Agronomy (Aug 2024)

Converse Responses of Biochar Application on N<sub>2</sub>O Emissions in Soils at Different pH Values in a Subtropical Citrus Orchard

  • Xiaojie Qian,
  • Hongmei Chen,
  • Qinghua Li,
  • Fei Wang

DOI
https://doi.org/10.3390/agronomy14081831
Journal volume & issue
Vol. 14, no. 8
p. 1831

Abstract

Read online

The aim of this study was to explore the effect of biochar on N2O emissions in soils with different pH levels. Soils with five pH levels (4.0, 5.1, 5.8, 6.6, and 7.2) were incubated in two conditions, with 0% biochar (CK) and 1% biochar (BC), for 23 days. N2O emissions were measured at nine time points, and soil chemical properties, AOA-amoA, AOB-amoA, nirK, nirS, and nosZ, were analyzed. Partial least squares path modelling (PLS-PM) was used to assess the effect of nitrification and denitrification pathways on potential N2O emissions. The results showed that biochar reduced N2O emissions in highly acidic soil (pH 4.0) but increased emissions in soils with pH values ranging from 5.1 to 7.2. In highly acidic soils, decreased N2O emission was associated with increased soil pH (p p nosZ gene abundance (p AOB-amoA, nirK, nirS gene abundance (p 2O emissions. The results verified the influence of nitrification and denitrification genes on N2O production in soils with different pH values. In conclusion, biochar had different effects on N2O emissions based on soil pH, highlighting the need to consider pH when using biochar to mitigate N2O emissions in subtropical citrus orchards.

Keywords