Preparation of copper glycinate and study of its effect on the germination of winter barley seeds

Agrology Pub Date : 2024-07-09 DOI:10.32819/202410
H. O. Petrushyna, S. M. Kramarev, N. M. Maksymova
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Abstract

We analyzed the encrustation of winter barley seeds, which includes its preliminary treatment with cuprum glycinate, with the purpose of increasing yield and biochemical indicators of grain, and also improving the ecological condition of the soil. The objective of the research was to select methods for the synthesis of cuprum glycinate, study its chemical composition and the possibility of using this compound as a chelated micro-fertilizer for pre-sowing encrustation of winter barley seed as part of a tank mixture. Two well-known synthesis methods were used to obtain cuprum glycinate. The first method was the interaction between CuO with a solution of glycine during heating, during which pink metallic copper inclusions were noticed in the mixture of reaction products. It was found that it is expedient to synthesize the glycine complex of cuprum by the reaction of a suspension of Cu2CO3(OH)2 with glycine during heating (the yield is 97%), since a complex compound Cu(NH2CH2COO)2•H2O of sufficient purity is formed. The composition of the synthesized substance and the confirmation of the formula of the compound Cu(NH2CH2COO)2•H2O were obtained by determining the infrared and the atomic absorption spectrum of the aqueous solution. Based on the obtained differences in the atomic absorption spectra of the synthesized copper sulfate and copper glycinate the formation of the latter was confirmed. The IR spectrum confirms the formula of the complex compound and the formation of strong covalent bonds between the metal cation and the ligands. The study of the effect of cuprum glycinate on the germination of winter barley Tutankhamun seeds was carried out in comparison with the similar effect of a complex compound of cuprum with ethylenediaminetetraacetate. The study of the influence of cuprum glycinate on the germination of winter barley revealed positive results in which the germination exceeded the control by 9–27%. Winter barley seeds treated with distilled water served as a control. Treatment of winter barley seeds with an aqueous solution of cuprum glycinate in the amount of 20 g of cuprum per 1 ton of grain led to better germination than pre-treatment of seeds with a twice concentrated corresponding solution. Treatment with a complex compound of copper with ethylenediaminetetraacetate had no significant effect on the germination and characteristics of sprouts. The results of laboratory studies confirmed the feasibility of using complex compounds of biometal copper with organic chelating ligands as microfertilizers for pre-sowing seed encrustation, as they have high stability and sufficient solubility in water, are non-toxic, are better absorbed by plants and are considered cost-effective and environmentally safe.
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制备甘氨酸铜并研究其对冬大麦种子萌发的影响
我们对冬大麦种子的包衣进行了分析,其中包括用甘氨酸铜对其进行初步处理,目的是提高产量和谷物的生化指标,同时改善土壤的生态条件。研究的目的是选择甘氨酸铜的合成方法,研究其化学成分以及将这种化合物作为螯合微肥用于冬大麦种子播种前包衣的可能性,并将其作为水槽混合物的一部分。我们采用了两种著名的合成方法来获得甘氨酸铜。第一种方法是在加热过程中氧化铜与甘氨酸溶液发生作用,在反应产物混合物中发现粉红色的金属铜夹杂物。研究发现,通过 Cu2CO3(OH)2 悬浮液与甘氨酸在加热过程中发生反应(产率为 97%)来合成铜的甘氨酸络合物是比较合适的,因为这样可以形成纯度足够高的络合物 Cu(NH2CH2COO)2-H2O。通过测定水溶液的红外光谱和原子吸收光谱,确定了合成物质的成分和化合物 Cu(NH2CH2COO)2-H2O 的分子式。根据合成的硫酸铜和甘氨酸铜的原子吸收光谱的差异,确认了后者的形成。红外光谱证实了复合物的分子式以及金属阳离子和配体之间形成的强共价键。研究了甘氨酸铜对冬大麦图坦卡蒙种子萌发的影响,并与铜与乙二胺四乙酸盐的复合物的类似影响进行了比较。甘氨酸铜对冬大麦发芽影响的研究结果显示,发芽率比对照组高出 9-27%。用蒸馏水处理的冬大麦种子作为对照。用甘氨酸铜水溶液处理冬大麦种子(每 1 吨谷物含 20 克甘氨酸铜)比用两倍浓度的相应溶液预处理种子的发芽率更高。用乙二胺四乙酸铜复合物处理种子对发芽和芽的特性没有明显影响。实验室研究结果证实,使用生物金属铜与有机螯合配体的复合物作为播种前种子包衣的微肥是可行的,因为它们具有高稳定性和足够的水溶性,无毒,更易被植物吸收,被认为具有成本效益且对环境安全。
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