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Improving nitrogen use efficiency in irrigated cotton production

Clemens Scheer; David W. Rowlings; Diogenes L. Antille; Massimiliano De Antoni Migliorati; Kathrin Fuchs; Peter R. Grace
Nutrient Cycling in Agroecosystems · Vol. 125, Issue 2 · pp. 95-106 · 2023

Abstract

Irrigated cotton in Australia is mainly grown on heavy textured soils which are prone to waterlogging, resulting in significant losses of nitrogen (N) via denitrification and surface run-off. This study investigated fertiliser nitrogen use efficiency (fNUE) over three seasons on five commercial cotton farms using the 15 N tracer technique. Fertiliser NUE was consistently low across all fertilised treatments, with on average 47% of the applied fertiliser lost and only 17% of the N taken up by the crop derived from fertiliser. There was no significant effect of different N fertiliser products and rates on cotton lint yield. High lint yields (0.9–3.6 Mg ha −1 ) could be achieved even without the application of N fertiliser, demonstrating mineralisation of soil organic N, residual fertiliser, or N returned with crop residues, as key source of N in these cropping systems. Using the nitrification inhibitor DMPP and overhead instead of furrow irrigation showed potential to reduce N fertiliser losses. The results demonstrate that under current on-farm management fNUE is low on irrigated cotton farms in Australia and highlight the need to account for soil N stocks and mineralisation rates when assessing optimized fertiliser rates. There is substantial scope to improve fNUE and reduce N losses without any impact on lint yield, by adjusting N fertiliser application rates, in particular in combination with the use of the nitrification inhibitor DMPP. Using overhead instead of furrow irrigation is a promising approach to improve not only water use efficiency, but also fNUE in irrigated cotton systems.

Bibliographic Information

JournalNutrient Cycling in Agroecosystems
PublisherSpringer
Publication Date2023-03-01
Publication Year2023
Volume125
Issue2
Pages95-106
Document TypeJournal Article
Print ISSN1385-1314
eISSN1573-0867
DOI10.1007/s10705-022-10204-6

Access Information

NARA Access Coverage1980-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10705
Publisher PageOpen Publisher Page
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