的影响。 HS的存在大大降低了Zn〜(2 +),Cu〜(2 +),Ni〜(2 +),Co〜(2+)的金属离子传输速度,分别降低了22.2%,20.3%,17.4%,16.6%和14.9%。相对于在酸性条件下(pH = 5.0)不使用HS的处理,在100 mg / L HS改良处理中的Mn和(2+)分别为。在较高的pH值8.5下,HS对金属离子的保留效果似乎有所减轻。但是,当膜事先浸入孔隙水溶液中时,HS也会减慢金属离子(Cu〜(2 +),Zn〜(2 +),Ni〜(2+)和Co〜(2+))向采样池的传输。 。 HS的保留效果可归因于金属离子在膜表面的吸附增强。在饱和沉积物中进行的进一步研究证实,在存在HS的情况下,膜渗析技术可能低估了13.3-40.2%的金属离子浓度。这些发现表明,应谨慎考虑使用膜透析技术收集的孔隙水数据,并考虑水饱和环境中的原位地球化学条件,例如HS或pH。

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