The Obtainment Process of Biopolymer Coated NPK Fertilizer and its Comparison with Analog on Berry Plants

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The transition to a highly productive and environmentally friendly agricultural sector, the development and implementation of systems for the rational use of mineral fertilizers for obtaining safe and high-quality, including functional, food products is one of the main tasks allocated by the President of the Russian Federation V. V. Putin. Due to this decree, the theory of mineral nutrition has received rapid development in recent decades within scientific and technological progress in the field of analytical chemistry and physics, molecular biology, and genetics. Information on various physiological and biochemical functions of plant nutrients has been obtained, and the regularities of the distribution of elements in various parts of plants and fruits (berries) have been also generalized. The main forms of nutrients in the soil and the factors determining the bioavailability of macro and micronutrients have been identified. The aim of this research paper is to produce a biodegradable fertilizer where Azofoska Universal (N16: P16: K16) was uniformly coated within layer size by water-soluble biopolymer through continuous flow reactor V-star. The obtained samples were further tested and compared to well-known American analog slow-released fertilizer TAGROW on berry plants under greenhouse conditions within, berry root plant volume, stress resistance of plants, yield, the resulting fruits were studied for sugar levels using an RHB-32ATC refractometer. Moreover, infrared spectroscopy data for obtained biopolymer coated Azafoska Universal is illustrated in this research.

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September 2021

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[1] Semin A.N. 2020. New challenges and priorities of agroeconomic research // Russian Agricultural Economics. No. 1. - P. 55-59.

Google Scholar

[2] Derunova E.A. 2020. Substantiation of long-term trends in the scientific and technological development of the agri-food complex of Russia // Regional agrosystems: economics and sociology. No. 2 - pp.38-44.

Google Scholar

[3] Bamatov IM, Rumyantsev E.V, Zanilov A Kh. 2019. The influence of biopolymer modification of mineral fertilizers on main agrochemical parameters of soil IOP Conf. Series: Earth and Environmental Science 315 052059.

DOI: 10.1088/1755-1315/315/5/052059

Google Scholar

[4] Ahmad, A. H., A. Wahid, F. Khalid, N. Fiaz, and M. S. Zamir, 2011: Impact of organic and inorganic sources of nitrogen and phosphorus fertilizers on growth, yield and quality of forage oat (Avena sativa L.), Cercetari Agronomiceîn Moldova, 3: 147.

DOI: 10.2478/v10298-012-0040-7

Google Scholar

[5] Bamatov I. M. 2018. The use of the driver-kuniyuki nutrient medium for micropropagation of rootstocks of lc-52 (Cerasus vulgaris х Cerasus fruticose) and gizela 6 (Peisica vulgaris х Cerasus canescens) Stone fruit crops Journal of Experimental Biology and Agricultural Sciences 6(3) 623-7.

DOI: 10.18006/2018.6(3).623.627

Google Scholar

[6] Bamatov I, Butsaeva E, Arsanov M and Bamatov D. 2019. The modification of murashige and skoog media for efficient cultivation of gizella-5 and vsl-2 rootstocks in vitro IOP Conf. Series: Earth and Environmental Science 315 042015.

DOI: 10.1088/1755-1315/315/4/042015

Google Scholar

[7] Pirogovskaya, G 2020 Smart, fertilizers. Science and innovations. No. 5 (207). - pp.28-32.

Google Scholar

[8] Adrakhimov F. G. 2017. Fertilizers of prolonged action - a promising direction of intensification of nursery growing. Federal State Budgetary Scientific Institution South Ural Research Institute of Horticulture and Potato Growing, - pp.54-60.

Google Scholar

[9] Bamatov, I. M., K. K. Sapaev, E. V. Rumyantsev. 2019. Coating of NPK fertiliser with astarch-based biodegradable polymer by using a v-star reactor. Key Engineering Materials. –– Vol. 816 KEM. pp.318-322. – DOI 10.4028/www.scientific.net/KEM.816.318.

