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Research article - Peer-reviewed, 2022

Opportunities for Mitigating Soil Compaction in Europe-Case Studies from the SoilCare Project Using Soil-Improving Cropping Systems

Piccoli, Ilaria; Seehusen, Till; Bussell, Jenny; Vizitu, Olga; Calciu, Irina; Berti, Antonio; Borjesson, Gunnar; Kirchmann, Holger; Katterer, Thomas; Sartori, Felice; Stoate, Chris; Crotty, Felicity; Panagea, Ioanna S.; Alaoui, Abdallah; Bolinder, Martin A.

Abstract

Soil compaction (SC) is a major threat for agriculture in Europe that affects many ecosystem functions, such as water and air circulation in soils, root growth, and crop production. Our objective was to present the results from five short-term (<5 years) case studies located along the north-south and east-west gradients and conducted within the SoilCare project using soil-improving cropping systems (SICSs) for mitigating topsoil and subsoil SC. Two study sites (SSs) focused on natural subsoil (>25 cm) compaction using subsoiling tillage treatments to depths of 35 cm (Sweden) and 60 cm (Romania). The other SSs addressed both topsoil and subsoil SC (>25 cm, Norway and United Kingdom; >30 cm, Italy) using deep-rooted bio-drilling crops and different tillage types or a combination of both. Each SS evaluated the effectiveness of the SICSs by measuring the soil physical properties, and we calculated SC indices. The SICSs showed promising results-for example, alfalfa in Norway showed good potential for alleviating SC (the subsoil density decreased from 1.69 to 1.45 g cm(-1)) and subsoiling at the Swedish SS improved root penetration into the subsoil by about 10 cm-but the effects of SICSs on yields were generally small. These case studies also reflected difficulties in implementing SICSs, some of which are under development, and we discuss methodological issues for measuring their effectiveness. There is a need for refining these SICSs and for evaluating their longer-term effect under a wider range of pedoclimatic conditions.

Keywords

degree of compaction; soil penetration resistance; relative normalised density; air-filled porosity; tillage; straw incorporation; bio-drilling crops; subsoiling; crop productivity

Published in

Land
2022, volume: 11, number: 2, article number: 223
Publisher: MDPI

Authors' information

Piccoli, Ilaria
University of Padua
Swedish University of Agricultural Sciences, Department of Ecology
Seehusen, Till
Norwegian Institute of Bioeconomy Research
Vizitu, Olga
ICPA Bucharest
Calciu, Irina
ICPA Bucharest
Berti, Antonio
University of Padua
Swedish University of Agricultural Sciences, Department of Soil and Environment
Swedish University of Agricultural Sciences, Department of Soil and Environment
Swedish University of Agricultural Sciences, Department of Ecology
Sartori, Felice
University of Padua
Stoate, Chris
The Game & Wildlife Conservation Trust
Crotty, Felicity
Royal Agr Univ
Panagea, Ioanna S.
KU Leuven
Alaoui, Abdallah
University of Bern

Sustainable Development Goals

SDG2 Zero hunger

UKÄ Subject classification

Environmental Sciences related to Agriculture and Land-use
Soil Science

Publication Identifiers

DOI: https://doi.org/10.3390/land11020223

URI (permanent link to this page)

https://res.slu.se/id/publ/116799