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Plant uptake of major and minor mineral elements as influenced by soil acidity and liming

机译:土壤酸度和石灰对植物吸收主要和次要矿质元素的影响

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This study reports effects on soil solution chemistry and plant uptake of 55 elements (Ag, Al, As, B, Ba, Be, Bi, Br, Ca, Cd, Ce, Co, Cr, Cs, Cu, Dy, Er, Eu, Fe, Gd, Ge, Hf, Hg, Ho, K, La, Li, Lu, Mg, Mn, Mo, Na, Nb, Nd, Ni, P, Pb, Pr, Rb, S, Sb, Sc, Se, Si, Sm, Sr, Tb, Th, Tl, U, V, W, Y, Yb, Zn, Zr) by raising the pH using addition of fine-grained precipitated calcium carbonate at 20 rates (yielding a soil solution pH range of 5.2 - 7.8) to A horizon samples of an acid Cambisol, cultivating a common grass (Agrostis capillaris L.) and determining the soil solution, root and shoot concentrations of these elements at the end of the experiment. For many of these elements, there is little or no previous information about concentrations in soil solutions, or in plant biomass, as related to soil pH/acidity or addition of calcium carbonate. Soil solutions were obtained by high speed centrifugation and ultraflltration (0.2 #mu#m) of samples at 60 percent water-holding capacity. Concentrations of elements were determined by ICP-ES or (in most elements) ICP-MS, using isotopes specified. Soil solution pH, HCO_3 and organic C were also determined. Concentrations of elements in the biomass of A. capillaris were usually inversely related to soil solution pH.The most apparent (p<0.001) inverse, though often curvilinear, relationships between pH and concentrations in shoot biomass were measured for Ag, As, B, Ba, Eu, Ge, Li, Mn, Ni, P and Sr. Positive relationships (p<0.05) were only measured in Ca, Hg, Mg,Mo and S. For concentrations in root biomass, relationships were mostly, but not always, of the same sign and of a similar strength. Though soil solution pH and concentrations of elements were usually quite closely correlated, pH and/or HCO_3~- concentration more often accounted for a higher share of the variability in biomass concentration of elements than did soil solution concentration of the same element.
机译:这项研究报告了55种元素(Ag,Al,As,B,Ba,Be,Bi,Br,Ca,Cd,Ce,Co,Cr,Cs,Cu,Dy,Er,Eu对土壤溶液化学和植物吸收的影响,Fe,Gd,Ge,Hf,Hg,Ho,K,La,Li,Lu,Mg,Mn,Mo,Na,Nb,Nd,Ni,P,Pb,Pr,Rb,S,Sb,Sc,Se ,Si,Sm,Sr,Tb,Th,Tl,U,V,W,Y,Yb,Zn,Zr),方法是使用20倍的细粒沉淀碳酸钙添加pH来提高pH(产生土壤溶液的pH范围) 5.2-7.8)到酸性Cambisol的地平线样品中,种植普通草(Agrostis capillaris L.),并在实验结束时确定土壤溶液,这些元素的根和芽浓度。对于这些元素中的许多元素,以前很少或没有关于土壤溶液或植物生物量中与土壤pH /酸度或添加碳酸钙有关的信息。土壤溶液是通过以60%持水量进行高速离心和超滤(0.2#mu#m)获得的。通过ICP-ES或(在大多数元素中)ICP-MS使用指定的同位素确定元素的浓度。还测定了土壤溶液的pH,HCO_3和有机碳。毛细线菌生物量中元素的浓度通常与土壤溶液pH呈负相关.Ag,As,B, Ba,Eu,Ge,Li,Mn,Ni,P和Sr.仅在Ca,Hg,Mg,Mo和S中测量到正相关(p <0.05)。对于根生物量的浓度,主要是相关关系,但并非总是如此,具有相同的符号和相似的强度。尽管土壤溶液的pH值和元素浓度通常密切相关,但pH和/或HCO 3--浓度比相同元素的土壤溶液浓度更经常占元素生物量浓度变异性的较高份额。

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