The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah
The effect of land use types on the potential soil erosion and sediment yield in a small catchment of the Mansahaban River, Ranau area was studied. The potential soil loss in the Mansahaban sub-catchment area was predicted using the Revised Universal Soil Loss Equation (RUSLE) erosion and the Modifi...
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Faculty of Science & Natural Resources, UMS
2023
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my.ums.eprints.394532024-08-05T03:17:21Z https://eprints.ums.edu.my/id/eprint/39453/ The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah Sahibin Abd Rahim Najwa Faridah Mohammad Danial Nur Zaida Zahari Fera Cleophas Baba Musta S622-627 Soil conservation and protection SD390-390.43 Forest soils The effect of land use types on the potential soil erosion and sediment yield in a small catchment of the Mansahaban River, Ranau area was studied. The potential soil loss in the Mansahaban sub-catchment area was predicted using the Revised Universal Soil Loss Equation (RUSLE) erosion and the Modified Universal Soil Loss Equation (MUSLE) sediment yield model. The land use in the Mansahaban River sub-catchment can be grouped into five types, namely secondary forest, development, scrub, grassland, and paddy fields with area width of 1294.21, 9.24, 459.62, 80.20, and 1034.01 ha, respectively. The amount of predicted potential soil loss (A) using the RUSLE model in decreasing order under development area, grassland, scrub, secondary forest, and rice fields land use were of 701.20, 21.54, 12.55, 3.27, and 2.02 t ha-1 yr⁻¹, respectively. Potential soil loss were classified as very low to very high. Sediment yield (SY) calculated using potential soil loss (A) multiplied by the sediment delivery ratio (SDR) showed values of 280.82, 6.78, 3.26, 0.76, and 0.48 t ha-1 yr⁻¹, respectively, with a total amount of 291.30 t ha-1 yr⁻¹. The amount of sediment yield (SY) calculated using the MUSLE formula were very low for all land uses total only at 3.67 t ha-1 yr⁻¹. Development land use covered a small size but produces a high soil loss potential due surface exposure and lack of conservation measure. This study showed that conversion of forested land by opening the land without proper mitigation measure increase soil loss that reach the water body. Faculty of Science & Natural Resources, UMS 2023 Proceedings PeerReviewed text en https://eprints.ums.edu.my/id/eprint/39453/1/ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/39453/2/FULL%20TEXT.pdf Sahibin Abd Rahim and Najwa Faridah Mohammad Danial and Nur Zaida Zahari and Fera Cleophas and Baba Musta (2023) The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah. https://www.ums.edu.my/fssa/index.php/research/conference-publication |
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S622-627 Soil conservation and protection SD390-390.43 Forest soils Sahibin Abd Rahim Najwa Faridah Mohammad Danial Nur Zaida Zahari Fera Cleophas Baba Musta The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah |
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The effect of land use types on the potential soil erosion and sediment yield in a small catchment of the Mansahaban River, Ranau area was studied. The potential soil loss in the Mansahaban sub-catchment area was predicted using the Revised Universal Soil Loss Equation (RUSLE) erosion and the Modified Universal Soil Loss Equation (MUSLE) sediment yield model. The land use in the Mansahaban River sub-catchment can be grouped into five types, namely secondary forest, development, scrub, grassland, and paddy fields with area width of 1294.21, 9.24, 459.62, 80.20, and 1034.01 ha, respectively. The amount of predicted potential soil loss (A) using the RUSLE model in decreasing order under development area, grassland, scrub, secondary forest, and rice fields land use were of 701.20, 21.54, 12.55, 3.27, and 2.02 t ha-1 yr⁻¹, respectively. Potential soil loss were classified as very low to very high. Sediment yield (SY) calculated using potential soil loss (A) multiplied by the sediment delivery ratio (SDR) showed values of 280.82, 6.78, 3.26, 0.76, and 0.48 t ha-1 yr⁻¹, respectively, with a total amount of 291.30 t ha-1 yr⁻¹. The amount of sediment yield (SY) calculated using the MUSLE formula were very low for all land uses total only at 3.67 t ha-1 yr⁻¹. Development land use covered a small size but produces a high soil loss potential due surface exposure and lack of conservation measure. This study showed that conversion of forested land by opening the land without proper mitigation measure increase soil loss that reach the water body. |
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Proceedings |
author |
Sahibin Abd Rahim Najwa Faridah Mohammad Danial Nur Zaida Zahari Fera Cleophas Baba Musta |
author_facet |
Sahibin Abd Rahim Najwa Faridah Mohammad Danial Nur Zaida Zahari Fera Cleophas Baba Musta |
author_sort |
Sahibin Abd Rahim |
title |
The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah |
title_short |
The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah |
title_full |
The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah |
title_fullStr |
The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah |
title_full_unstemmed |
The Effect of Land Use Types on The Potential Erosion and Sediment Yield of The Mansahaban River Catchment, Ranau, Sabah |
title_sort |
effect of land use types on the potential erosion and sediment yield of the mansahaban river catchment, ranau, sabah |
publisher |
Faculty of Science & Natural Resources, UMS |
publishDate |
2023 |
url |
https://eprints.ums.edu.my/id/eprint/39453/1/ABSTRACT.pdf https://eprints.ums.edu.my/id/eprint/39453/2/FULL%20TEXT.pdf https://eprints.ums.edu.my/id/eprint/39453/ https://www.ums.edu.my/fssa/index.php/research/conference-publication |
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1806689839724101632 |
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13.214268 |