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Journal Article

Effect of Sieving on Ex Situ Soil Respiration of Soils from Three Land Use Types

Adetunji Alex Adekanmbi; Liz J. Shaw; Tom Sizmur
Journal of Soil Science and Plant Nutrition · Vol. 20, Issue 3 · pp. 912-916 · 2020

Abstract

This study aims to investigate the effect of sieving on ex situ soil respiration (CO 2 flux) measurements from different land use types. We collected soils (0–10 cm) from arable, grassland and woodland sites, allocated them to either sieved (4-mm mesh, freshly sieved) or intact core treatments and incubated them in gas-tight jars for 40 days at 10 °C. Headspace gas was collected on days 1, 3, 17, 24, 31 and 38 and CO 2 analysed. Our results showed that sieving (4 mm) did not significantly influence soil respiration measurements, probably because micro aggregates (< 0.25 mm) remain intact after sieving. However, soils collected from grassland soil released more CO 2 compared with those collected from woodland and arable soils, irrespective of sieving treatments. The higher CO 2 from grassland soil compared with woodland and arable soils was attributed to the differences in the water holding capacity and the quantity and stoichiometry of the organic matter between the three soils. We conclude that soils sieved prior to ex situ respiration experiments provide realistic respiration measurements. This finding lends support to soil scientists planning a sampling strategy that better represents the inhomogeneity of field conditions by pooling, homogenising and sieving samples, without fear of obtaining unrepresentative CO 2 flux measurements caused by the disruption of soil architecture.

Bibliographic Information

JournalJournal of Soil Science and Plant Nutrition
PublisherSpringer
Publication Date2020-09-01
Publication Year2020
Volume20
Issue3
Pages912-916
Document TypeJournal Article
Print ISSN0718-9508
eISSN0718-9516
DOI10.1007/s42729-020-00177-2

Access Information

NARA Access Coverage2019-01-01~Current
Journal Homepagehttps://www.springer.com/journal/42729
Publisher PageOpen Publisher Page
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