DOI: 10.4028/www.scientific.net/kem.816.318

Google Scholar

[10] Savenkova L., Gercberga., Nikolaeva V., Dzene A., Bibers I., Kalnin M.: Proc. Biochem. 2000, 35, 573.

DOI: 10.1016/s0032-9592(99)00107-7

Google Scholar

[11] Williams, D. E. (1961). The absorption of pottasium as influenced by its concentration in the nutrient medium. Plant and Soil , pp.387-399.

DOI: 10.1007/bf01379471

Google Scholar

[12] Lubkowski, K., Grzmil, B. 2007. Controlled release fertilizers. Polish Journal of Chemical Technology. No 9, (4), pp.83-84.

DOI: 10.2478/v10026-007-0096-6

Google Scholar

[13] Martin E. Trenkel. 1997. Controlled-Release and Stabilized Fertilizers in Agriculture. International Fertilizer Industry Association, Paris, December. Р. 156.

Google Scholar

[14] Milani, P.; França, D.; Balieiro, A.G.; Faez, R. Polymers and its applications in agriculture. Polímeros 2017, 27, p.256–266.

DOI: 10.1590/0104-1428.09316

Google Scholar

[15] Bamatov I.M., Rumyantsev E.V., Zanilov A. Kh. 2019. The influence of biopolymer modification of mineral fertilizers on main agrochemical parameters of soil IOP Conf. Series: Earth and Environmental Science 315 052059.

DOI: 10.1088/1755-1315/315/5/052059

Google Scholar

[16] Zheng, W.; Liu, Z.; Zhang, M.; Shi, Y.; Zhu, Q. 2017. Improving crop yields, nitrogen use efficiencies, and profits by usingmixtures of coated controlled-released and uncoated urea in awheat-maize system. Field Crops Research, v. 205, n. 1, p.106–115.

DOI: 10.1016/j.fcr.2017.02.009

Google Scholar

[17] S. Junior, G. B.; Santos, E.; Silva, R. L. 2016.Nutritional status and fruit production of Carica papaya as a function of coated and conventional urea. Revista Brasileira de Engenharia Agrícola e Ambiental, v. 20, n. 4, pp.322-328.

DOI: 10.1590/1807-1929/agriambi.v20n4p322-328

Google Scholar

[18] Glaz, N.V. 2020. Optimization of mineral nutrition when growing seedlings of fruit crops in containers. Bulletin of Russian agricultural science. No. 3. pp.52-55.

DOI: 10.30850/vrsn/2020/3/52-55

Google Scholar

[19] Bzhetseva, A.B. (2020). Complex fertilizers of prolonged action as a factor of intensification of agriculture. Innovative development path as a response to the challenges of the new time: collection of articles of the International Scientific and Practical Conference: Limited Liability Company OMEGA SINCE, - pp.20-26.

Google Scholar

[20] Ibragim M. Bamatov, Evgenie V. Rumyantsev and Dzhabrail M. Bamatov. 2019. Development of the chemical reactor V-star for continuous flow reactions IOP Conference Series: Materials Science and Engineering 537 032020.

DOI: 10.1088/1757-899x/537/3/032020

Google Scholar

[21] Bamatov I.M., Bamatov D.M. 2018. Coating of Sodium Aluminosilicate with Sodium Sulphate and Sodium Carbonate in V-Star Reactor //Advanced in Engineering Research 177 pp.146-51.

DOI: 10.2991/isees-18.2018.29

Google Scholar

[22] Buntsevich L.L., Bamatov I.M. and Vinter M.A. 2018. Improvement of the efficiency of sanitation and primary propagation technology of garden strawberry in in vitroculture Journal of Pharmaceutical Sciences and Research 10(1) pp.79-84.

Google Scholar

[23] Markarova E.N. 1989. Physiology of plant root nutrition. Moscow: Moscow State University Publishing House. p.103.

Google Scholar