THE EFFECT OF ORGANIC FERTILIZERS ON THE CONTENT OF TRACE ELEMENTS IN THE GREEN MASS OF CORN

N. Syrchina, L. Pilip, Tamara Yakovlevna Ashikhmina
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Abstract

The optimal content of trace elements in green feeds is of fundamental importance for ensuring high productivity of cattle. For the production of green fodder, corn grown in fields located near livestock complexes and fertilized by by-products of animal husbandry (BPA) is used. In conditions of a high load of BPA (manure, manure runoff), the accumulation of trace elements in the green mass of corn (GMC) occurs more intensively than when using fertilizers in mineral form. Corn cultivation promotes active removal of Fe, Zn, Mn from the soil and weak removal of Cu. The accumulation of trace elements in plants grown on acidic soils fertilized by BPA is higher than when grown on neutral soils. According to the absolute content in GMC, trace elements are arranged in the following sequence: Mn>Fe>Zn>Cu. The corresponding series coincides with the sequence of decreasing concentrations of mobile forms of elements in agro-ecosystems, but differs from the sequence of changes in the indices of accumulation (IA) of trace elements. The IA values calculated on the basis of experimental data are arranged as follows: Fe>Zn>Mn>Cu. The IA of all trace elements, except Cu, in the GMC was higher than one, so corn can be classified as battery plants. IA Cu in different agro-ecosystems was below 1 and practically did not depend on the level of metabolic acidity. The weak accumulation is probably due to the low Cu content in sod-podzolic soils, the high stability of Cu complexes with organic ligands and the significant content of nitrogen available to plants in soils fertilized by BPA.
有机肥对玉米绿色块中微量元素含量的影响
青饲料中微量元素的最佳含量对确保牛的高产至关重要。为了生产青饲料,人们使用在畜牧场附近的田地里种植的玉米,并用畜牧业副产品(BPA)施肥。在 BPA(粪便、粪便径流)负荷较高的条件下,玉米青储(GMC)中微量元素的积累比使用矿物质肥料时更为密集。玉米种植能促进土壤中铁、锌、锰的主动清除,而对铜的清除较弱。在施用双酚 A 酸性肥料的酸性土壤上生长的植物,其微量元素的累积量高于在中性土壤上生长的植物。根据微量元素在 GMC 中的绝对含量,微量元素按以下顺序排列:锰>铁>锌>铜。相应的序列与农业生态系统中移动形式元素浓度下降的序列相吻合,但与微量元素积累指数(IA)的变化序列不同。根据实验数据计算出的 IA 值排列如下:铁>锌>锰>铜。除 Cu 外,GMC 中所有微量元素的 IA 值均大于 1,因此玉米可归类为电池植物。在不同的农业生态系统中,铜的有效成分低于 1,而且实际上与代谢酸度无关。积累较弱的原因可能是草皮土壤中的铜含量较低,铜与有机配体的络合物稳定性较高,以及双酚 A 肥料土壤中植物可利用的氮含量较高。
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