Effect of liming products on soil detachment resistance, measured with a cohesive strength meter
Good soil structure is important for achieving high productivity of agricultural land and also affects the ability of soil to withstand erosive forces. Given the importance of soil structure, efforts are commonly made to improve it, usually by application of amendments of different kinds (e.g. lime,...
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Veröffentlicht in: | Acta agriculturae Scandinavica. Section B, Soil and plant science Soil and plant science, 2020-01, Vol.70 (1), p.48-55 |
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creator | Aviles, Daniel Berglund, Kerstin Wesström, Ingrid Joel, Abraham |
description | Good soil structure is important for achieving high productivity of agricultural land and also affects the ability of soil to withstand erosive forces. Given the importance of soil structure, efforts are commonly made to improve it, usually by application of amendments of different kinds (e.g. lime, biochar, compost, manure etc.). However, little is known about the effect of these amendments on the soil resistance to detachment. This study assessed the resistance to detachment of soil cores treated with different liming products, using a cohesive strength meter (CSM) which measures the rate of soil detachment under the action of water jets at different pressures. The amount of soil removed by the water jets was taken as an indirect measure of soil resistance to detachment, under the assumption that more resistant soils will lose less material than more susceptible soils at a given water jet pressure. The results showed that all soil amendments studied reduced detachment of particles under the action of water jets compared with unamended soil (control). |
doi_str_mv | 10.1080/09064710.2019.1668475 |
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Given the importance of soil structure, efforts are commonly made to improve it, usually by application of amendments of different kinds (e.g. lime, biochar, compost, manure etc.). However, little is known about the effect of these amendments on the soil resistance to detachment. This study assessed the resistance to detachment of soil cores treated with different liming products, using a cohesive strength meter (CSM) which measures the rate of soil detachment under the action of water jets at different pressures. The amount of soil removed by the water jets was taken as an indirect measure of soil resistance to detachment, under the assumption that more resistant soils will lose less material than more susceptible soils at a given water jet pressure. The results showed that all soil amendments studied reduced detachment of particles under the action of water jets compared with unamended soil (control).</description><identifier>ISSN: 0906-4710</identifier><identifier>ISSN: 1651-1913</identifier><identifier>EISSN: 1651-1913</identifier><identifier>DOI: 10.1080/09064710.2019.1668475</identifier><language>eng</language><publisher>Abingdon: Taylor & Francis</publisher><subject>Agricultural land ; Charcoal ; cohesive strength meter ; Composts ; Cores ; detachment resistance ; detachment susceptibility ; Erosion ; Hydraulic jets ; Jets ; Liming ; Markvetenskap ; Soil amendment ; Soil lime ; Soil resistance ; Soil Science ; Soil strength ; Soil structure ; Soil treatment ; Soil water ; Soils</subject><ispartof>Acta agriculturae Scandinavica. Section B, Soil and plant science, 2020-01, Vol.70 (1), p.48-55</ispartof><rights>2019 The Author(s). 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The results showed that all soil amendments studied reduced detachment of particles under the action of water jets compared with unamended soil (control).</description><subject>Agricultural land</subject><subject>Charcoal</subject><subject>cohesive strength meter</subject><subject>Composts</subject><subject>Cores</subject><subject>detachment resistance</subject><subject>detachment susceptibility</subject><subject>Erosion</subject><subject>Hydraulic jets</subject><subject>Jets</subject><subject>Liming</subject><subject>Markvetenskap</subject><subject>Soil amendment</subject><subject>Soil lime</subject><subject>Soil resistance</subject><subject>Soil Science</subject><subject>Soil strength</subject><subject>Soil structure</subject><subject>Soil treatment</subject><subject>Soil