Increase of Cropping Index in Dryland Supported by Groundwater Irrigation
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Adunya, T., & Benti, F. (2020). The impacts of climate-induced agricultural drought on four cereal crops: A case study in Bako Tibe District, Oromia National Regional State, Ethiopian. Caraka Tani: Journal of Sustainable Agriculture, 35(1), 135–146. https://doi.org/10.20961/carakatani.v35i1.35749
Ameur, M., Hamzaoui-Azaza, F., & Gueddari, M. (2015). Suitability for human consumption and agriculture purposes of Sminja aquifer groundwater in Zaghouan (north-east of Tunisia) using GIS and geochemistry techniques. Environmental geochemistry and health, 38(5), 1147–1167. https://doi.org/10.1007/s10653-015-9780-2
Anshori, A., Pramono, A., & Mujiyo. (2020). The stratification of organic carbon and nitrogen in top soils as affected by the management of organic and conventional rice cultivation. Caraka Tani: Journal of Sustainable Agriculture, 35(1), 126–134. https://doi.org/10.20961/carakatani.v35i1.34488
Anshori, A., Riyanto, D., Sukristiyonubowo, Widodo, S., & Suradal. (2021a). The increase of rice cropping index supported by river dam irrigation in dryland. IOP Conference Series: Earth and Environmental Science, 653, 012074. https://doi.org/10.1088/1755-1315/653/1/012074
Anshori, A., Sunarminto, B. H., & Haryono, E. (2016). Aliran bahan organik pada sawah padi organik di Dusun Jayan Desa Kebonagung Kec. Imogiri Kab. Bantul D.I. Yogyakarta. Caraka Tani: Journal of Sustainable Agriculture, 31(1), 45–50. https://doi.org/10.20961/carakatani.v31i1.11942
Anshori, A., Sunarminto, B. H., Haryono, E., & Mujiyo. (2018). Potential production of CH4 and N2O in soil profiles from organic and conventional rice fields. Sains Tanah Journal of Soil Science and Agroclimatology, 15(1), 54–60. https://doi.org/10.15608/stjssa.v15i1.19324
Anshori, A., Suswatiningsih, T. E., Viandari, N. A., Mujiyo, & Rajiman, R. (2021b). Effect of supplementary irrigation on rice yield in dryland during rainy season. IOP Conference Series: Earth and Environmental Science, 824, 012091. https://doi.org/10.1088/1755-1315/824/1/012091
Anshori, A. (2020). Strategi peningkatan indeks pertanaman padi di Kabupaten Gunungkidul. Prosiding Seminar Nasional Pertanian Peternakan Terpadu Ke-3 Universitas Muhammadiyah Purworejo, 238–247. Retrieved from http://eproceedings.umpwr.ac.id/index.php/pertanian/article/view/1310
Arifin, Biba, M. A., & Syafiuddin. (2021). Determinants of production and income risks of rainfed lowland farming: A case study in Maros Regency, Indonesia. Caraka Tani: Journal of Sustainable Agriculture, 36(2), 319–328. https://doi.org/10.20961/carakatani.v36i2.47713
Basso, B., & Ritchie, J. T. (2012). Assessing the impact of management strategies on water use efficiency using soil-plant-atmosphere models. Vadose Zone Journal, 11(3), vzj2011-0173. https://doi.org/10.2136/vzj2011.0173
Basso, B., Kendall, A., & Hyndman, D. W. (2013). The future of agriculture over the Ogallala Aquifer: Solutions to grow crops more efficiently with limited water. Earth’s Future, 1(1), 39–41. https://doi.org/10.1002/2013EF000107
