Department of Agricultural and Environmental Chemistry, Instituto Superior de Agronomia, Technical University of Lisbon (TULisbon), Tapada da Ajuda, 1349-017 Lisboa, Portugal.
J Hazard Mater. 2010 Jan 15;173(1-3):570-5. doi: 10.1016/j.jhazmat.2009.08.124. Epub 2009 Aug 31.
Contamination of soils with cadmium (Cd) is a serious global issue due to its high mobility and toxicity. We investigated the application of insoluble polyacrylate polymers to improve soil and plant health. Sorghum was grown in a Cd-contaminated sandy soil. Polyacrylate polymers at 0.2% (w/w) were added to half of the soil. Control soil without plants was also included in the experiment. Growth of sorghum was stimulated in the polymer-amended soil. The concentration of Cd in the shoots, and the activities of catalase and ascorbate peroxidase decreased in plants from polymer-amended soil compared with unamended control. The amount of CaCl(2)-extractable Cd in the polymer-amended soil was 55% of that in the unamended soil. The Cd extracted in sorghum shoots was 0.19 mg per plant grown on soil without polymer and 0.41 mg per plant grown on polymer-amended soil. The total amount of Cd removed from each pot corresponded to 1.5 and more than 6% of soil CaCl(2)-extractable Cd in unamended and polymer-amended soil, respectively. The activities of soil acid phosphatase, beta-glucosidase, urease, protease and cellulase were greatest in polymer-amended soil with sorghum. In conclusion, the application of polyacrylate polymers to reduce the bioavailable Cd pool seems a promising method to enhance productivity and health of plants grown on Cd-contaminated soils.
土壤中镉(Cd)的污染是一个严重的全球性问题,因为它的高迁移性和毒性。我们研究了不溶性聚丙烯酸酯聚合物在改善土壤和植物健康方面的应用。高粱在受 Cd 污染的沙质土壤中生长。将 0.2%(w/w)的聚丙烯酸酯聚合物添加到一半土壤中。实验中还包括没有植物的对照土壤。在聚合物改良土壤中,高粱的生长得到了刺激。与未改良对照相比,聚合物改良土壤中植物地上部 Cd 的浓度、过氧化氢酶和抗坏血酸过氧化物酶的活性降低。聚合物改良土壤中可提取的 CaCl2-Cd 量为未改良土壤的 55%。在没有聚合物的土壤中,每株植物生长的地上部 Cd 提取量为 0.19 毫克,在聚合物改良土壤中,每株植物生长的地上部 Cd 提取量为 0.41 毫克。从每个盆中去除的 Cd 总量分别相当于未改良和聚合物改良土壤中 CaCl2-可提取 Cd 的 1.5%和 6%以上。在有高粱的聚合物改良土壤中,土壤酸性磷酸酶、β-葡萄糖苷酶、脲酶、蛋白酶和纤维素酶的活性最大。总之,将聚丙烯酸酯聚合物应用于降低生物可利用的 Cd 库似乎是一种很有前途的方法,可以提高生长在 Cd 污染土壤上的植物的生产力和健康。