water</subject><subject>Soils</subject><issn>0906-4710</issn><issn>1651-1913</issn><issn>1651-1913</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><sourceid>0YH</sourceid><sourceid>D8T</sourceid><sourceid>DOA</sourceid><recordid>eNp9kU-LFDEQxRtRcFz9CELAqz2b_0nflGXVhQUveo5JujLTQ3dnTNIO--1N26uwF-tSVOW9H1Re07wleE-wxte4w5KrOlFMuj2RUnMlnjU7IgVpSUfY82a3atpV9LJ5lfMJ12Ka7ZoftyGALygGNA7TMB_QOcV-8SWjOKMchxH1UKw_TjAXlCAPudjZw3s0gc1Lgh5dhnJEFvl4rK-_AOWSYD7U3QQF0uvmRbBjhjeP_ar5_un2282X9v7r57ubj_et5x0uLVPKSSms8lo5R7jkQVFOhMe8F0qGICl3FHqNO0aF9jxg57UF6BmTWFF21dxt3D7akzmnYbLpwUQ7mD-LmA7GpjL4EQxYwQR1uocguA7aCem5DR1xSmvZ88rab6x8gfPintDyuDib1mYyGIIp5qIa3m2G-nk_F8jFnOKS5nqvoYwyTDRWuqrEpvIp5pwg_AMTbNYkzd8kzZqkeUyy-j5svmEOMU32EtPYm2IfxphCqmkM2bD_I34DijSlYg</recordid><startdate>20200102</startdate><enddate>20200102</enddate><creator>Aviles, Daniel</creator><creator>Berglund, Kerstin</creator><creator>Wesström, Ingrid</creator><creator>Joel, Abraham</creator><general>Taylor & Francis</general><general>Taylor & Francis LLC</general><general>Taylor & Francis Group</general><scope>0YH</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7QL</scope><scope>7QO</scope><scope>7ST</scope><scope>7T7</scope><scope>7U9</scope><scope>8FD</scope><scope>C1K</scope><scope>FR3</scope><scope>H94</scope><scope>M7N</scope><scope>P64</scope><scope>SOI</scope><scope>ADTPV</scope><scope>AOWAS</scope><scope>D8T</scope><scope>ZZAVC</scope><scope>DOA</scope><orcidid>https://orcid.org/0000-0002-8282-6476</orcidid></search><sort><creationdate>20200102</creationdate><title>Effect of liming products on soil detachment resistance, measured with a cohesive strength meter</title><author>Aviles, Daniel ; Berglund, Kerstin ; Wesström, Ingrid ; Joel, Abraham</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c490t-377b665a7c87bb1464f72415c04d576ff624b2ed8093258c4f0bc8aeed3360723</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2020</creationdate><topic>Agricultural land</topic><topic>Charcoal</topic><topic>cohesive strength meter</topic><topic>Composts</topic><topic>Cores</topic><topic>detachment resistance</topic><topic>detachment susceptibility</topic><topic>Erosion</topic><topic>Hydraulic jets</topic><topic>Jets</topic><topic>Liming</topic><topic>Markvetenskap</topic><topic>Soil amendment</topic><topic>Soil lime</topic><topic>Soil resistance</topic><topic>Soil Science</topic><topic>Soil strength</topic><topic>Soil structure</topic><topic>Soil treatment</topic><topic>Soil water</topic><topic>Soils</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Aviles, Daniel</creatorcontrib><creatorcontrib>Berglund, Kerstin</creatorcontrib><creatorcontrib>Wesström, Ingrid</creatorcontrib><creatorcontrib>Joel, Abraham</creatorcontrib><creatorcontrib>Sveriges lantbruksuniversitet</creatorcontrib><collection>Taylor & Francis Open Access</collection><collection>CrossRef</collection><collection>Bacteriology Abstracts (Microbiology B)</collection><collection>Biotechnology Research Abstracts</collection><collection>Environment Abstracts</collection><collection>Industrial and Applied Microbiology Abstracts (Microbiology A)</collection><collection>Virology and AIDS Abstracts</collection><collection>Technology Research Database</collection><collection>Environmental Sciences and Pollution Management</collection><collection>Engineering Research Database</collection><collection>AIDS and Cancer Research Abstracts</collection><collection>Algology Mycology and Protozoology Abstracts (Microbiology C)</collection><collection>Biotechnology and BioEngineering Abstracts</collection><collection>Environment Abstracts</collection><collection>SwePub</collection><collection>SwePub Articles</collection><collection>SWEPUB Freely available online</collection><collection>SwePub Articles full text</collection><collection>DOAJ Directory of Open Access Journals</collection><jtitle>Acta agriculturae Scandinavica. 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Given the importance of soil structure, efforts are commonly made to improve it, usually by application of amendments of different kinds (e.g. lime, biochar, compost, manure etc.). However, little is known about the effect of these amendments on the soil resistance to detachment. This study assessed the resistance to detachment of soil cores treated with different liming products, using a cohesive strength meter (CSM) which measures the rate of soil detachment under the action of water jets at different pressures. The amount of soil removed by the water jets was taken as an indirect measure of soil resistance to detachment, under the assumption that more resistant soils will lose less material than more susceptible soils at a given water jet pressure. 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subjects | Agricultural land Charcoal cohesive strength meter Composts Cores detachment resistance detachment susceptibility Erosion Hydraulic jets Jets Liming Markvetenskap Soil amendment Soil lime Soil resistance Soil Science Soil strength Soil structure Soil treatment Soil water Soils |
title | Effect of liming products on soil detachment resistance, measured with a cohesive strength meter |
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