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Agroforestry practices impacts on soil properties in the drylands of Eastern Kenya

Bibliographic Data

ID19587106
AuthorsNicholas Mutuku Syano (0000-0001-9932-8054, University of Nairobi, corresponding author), Moses M Nyangito, Moses Nyangito (0000-0001-7496-1910, University of Nairobi), Geoffrey Kironchi (University of Nairobi), Oliver Vivian Wasonga (0000-0002-5929-6091, University of Nairobi)
Year2023
Volume14
Pages100437
Publication date2023-12-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueTrees Forests and People (JOURNAL)
Journal identifiersISSN: 2666-7193 • E-ISSN: 2666-7193
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.tfp.2023.100437
OpenAlexW4386797423
LanguageEN
Citations received1
References cited13

Agroforestry is one of the land use practices that is perceived to be sustainable and that has beneficial impacts on soil properties. However, as a universal statement, this may not be true as best documented successful agroforestry practices are located largely on good soils. Its impacts on dryland soils have rarely been quantified and studied in detail. This study determined the impacts of selected agroforestry practices on soil properties in Makueni, Eastern Kenya. A total of 252 soil samples were collected along transects located within mixed tree woodlots established in 2007, 2010 and 2013 and adjacent parklands and grazing lands at depths of 0-15cm, 15-30cm, 30-45cm and 45-60cm. Tree density per agroforestry practice was also determined using the quadrat technique. The soil samples were analyzed using laboratory soil physico-chemical properties techniques. The results showed that Soil Organic Carbon (SOC) and Total Nitrogen (TN) were significantly higher in the woodlots than in the parkland and grazing lands (p≤0.05). SOC was significantly higher in woodlots established in 2007 than those established in 2013 and strongly correlated with the tree density. Phosphorus was significantly higher in parkland as compared to woodlots and grazing lands. Phosphorus and Potassium were significantly higher at 0-15 cm depth compared to other soil depths. bulky density was significantly higher with a corresponding lower total porosity in grazing lands than in the woodlots and parklands. Mixed woodlots positively influenced soil property and could be considered as a strategy to restore degraded dryland soils as well act as important carbon dioxide and nitrogen sinks

Agroforestry · Agronomy · Biology · Bulk density · Geography · Grazing · Land use · Quadrat · Soil carbon · Soil test · Soil water · Transect · African Botany and Ecology Studies · Agroforestry and silvopastoral systems · Environmental Science · Forest ecology and management · Ecology · Forestry · Soil Science

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    Open Access•Sheleme Guzo, Sileshi Nemomissa et al.•Trees Forests and People•2024

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Unique citing works1
Citations per year0,5
Citation span2024 - 2024 (1)
Citation velocityrecent
Highly citedNo

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