# A Poly(Acrylamide-co-Acrylic Acid)-Encapsulated Nitrification Inhibitor with Good Soil-Loosening, Phosphorous-Solubilizing, and Nitrogen Fixation Abilities and High-Temperature Resistance

**Authors:** Hui Gao, Yuli Fu, Tianyu Wang, Meijia Liu, Jianzhen Mao, Feng Xu

PMC · DOI: 10.3390/polym17091280 · Polymers · 2025-05-07

## TL;DR

This paper introduces a new nitrification inhibitor with improved thermal stability, soil-loosening, and phosphorus-solubilizing abilities.

## Contribution

A novel encapsulated nitrification inhibitor with enhanced functionality and high-temperature resistance is developed.

## Key findings

- The inhibitor shows a 120% increase in DMPZ content compared to previous products.
- It reduces soil bulk density and hardness while increasing permeability.
- It effectively solubilizes phosphorus and regulates soil environment.

## Abstract

3,4-dimethylpyrazole (DMPZ), when used as a nitrification inhibitor, exhibits volatility, poor thermal stability, high production costs, and limited functionality restricted to nitrogen fixation. To address these limitations and introduce novel phosphorus-solubilizing and soil-loosening abilities, herein, a poly (acrylamide-co-acrylic acid)-encapsulated NI (P(AA-co-AM)-e-NI) is synthesized by incorporating linear P(AM-co-AA) macromolecular structures into NI systems. The P(AA-co-AM)-e-NI demonstrates an obvious phase transition from a glassy state to a rubbery state, with a glass transition temperature of ~150 °C. Only 5 wt% of the weight loss occurs at 220 °C, meeting the temperature requirements of the high-tower melt granulation process (≥165 °C). The DMPZ content in P(AA-co-AM)-e-NI is 1.067 wt%, representing a 120% increase compared to our previous products (0.484 wt%). P(AA-co-AM)-e-NI can effectively reduce the abundance of ammonia-oxidizing bacteria and prolong the duration during which nitrogen fertilizers exist in the form of ammonium nitrogen. It can also cooperatively enhance the conversion of insoluble phosphorus into soluble phosphorus in the presence of ammonium nitrogen (NH4+-N). In addition, upon adding P(AA-co-AM)-e-NI into soils, soil bulk density and hardness decrease by 9.2% and 10.5%, respectively, and soil permeability increases by 10.5%, showing that it has a good soil-loosening ability and capacity to regulate the soil environment.

## Linked entities

- **Chemicals:** 3,4-dimethylpyrazole (PubChem CID 137735), DMPZ (PubChem CID 21162706)

## Full-text entities

- **Chemicals:** 3,4-dimethylpyrazole (-), Nitrogen (MESH:D009584), Phosphorous (MESH:D010758), Poly(Acrylamide-co-Acrylic Acid) (MESH:C431184), NI (MESH:D009532)

## Full text

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## Figures

5 figures with captions in the complete paper: https://tomesphere.com/paper/PMC12073658/full.md

## References

28 references — full list in the complete paper: https://tomesphere.com/paper/PMC12073658/full.md

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Source: https://tomesphere.com/paper/PMC12073658