APPLICATION OF COMPLEX FERTILIZERS AND BIOPREPARATIONS IN ORGANIC PRODUCTION OF OIL FLAX

A. Shuvar, Y. Salo
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Abstract

The purpose of research is the development of a competitive, adapted to soil and climatic conditions of the Forest-Steppe zone of the western, organic technology for growing oilseed flax. Research methods – hypothesis, experiment, observation, quantitative-weight, field, visual and comparative calculation. Research results. The use of growth stimulants Vitazim, Ascostart Spectrum for flax seed treatment of flax seeds led to an increase in germination of seeds by 4.2-5.2 % . The highest productivity of seeds oil flax (1.34 t / ha) was obtained by using the biostimulant Vitazim (1.0 l / t) for pre-sowing seed treatment. The increase before control was 14.1 %. Other studies have stimulated the growth and development of plants contributed to an increase in the yield of oilseed flax in the range of 9.5-10.9 %. For complex micro-fertilizers this indicator was in the range of 0.08-0.09 t / ha (6.8-7.8 %). Pre-sowing treatment of flax seeds with growth stimulators Spectrum Ascostart, Vitazim, Ecoline Boron, Vympel 2 influenced the increase of oil content in seeds by 0.5-1.4 %. The highest yield of flaxseed oil for growing flax on an organic basis (0.563 t / ha) was obtained using the biostimulant Vitazim. The increase before control was 0.08-0.095 t / ha (17.1-20.3 %) depending on the method of use. Other complex fertilizers and stimulators of plant growth and development provided an increase in oil yield at the level of 0.048–0.092 t / ha (10.3-19.7 %) with the control indicator at 0.468 t / ha. Analysis of the content of heavy metals in oilseed flax seeds using complex micro-fertilizers and growth stimulants indicates its environmental safety. In particular, their content was significantly lower than the MPC: zinc - 11.4-12.7 (MPC - 50 mg / kg), lead - 0.01-0.07 (MPC - 0.3 mg / kg), cadmium - no more 0.010 (MPC - 0.03 mg / kg), copper - 5.9-6.8 (MPC - 10.0 mg / kg). Conclusions. The use of the studied complex micro-fertilizers and growth stimulants in the organic technology of oil flax cultivation helped to increase the length of the growing season, increased germination and reduced plant disease. The use of these drugs for treatment seed and foliar fertilization led to an increase in seed yield by 9.0-21.8 % compared to control (1.1 t / ha) and an increase in content of 0.6-0.9 % and oil yield in within 0.048-0.095 t / ha (10.3-20.8 %).
复合肥料与生物修复剂在油亚麻有机生产中的应用
本研究的目的是开发一种具有竞争力的、适应西部森林草原区土壤和气候条件的有机油麻种植技术。研究方法——假设、实验、观察、定量权重、现场、视觉和比较计算。研究结果。使用生长促进剂Vitazim、Ascostart Spectrum对亚麻种子进行处理,使亚麻种子的发芽率提高了4.2-5.2%。采用生物刺激剂维他灵(1.0l/t)进行播种前处理,可获得最高的亚麻籽产量(1.34t/ha)。对照前增加14.1%。其他研究刺激了植物的生长发育,使油籽亚麻的产量增加了9.5-10.9%。对于复合微肥,这一指标在0.08-0.09吨/公顷(6.8-7.8%)的范围内。生长促进剂Spectrum Ascostart、Vitazim、Ecoline Boron、Vympel 2对亚麻种子的播前处理使种子含油量增加0.5~1.4%。使用生物刺激剂Vitazim获得了在有机基础上种植亚麻的最高亚麻籽油产量(0.563t/ha)。对照前的增加量为0.08-0.095t/ha(17.1-20.3%),具体取决于使用方法。其他复合肥料和植物生长发育刺激剂使石油产量增加0.048–0.092吨/公顷(10.3-19.7%),控制指标为0.468吨/公顷。采用复合微肥和生长促进剂对油麻种子中重金属含量进行分析,表明其环境安全性。特别是,它们的含量显著低于MPC:锌-11.4-12.7(MPC-50 mg/kg),铅0.01-0.07(MPC0.3 mg/kg),镉不超过0.010(MPC0.03 mg/kg),铜5.9-6.8(MPC10.0 mg/kg)。结论。在亚麻有机栽培技术中使用所研究的复合微肥和生长促进剂有助于延长生长季节的长度,提高发芽率,减少植物病害。与对照(1.1t/ha)相比,使用这些药物进行处理种子和叶面施肥可使种子产量增加9.0-21.8%,含量增加0.6-0.9%,产油量在0.048-0.095t/ha(10.3-20.8%)之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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