Bekchanov, M., Ringler, C., Bhaduri, A., & Jeuland, M. (2015). How would the Rogun Dam affect water and energy scarcity in Central Asia? Water International, 40(5–6), 856–876. https://doi.org/10.1080/02508060.2015.1051788
Bouimouass, H., Fakir, Y., Tweed, S., & Leblanc, M. (2020). Groundwater recharge sources in semiarid irrigated mountain fronts. Hydrological Processes, 34(7), 1598–1615. https://doi.org/10.1002/hyp.13685
Butler Jr., J. J., Whittemore, D. O., Wilson, B. B., & Bohling, G. C. (2018). Sustainability of aquifers supporting irrigated agriculture: A case study of the High Plains aquifer in Kansas. Water International, 43(6), 815–828. https://doi.org/10.1080/02508060.2018.1515566
Center for Agricultural Technology Studies and Development. (2017). Panduan dukungan inovasi pertanian untuk peningkatan indeks pertanaman (IP) padi jagung kedelai (Pajale) lahan kering dan sawah tadah hujan. Jakarta: Indonesian Agency for Agricultural Research and Development
Chen, H., Gao, Z., Zeng, W., Liu, J., Tan, X., Han, S., Wang, S., Zhao, Y., & Yu, C. (2018). Scale effects of water saving on irrigation efficiency: Case study of a rice-based groundwater irrigation system on the Sanjiang Plain, Northeast China. Sustainability, 10(1), 47. https://doi.org/10.3390/su10010047
Danaryanto, Titomiharjo, H., Setiadi, H., & Siagian, Y. (2007). Kumpulan pedoman teknis pengelolaan air tanah. Bandung: Badan Geologi. Retrieved from https://scholar.google.co.id/scholar?hl=id&as_sdt=0%2C5&q=Kumpulan+pedoman+teknis+pengelolaan+air+tanah&btnG=
Department of Agriculture and Food of Gunungkidul. (2022). Laporan kinerja instansi pemerintah. Department of Agriculture and Food of Gunungkidul.
El-Gafy, I., Grigg, N., & Reagan, W. (2017). Water-food-energy nexus index to maximize the economic water and energy productivity in an optimal cropping pattern. Water International, 42(4), 495–503. https://doi.org/10.1080/02508060.2017.1309630
El-Gafy, I. (2013). Decision support system to maximize economic value of irrigation water at the Egyptian governorates meanwhile reducing the national food gap. Water Science Journal, 27(54), 1–18. https://doi.org/10.1016/j.wsj.2013.12.001
Erythrina, E., Anshori, A., Bora, C. Y., Dewi, D. O., Lestari, M. S., Mustaha, M. A., Ramija, K. E., Rauf, A. W., Mikasari, W., Surdianto, Y., Suriadi, A., Purnamayani, R., Darwis, V., & Syahbuddin, H. (2021). Assessing opportunities to increase yield and profit in rainfed lowland rice systems in Indonesia. Agronomy, 11(4), 777. https://doi.org/10.3390/agronomy11040777
Eviati & Sulaeman. (2009). Petunjuk teknis analisis tanah, tanaman, air dan pupuk. Bogor: Indonesian Soil Research Institute. Retrieved from https://scholar.google.co.id/scholar?hl=id&as_sdt=0%2C5&q=Petunjuk+teknis+analisis+tanah%2C+tanaman%2C+air+dan+pupuk+eviati+dan+sulaean&btnG=
Fetter, C. W. (1994). Applied hydrogeology. Columbus, Ohio: Merrill Publishing Co. Retrieved from http://sutlib2.sut.ac.th/sut_contents/H109081.pdf
Hamzaoui-Azaza, F., Tlili-Zrelli, B., Bouhlila, R., & Gueddari, M. (2013). An integrated statistical methods and modeling minerals-water interaction to identifying hydrochemical processes in groundwater in southern Tunisia. Chemical Speciation and Bioavailability, 25(3), 165–178. https://doi.org/10.3184/095422913X13785679075430
