a College of Environmental Science and Engineering , Taiyuan University of Technology , Taiyuan , P. R. China.
Int J Phytoremediation. 2019;21(6):610-616. doi: 10.1080/15226514.2018.1546276. Epub 2019 Mar 11.
Nano-hydroxyapatite (n-HAP) and two types of plants (rape plant and cabbage) were used in this study to investigate their combined remediation effect on the removal of heavy metal contaminated soil. Different n-HAP concentrations (5, 10, 15, 20, and 25 g kg) with two kinds of plants were used in the experiments and compared with two control groups without adding n-HAP. Compared with the control group, the total Cd concentration increased and the amount of available Cd decreased significantly in soil (p < 0.05) in text groups. Cd toxicity decreased, and the rape plant and cabbage biomass increased after adding n-HAP. Cd accumulation in rape plant and cabbage decreased when more n-HAP was added; Cd accumulated less in rape plant than in cabbage. The phosphatase activity in soil also increased after adding n-HAP. Results showed that the total Cd concentration was positively correlated with phosphatase activity, the concentration of the available Cd and Cd accumulated in root has a significant effect on phosphatase activity in Cd-contaminated soil (p < 0.05). Cd-contaminated soil could be remediated effectively with rape plant and n-HAP with a concentration of 15 g kg.
纳米羟基磷灰石(n-HAP)和两种植物(油菜和白菜)被用于这项研究,以研究它们对重金属污染土壤的联合修复效果。在实验中使用了不同浓度的 n-HAP(5、10、15、20 和 25 g kg),并与不添加 n-HAP 的两个对照组进行了比较。与对照组相比,添加 n-HAP 后土壤中的总 Cd 浓度增加,有效态 Cd 含量显著降低(p<0.05)。添加 n-HAP 后,Cd 毒性降低,油菜和白菜的生物量增加。添加更多的 n-HAP 会导致油菜和白菜中 Cd 的积累减少,油菜中 Cd 的积累量少于白菜。土壤中的磷酸酶活性也在添加 n-HAP 后增加。结果表明,土壤中总 Cd 浓度与磷酸酶活性呈正相关,有效态 Cd 浓度和根中 Cd 积累量对 Cd 污染土壤中的磷酸酶活性有显著影响(p<0.05)。用浓度为 15 g kg 的油菜和 n-HAP 可以有效地修复 Cd 污染土壤。