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Volume 37 Issue 3
Mar.  2022
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Article Contents
LUO Q D. Fertilizer-enhanced Phytoextraction of Pennisetum sinese Roxb on Cadmium in Soil [J]. Fujian Journal of Agricultural Sciences,2022,37(3):398−404 doi: 10.19303/j.issn.1008-0384.2022.003.016
Citation: LUO Q D. Fertilizer-enhanced Phytoextraction of Pennisetum sinese Roxb on Cadmium in Soil [J]. Fujian Journal of Agricultural Sciences,2022,37(3):398−404 doi: 10.19303/j.issn.1008-0384.2022.003.016

Fertilizer-enhanced Phytoextraction of Pennisetum sinese Roxb on Cadmium in Soil

doi: 10.19303/j.issn.1008-0384.2022.003.016
  • Received Date: 2021-08-14
  • Rev Recd Date: 2021-12-12
  • Available Online: 2022-02-07
  • Publish Date: 2022-03-28
  •   Objective   Enhancing effect of chemical fertilizers on the phytoextraction of king grass (Pennisetum sinese Roxb) on cadmium (Cd) in contaminated soil were evaluated.   Method  Chemical fertilizers, i.e., NH4Cl, KCl, and CO(NH2)2, at the rate of 0.6 kg·m−2 were applied, along with control, to the soil nearby a cadmium-contaminated mining field for the experimentation.   Result   The fertilizations significantly increased the aboveground biomass of the king grass in 150 d (P<0.05). The addition of NH4Cl or KCl raised the Cd concentration in the grass leaves (P<0.05), but CO(NH2)2 showed no significant effect. Comparing with control, which had a Cd-accumulation in grass leaves of 6.52 mg·plant−1, NH4Cl increased the accumulation by 70.19%, CO(NH2)2 by 43.58%, and KCl by 59.05%. The NH4Cl addition significantly rose the coefficients of Cd transfer from land and bioconcentration in grass. Significantly, these fertilizers improved the efficiency of Cd removal from soil by king grass reducing the time for the pollution remediation. The Cd-removal in 90-150 d was 1.13-2.58 times greater than that in 1-90 d. It was estimated that a 150 d harvest cycle and twice a year on king grass planted in the Cd-contaminated field fertilized with NH4Cl could turn the soil to meet the minimum national safety requirements of pH≤5.5 and Cd≤0.3 mg·kg−1 in 9.07 years.   Conclusion  It was recommended twice a year of 150 d harvest cycle with NH4Cl-fertilization be applied on the Cd-contaminated soil to mitigate the pollution in soil.
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  • [1]
    环境保护部, 国土资源部. 全国土壤污染状况调查公报[R]. 北京: 环境保护部, 国土资源部, 2014.
    [2]
    CLEMENS S, AARTS M G M, THOMINE S, et al. Plant science: The key to preventing slow cadmium poisoning[J]. 2013, 18: 92−99.
    [3]
    SPONZA D, KARAOGLU N. Environmental geochemistry and pollution studies of Aliaga metal industry district[J]. 2002, 27: 541−553.
    [4]
    JIE L, WEI Q, KADIISKA M B. Role of oxidative stress in cadmium toxicity and carcinogenesis[J]. 2009, 238: 209−214.
    [5]
    SARWAR N, IMRAN M, SHAHEEN M R, et al. Phytoremediation strategies for soils contaminated with heavy metals: Modifications and future perspectives [J]. Chemosphere, 2017, 171: 710−721. doi: 10.1016/j.chemosphere.2016.12.116
    [6]
    LIU Z L, CHEN W, HE X Y, et al. Effects of cadmium on growth and accumulation characteristics in leaf bud of Lonicera japonica Thunb[C]. International Symposium on Water Resource and Environmental Protection IEEE, 2011: 2928−2930.
    [7]
    ZHANG S, LIN H, DENG L, et al. Cadmium tolerance and accumulation characteristics of Siegesbeckia orientalis L. [J]. Ecological Engineering, 2013, 51(2): 133−139.
    [8]
    SUN Y, ZHOU Q, WANG L, et al. Cadmium tolerance and accumulation characteristics of Bidens pilosa L. as a potential Cd-hyperaccumulator [J]. Journal of Hazardous Materials, 2009, 161(2): 808−814.
    [9]
    杨姝, 贾乐, 毕玉芬, 等. 7种紫花苜蓿对云南某铅锌矿区土壤镉铅的累积特征及品质差异 [J]. 农业资源与环境学报, 2018, 35(3):222−228.

