Author:
Karyati Karyati,Sarminah Sri,Karmini Karmini,Akbar Ali Muhammad,Hermansyah Rifaldi
Abstract
The utilization of steep lands by planting forestry and agricultural species can provide benefits from soil-water conservation and economic aspects. The combination of planting <em>Neolamarckia cadamba-Phaseolus vulgaris</em> and terrace systems can increase land use values, such as soil conservation, crop production, and farmers’ income. The aim of this study was to analyze silvicultural, hydro-orological, and economic aspects of a combination of forestry-agricultural crops<em> </em>(<em>N. cadamba – P. vulgaris</em>) and terrace systems on two slope classes. Two study plots were established on a steep gradient (25–40%) and a very steep gradient (>40%). The results showed an annual increase in the average diameter and height of <em>N. cadamba</em> of 1.78 cm and 1.84 m, respectively on the steep slope, and 1.68 cm and 1.53 m, respectively on the very steep slope. The surface run off and erosion rate were lower on the steep ground compared to the very steep ground. Erosion hazard indices and levels on the plots in the steep slope and very steep slope were categorized as low and very low; meanwhile the erosion hazard class was I. The profit of <em>P. vulgaris cultivation </em>was IDR 9,360,000.00 ha<sup>–1</sup> per cropping season<sup> </sup>on steep slope and IDR 6,480,000.00 ha<sup>–1</sup> per cropping season on very steep slope. The planting of <em>P. vulgaris</em> as an intercropping plant to fill empty land in between <em>N. cadamba</em> can increase the economic value obtained from selling <em>P. vulgaris</em> in the short term until the leaves of the <em>N. cadamba</em> plant are linked. The combination of planting <em>N. cadamba–P. vulgaris</em> and terrace system on steep slopes is therefore more profitable not only from the economic perspective, but also in lowering runoff and potential erosion rates than on very steep lands.
Publisher
Universitas Sebelas Maret
Subject
Atmospheric Science,Pollution,Soil Science,Agronomy and Crop Science
Reference40 articles.
1. Agus, F., Husnain, H., & Yustika, R. D. (2015). Improving agricultural resilience to climate change through soil management. Jurnal Penelitian dan Pengembangan Pertanian, 34(4), 147-158. https://doi.org/http://dx.doi.org/10.21082/jp3.v34n4.2015.p147-158
2. Ardiansyah, T., Lubis, K. S., & Hanum, H. S. (2013). Kajian tingkat bahaya erosi di beberapa penggunaan lahan di kawasan hilir Daerah Aliran Sungai (DAS) Padang. Jurnal Agroekoteknologi Universitas Sumatera Utara, 2(1), 97617. https://jurnal.usu.ac.id/index.php/agroekoteknologi/article/view/5861/0
3. Arsyad, S. (2010). Konservasi Tanah dan Air. IPB Press, Bogor, Indonesia. ISBN: 978- 493-003-2.
4. Bijarpas, M. M., Shahraji, T. R., & Limaei, S. M. (2015). Socioeconomic evaluation of agroforestry systems (Case study: Northern Iran). Journal of Forest Science, 61(11), 478-484. https://doi.org/10.17221/30/2015-JFS
5. Blinkova, O., & Lavrov, V. (2017). Study of soil water-erosion intensity and vegetation cover of an oak-spruce forest in the Pokutsko-Bukovina Carpathians, Ukraine. Archives of Biological Sciences, 69(4), 627-636. https://doi.org/10.2298/ABS161206008B
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