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[海泡石对铅镉复合污染土壤-水稻系统中铅镉迁移与再分配的影响]

[Effect of Sepiolite Application on the Migration and Redistribution of Pb and Cd in Soil Rice System in Soil with Pb and Cd Combined Contamination].

作者信息

Fang Zhi-Ping, Liao Min, Zhang Nan, Lü Ting, Huang Xiao-Hui

机构信息

College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.

Zhejiang Provincial Key Laboratory of Subtropical Soil and Plant Nutrition, Hangzhou 310058, China.

出版信息

Huan Jing Ke Xue. 2017 Jul 8;38(7):3028-3035. doi: 10.13227/j.hjkx.201612254.

Abstract

In order to research the coordination relation between sepiolite application and the contents of available lead(Pb) and cadmium(Cd) in soil or rice absorption and redistribution of Pb and Cd, a pot experiment was conducted by selecting the soil sampled from a area polluted by Pb and Cd combination in Shaoxing City of Zhejiang Province and atypical late Japonica Rice Varieties in Zhejiang Province(Jia 33) with lower accumulation for Pb, Cd. The results showed that:the contents of available Pb and Cd in soil were significantly negatively correlated with the concentration of sepiolite added, the correlation coefficients of contents of available Pb and Cd with the concentration of sepiolite added were -0.940 respectively and -0.952, which reached the significant level(<0.01).The contents of Pb and Cd in rice roots, stems, leaves and polished rice had different reducing rates with the increase of the concentration of sepiolite. In addition, with the increase of the concentration of sepiolite added, the enrichment coefficients of Pb and Cd in rice roots, stems, leaves and polished rice decreased dramatically. At the same time, Pb and Cd absorbed by roots transferred to the stems decreasingly, Pb and Cd absorbed by stems transferred to the polished rice decreasingly. When the addition of Sepiolite was 9.00 g·kg soil, the contents of Pb and Cd in polished rice of Jia 33 were(0.14±0.02) mg·kg and(0.03±0.01) mg·kg respectively, which were all lower than the national limit index(GB 2762-2012). Compared with the control group, the enrichment coefficients of Pb in roots, stems and leaves and polished rice decreased by 8.83%, 29.96%, 49.20%, 79.41% respectively, and the enrichment coefficients of Cd decreased by 23.08%, 63.22%, 44.00%, 82.35% respectively. In addition, the transportation coefficients of Pb and Cd absorbed by roots transfer to the stems were decreased by 23.18% and 52.19% respectively and the transportation coefficients of stem rice translocation of Pb and Cd absorbed by stems transfer to the polished rice were decreased by 70.83%, 52.00%, respectively. This result means the sepiolite had a good resistance control in the migration and redistribution of Pb and Cd in soil rice system on the soil polluted by lead and cadmium, indicating the combination of rational application of sepiolite and rice varieties with lower accumulation for heavy metals can achieve safe agricultural utilization of the soil with combined contamination by a relatively higher concentration of Pb and Cd.

摘要

为研究海泡石施用与土壤中有效铅(Pb)、镉(Cd)含量以及水稻对Pb、Cd吸收和再分配之间的协调关系,选取浙江省绍兴市某铅镉复合污染区的土壤以及浙江省典型的Pb、Cd低积累晚粳稻品种(嘉33)进行盆栽试验。结果表明:土壤中有效Pb、Cd含量与海泡石添加浓度呈显著负相关,有效Pb、Cd含量与海泡石添加浓度的相关系数分别为-0.940和-0.952,均达到显著水平(<0.01)。随着海泡石浓度增加,水稻根、茎、叶和糙米中Pb、Cd含量的降低率不同。此外,随着海泡石添加浓度的增加,水稻根、茎、叶和糙米中Pb、Cd的富集系数显著降低。同时,根吸收的Pb、Cd向茎部转移的量逐渐减少,茎吸收的Pb、Cd向糙米转移的量也逐渐减少。当海泡石添加量为9.00 g·kg土壤时,嘉33糙米中Pb、Cd含量分别为((0.14\pm0.02))mg·kg和((0.03\pm0.01))mg·kg,均低于国家限量指标(GB 2762-2012)。与对照组相比,根、茎、叶和糙米中Pb的富集系数分别降低了8.83%、29.96%、49.20%、79.41%,Cd的富集系数分别降低了23.08%、63.22%、44.00%、82.35%。此外,根吸收的Pb、Cd向茎部转移的转运系数分别降低了23.18%和52.19%,茎吸收的Pb、Cd向糙米转移的转运系数分别降低了70.83%、52.00%。这表明海泡石对铅镉污染土壤-水稻系统中Pb、Cd的迁移和再分配具有良好的阻控作用,说明合理施用海泡石与重金属低积累水稻品种相结合能够实现较高浓度Pb、Cd复合污染土壤的安全农业利用。

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