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◆ Industrial Crops and Products2026-04-01· Chemistry

Zwitterionic humic acid hydrogel with anti-polyelectrolyte effect for dual-functional saline-alkali soil remediation and maize stress alleviation

Wenxu Zhang, Hongling Zhang, Rong Wang, Liangliang Wu, Lianchun Zhao, Guofu Ma, Zhe Zhang

原始摘要(英文原文)· Original abstract
Soil salinization severely constrains agricultural productivity in arid regions. This study synthesized a novel zwitterionic superabsorbent polymer (SAP), HA-g-P(AA-co-SBMA), by grafting humic acid (HA) and [2-(methacryloyloxy) ethyl] dimethyl-(3-sulphopropyl) (SBMA) onto an acrylic acid (AA) backbone. This material exhibits both water retention and salt resistance, with water absorption rates of 2698 g g −1 in distilled water and 122 g g −1 in 0.9% NaCl solution, while maintaining stable performance across a pH range of 4–10. Pot experiments demonstrated that as a salt barrier layer, this SAP reduced soil Na⁺ content by 28–46%, significantly lowered electrical conductivity (EC) and pH, and increased maize ( Zea mays L.) germination rates by 40–161% under 0.3–1.5% NaCl stress. Molecular dynamics (MD) simulations confirm that HA and SBMA synergistically enhance hydrophilicity and Na⁺ adsorption capacity through hydrogen bonding and electrostatic interactions. Granular SAP outperforms film-based forms by avoiding the oxygen-depletion effect. This study provides a sustainable, multifunctional material solution for saline-alkali soil remediation and crop stress resistance. The reclamation of saline-alkali soils is a worldwide challenge, and some improvement methods are more difficult to implement in drought-prone areas. This research shows that the two forms of superabsorbent polymers prepared can markedly improve soil physicochemical properties. In moderately and severely saline-alkali conditions, the use of these polymers can aid maize ( Zea mays L.) seed germination and support the normal growth of maize ( Zea mays L.) seedlings. • Introduce zwitterionic monomer SBMA to enhance polymer applicability in saline-alkaline environments. • All-atom MD calculations validate humic acid and SBMA boost polymer performance synergistically. • Prepared polymers improve soil physicochemical properties via physical barrier and chemical adsorption. • This polymer promotes maize seed germination and seedling growth under moderate-severe salt stress.
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Zwitterionic humic acid hydrogel with anti-polyelectrolyte effect for dual-functional saline-alkali soil remediation and maize stress alleviation — 科研速览 Science Skim