Hassen, I., Hamzaoui-Azaza, F., & Bouhlila, R. (2016). Application of multivariate statistical analysis and hydrochemical and isotopic investigations for evaluation of groundwater quality and its suitability for drinking and agriculture purposes: Case of Oum Ali-Thelepte aquifer, Central Tunisia. Environ Monit Assess, 188(3), 1–20. https://doi.org/10.1007/s10661-016-5124-7
Hendayana, R. (2016). Analisis data pengkajian. Jakarta: The Indonesian Agency for Agricultural Research and Development (IAARD) Press. Retrieved from https://scholar.google.co.id/scholar?hl=id&as_sdt=0%2C5&q=Analisis+data+pengkajian+Hendayana&oq=Analisis+data+pengkajian+h
Inayah, L., Siswoyo, H., & Fidari, J. S. (2022). Pemetaan nilai indeks kualitas air tanah untuk irigasi di Kecamatan Negara Kabupaten Jembrana Provinsi Bali. Jurnal Teknologi dan Rekayasa Sumber Daya Air, 2(2), 80–91. Retrieved from https://jtresda.ub.ac.id/index.php/jtresda/article/view/80
Indrawan, E., Lestari, S. U., Thiasari, N., & Sasongko, P. (2020). The pruning effect on the storage root yield and starch content of sweet potato clones planted at dryland. Caraka Tani: Journal of Sustainable Agriculture, 35(2), 289–298. https://doi.org/10.20961/carakatani.v35i2.34480
Kartiwa, B., Rejekiningrum, P., Sosiawan, H., Sutrisno, N., Heryani, N., Talaohu, S. H., Sudarman, K., Hamdani, A., Haryono, Jayanto, G., Harmanto, & Nursyamsi, D. (2017). Petunjuk teknis implementasi infrastruktur panen air. Jakarta: Indonesian Agency for Agricultural Research and Development (IAARD)
Kruseman, G. P., & de Ridder, N. A. (1994). Analysis and evaluation of pumping test data, p. 200. Wageningen, The Netherlands: International institute for land reclamation and improvement. Retrieved from https://hwbdocuments.env.nm.gov/Los%20Alamos%20National%20Labs/General/31955.pdf
Las, I., Makarim, A. K., Sumarno, S. P., Mardikarini, M., & Kartaatmadja, S. (1999). Pola IP padi-300, konsepsi dan prospek implementasi sistem usaha pertanian berbasis sumberdaya. Jakarta: Indonesian Agency for Agricultural Research and Development (IAARD). Retrieved from https://scholar.google.co.id/scholar?hl=id&as_sdt=0%2C5&q=Pola+IP+Padi+300%E2%80%AF%3A+Konsepsi+dan+Prospek+Implementasi+Sistem+Usaha+Tani+Berbasis+Sumberdaya&btnG=
Liu, J., & Che, H. (2020). Conjunctive use of groundwater and surface water for paddy rice irrigation in Sanjiang plain, North-East China. Irrigation and Drainage, 69, 142–152. https://doi.org/10.1002/ird.2459
Mainuddin, M., Maniruzzaman, M., Alam, M. M., Mojid, M. A., Schmidt, E. J., Islam, M. T., & Scobied, M. (2020). Water usage and productivity of Boro rice at the field level and their impacts on the sustainable groundwater irrigation in the North-West Bangladesh. Agricultural Water Management, 240, 106294. https://doi.org/10.1016/j.agwat.2020.106294
Makarim, A. K., Abdulrachman, S., Ikhwani, Agustiani, N., Margaret, S., Wahab, M. I., Rachmat, R., & Guswara, A. (2017). Teknik ubinan pendugaan produktivitas padi menurut sistem tanam. Sukamandi, Jawa Barat: Indonesian Institute for Rice Research. Retrieved from http://bbpadi.litbang.pertanian.go.id/index.php/en/publikasi/panduan-teknis/item/692-teknik-ubinan-pendugaan-produktivitas-padi-menurut-sistem-tanam
