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时间、土壤有机质和氧化铁对铅、镉和铜在土壤上的相对保留和再分配的影响。

Effects of time, soil organic matter, and iron oxides on the relative retention and redistribution of lead, cadmium, and copper on soils.

作者信息

Diagboya Paul N, Olu-Owolabi Bamidele I, Adebowale Kayode O

机构信息

Department of Chemistry, University of Ibadan, Ibadan, Nigeria,

出版信息

Environ Sci Pollut Res Int. 2015 Jul;22(13):10331-9. doi: 10.1007/s11356-015-4241-0. Epub 2015 Feb 28.

Abstract

In order to predict the bioavailability of toxic metals in soils undergoing degradation of organic matter (OM) and iron oxides (IOs), it is vital to understand the roles of these soil components in relation to metal retention and redistribution with time. In this present work, batch competitive sorptions of Pb(II), Cu(II), and Cd(II) were investigated between 1 and 90 days. Results showed that competition affected Cd(II) sorption more than Cu(II) and Pb(II). The sorption followed the trend Pb(II) > > Cu(II) > Cd(II), irrespective of aging, and this high preference for Pb(II) ions in soils reduced with time. Removal of OM led to reduction in distribution coefficient (K d) values of ≈33% for all cations within the first day. However, K d increased nearly 100% after 7 days and over 1000% after 90-day period. The enhanced K d values indicated that sorptions occurred on the long run on surfaces which were masked by OM. Removal of IO caused selective increases in the K d values, but this was dependent on the dominant soil constituent(s) in the absence of IO. The K d values of the IO-degraded samples nearly remained constant irrespective of aging indicating that sorptions on soil components other than the IO are nearly instantaneous while iron oxides played greater role than other constituents with time. Hence, in the soils studied, organic matter content determines the immediate relative metal retention while iron oxides determine the redistribution of metals with time.

摘要

为了预测在经历有机质(OM)和铁氧化物(IOs)降解的土壤中有毒金属的生物有效性,了解这些土壤成分在金属保留和随时间重新分布方面的作用至关重要。在本研究中,对1至90天内Pb(II)、Cu(II)和Cd(II)的批次竞争吸附进行了研究。结果表明,竞争对Cd(II)吸附的影响大于Cu(II)和Pb(II)。无论老化情况如何,吸附遵循Pb(II) >> Cu(II) > Cd(II)的趋势,并且土壤中对Pb(II)离子的这种高度偏好随时间降低。去除OM导致所有阳离子在第一天内的分配系数(Kd)值降低约33%。然而,7天后Kd增加近100%,90天后增加超过1000%。Kd值的增加表明,从长远来看,吸附发生在被OM掩盖的表面上。去除IO导致Kd值选择性增加,但这取决于在没有IO的情况下占主导地位的土壤成分。IO降解样品的Kd值几乎与老化无关而保持恒定,这表明在IO以外的土壤成分上的吸附几乎是即时的,而随着时间的推移,铁氧化物比其他成分发挥了更大的作用。因此,在所研究的土壤中,有机质含量决定了金属的即时相对保留,而铁氧化物决定了金属随时间的重新分布。

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