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Functionalized clay heterostructures for reducing cadmium and lead uptake by plants in contaminated soils

机译:功能化粘土异质结构,可减少污染土壤中植物对镉和铅的吸收

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摘要

Natural and synthetic clay minerals have been transformed into Si-pillared mesoporous structures and then grafted with SH functions, for heavy metal ion trapping in polluted soils. The techniques and the limits encountered were detailed, with assessments of transformations by FTIR spectrometry and X-ray diffraction analyses. Adsorption isotherms of Cd~(2+) and Pb~(2+) were measured after 1 day shaking in calcium nitrate suspensions. Tests of Cd and Pb plant uptake were pursued by ray-grass cultivation on polluted soil amended or not with a functionalized synthetic beidellite during 3 months. Natural beidellite, hectorite and vermiculite were transformed into SH-grafted pillared clays but difficulties were encountered to keep a regular and significant interlayer distance until the last step. The well crystalline high-charge vermiculite of Santa Olalla (Spain), after Li-saturation, exchange with alkyl-ammonium cations, formation and grafting of interlayer Si-pillars, showed the highest capacity of Cd~(2+) and Pb~(2+) fixation among the 3 functionalized tested clay minerals. The cadmium uptake by ray-grass grown on polluted soil has been quite depressed by amendments with 0.17 or 0.5% of functionalized synthetic beidellite, but these amendments were inefficient for lead.
机译:天然和合成粘土矿物已被转化为硅柱状的介孔结构,然后嫁接了具有SH功能的材料,用于在污染土壤中捕获重金属离子。详细介绍了所遇到的技术和限制,并通过FTIR光谱和X射线衍射分析评估了转化率。摇动1天后,在硝酸钙悬浮液中测量Cd〜(2+)和Pb〜(2+)的吸附等温线。通过在3个月内用功能化的合成贝得石改良或不改良的污染土壤上的光草栽培,对Cd和Pb植物的吸收进行了测试。天然贝得石,锂蒙脱石和ver石被转化为SH接枝的柱状粘土,但是在最后一步之前要保持规则的有效层间距离遇到困难。锂饱和,与烷基铵阳离子交换,层间硅柱的形成和接枝后,Santa Olalla(西班牙)的高结晶高电荷ver石具有最高的Cd〜(2+)和Pb〜( 2+)固定在3种功能化的测试粘土矿物中。用0.17%或0.5%的功能化合成贝得石进行的改良剂已大大抑制了在污染土壤上生长的草对镉的吸收,但这些改良剂对铅的效率不高。

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