碧润县Krueng peussanan Hilir小流域土地承载力与土地利用方向评价

H. Akbar, Sarifuddin Sarifuddin, Sakral Hasby Puarada
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摘要

流域地区森林的破坏现在已成为各方关注的问题,导致洪水、山体滑坡和干旱持续增加。由于人口增长和经济发展、利益冲突以及上中下游地区之间部门之间缺乏一体化,自然资源利用率的提高加速了流域破坏。因此,有必要评估流域的土地能力,使土地开发符合土地能力等级。该研究于2021年10月至2022年2月在印度尼西亚亚齐比伦县的Krueng Peusangan Hilir子流域进行,地理位置位于东经95°58'00“-96°52'00”和北纬5°06'00-5°17'00”。研究中的土地利用以旱地农业为主,面积19100.28公顷,地形面积从0-8%到25-40%。通过分析研究地点的土地能力类别,对每个土地图单元(LMU)进行了调查通过将土地条件与土地能力评估进行比较,Hockensmith和Steele的标准(覆盖已确定的专题地图)。结果表明,土壤可蚀性随有机质含量的增加呈线性下降。有机质含量高的土壤具有较高的可蚀性。对于在所有LMU中发现的II、III、IV和VI类土地能力类别中的边坡限制因素,如果这些LMU用于农业种植,则需要采取土壤保持措施,如建造土堆梯田或渠土堆梯田、带状种植和使用覆盖物。结果表明,土地能力等级包括土地能力II级16668.30公顷、土地能力III级4184.06公顷、土地容量IV级4524.91公顷和土地能力VI级190.79公顷,其中包括抑制土壤可蚀性(中等-非常高)和坡度(波浪-相当陡)的因素
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Evaluation of Land Capability and Land Use Direction In the Krueng Peusangan Hilir Sub-watershed, Bireuen Regency
The destruction of forests in watershed areas has now become a concern of many parties, resulting in floods, landslides, and droughts that continue to increase. Watershed damage is accelerated by increased utilization of natural resources due to population growth and economic development, conflicts of interest, and lack of integration between sectors between the upstream-middle-downstream areas. For this reason, it is necessary to assess land capability in a watershed so that land development follows the land capability class. The research was carried out in the Krueng Peusangan Hilir Sub-watershed, Bireuen Regency, Aceh, Indonesia, from October 2021 to February 2022, which is geographically located at 95°58''00” - 96°52''00” East Longitude and 5°06''00- 5°17 ''00" North Latitude. Land use in the study is dominated by dry land agriculture, covering an area of 19,100.28 ha with a topography area from  0-8% to 25-40%. A survey method by analyzing land capability classes at the study site was carried out for each land map unit (LMU) by comparing land conditions with the land capability evaluation Hockensmith and Steele’s criteria (overlaid of determined thematic maps). The result shows that soil erodibility decreased linearly with increasing organic matter in the soil. Soils with high organic matter content have high erodibility. For the limiting factor on slopes in land capability classes found in  II, III, IV, and VI class categories that are found in all LMUs, if these LMUs are used for agricultural cultivation, soil conservation measures are needed, such as making mound terraces or canal mound terraces, planting in strips and using mulch. The results show that the land capability classes consisted of 16668.30 ha in the land capability II class, 4184.06 ha land capability in the III class, 4524.91 ha in the land capability IV class, and 190.79 ha land capability VI class with a factor inhibiting soil erodibility (medium – very high) and slopes (wavy - rather steep)
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