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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Competitive adsorption of copper and zinc by a Bt horizon of a savanna Alfisol as affected by pH and selective removal of hydrous oxides and organic matter
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Competitive adsorption of copper and zinc by a Bt horizon of a savanna Alfisol as affected by pH and selective removal of hydrous oxides and organic matter

机译:pH值对热带稀树草原Afsol的Bt视野的铜和锌的竞争性吸附以及选择性去除含水氧化物和有机物的影响

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摘要

The preferential retention of heavy metals by soils is critical to their availability and mobility through the soils to contaminate groundwater. We examined the competitive adsorption of Cu and Zn by Bt horizon of a Savanna Alfisol from a dilute salt solution under a variety of conditions. Copper and Zinc adsorption from the Cu-Zn binary solution produced a characteristic H-type isotherm for Cu, and a linear isotherm for Zn. The distribution coefficient K-d, which defines the affinity of the metals for the soil adsorbents, was five times greater for Cu than Zn. The adsorption envelope of the metals showed that maximum Cu adsorption occurred at pH 5.5 as against pH 6.8 for Zn adsorption probably reflecting difference in the first hydrolysis constant of the metals. The removal of organic matter from the soil reduced K-d,K-Cu 40 times as compared to the natural soil, whereas Kd,Zn was reduced by half as compared to the natural soil. Similarly, removing amorphous hydrous oxide by extraction with oxalate solution prior to the introduction of Cu and Zn reduced K-d,K-Cu 100 times, and K-d,K-Zn by 20 times as compared to the natural soil, but when both amorphous and crystalline hydrous oxides were removed prior to the introduction of Cu and Zn, the K-d,K-Cu was on par with the natural soil, whereas K-d,K-Zn increased by more than two times as compared to the natural soil. It seems that reactions with organic matter and amorphous oxides are the major controls on Cu, whereas Zn might be largely sorbed by cation exchange reaction when in competition with Cu for binding sites in soils. The metal binding sites in the amorphous hydrous oxides and organic matter were more selective for Cu than Zn. (C) 2003 Elsevier B.V. All rights reserved
机译:土壤对重金属的优先保留对于其在土壤中的可用性和流动性至关重要,从而污染了地下水。我们研究了稀稀盐溶液在各种条件下,稀树草原阿尔菲索尔的Bt视野对铜和锌的竞争性吸附。从Cu-Zn二元溶液中吸附铜和锌会产生Cu的特征性H型等温线和Zn的线性等温线。定义金属对土壤吸附剂的亲和力的分布系数K-d,对于铜而言,是锌的五倍。金属的吸附包膜表明最大的Cu吸附在pH 5.5发生,而Zn吸附的pH 6.8可能反映了金属的第一水解常数的差异。与天然土壤相比,从土壤中去除有机物可减少K-d,K-Cu 40倍,而与天然土壤相比,Kd,Zn减少一半。类似地,与天然土壤相比,在引入Cu和Zn之前通过草酸盐溶液萃取去除无定形含水氧化物的Kd,K-Cu减少了100倍,而Kd,K-Zn减少了20倍,但与天然土壤相比在引入铜和锌之前,先去除了含水氧化物,Kd,K-Cu与天然土壤齐平,而Kd,K-Zn则比天然土壤增加了两倍以上。与有机物和无定形氧化物的反应似乎是铜的主要控制因素,而当与铜竞争土壤中的结合位点时,锌可能会被阳离子交换反应大量吸收。非晶态水合氧化物和有机物中的金属结合位点对铜的选择性高于对锌的选择性。 (C)2003 Elsevier B.V.保留所有权利

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