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March 21, 2026Scientific Reports2 citationsOpen Access

Development of biodegradable hydrogels with adjustable moisture retention capacity for agricultural applications

AAAbdugani AzimovABAidarbek BolysbekGIG. M. Iztleuov

Key Points

  • The research aims to assess how biodegradable hydrogels affect soil water retention and crop resilience in arid conditions.
  • Developed hydrogels using microcrystalline cellulose, carboxymethyl cellulose, and hydroxyethyl cellulose with zeolite and bentonite minerals.
  • Conducted analyses on irrigated, rainfed, and arid agricultural lands in East Kazakhstan.
  • Measured the physicochemical and mechanical properties of hydrogels using infrared spectroscopy, X-ray diffraction, and scanning electron microscopy.
  • Biodegradable hydrogels significantly improved soil moisture retention capacity.
  • Plant growth and biomass accumulation showed positive trends due to the use of hydrogels.
  • Hydrogels demonstrated a considerable potential for enhancing water use efficiency in agriculture.

Abstract

This study developed and tested biodegradable hydrogels designed to improve soil water retention capacity and enhance the water stress resilience of crops. The primary research objective was to experimentally assess the effects of different hydrogels on the agroecological conditions of East Kazakhstan Region (Kazakhstan), which is characterized by an arid and sharply continental climate. The study involved three categories of agricultural land: irrigated (6 sites, 180 ha in total), rainfed (5 sites, 150 ha), and arid lands (4 sites, 120 ha). Agrochemical and biological soil analyses included assessments of climate factors, agrochemical indicators, and desertification levels. Biodegradable hydrogels were developed using microcrystalline cellulose, carboxymethyl cellulose, and hydroxyethyl cellulose, with the addition of zeolite and bentonite minerals. Physicochemical and mechanical properties of the hydrogels were measured employing various techniques, including infrared spectroscopy, X-ray diffraction, and scanning electron microscopy. The study confirmed the positive impact of biodegradable hydrogels on soil moisture retention capacity, plant growth, and biomass accumulation. The developed biodegradable hydrogels demonstrate considerable potential for improving soil properties and enhancing water use efficiency in agriculture, especially in moisture-deficient regions. The results can inform the development and implementation of sustainable agricultural technologies that facilitate climate change adaptation and contribute to food security.

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Cite This Study

Azimov et al. (2026) studied this question.

synapsesocial.com/papers/69be35606e48c4981c673a0fhttps://doi.org/10.1038/s41598-026-44948-w
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