首页> 外文期刊>The Science of the Total Environment >Impact of mechanical disturbance and acidification on the metal(loid) and C, P, S mobility at the sediment water interface examined using a fractionation meso profiling ICP-QQQ-MS approach
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Impact of mechanical disturbance and acidification on the metal(loid) and C, P, S mobility at the sediment water interface examined using a fractionation meso profiling ICP-QQQ-MS approach

机译:机械扰动和酸化对金属(池)和C,P,S在沉积物水界面的迁移率的影响,使用分馏Meso分析ICP-QQQ-MS方法检查沉积物水界面

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摘要

The impact of mechanical disturbance and oxygen induced acidification on the concentration and size fractionation of the 12 metal(loid)s As, Cd, Co, Cr, Cu, Fe, Mn, Ni, Pb, Sb, Tl, V and the polyatomic nonmetals C, P and S in the pore water was studied. Using the meso profiling and sampling system (messy) 12 pore water depth profiles were sampled from two incubation experiments undertaken in parallel, which were both mechanically disturbed in the lab and subsequently exposed to a different air supply. In parallel to the low invasive, automated sampling process the redox potential, the pH value and the O-2 concentration were detected. Simultaneous quantification of all analytes by inductively coupled plasma-triple quad-mass spectrometry in the two different size classes dissolved (0.45 mu m) and colloidal (0.45-16 mu m) showed: i) the predominant influence of the pH on the mobility of metals; ii) the mobility of metalloids was strongly impacted by the mechanical disturbance; and iii) the colloidal release is less important except for Fe, P, and Ni. (C) 2018 The Authors. Published by Elsevier B.V.
机译:机械干扰和氧气诱导酸化对12金属(LOID),Cd,CO,Cr,Cu,Fe,Mn,Ni,Pb,Sb,T1,V和多原子非金属的浓度和尺寸分馏的影响研究了孔隙水中的c,p和s。使用MESO分析和采样系统(凌乱)12孔水深型材从并联进行的两个培养实验中取样,这两者都在实验室中机械干扰,随后暴露于不同的空气供应。与低侵入性,自动化采样过程平行检测到氧化还原电位,pH值和O-2浓度。通过溶解(<0.45μm)和胶体(0.45-16μm)的两种不同尺寸类中的电感耦合等离子体 - 三重四谱法同时定量所有分析物的所有分析物。和胶体(0.45-16μm)显示:i)pH对移动性的主要影响金属; ii)金属体的迁移率受到机械扰动的强烈影响;和III)除Fe,P和Ni外,胶体释放不太重要。 (c)2018年作者。由elsevier b.v出版。

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