Show simple item record

dc.contributor.authorPurwanto, Ajun
dc.contributor.authorAndrasmara, Donny
dc.date.accessioned2019-10-21T05:10:01Z
dc.date.available2019-10-21T05:10:01Z
dc.date.issued2019
dc.identifier.citationAbd-Elmabod, S.K., Jordán, A., Fleskens, L., Phillips, J.D., Muñoz-Rojas, M., van der Ploeg, M., Anaya-Romero, M., El-Ashry, S., de la Rosa, D. 2017. “Modeling Agricultural Suitability Along Soil Transects Under Current Conditions and Improved Scenario of Soil Factors”, in: Pereira, P., Brevik, E. C., Rojas, M.M., & Miller, B., A. 2017. Soil Mapping and Process Modeling for Sustainable Land Use Management. Elsevier, United State. pp. 193–219. https://doi.org/10.1016/ B978-0-12-805200-6.00007-4. AbdelRahman, M.A.E., Natarajan, A., Hegde, R. 2016. “Assessment of land suitability and capability by integrating remote sensing and GIS for agriculture in Chamarajanagar district, Karnataka, India”. The Egyptian Journal Remote Sensing and Space Sciences. 19, 125–141. https://doi. org/10.1016/j.ejrs.2016.02.001. Arsyad, S. 1989. “Konservasi Tanah dan Air”. Bandung: IPB Press. Bagherzadeh, A., Gholizadeh, A. 2016. “Modeling land suitability evaluation for wheat production by parametric and TOPSIS approaches using GIS, northeast of Iran”. Modeling Earth Systems and Environment. 2. https://doi.org/10.1007/s40808-016-0177-8. Bagherzadeh, A., Mansouri Daneshvar, M.R. 2011. “Physical land suitability evaluation for specific cereal crops using GIS at Mashhad Plain, Northeast of Iran”. Frontiers Agriculture in China 5, 504–513. https://doi.org/10.1007/s11703-011-1102-6. Chaudhary, N., Singh, S., Agrawal, S.B., Agrawal, M. 2013. “Assessment of six Indian cultivars of mung bean against ozone by using foliar injury index and changes in carbon assimilation, gas exchange, chlorophyll fluorescence and photosynthetic pigments”. Environtal Monitoring Assessmet 185, 7793–7807. https://doi.org/10.1007/s10661-013-3136-0. FAO. 2007. “Land evaluation, towards a revised framework”. Land and Water Discussion Paper 6. Rome, Italy. FAO. 1976. “A framework for land evaluation”. Soils Bulletin 32, Food and Agriculture Organization of the United Nations, Rome, Italy. Jiao, S., Zhang, X., Xu, Y. 2017. “A review of Chinese land suitability assessment from the rainfallwaterlogging perspective: Evidence from the Su Yu Yuan area”. Journal of Cleaner Production. 144, 100–106. https://doi.org/10.1016/j.jclepro.2016.12.162. Kahsay, A., Haile, M., Gebresamuel, G., Mohammed, M. 2018. “Land suitability analysis for sorghum crop production in northern semi-arid Ethiopia: Application of GIS-based fuzzy AHP approach”. Cogent Food and Agriculture 4. https://doi.org/10.1080/23311932.2018.1507 184. Kivinen, S. 2017. “Sustainable Post-Mining Land Use: Are Closed Metal Mines Abandoned or Re- Used Space?”. Sustainability 9, 1705. https://doi.org/10.3390/su9101705. Klingebiel, A.A., Montgomery, P.H. 1973. “Land Capability Classification”. Agriculture Handbook No. 210, Soil Conservation Service, U.S. Department of Agriculture, USA. Kodir, A., Hartono, D.M., Haeruman, H., Mansur, I. 2017. “Integrated post mining landscape for sustainable land use: A case study in South Sumatera, Indonesia”. Sustainable Environment Research 27, 203–213. https://doi.org/10.1016/j.serj.2017.03.003. Li, Q., Huang, J., Wang, C., Lin, H., Zhang, J., Jiang, J., Wang, B. 2017. “Land Development Suitability Evaluation of Pingtan Island Based on Scenario Analysis and Landscape Ecological Quality Evaluation”. Sustainability 9, 1292. https://doi.org/10.3390/su9071292. Maftu’ah, E., Maas, A., Syukur, A., Purwanto, B.H. 2013. “Efektivitas amelioran pada lahan gambut terdegradasi untuk meningkatkan pertumbuhan dan serapan npk tanaman Jagung Manis (Zea mays L. var. saccharata)”. Journal of Agronomy Indonesia. 41. Mamat, L., Basri, N.E.A., Zain, S.M., Rahmah, E. 2016. “Environmental sustainability indicators as impact tracker: A review”. J. Sustainability Science Management. 