Publication detail

Fertilizer technology based on optimized nitrogen release from urea-loaded natural superabsorbent carriers

JANČÁŘ, J. ŠKARPA, P. ABDELLATIF, A.

Original Title

Fertilizer technology based on optimized nitrogen release from urea-loaded natural superabsorbent carriers

Type

journal article in Web of Science

Language

English

Original Abstract

There is a pressing need for advanced fertilizer application technologies that enhance crop yields, maintain soil health and reduce the environmental impact from agriculture. Here, we report on the optimization of nitrogen release profiles of urea-loaded polysaccharide (starch) superabsorbent carriers, employing analytical techniques including UV-VIS, FTIR, EDX, SEM and GC-FID for structural and phospholipid fatty acids PLFA analyses. We fitted existing kinetic models to the uptake and release profiles, providing a link between nitrogen release kinetics and carrier structural variables. The inclusion of zeolite microparticles in the starch-based carriers accelerated the rate of nitrogen release and increasing the maximum amount released. Field tests of the technology on maize crops demonstrated improved plant parameters and enhanced the soil microbial population. These findings highlight the promise of urea-loaded natural superabsorbent carriers as a sustainable alternative to core-shell CRF fertilizers and urease inhibitors.

Keywords

composite superabsorbent; maize; nitrogen release profile; urea; water swelling and release

Authors

JANČÁŘ, J.; ŠKARPA, P.; ABDELLATIF, A.

Released

1. 10. 2023

Publisher

WILEY

Location

HOBOKEN

ISBN

1475-2743

Periodical

Soil Use and Management

Year of study

39

Number

4

State

United Kingdom of Great Britain and Northern Ireland

Pages from

1583

Pages to

1599

Pages count

17

URL

BibTex

@article{BUT187562,
  author="Josef {Jančář} and Petr {Škarpa} and Abdelmohsen Moustafa {Abdellatif}",
  title="Fertilizer technology based on optimized nitrogen release from urea-loaded natural superabsorbent carriers",
  journal="Soil Use and Management",
  year="2023",
  volume="39",
  number="4",
  pages="1583--1599",
  doi="10.1111/sum.12944",
  issn="1475-2743",
  url="https://bsssjournals.onlinelibrary.wiley.com/doi/10.1111/sum.12944"
}