Photosynthetic and biological productivity of sugar beets depending on the fertilization system

V. Ivanina, M. Daniuk
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Abstract

Aim. To study the impact of an alternative organic-mineral fertilization on the photosynthetic and biological productivity of sugar beet under modernizing it with the latest agrochemical means. Меthods. Short-term field and analytical. Results. The results of research on the impact of an alternative organic-mineral fertilization with different saturation with the latest agrochemicals on the photosynthetic and biological productivity of sugar beets are presented. It was established that the development of the leaf surface, the content of chlorophyll in the leaves, the photosynthetic and biological productivity of sugar beet increased significantly when foliar fertilizing with agrochemicals was carried out against the background of the organic-mineral fertilization. Conclusions. Application of N30 + «Folcrop Combi» + «Folcrop Amin» for foliar fertilization against the background of 5 t/ha of straw + P90K90 under plowing + N90 under pre-sowing cultivation formed the maximum development of the leaf surface: in July – 1920 cm2/plant, in August – 2566, in September – 1790 cm2/plant. The specified fertilization ensured the maximum content of chlorophyll in leaves in July – 2.01%, August – 1.94%, September – 1.80%. The net productivity of photosynthesis in sugar beet plants in August with the application of straw and mineral fertilizers increased compared to the control without fertilizers – in 1.60 times, with additional foliar fertilization – in 1.77-1.93 times. The most intensive processes of photosynthesis occurred with the combined application of 5 t/ha of straw + P90K90 under plowing + N90 under pre-sowing cultivation + «Folcrop Combi» + «Folcrop Amin» − the net productivity of photosynthesis was 11.08 g/m2 per day. The use of a modernized organic-mineral fertilization (5 t/ha of straw + P90K90 under plowing + N90 undern pre-sowing cultivation + N30 + «Folcrop Combi» + «Folcrop Amin») ensured the highest biological productivity of sugar beet: yield of roots – 60.3 t/ha, sugar harvest – 10.37 with exceeding the control without fertilizers – by 19.1 and 3.20 t/ha.
施肥制度对甜菜光合和生物生产力的影响
的目标。研究在采用最新农化手段对甜菜进行现代化改造的条件下,有机矿交替施肥对甜菜光合和生物生产力的影响。Ме方法。短期工作和分析能力。结果。本文介绍了不同饱和度和最新农用化学品交替施用有机矿肥对甜菜光合和生物生产力影响的研究结果。结果表明,在有机矿肥的背景下,施用农化剂可显著提高甜菜叶片表面发育、叶绿素含量、光合生产力和生物生产力。结论。施用N30 +“Folcrop Combi”+“Folcrop Amin”叶片施肥,秸秆5 t/ hm2 +耕下P90K90 +播前栽培N90,叶片表面发育最大:7月- 1920 cm2/株,8月- 2566,9月- 1790 cm2/株。在指定施肥条件下,叶片叶绿素含量在7月- 2.01%、8月- 1.94%、9月- 1.80%达到最大值。8月份施用秸秆和矿物肥的甜菜植株光合净生产力比不施用化肥的甜菜植株提高了1.60倍,叶面施肥的甜菜植株光合净生产力提高了1.77 ~ 1.93倍。5 t/ hm2秸秆+耕下施用P90K90 +播前施用N90 +“Folcrop Combi”+“Folcrop Amin”组合施用的光合作用最密集,光合作用净生产力为11.08 g/m2 / d。使用现代化的有机-矿物施肥(5 t/公顷秸秆+耕下P90K90 +播前栽培N90 + N30 +“Folcrop Combi”+“Folcrop Amin”)确保了甜菜的最高生物生产力:根系产量为60.3 t/公顷,食糖产量为10.37,比不施肥的对照高出19.1 t/公顷和3.20 t/公顷。
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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