Mansouri Tahereh, Golchin Ahmad, Kouhestani Hossein
Department of Soil Science, College of Agriculture, University of Zanjan, Zanjan, Iran.
Department of Geology, College of Science, University of Zanjan, Zanjan, Iran.
Environ Monit Assess. 2017 Aug 13;189(9):450. doi: 10.1007/s10661-017-6163-4.
Soil pollution by arsenic increases the potential risk of arsenic entrance into the food chain. The usefulness of maleic anhydride- styrene- acrylic acid copolymer on the mobility and phytoavailability of arsenic was evaluated. Treatments were the concentrations of acrylic copolymer (0, 0.05, 0.10, and 0.20% w/w) and the concentrations of soil total arsenic (0, 6, 12, 24, 48, and 96 mg kg). Sodium arsenate was added in appropriate amounts to subsamples of an uncontaminated soil to give contaminated soils with different levels of arsenic. The contaminated soils were subjected to a greenhouse experiment using corn as the test crop. The results showed that contamination of soil by arsenic increased the concentrations of soil available arsenic, root and aerial parts arsenic. By the use of acrylic copolymer, the concentration of available arsenic in the soil and the accumulation of arsenic in the root and aerial parts of the corn plant decreased but the dry weights of the root and aerial parts increased significantly. When the concentration of soil total arsenic was 96 mg kg, the application of copolymer at the concentration of 0.20% w/w reduced the concentrations of arsenic in soil, root, and aerial parts by 62.53, 43.65, and 37.00% respectively, indicating that application of acrylic copolymer immobilized arsenic in soils.
土壤砷污染增加了砷进入食物链的潜在风险。评估了马来酸酐 - 苯乙烯 - 丙烯酸共聚物对砷的迁移性和植物有效性的作用。处理因素包括丙烯酸共聚物浓度(0、0.05、0.10和0.20% w/w)以及土壤总砷浓度(0、6、12、24、48和96 mg/kg)。向未受污染土壤的子样本中适量添加砷酸钠,以得到不同砷含量水平的污染土壤。利用玉米作为试验作物对污染土壤进行温室试验。结果表明,土壤砷污染增加了土壤有效砷、根和地上部分的砷浓度。通过使用丙烯酸共聚物,土壤中有效砷的浓度以及玉米植株根和地上部分的砷积累量降低,但根和地上部分的干重显著增加。当土壤总砷浓度为96 mg/kg时,以0.20% w/w浓度施用共聚物分别使土壤、根和地上部分的砷浓度降低了62.53%、43.65%和37.00%,表明施用丙烯酸共聚物可使土壤中的砷固定化。