首页> 外文期刊>Fertilizer Research: An International Journal on Fertilizer Use >CADMIUM CONCENTRATION IN VEGETABLE CROPS GROWN IN A SANDY SOIL AS AFFECTED BY CD LEVELS IN FERTILIZER AND SOIL PH
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CADMIUM CONCENTRATION IN VEGETABLE CROPS GROWN IN A SANDY SOIL AS AFFECTED BY CD LEVELS IN FERTILIZER AND SOIL PH

机译:肥料和土壤PH值对CD土壤中沙质土壤中蔬菜作物镉含量的影响

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Field trials were conducted over a three-year period with chinese cabbage (Brassica pekinensis Rupr.) and carrots (Daucus carota L.) grown in a sandy soil with pH adjusted to 5.5 and 6.5. The NPK fertilizers containing 1, 30, 90, and 400 mg Cd kg(-1) P were applied at the rate of 0.07, 2.1, 6.3 and 28 g Cd ha(-1) yr(-1). The amounts of Cd added through phosphate rock also ranged between 0.1 and 28 g ha(-1) yr(-1). The increased Cd application rates through NPK fertilizers increased the Cd concentration in both vegetables but the differences among treatments were not found to be significant. The Cd uptake by both crops was significantly (p<0.01) higher at pH 5.5 than at pH 6.5. Chinese cabbage exhibited lower Cd concentration than carrots. Carrot leaves contained higher Cd than its roots. Cadmium removals by chinese cabbage and carrot were about 0.7 and 1.3 g ha(-1) yr(-1), respectively. At pH 5.5, Cd concentrations in the two crops, based on a three-year average, were 23 and 46% higher than at pH 6.5. Cadmium uptake by chinese cabbage from different sources of phosphate rock was affected to a very limited extent. Cadmium concentration generally increased over the years. Cadmium extracted by ammonium nitrate after harvest of the crops was closely related with soil pH and Cd concentration in the plants.
机译:在pH调节至5.5和6.5的沙质土壤中生长的大白菜(Brassica pekinensis Rupr。)和胡萝卜(Daucus carota L.)进行了为期三年的田间试验。分别以0.07、2.1、6.3和28 g Cd ha(-1)yr(-1)的比例施用包含1、30、90和400 mg Cd kg(-1)P的NPK肥料。通过磷酸盐岩添加的Cd量也在0.1至28 g ha(-1)yr(-1)之间。通过NPK肥料增加的Cd施用量增加了两种蔬菜中Cd的浓度,但发现处理之间的差异并不显着。在pH 5.5下,两种作物对Cd的吸收均显着(p <0.01)高于在pH 6.5下。大白菜的镉含量比胡萝卜低。胡萝卜叶片中镉的含量高于其根部。大白菜和胡萝卜中镉的去除量分别约为0.7和1.3 g ha(-1)yr(-1)。在pH 5.5时,以三年平均水平计,两种作物中的Cd浓度比pH 6.5时分别高23%和46%。大白菜从不同来源的磷矿石中吸收镉的程度非常有限。多年来,镉的浓度普遍增加。作物收获后硝酸铵提取的镉与植物的土壤pH和Cd浓度密切相关。

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