    YANG S, JIA L, BI Y F, et al. Interspecific differences and accumulative characteristics of cadmium and lead about seven alfalfa (Medicago Sativa L. ) cultivars in a Lead-Zinc mine of Yunnan, China [J]. Journal of Agricultural Resources and Environment, 2018, 35(3): 222−228.(in Chinese)
    [10]
    ZHANG X F, XIA H P, ZHI A L, et al. Potential of four forage grasses in remediation of Cd and Zn contaminated soils [J]. Bioresource Technology, 2010, 101(6): 2063−2066. doi: 10.1016/j.biortech.2009.11.065
    [11]
    CHEN Y H, HU L, LIU X L, et al. Influences of king grass (Pennisetum sinese Roxb)-enhanced approaches for phytoextraction and microbial communities in multi-metal contaminated soil [J]. Geoderma, 2017, 307: 253−266. doi: 10.1016/j.geoderma.2017.07.042
    [12]
    ZACCHEO P, CRIPPA L, PASTA V. Ammonium nutrition as a strategy for cadmium mobilisation in the rhizosphere of sunflower [J]. Plant & Soil., 2006, 283(1/2): 43−56.
    [13]
    宋珺宇. 氮素形态对杨树耐镉胁迫及吸收、富集效率的影响[D]. 杨凌: 西北农林科技大学, 2019.

    SONG J Y. Effects of nitrogen forms on cadmium tolerance, absorption and enrichment efficiency of poplar[D]. Yangling: Northwest Agriculture and Forestry University, 2019.
    [14]
    聂俊华, 刘秀梅, 王庆仁. Pb(铅)富集植物品种的筛选 [J]. 农业工程学报, 2004(4):255−258. doi: 10.3321/j.issn:1002-6819.2004.04.061

    NIE J H, LIU X M, WANG Q R. Screening out of Pb hypertolerant plant species [J]. Transactions of the CSAE, 2004(4): 255−258.(in Chinese) doi: 10.3321/j.issn:1002-6819.2004.04.061
    [15]
    ELOUEAR Z, BOUHAMED F, BOUJELBEN N, et al. Application of sheep manure and potassium fertilizer to contaminated soil and its effect on zinc, cadmium and lead accumulation by alfalfa plants [J]. Sustainable Environment Research., 2016, 26(3): 131−135. doi: 10.1016/j.serj.2016.04.004
    [16]
    鲁如坤. 土壤农业化学分析方法[M]. 北京: 中国农业科技出版社, 2000: 12−14.
    [17]
    CHEN Y H, LIU M J, DENG Y W, et al. Comparison of ammonium fertilizers, EDTA, and NTA on enhancing the uptake of cadmium by an energy plant, napier grass ( Pennisetum purpureum Schumach) [J]. Journal of Soils & Sediments., 2017, 17(12): 2786−2796.
    [18]
    WANG J C, CHEN X F, CHU S H, et al. Influence of Cd toxicity on subcellular distribution, chemical forms, and physiological responses of cell wall components towards short-term Cd stress in Solanum nigrum [J]. Environment Science and Pollution Research, 2021, 28: 13955−13969. doi: 10.1007/s11356-020-11505-5
    [19]
    SHANG X S, XUE W X, JIANG Y, et al. Ca alleviated Cd-induced toxicity in salix matsudana by affecting Cd absorption, translocation, subcellular distribution, and chemical forms[J]. BMC Plant Biology, 2020. DOI: 10.21203/rs.2.24734/v1
    [20]
    SMOLDERS E, MCLAUGHLIN M J. Effect of Cl on Cd uptake by swiss chard in nutrient solutions [J]. Plant and Soil, 1996, 179(1): 57−64. doi: 10.1007/BF00011642
    [21]
    SMOLDERS E, MCLAUGHLIN MJ. Chloride increases cadmium uptake in swiss chard in a resin-buffered nutrient solution [J]. Soil Science Society of America Journal, 1996, 60(5): 1443−1447. doi: 10.2136/sssaj1996.03615995006000050022x
    [22]
    ZACCHEO P, CRIPPA L, PASTA V D M. Ammonium nutrition as a strategy for cadmium mobilisation in the rhizosphere of sunflower [J]. Plant and Soil, 2006, 283(1/2): 43−56.
    [23]
    王剑, 杨婷婷, 朱有为, 等. 田间条件下施用石灰石及调理剂降低土壤镉可提取性的效应 [J]. 水土保持学报, 2021, 35(4):334−340, 368.

    WANG J, YANG T T, ZHU Y W, et al. Effects of limestone and conditioner on reducing soil Cd extractability under field conditions [J]. Journal of Soil and Water Conservation, 2021, 35(4): 334−340, 368.(in Chinese)
    [24]
    GRUTER R, COSTEROUSSE B, BERTONI A, et al. Green manure and long-term fertilization effects on available soil zinc and cadmium and their accumulation by wheat (Triticum aestivum L. ) at different growth stages [J]. The Science of the Total Environment, 2017, 599-600: 1330−1343. doi: 10.1016/j.scitotenv.2017.05.070
    [25]
    LIU W X, ZHANG C J, HU P J, et al. Influence of nitrogen form on the phytoextraction of cadmium by a newly discovered hyperaccumulator Carpobrotus rossii [J]. Environmental Science and Pollution Research, 2016, 23: 1246−1253. doi: 10.1007/s11356-015-5231-y
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