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The transfer of heavy metals to barley plants from soils amended with sewage sludge with different heavy metal burdens

机译:将重金属从土壤中转移到大麦植物中,土壤经重金属负荷不同的污泥修正

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Purpose Our main aim objective was to evaluate the transfer of Cd, Cr, Cu, Ni, Pb and Zn to barley (Hordeum vulgare) grown in various soils previously amended with two sewage sludges containing different concentrations of heavy metals. This allowed us to examine the transfer of heaw metals to barley roots and shoots and the occurrence of restriction mechanisms as function of soil type and for different heavy metal concentration scenarios. Material and methods A greenhouse experiment was performed to evaluate the transfer of heavy metals to barley grown in 36 agricultural soils from different parts of Spain previously amended with a single dose (equivalent to 501 dry weight ha~(-1)) of two sewage sludges with contrasting levels of heavy metals (common and spiked sludge: CS and SS). Results and discussion In soils amended with CS, heavy metals were transferred to roots in the order (mean values of the bio-concentration ratio in roots, BCF_(Roots), in brackets): Cu (2.4)~Ni (2.3)>Cd (2.1)>Zn (1.8)>Cr (0.7)~Pb (0.6); similar values were found for the soils amended with SS. The mean values of the soil-to-shoot ratio were: Cd (0.44)~Zn (0.39)~Cu (0.39)>Cr (0.20)>Ni (0.09)>Pb (0.01) for CS-amended soils; Zn (0.24)>Cu (0.15)~Cd (0.14)>Ni (0.05)~ Cr (0.03)>Pb (0.006) for SS-amended soils. Heavy metals were transferred from roots to shoots in the following order (mean values of the ratio concentration of heavy metals in shoots to roots in brackets): Cr (0.33)>Zn (0.24)~Cd (0.22)> Cu (0.19)>Ni (0.04)>Pb (0.02) for CS-amended soils; Zn (0.14)>Cd (0.09)~Cu (0.08)>Cr (0.05)>Ni (0.02)~Pb (0.010) for SS-amended soils. Conclusions Soils weakly restricted the mobility of heavy metals to roots, plant physiology restricted the transfer of heavy metals from roots to shoots, observing further restriction at high heavy metal loadings, and the transfer of Cd, Cu and Zn from soils to shoots was greater than for Cr, Ni and Pb. Stepwise multiple linear regressions revealed that soils with high sand content allowed greater soil-plant transfer of Cr, Cu, Pb and Zn. For Cd and Ni, soils with low pH and soil organic C, respectively, posed the highest risk.
机译:目的我们的主要目标是评估Cd,Cr,Cu,Ni,Pb和Zn转移到大麦(大麦)中,大麦先前用两种含不同浓度重金属的污水污泥进行了改良。这使我们能够研究将重金属向大麦根和芽的转移以及作为土壤类型和不同重金属浓度情景的限制机制的发生。材料和方法进行了温室实验,以评估重金属向大麦生长的影响,大麦生长于西班牙不同地区的36种农业土壤中,之前用单剂量(相当于501干重ha〜(-1))的两种污水污泥进行了修正。重金属含量不同(常见污泥和加标污泥:CS和SS)。结果与讨论在用CS改良的土壤中,重金属按以下顺序转移到根部(根部生物浓度比的平均值BCF_(根),方括号):Cu(2.4)〜Ni(2.3)> Cd (2.1)> Zn(1.8)> Cr(0.7)〜Pb(0.6);用SS修正的土壤发现了相似的值。土壤改良率的平均值为:CS改良土壤的Cd(0.44)〜Zn(0.39)〜Cu(0.39)> Cr(0.20)> Ni(0.09)> Pb(0.01)。改良SS土壤中的Zn(0.24)> Cu(0.15)〜Cd(0.14)> Ni(0.05)〜Cr(0.03)> Pb(0.006)。重金属按以下顺序从根部转移到芽中(芽中重金属与括号中的根的浓度比平均值):Cr(0.33)> Zn(0.24)〜Cd(0.22)> Cu(0.19)> CS改良土壤的Ni(0.04)> Pb(0.02);改良SS土壤中的Zn(0.14)> Cd(0.09)〜Cu(0.08)> Cr(0.05)> Ni(0.02)〜Pb(0.010)。结论土壤对重金属向根的迁移作用微弱,植物生理学限制了重金属从根向芽的迁移,在重金属含量高的情况下观察到进一步的限制,Cd,Cu和Zn从土壤向芽的迁移大于铬,镍和铅逐步多元线性回归表明,含沙量高的土壤允许更多的土壤植物对Cr,Cu,Pb和Zn的转移。对于镉和镍,pH值低的土壤和土壤有机碳的风险最高。

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