11, 29–42. Mousavi, S., Sarmadian, F., Alijani, Z., Taati, A. 2017. “Land suitability evaluation for irrigating wheat by Geopedological approach and Geographic Information System: A case study of Qazvin plain, Iran”. Eurasian Journal of Soil Science. 6, 275–275. https://doi.org/10.18393/ ejss.297251. Mustafa, A.A., Singh, M., Sahoo, R.N., Ahmed, N., Khanna, M., Sarangi, A., Mishra, A.K. 2011. “Land suitability analysis for different crops: a multi criteria decision making approach using remote sensing and GIS”. Researcher 3, 61–84. Osman, K.T. 2014. “Soil Degradation, Conservation and Remediation”. Springer: New York. Pramanik, M.K. 2016. “Site suitability analysis for agricultural land use of Darjeeling district using AHP and GIS techniques”. Modeling Earth Systems and Environment. 2. https://doi. org/10.1007/s40808-016-0116-8. Qureshi, M.R.N., Singh, R.K., Hasan, M.A. 2018. “Decision support model to select crop pattern for sustainable agricultural practices using fuzzy MCDM”. Environment Development Sustainability. 20, 641–659. https://doi.org/10.1007/s10668-016-9903-7. Taddese, H. 2014. “Suitability analysis for Jatropha curcas production in Ethiopia - a spatial modeling approach”. Environmental Systems Research. 3. https://doi.org/10.1186/s40068-014- 0025-7. World Agroforestry Centre. 2013. “Negotiation support toolkit for learning landscapes”. Bogor: Indonesia. Yohannes, H., Soromessa, T. 2018. “Land suitability assessment for major crops by using GIS-based multi-criteria approach in Andit Tid watershed, Ethiopia”. Cogent Food and Agriculture. 4. https://doi.org/10.1080/23311932.2018.1470481. Young, A. 2000. “Land resources: Now and for the future”. Cambridge University Press, Cambridge, UK. Zabihi, H., Ahmad, A., Vogeler, I., Said, M.N., Golmohammadi, M., Golein, B., Nilashi, M. 2015. “Land suitability procedure for sustainable citrus planning using the application of the analytical network process approach and GIS”. Computer and Electronics in Agriculture. 117, 114–126. https://doi.org/10.1016/j.compag.2015.07.014.id_ID
dc.identifier.isbn978-602-361-243-7
dc.identifier.urihttp://hdl.handle.net/11617/11627
dc.description.abstractPenelitian ini bertujuan mengetahui kesesuaian penggunaan tanaman asli lokal Kalimantan Barat untuk konservasi pada lahan bekas tambang bauksit. Metode penelitian yang digunakan adalah survei dan analisis laboratorium. Data yang digunakan dalam penelitian ini terdiri dari suhu rata-rata, curah hujan, kelembaban, drainase tanah, tekstur tanah, bahan kasar, kedalaman tanah, kapasitas pertukaran kation (KTK), kejenuhan basa, pH H2O, C-Organik, total N, P2O5, K2O, salinitas, alkalinitas, kemiringan lereng, bahaya erosi, genangan air, batuan permukaan dan singkapan batuan. Metode analisis data menggunakan matching, antara karakteristik tanah dan kriteria kesesuaian untuk tanaman Mentawa (Artocarpus anisophyllus). Hasil penelitian menunjukkan bahwa lahan bekas tambang bauksit mempunyai kelas kesesuaian aktual N ( tidak sesuai) untuk tanaman Mentawa (Artocarpus anisophyllus) jika digunakan untuk konservasi. Faktor pembatas di kaki perbukitan denudasional adalah toksisitas (salinitas) dan hara tersedia (N total, P2O5, K2O), sedangkan pembatas di ledok aluvial adalah toksisitas (salinitas), sodisitas (alkalinitas) dan genangan. Namun dua lokasi tersebut dapat mempunyai kesesuaian lahan potensial S3 (kesesuaian marginal) apabila dilakukan pengelolaan terhadap faktor pembatas yang saat ini ada.id_ID
dc.language.isootherid_ID
dc.publisherProsiding Seminar Nasional Geografi UMS X 2019id_ID
dc.titlePenggunaan Tanaman Asli Lokal Mentawa (Artocarpus Anisophyllus) untuk Konservasi Lahan Bekas Tambang Bauksit di Sejotang Kecamatan Sanggau Kalimantan Baratid_ID
dc.typeArticleid_ID


Files in this item

Thumbnail

This item appears in the following Collection(s)

Show simple item record