| Issue |
BIO Web Conf.
Volume 246, 2026
Sriwijaya International Conference on Smart and Integrated Agriculture System (1st SRI-ICAS 2026)
|
|
|---|---|---|
| Article Number | 00004 | |
| Number of page(s) | 8 | |
| DOI | https://doi.org/10.1051/bioconf/202624600004 | |
| Published online | 22 July 2026 | |
Soil Physical Quality as a Basis for Sustainable and Climate-Resilient Land Use in Suboptimal Drylands of Aceh Besar, Indonesia
1 Department of Soil Science, Faculty of Agriculture, Universitas Syiah Kuala, Jalan Tgk. Hasan Krueng Kalee 3, Darussalam, Banda Aceh 23111, Indonesia.
2 Akademi Politeknik Venezuela, Aceh Besar. Jalan Blang Bintang Lama, Aceh Besar, Indonesia
Abstract
The productivity of tropical dryland soils is constrained not only by limited water availability and low soil fertility but also by unfavorable soil physical properties, which are critical for achieving sustainable and climate-resilient agriculture. This study identified the characteristics and physical constraints of soils under several land use types (LUTs) in dryland areas of Aceh Besar Regency, Indonesia. Undisturbed and disturbed soil samples for physical analysis were collected using sample rings at a depth of 0–20 cm. Each LUT consisted of 5–8 sample plots (20 m × 20 m), with five soil samples taken from each plot. The results showed that soil physical properties in suboptimal drylands vary across land uses. Soil texture, bulk density, porosity, permeability, aggregate stability index, and water holding capacity (WHC) under forest vegetation, cultivated forests, and dryland agricultural systems were relatively better than those in uncultivated areas. In contrast, uncultivated lands exhibited several physical constraints, including coarse texture, high bulk density (1.51±0.01 Mg m−3), low porosity (49.13±5.21%), moderately rapid permeability (21.48±3.12 cm h−1), unstable soil aggregates (0.43±0.0021), and low WHC. Improving soil physical quality is essential for enhancing productivity and strengthening climate resilience in dryland systems. This can be achieved through the application of organic amendments such as biochar, compost, manure, and mulch (cover crops), which contribute to sustainable soil management and improved ecosystem functioning.
© The Authors, published by EDP Sciences, 2026
This is an Open Access article distributed under the terms of the Creative Commons Attribution License 4.0, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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