首页> 外文期刊>Australian Journal of Soil Research >Use of alkaline flyash-based products to amend acid soils: Extractability of selected elements and their uptake by plants
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Use of alkaline flyash-based products to amend acid soils: Extractability of selected elements and their uptake by plants

机译:使用基于粉煤灰的碱性产品修正酸性土壤:选定元素的可萃取性及其对植物的吸收

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In addition to promoting plant growth, the incorporation of flyash material into soil also has the potential to affect the solubility and plant availability of some elements. This paper reports on the effect of 2 flyash products (FAP) on the extractability and plant uptake as a function of pH of selected elements of concern in the environment: As, B, Cd, Co, Cu, Cr, Mn, Pb, Ni, and Zn. The results for the growth response of maize plants (Zea mays L.) in the FAP-amended soils have been reported in a companion paper. The addition of the FAP to the soils used in this study at rates up to 5% w/w resulted in increased levels of Cu, Mn, Ni, As, and Co in an acetic acid extract. The levels of Cr, Mn, Ni, Pb, Zn, As, and Co in these extracts all showed a dependency on pH for some soils. Maize plants grown in the amended soils exhibited an increase in the plant uptake of Cu, Mn, and Ni in some soils. However, none of the elements studied increased the plant uptake to levels which would generally be considered toxic to plants or cause problems in the food chain. The presence of the FAP decreased the plant availability of Ni at low pH and levels of Mn and Cd in the acetic acid extract were decreased, most likely due to sorption of these elements by the FAP.There is no evidence that either the flyash alone, or the 2 FAP used in this study would pose a threat to plants or the environment when used at levels of up to 5% w/w. Possible beneficial effects for the environment were observed as the incorporation of FAP into soils has the capacity to reduce the uptake and potential toxicity of Cd, Ni, or Mn in some soils.
机译:除促进植物生长外,将粉煤灰材料掺入土壤还可能影响某些元素的溶解度和植物利用率。本文报告了两种粉煤灰产品(FAP)对环境中某些选定元素(As,B,Cd,Co,Cu,Cr,Mn,Pb,Ni,pH)的可萃取性和植物吸收与pH的关系的影响。和锌。 FAP改良土壤中玉米植物(Zea mays L.)生长响应的结果已在一篇同行论文中报道。在本研究中使用的土壤中添加FAP的比例高达5%w / w,导致乙酸提取物中的Cu,Mn,Ni,As和Co含量增加。这些提取物中的Cr,Mn,Ni,Pb,Zn,As和Co含量均对某些土壤的pH值有依赖性。在改良土壤中生长的玉米植物在某些土壤中对铜,锰和镍的植物吸收量增加。但是,所研究的元素均未将植物摄取量提高至通常被认为对植物有毒或在食物链中引起问题的水平。 FAP的存在降低了低pH下Ni的植物利用率,而乙酸提取物中Mn和Cd的含量降低了,这很可能是由于FAP对这些元素的吸附。或以最高5%w / w的水平使用时,本研究中使用的2 FAP会对植物或环境构成威胁。由于在土壤中掺入FAP具有减少某些土壤中Cd,Ni或Mn的吸收和潜在毒性的能力,因此观察到对环境可能产生的有益影响。

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