首页> 外文期刊>International Journal of Environmental Research and Public Health >The Combination of DGT Technique and Traditional Chemical Methods for Evaluation of Cadmium Bioavailability in Contaminated Soils with Organic Amendment
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The Combination of DGT Technique and Traditional Chemical Methods for Evaluation of Cadmium Bioavailability in Contaminated Soils with Organic Amendment

机译:DGT技术与传统化学方法相结合的有机修正法评价污染土壤中镉的生物利用度

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Organic amendments have been proposed as a means of remediation for Cd-contaminated soils. However, understanding the inhibitory effects of organic materials on metal immobilization requires further research. In this study colza cake, a typical organic amendment material, was investigated in order to elucidate the ability of this material to reduce toxicity of Cd-contaminated soil. Available concentrations of Cd in soils were measured using an in situ diffusive gradients in thin films (DGT) technique in combination with traditional chemical methods, such as HOAc (aqua regia), EDTA (ethylene diamine tetraacetic acid), NaOAc (sodium acetate), CaCl 2 , and labile Cd in pore water. These results were applied to predict the Cd bioavailability after the addition of colza cake to Cd-contaminated soil. Two commonly grown cash crops, wheat and maize, were selected for Cd accumulation studies, and were found to be sensitive to Cd bioavailability. Results showed that the addition of colza cake may inhibit the growth of wheat and maize. Furthermore, the addition of increasing colza cake doses led to decreasing shoot and root biomass accumulation. However, increasing colza cake doses did lead to the reduction of Cd accumulation in plant tissues, as indicated by the decreasing Cd concentrations in shoots and roots. The labile concentration of Cd obtained by DGT measurements and the traditional chemical extraction methods, showed the clear decrease of Cd with the addition of increasing colza cake doses. All indicators showed significant positive correlations ( p < 0.01) with the accumulation of Cd in plant tissues, however, all of the methods could not reflect plant growth status. Additionally, the capability of Cd to change from solid phase to become available in a soil solution decreased with increasing colza cake doses. This was reflected by the decreases in the ratio ( R ) value of C DGT to C sol . Our study suggests that the sharp decrease in R values could not only reflect the extremely low capability of labile Cd to be released from its solid phase, but may also be applied to evaluate the abnormal growth of the plants.
机译:已经提出了有机改良剂作为补救镉污染土壤的手段。但是,了解有机材料对金属固定化的抑制作用需要进一步的研究。在这项研究中,对菜籽饼(一种典型的有机改性材料)进行了研究,以阐明这种材料降低受Cd污染的土壤的毒性的能力。使用薄膜中的原位扩散梯度(DGT)技术结合传统的化学方法,例如HOAc(王水),EDTA(乙二胺四乙酸),NaOAc(乙酸钠), CaCl 2和不稳定水中的Cd。将这些结果用于预测将菜子饼添加到Cd污染的土壤中后Cd的生物利用度。选择了两种常见的经济作物,小麦和玉米进行镉积累研究,发现它们对镉的生物利用度敏感。结果表明,菜子饼的添加可能抑制小麦和玉米的生长。此外,增加菜子饼剂量的添加导致芽和根生物量积累的减少。但是,菜籽饼剂量的增加确实导致了植物组织中Cd积累的减少,这从芽和根中Cd浓度的降低可以看出。通过DGT测量和传统的化学提取方法获得的不稳定的Cd浓度显示,随着菜子饼剂量的增加,Cd的含量明显降低。所有指标均与镉在植物组织中的积累呈显着正相关(p <0.01),但所有方法均不能反映植物的生长状况。另外,随着菜子饼剂量的增加,镉从固相转变为可在土壤溶液中转化的能力降低。 C DGT与C sol的比(R)值降低反映了这。我们的研究表明,R值的急剧下降不仅可以反映不稳定Cd从固相中释放的极低能力,而且还可以用于评估植物的异常生长。

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