Show simple item record

dc.contributor.authorMaridi
dc.contributor.authorAgustina, Putri
dc.contributor.authorSaputra, Alanindra
dc.date.accessioned2015-12-05T05:44:36Z
dc.date.available2015-12-05T05:44:36Z
dc.date.issued2015-12-07
dc.identifier.citation[1] G. V. Arx, E. G. Pannatier, A. Thimonier, and M. Rebeiez. Microclimate in Forests with Varying Leaf Area Index and Soil Moisture: Potential Implications for Seedling Estabilish-ment in a Changing Climate. Journal of Ecology. 1-14, 2013. [2] BPDAS. Circular Letter Number SE.02/V-SET/2009 about Decision in Working Area of BPDAS, 2009. [Indonesian] [3] SD. Day, PE. Wiseman, SB. Dickinson, JR. Harris. Contemporary concepts of root system architecture of urban trees. Arboricult Urb For. 36(4): 149-159, 2010. [4] DH. Gray, and AT. Leiser. Biotechnical Slope Protection and Erosion Control. Van Nostrand Reinhold Company. New York. 1982. [5] A. Hodge, G. Berta, C. Doussan, F. Merchan, and M. Crespi. Plant root growth, architecture, and function. Plant Soil 321: 153-187, 2009. [6] JJ. Hoorman. Using Cover Crops to Improve Soil and Water Quality. Ohio State University. 2009. [7] P. Li, Z. Li, and K. Lu. Effect of Vegetation Cover Types on Soil Infiltration Process Under Simulating Rainfall. International Soil Conservation Organization Conference. 601: 1-4, 2014. [8] M. Maridi. Identification of Vegetation Diversity for Keeping Quality of Slope in Dengkeng Watershed. Independent Research Report. Sebelas Maret University, Surakarta, 2013. [9] M. Maridi, S. Alanindra, A. Putri. Identification of Vegetation Diversity for Keeping the Quality of Slope Around Dengkeng Watershed in Klaten Central Java. Proceeding of the 4th Annual Basic Science International Conference 2014 in Conjuction with the 5th International Conference on Global Resource Conservation. 2014. [10] Maridi, S. Alanindra, A. Putri. Vegetation Analysis of Samin Watershed, Central Java as Water and Soil Conservation Efforts. Biodiversitas Journals of Biological Diversity. 15(2): 215-223. 2014. [11] E. Menashe. Vegetation and Erosion a Literature Survey. Environmental Education Assessment and Management. Greenbelt Consulting, Clinton, 2005. [12] K. Mitchell. Quantitative Analysis by the Point-Centered Quarter Method. (http://arXiv:1010.3303.q-bio.QM), 2010. Diakses tanggal 15 Mei 2014 [13] C. Orwa, A. Mutua, R. Kindt, R. Jamnadass, and A. Simons. Agroforestree Database: a tree reference and selection guide version 4.0. (http://www.worldagroforestry.org/af). 2009. Diakses tanggal 19 Mei 2014 [14] SL. Postel , BH. Thompson. Watershed Protection: Capturing the Benefits of Nature’s Water Supply Services. Nat Resour Forum, 29:98-108, 2005. [15] DA. Prasetia. Hydrology Analysis at Samin Sub Watershed Used SWAT Model. Faculty of Forestry Bogor Agricultural Institute. 2015.[Indonesian] [16] A.Pudjiharta. Pengaruh Pengelolaan Hutan pada Hidrologi. Jurnal Info Hutan (2):141-150, 2008. [17] A. Rangkisani, L. W. Santosa, dan R. P. Sancayaningsih. Analisis Vegetasi pada Berbagai Kondisi Mata air di Bagian Utara dan Tengah Kabupaten Gunungkidul Provinsi Daerah Istimewa Yogyakarta. Tesis. Program Studi Ilmu Lingkungan Jurusan Antar Bidang Sekolah Pascasarjana UGM. Yogyakarta, 2012. [18] HD. Riyanto, and Paimin. Performance of hardwood tree in Samin watershed in the perspective of watershed conservation. For Nat Conserv Res J, 8(1):45-54, 2011. [Indonesian] [19] S. Sudaryanto. The Analysis of Agricultural Land Use in Protected Areas Watershed Samin for Landslide and Flood Disaster Mitigation. Journal of Soil Science and Agroclimatology. 7(1): 41-50, 2010. [Indonesian] [20] Sumarno. Vegetation for Soil and Water Conservation. (smno.pdsl.pdkl.ppsub.20-13), accessed at May 28th 2014, 2010. [Indonesian] [21] R.A P.R Thakare, Jadhav, S.K. Hastimal. Watershed Management-A Case Study of Satara Tanda Village. International Journal of Innovative Technology and Exploring Engineering (IJITEE), 3(3):2278-3075, 2013. [22] J. Triwanto. Forest Land and Watershed Conservation. UMM Press, Malang, 2012. [Indonesian] [23] Z. Xu, Z. Feng, C. Zhao, J. Zheng, J. Yang, F. Tian, H. Peng, C. Wang, S. Peng, and H. Sher. The canopy rainfall interception in actual and potential distribution of Qinghai spruce (Picea crassifolia) forest. Journal of Hydrology and Hydromechanical. 61(1): 64-72, 2013.in_ID
dc.identifier.issn2477-3328
dc.identifier.urihttp://hdl.handle.net/11617/6299
dc.description.abstractSamin is one of watersheds located in the districts of Karanganyar and Sukoharjo, Central Java, Indonesia. Samin is a part of Bengawan Solo watershed that is classified into one of 282 Indonesian watersheds which are in critical condition. Research about vegetation analysis of Samin watershed as conservation efforts have been done before and resulted in structure of lower crop community (LCC) and tree vegetation. The purpose of this study was to analyze potential plants, both LCC and trees, in Samin watershed that could be developed as a vegetative water and soil conservation. The list of plants that were potentially developed as a vegetative conservation obtained from the research before about analysis structure and composition of vegetation in Samin watershed and literature review. The result of this research showed that there were several plants with the highest Important Value Index (IVI) and that can be developed for vegetative soil and water conservation. In tree vegetation, there are Tectona grandis, Delonix regia, Switenia mahagoni, Cassia siamea, and Samanea saman. These tree plants have a big canopy that can retain rain water through several mechanisms such as interception, reducing direct flow, and producing litter layer. In LCC vegetation, there were Mimosa pudica, Ageratum conyzoides, Tridax procumbens, Oplismenus burmanii, Chloris barbata, and Axonopus compressus. Grass vegetation could withstand runoff and increase infiltration.in_ID
dc.language.isoenin_ID
dc.publisherUniversitas Muhammadiyah Surakartain_ID
dc.subjectwatershedin_ID
dc.subjectsoil and water conservationin_ID
dc.subjectvegetative based conservationin_ID
dc.titlePotential Vegetation for Soil and Water Conservation: Case Study in Samin Watershed, Central Javain_ID
dc.typeArticlein_ID


Files in this item

Thumbnail

This item appears in the following Collection(s)

Show simple item record