Screening and Evaluation of Methods for Determining Available Lead (Pb) and Cadmium (Cd) in Farmland Soil

被引:1
|
作者
Chen Y. [1 ,2 ]
Liu H.-Y. [1 ,2 ]
Liu N. [1 ,2 ]
Jiang Z.-M. [1 ,2 ]
Wei S.-Q. [1 ,2 ]
机构
[1] College of Resources and Environment, Southwest University, Chongqing
[2] Chongqing Key Laboratory of Agricultural Resources and Environment, Chongqing
来源
Huanjing Kexue/Environmental Science | 2021年 / 42卷 / 07期
关键词
Availability; Cadmium; Farmland soil; Lead; Lolium perenne L;
D O I
10.13227/j.hjkx.202012011
中图分类号
学科分类号
摘要
The accumulation of heavy metals in crops is largely dependent on the availability of heavy metals in soils. Due to the differences of soil types and pollution characteristics, there is no widely recognized method for the determination of the bio-available heavy metals in soils such as Pb and Cd. In order to screen and establish suitable methods, the extractable abilities of five extractants (CaCl2, NH4OAc, HCl, EDTA, and DTPA) and Gradient Diffusion Film Technology (DGT) on four typical farmland soils with very different properties in Chongqing (acid purple soil, neutral purple soil, calcareous yellow soil and calcareous purple soil) were systematically compared. Simultaneously, pot experiments were carried out with Lolium perenne L. as an indicator plant to explore the relationship between the extractable soil Pb and Cd and their accumulation in plants. The feasibility of the tested methods were evaluated based on the extractability and co-relationships. The results showed that the extractability of the tested extractants for soil Pb and Cd varied a lot. HCl showed highest extractability on Pb in acid purple soil and calcareous yellow soil, while EDTA did the best in neutral purple soil and calcareous purple soil; HCl showed best extractability in all soils except calcareous purple soil, where EDTA was the best. Considering the correlation between the extraction amount and uptake by plant, all the extraction methods could be applied for the evaluation of the bioavailability of soils Pb and Cd except CaCl2 for Pb due to its weak extractability for Pb for a specific soil type. For the comparison of heavy bioavailability in different soil types, EDTA-extractable Pb and DGT-extractable Cd were recommended due to their well co-relationships between extractable amount in soil and uptake by plant (Lolium perenne L.) as indicated by the correlation coefficients of 0.941 and 0.919, respectively. HCl was relatively suitable as Cd extractant compared to others if DGT method could not be used. © 2021, Science Press. All right reserved.
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页码:3494 / 3506
页数:12
相关论文
共 44 条
  • [1] Shi T R, Ma J, Wu X, Et al., Inventories of heavy metal inputs and outputs to and from agricultural soils: a review, Ecotoxicology and Environmental Safety, 164, pp. 118-124, (2018)
  • [2] 5, pp. 10-11
  • [3] Chen Y Y, Tang M Y, Wang S T, Et al., Evaluation of heavy metal pollution in farmland soil of China based on bibliometrics, Chinese Journal of Soil Science, 47, 1, pp. 219-225, (2016)
  • [4] Wang S, Zheng L, Zhang X, Et al., Ecological and health risk assessment of heavy metal (Pb, Cd and Cr) in farmland soil in a typical region of a river basin, Chinese Journal of Public Health Engineering, 19, 3, pp. 321-325, (2020)
  • [5] Wang J, He Z A, Xie S G, Et al., Health risk assessment of heavy metals (Pb, Cd and Cr) in farmland soil of Hubei Province, Journal of Environmental Hygiene, 9, 3, pp. 258-263, (2019)
  • [6] Yang M L, Ye M L, Ma Y H, Et al., Review on heavy metal pollution evaluation in farmland soil based on bioavailable form of heavy metal, The Administration and Technique of Environmental Monitoring, 31, 1, pp. 10-13, (2019)
  • [7] He J Q, Xu J L, Yang J R, Et al., Study of the extractents for available Cd, Cu, Zn and ph in soils, Agro-environmental Protection, 13, 6, pp. 246-251, (1994)
  • [8] Zhang X M, Zhang X Y, Zhong T Y, Et al., Spatial distribution and accumulation of heavy metal in arable land soil of China, Environmental Science, 35, 2, pp. 692-703, (2014)
  • [9] Chen W X, Li Q, Wang Z, Et al., Spatial distribution characteristics and pollution evaluation of heavy metals in arable land soil of China, Environmental Science, 41, 6, pp. 2822-2833, (2020)
  • [10] Li Y L, Lu Y F, Chen W P, Et al., Spatial-temporal variation and source change of heavy metals in the cropland soil in the industrial city, Environmental Science, 41, 3, pp. 1432-1439, (2020)