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Effect of iron oxide on nitrification in two agricultural soils with different pH.

Authors :
Xueru Huang
Xia Zhu-Barker
Horwath, William R.
Faeflen, Sarwee J.
Hongyan Luo
Xiaoping Xin
Xianjun Jiang
Source :
Biogeosciences; 2016, Vol. 13 Issue 19, p5609-5617, 9p, 1 Chart, 5 Graphs
Publication Year :
2016

Abstract

Iron (Fe) affects soil nitrogen (N) cycling processes both in anoxic and oxic environments. The role of Fe in soil N transformations including nitrification, mineralization, and immobilization, is influenced by redox activity, which is regulated by soil pH. The effect of Fe minerals, particularly oxides, on soil N transformation processes depends on soil pH, with Fe oxide often stimulating nitrification activity in the soil with low pH. We conducted lab incubations to investigate the effect of Fe oxide on N transformation rates in two subtropical agricultural soils with low pH (pH 5.1) and high pH (pH 7.8). <superscript>15</superscript>N-labeled ammonium and nitrate were used separately to determine N transformation rates combined with Fe oxide (ferrihydrite) addition. Iron oxide stimulated net nitrification in low-pH soil (pH 5.1), while the opposite occurred in high-pH soil (pH 7.8). Compared to the control, Fe oxide decreased microbial immobilization of inorganic N by 50% in low-pH soil but increased it by 45% in high-pH soil. A likely explanation for the effects at low pH is that Fe oxide increased NH<subscript>3</subscript>-N availability by stimulating N mineralization and inhibiting N immobilization. These results indicate that Fe oxide plays an important role in soil N transformation processes and the magnitude of the effect of Fe oxide is dependent significantly on soil pH. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
17264170
Volume :
13
Issue :
19
Database :
Complementary Index
Journal :
Biogeosciences
Publication Type :
Academic Journal
Accession number :
118724210
Full Text :
https://doi.org/10.5194/bg-13-5609-2016