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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Trace metal adsorption onto urban stream suspended particulate matter (Auckland region, New Zealand)
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Trace metal adsorption onto urban stream suspended particulate matter (Auckland region, New Zealand)

机译:痕量金属吸附到城市河流悬浮颗粒物上(新西兰奥克兰地区)

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摘要

Trace metal adsorption to suspended particulate matter (SPM) influences bioavailability and toxicity of trace metals in natural waters. For highly contaminated urban catchments in the greater Auckland (New Zealand) area, trace metal adsorption to SPM was assessed and compared to similar data from non-urban catchments in the Auckland region, to determine whether there was any difference in the ability of the SPM to adsorb Cu, Pb and Zn. The degree of trace metal adsorption onto the SPM was assessed by way of adsorption edge experiments. It was found that the ability of the Auckland urban SPM to adsorb trace metals decreased in the order Pb > Cu > Zn. Little difference in adsorption was observed between the non-urban Waikato and Kaipara River SPM and urban SPM, or between urban SPM from different flow regimes and seasons, despite some compositional differences in the SPM. This suggests that on the basis of a single surface-binding site, metal adsorption onto SPM could be readily predicted across a range of urban and non-urban catchments in the Auckland region. Adsorption edges were modelled with a diffuse layer, surface complexation model to assess the role of Fe-oxide in adsorption. The MINTEQA2 model was used, assuming Fe-oxide (as HFO) was the only adsorbing surface. There was generally good agreement between observed and modelled adsorption for Pb, indicating the importance of Fe-oxide surfaces for Pb adsorption. However, the model did not predict Zn or Cu adsorption as well. The TOC content of the SPM, and presence of dissolved ligands and organic matter in the water column, appeared to play an important role in Cu adsorption to the SPM. For Zn, the presence of adsorbing surfaces other than HFO appeared to influence adsorption. (c) 2006 Elsevier Ltd. All rights reserved.
机译:痕量金属对悬浮颗粒物(SPM)的吸附影响自然水中痕量金属的生物利用度和毒性。对于大奥克兰(新西兰)地区受高度污染的城市集水区,评估了痕量金属对SPM的吸附,并将其与奥克兰地区非城市集水区的类似数据进行了比较,以确定SPM能力是否存在差异吸附铜,铅和锌。通过吸附边缘实验评估痕量金属在SPM上的吸附程度。发现奥克兰市区SPM吸附痕量金属的能力以Pb> Cu> Zn的顺序降低。尽管SPM的成分有所不同,但在非城市的怀卡托和Kaipara河SPM与城市SPM之间,或在不同流量和季节的城市SPM之间,吸附差异很小。这表明,基于单一的表面结合位点,可以很容易地预测出奥克兰地区一系列城市和非城市集水区的金属吸附在SPM上。用扩散层,表面络合模型对吸附边缘进行建模,以评估氧化铁在吸附中的作用。使用MINTEQA2模型,假定氧化铁(作为HFO)是唯一的吸附表面。在观察到的和模拟的Pb吸附之间通常有很好的一致性,表明Fe氧化物表面对Pb吸附的重要性。但是,该模型也无法预测锌或铜的吸附。 SPM的TOC含量以及水柱中溶解的配体和有机物的存在似乎在Cu吸附到SPM中起着重要作用。对于Zn,除HFO以外的吸附表面的存在似乎会影响吸附。 (c)2006 Elsevier Ltd.保留所有权利。

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