Investigation of the effect of biological products on sunflower yield and removal of husks and seeds from the crushed chemical elements

Boyko A. L., Adamchuk V. V., Litvinyuk L. K., Demyanyiuk O. S., Boyko O. A., Kuraeva I. V., Voytiuk Yu. Yu.
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Abstract

Purpose. Study of the effect of biological products on sunflower yield and removal of chemical elements from the soil with husks and grain. Methods. Microbiological, field, analytical-experimental. Results. According to the research results, it was confirmed that the use of biological products makes it possible to regulate the intra-soil agrochemical process, influence the absorption coefficients of chemical elements from the soil by husks, seeds and leaves, increase crop increase and obtain environmentally friendly seeds. Sunflower carries a lot of phosphorus out of the soil. Conclusions. According to the results of production studies on the impact of biological products on the yield of sunflower of the French selection “Alzan” and the ecological purity of grain, it is established: 1. The use of biopreparations Bioecofunge-3, Bioecofunge-3 + Cerium and Ce + Bacillus subtilis makes it possible to regulate the intra-soil agrochemical process, including influencing the absorption rates of chemical elements from the soil with husks, seeds and leaves, increasing the increase in yield in the range of 20.95–41.21% and obtaining environmentally friendly sunflower seeds. It is confirmed that sunflower seeds are very depleting of phosphorus from the soil (phosphorus absorption rate is 40.0). 2. To replenish the soil with phosphorus, it is necessary to use husks for composting. Burning husks and leaves to obtain energy recovery will lead to environmental pollution by ions of phosphorus, titanium, vanadium, chromium, manganese, nickel, copper, zinc, gallium, germanium, lead and bismuth. 3. To reduce environmental pollution in post-harvest current operations from γ – radiation, it is necessary to improve the purification of sunflower seeds in the combine. 4. In order to obtain environmentally hazardous crop production, it is necessary to justify the MPC on the gross content of chemical elements in the soil from hydrogen to uranium and in the process of performing technological operations in the mode of the unit's movement to automatically compare the determined gross content of chemical elements with justified MPC, and make a decision on the choice of necessary technological operations in the introduction of biological products for the creation of growth conditions in the intra-soil agrochemical environment and development of cultivated crops and obtaining dangerous agricultural products, but for this it is necessary to develop a universal program for the regulation of the intra-soil agrochemical process, taking into account the peculiarities of the soil and climatic zones of Ukraine and climate change on planet Earth. Keywords: verbatim, soil, chemical elements, biologics, absorption rate, sunflower, husks, seeds, yield, ecology.
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生物制品对向日葵产量的影响及粉碎后化学元素对籽粒和壳的去除效果的研究
目的。生物制品对向日葵产量的影响及带壳和籽粒土壤中化学元素的去除研究。方法。微生物学,野外,分析实验。结果。研究结果证实,生物制品的使用可以调节土壤内的农化过程,影响稻壳、种子和叶片对土壤中化学元素的吸收系数,提高作物产量,获得环境友好的种子。向日葵从土壤中携带了大量的磷。根据生物制品对法国精选“阿尔赞”向日葵产量和粮食生态纯度影响的生产研究结果,确立:利用生物修复剂Bioecofunge-3、Bioecofunge-3 + Cerium和Ce +枯草芽孢杆菌,可以调节土壤内的农化过程,包括通过谷壳、种子和叶片影响土壤中化学元素的吸收速率,提高增产20.95 ~ 41.21%,获得环境友好的葵花籽。结果表明,葵花籽对土壤中磷的吸收率为40.0%。为了给土壤补充磷,有必要使用谷壳进行堆肥。2 .燃烧稻壳和稻叶获取能量回收会导致磷、钛、钒、铬、锰、镍、铜、锌、镓、锗、铅、铋等离子对环境的污染。为了减少收获后作业中γ辐射对环境的污染,有必要改进联合收割机中葵花籽的净化。为了获得对环境有害的作物生产,有必要对土壤中从氢到铀的化学元素的总含量进行MPC论证,并在机组运动模式下进行技术操作过程中,将测定的化学元素总含量与MPC进行自动比较。并决定在引进生物制品以创造土壤内农化环境的生长条件和栽培作物的发展以及获得危险农产品时选择必要的技术操作,但为此有必要制定一项调节土壤内农化过程的通用方案。考虑到乌克兰土壤和气候带的特点以及地球上的气候变化。关键词:逐字,土壤,化学元素,生物制剂,吸收率,向日葵,外壳,种子,产量,生态。
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https://journal.imesg.gov.ua Substantiation of the structural-functional scheme and performance of a rotary treater of periodic action for layer-by-layer seed treatment Methods of experimental studies of the process of drying bird droppings in a drum dryer Theoretical study of uniform motion of the harrowing section for steam treatment To the mathematical model of the process of contact heating of seeds in vacuum
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