Volume 139, Issue 41 e52998
RESEARCH ARTICLE

Eco-friendly superabsorbent hydrogels based on starch, gellan gum, citric acid, and nanoclays for soil humidity control

Rodrigo C. Sabadini

Rodrigo C. Sabadini

Center of Chemistry and Department of Chemistry, University of Minho, Braga, Portugal

IQSC, University of São Paulo, São Carlos, Brazil

Contribution: Formal analysis (lead), Methodology (lead), Writing - original draft (equal)

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Mariana Fernandes

Mariana Fernandes

Department of Chemistry and CQ-VR, University of Trás-os-Montes e Alto Douro, Vila Real, Portugal

Contribution: Formal analysis (supporting), Writing - original draft (equal)

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Verónica de Zea Bermudez

Verónica de Zea Bermudez

Department of Chemistry and CQ-VR, University of Trás-os-Montes e Alto Douro, Vila Real, Portugal

Contribution: Writing - review & editing (equal)

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Agnieszka Pawlicka

Agnieszka Pawlicka

IQSC, University of São Paulo, São Carlos, Brazil

Contribution: Writing - review & editing (equal)

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Maria M. Silva

Corresponding Author

Maria M. Silva

Center of Chemistry and Department of Chemistry, University of Minho, Braga, Portugal

Correspondence

Maria M. Silva, Center of Chemistry and Department of Chemistry, University of Minho, Gualtar, 4710-057 Braga, Portugal.

Email: [email protected]

Contribution: ​Investigation (equal), Writing - review & editing (lead)

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First published: 11 August 2022
Citations: 5

Funding information: National Council for Scientific and Technological Development; Foundation for Science and Technology; Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Abstract

The increase in agricultural product demand has entangled the modernization of agriculture. Advances in research have improved production systems, machinery, fertilizers, and pesticides, among others, which are usually applied in an unsustainable way. In this context, hydrogels are attractive materials. Generally, they can be defined as three-dimensional structures formed from crosslinked hydrophilic polymers with high water absorption capacity. The crosslinks of polymeric chains maintain their structure, letting them absorb large amounts of water without dissolving. This work presents new eco-friendly superabsorbent hydrogels composed of starch and gellan gum crosslinked with citric acid (CA) and incorporating bentonite (BET) and halloysite (HAL) nanoclays. The addition of nanoclays aimed at developing better soil conditioners, while controlling water management for crop production. Hydrogels with compositions ranging from 100%, 75%, 25%, and 0% of gellan gum to starch, all crosslinked with 10%, 5%, and 2% (w/w) of CA. The samples were characterized by Fourier-transform infrared spectroscopy (FTIR), and differential scanning calorimetry (DSC). The water swelling properties were studied.

DATA AVAILABILITY STATEMENT

The data that support the findings of this study are available from the corresponding author upon reasonable request.

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