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Publishing Language: Chinese

Transformation Characteristics of Dextran-Modified Urea in Fluvo-Aquic Soil

YanGe YANShuiQin ZHANGMeng XUJiuKai XUYanTing LIBingQiang ZHAOLiang YUAN( )
Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences/National Key Laboratory of Efficient Utilization of Arid and Semi-arid Farmland in North China/Key Laboratory of Plant Nutrition and Fertilizer of Ministry of Agriculture and Rural Affairs, Beijing 100081
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Abstract

Objective

Sugars regulate the nitrogen transformation process in soil. However, the effects of different polymerization degrees of dextran on nitrogen conversion were not clear. This study focused on investigating the transformation characteristics of dextran-modified urea with varying degrees of polymerization in calcareous fluvo-aquic soil, analyzing the relationship between the polymerization degree of dextran and nitrogen efficiency, and revealing its functioning mechanism. It aimed to provide a solid theoretical basis for the application of different polymerization degrees of dextran in urea.

Method

Four types of modified urea were prepared by incorporating 1% glucose (monosaccharide, GU), maltose (2-poly, MU), oligomeric dextran (≈5-poly, OU), and polydextrose (≈20-poly, PU) into molten urea. Six treatments were designed: no fertilization (CK), conventional urea (U), and four dextran-modified urea treatments. A soil incubation experiment was conducted to evaluate nitrogen transformation, and 13C nuclear magnetic resonance (13C-NMR) spectroscopy was used to characterize the chemical structures, to uncover the urea conversion mechanism affected by dextran polymerization degree and structural changes.

Result

(1) Dextran-modified urea contained a Schiff base structure. (2) Compared with U, dextran-modified urea slowed urea hydrolysis and increased soil amide N content by 15.3%-37.1%, with the highest value in OU. (3) After the application of nitrogen fertilizer, the urease activity of the U treatment peaked at 1 d, whereas the urease activity of the dextran-modified urea treatment peaked at 2 d of incubation. (4) Ammonia volatilization accumulation of dextran-modified urea was reduced by 2.2%-12.9% compared with U. With the increase of the degree of polymerization of dextran, the accumulation of ammonia volatilization showed a gradually increasing trend. (5) At the end of the incubation, NO3--N content of dextran-modified urea was increased by 14.1%-30.5%. As the degree of polymerization of dextran increased, the nitrate nitrogen content first increased and then decreased. When the degree of polymerization was 3.35, the nitrate nitrogen content was the highest.

Conclusion

Dextran-modified urea effectively delayed urea hydrolysis, reduced ammonia volatilization, and enhanced soil NO3--N content. GU had the best impact on reducing ammonia volatilization, while dextran with a medium polymerization degree (3.35) had the best effect on improving the NO3--N content in the soil.

References

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Scientia Agricultura Sinica
Pages 1048-1059

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Cite this article:
YAN Y, ZHANG S, XU M, et al. Transformation Characteristics of Dextran-Modified Urea in Fluvo-Aquic Soil. Scientia Agricultura Sinica, 2026, 59(5): 1048-1059. https://doi.org/10.3864/j.issn.0578-1752.2026.05.010

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Received: 20 April 2025
Accepted: 19 May 2025
Published: 01 March 2026
© 2026 The Journal of Scientia Agricultura Sinica