Diagnosis of Soil Salinity in the Low-Chellif Plain, North-West Algeria, By Joint Measurements Of Electrical And Hydraulic Conductivities
Land use in arid and semi-arid regions is a serious challenge for sustainable production, owing not only to drought and climate change but also to water availability. Irrigated perimeters in these regions are subject to secondary salinization that negatively impacts soil quality and agricultural pro...
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Published in | Contemporary Agriculture Vol. 73; no. 1; pp. 95 - 103 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Abstract | Land use in arid and semi-arid regions is a serious challenge for sustainable production, owing not only to drought and climate change but also to water availability. Irrigated perimeters in these regions are subject to secondary salinization that negatively impacts soil quality and agricultural productivity. Monitoring and diagnosing the extent of soil contamination requires a more innovative approach to optimize rehabilitation of affected areas. In the present study, diagnosing of saline soil degradation is conducted by using two key indicators: electrical conductivity of saturated paste extract (ECe) and saturated hydraulic conductivity (HCs). The results of the study reveal that the value of ECe in 85% of the Lower Chellif Plain area (north-west Algeria) is ECe < 2 dS m
, while 78% of the area is moderately permeable. These findings underscore high spatial variability in salinity distribution, indicating that the process of salinization has not yet reached a critical stage. Furthermore, it is concluded that ECe and HCs are appropriate indicators for diagnosing salinity of soil in relation to its structural and permeability characteristics. |
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AbstractList | Land use in arid and semi-arid regions is a serious challenge for sustainable production, owing not only to drought and climate change but also to water availability. Irrigated perimeters in these regions are subject to secondary salinization that negatively impacts soil quality and agricultural productivity. Monitoring and diagnosing the extent of soil contamination requires a more innovative approach to optimize rehabilitation of affected areas. In the present study, diagnosing of saline soil degradation is conducted by using two key indicators: electrical conductivity of saturated paste extract (ECe) and saturated hydraulic conductivity (HCs). The results of the study reveal that the value of ECe in 85% of the Lower Chellif Plain area (north-west Algeria) is ECe < 2 dS m−1, while 78% of the area is moderately permeable. These findings underscore high spatial variability in salinity distribution, indicating that the process of salinization has not yet reached a critical stage. Furthermore, it is concluded that ECe and HCs are appropriate indicators for diagnosing salinity of soil in relation to its structural and permeability characteristics. Summary Land use in arid and semi-arid regions is a serious challenge for sustainable production, owing not only to drought and climate change but also to water availability. Irrigated perimeters in these regions are subject to secondary salinization that negatively impacts soil quality and agricultural productivity. Monitoring and diagnosing the extent of soil contamination requires a more innovative approach to optimize rehabilitation of affected areas. In the present study, diagnosing of saline soil degradation is conducted by using two key indicators: electrical conductivity of saturated paste extract (ECe) and saturated hydraulic conductivity (HCs). The results of the study reveal that the value of ECe in 85% of the Lower Chellif Plain area (north-west Algeria) is ECe < 2 dS m −1 , while 78% of the area is moderately permeable. These findings underscore high spatial variability in salinity distribution, indicating that the process of salinization has not yet reached a critical stage. Furthermore, it is concluded that ECe and HCs are appropriate indicators for diagnosing salinity of soil in relation to its structural and permeability characteristics. Land use in arid and semi-arid regions is a serious challenge for sustainable production, owing not only to drought and climate change but also to water availability. Irrigated perimeters in these regions are subject to secondary salinization that negatively impacts soil quality and agricultural productivity. Monitoring and diagnosing the extent of soil contamination requires a more innovative approach to optimize rehabilitation of affected areas. In the present study, diagnosing of saline soil degradation is conducted by using two key indicators: electrical conductivity of saturated paste extract (ECe) and saturated hydraulic conductivity (HCs). The results of the study reveal that the value of ECe in 85% of the Lower Chellif Plain area (north-west Algeria) is ECe < 2 dS m , while 78% of the area is moderately permeable. These findings underscore high spatial variability in salinity distribution, indicating that the process of salinization has not yet reached a critical stage. Furthermore, it is concluded that ECe and HCs are appropriate indicators for diagnosing salinity of soil in relation to its structural and permeability characteristics. |
Author | Boulenouar, Houari Berkane, Ibrahim Benkhelifa, Mohammed Gorine, Mohamed Fettouch, Dalila Dos Santos, Danilo Reinheimer |
Author_xml | – sequence: 1 givenname: Dalila surname: Fettouch fullname: Fettouch, Dalila email: dalila.fettouch@yahoo.com organization: University Abdelhamid Ben Badis (UMAB), Mostaganem 27000, Algeria – sequence: 2 givenname: Ibrahim orcidid: 0009-0000-6337-3742 surname: Berkane fullname: Berkane, Ibrahim organization: University Ahmed Zabana, Department of Agricultural Sciences, Relizane 48000, Algeria – sequence: 3 givenname: Houari surname: Boulenouar fullname: Boulenouar, Houari organization: University Ahmed Zabana, Department of Agricultural Sciences, Relizane 48000, Algeria – sequence: 4 givenname: Mohamed surname: Gorine fullname: Gorine, Mohamed organization: Higher School of Agronomy Mostaganem (ESAM) 27000, Algeria – sequence: 5 givenname: Mohammed orcidid: 0000-0003-0236-2446 surname: Benkhelifa fullname: Benkhelifa, Mohammed organization: University Abdelhamid Ben Badis (UMAB), Mostaganem 27000, Algeria – sequence: 6 givenname: Danilo Reinheimer orcidid: 0000-0003-1085-7617 surname: Dos Santos fullname: Dos Santos, Danilo Reinheimer organization: Federal University of Santa Maria (FUSM), Brazil |
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SubjectTerms | electrical conductivity lower Chellif plain saline soil saturated hydraulic conductivity |
Title | Diagnosis of Soil Salinity in the Low-Chellif Plain, North-West Algeria, By Joint Measurements Of Electrical And Hydraulic Conductivities |
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