Mao, M., Jia, J., Liu, C., & Hou, Z. (2005). A simulation and prediction of agricultural irrigation on groundwater in well irrigation area of the piedmont of Mt. Taihang, North China. Hydrological Processes: An International Journal, 19(10), 2071–2084. https://doi.org/10.1002/hyp.5667
Meyland, S. J. (2011). Examining safe yield and sustainable yield for groundwater supplies and moving to managed yield as water resource limits become a reality. WIT Transactions on Ecology and the Environment, 145, 813–823. https://doi.org/10.2495/WRM110731
Mulyani, A. (2015). Potensi ketersediaan lahan kering mendukung perluasan areal pertanian pangan. In Pasandaran, E., R. Heriawan dan Syakir, M. (Eds.) Sumberdaya lahan dan air: Prospek pengembangan dan pengelolaan. Jakarta: Indonesian Agency for Agricultural Research and Development (IAARD) Press. Retrieved from https://scholar.google.co.id/scholar?hl=id&as_sdt=0%2C5&q=Potensi+ketersediaan+lahan+kering+mendukung+perluasan+areal+pertanian+pangan&btnG=
Nurasa, T., & Supriadi, H. (2012). Program sekolah lapang pengelolaan tanaman terpadu (SLPTT) padi: Kinerja dan antisipasi kebijakan mendukung swasembada pangan berkelanjutan. Kebijakan Pertanian, 10(4), 313–329. Retrieved from http://repository.pertanian.go.id/bitstream/handle/123456789/4459/PROGRAM%20SEKOLAH%20LAPANG%20PENGELOLAAN%20TANAMAN%20TERPADU%20(SL-PTT)%20PADI-%20KINERJA%20DAN%20ANTISIPASI%20KEBIJAKAN%20MENDUKUNG%20SWASEMBADA%20PANGAN%20BERKELANJUTAN.pdf?sequence=1
Nurcholis, M., & Supangkat, G. (2011). Pengembangan integrated farming sistem untuk pengendalian alih fungsi lahan pertanian. Prosiding Seminar Nasional Budidaya Pertanian, pp. 71–84. Retrieved from http://repository.umy.ac.id/bitstream/handle/123456789/29649/New%20C.7-Gatot%20S.pdf?sequence=3&isAllowed=y
Osama, S., Elkholy, M., & Kansoh, R. M. (2017). Optimization of the cropping pattern in Egypt. Alexandria Engineering Journal, 56(4), 557–566. https://doi.org/10.1016/j.aej.2017.04.015
Pakparvar, M., Walraevens, K., Cheraghi, S. A. M., Ghahari, G., Cornelis, W., Gabriels, D., & Kowsar, S. A. (2017). Assessment of groundwater recharge influenced by floodwater spreading: An integrated approach with limited accessible data. Hydrological Sciences Journal, 62(1), 147–164. https://doi.org/10.1080/02626667.2016.1183164
Priatmojo, B., Adnyana, M. O., Wardana, I. P., & Sembiring, H. (2019). Kelayakan finansial dan teknis cara tanam padi jajar legowo super di sentra produksi padi kawasan Sumatera. Penelitian Pertanian Tanaman Pangan, 3(1), 9–15. Retrieved from https://scholar.google.co.id/scholar?hl=id&as_sdt=0%2C5&q=Kelayakan+Finansial+dan+Teknis+Cara+Tanam+Padi+Jajar+Legowo+Super+di+Sentra+Produksi+Padi+Kawasan+Sumatera&btnG=
Putranto, T. T., & Setiawan, D. (2019). Penentuan zona konservasi dan pemanfaatan air tanah akuifer bebas pada cekungan air tanah Pati-Rembang, Provinsi Jawa Tengah. RISET Geologi dan Pertambangan, 29(2), 203–213. https://doi.org/10.14203/risetgeotam2019.v29.1025
Ravindran, A. A., Mondal, N. C., Ramanujam, N., & Srinivasamoorthy, K. (2015). Aquifer assessment for agriculture through geophysical, hydrochemical and hydrogeological approaches around Perumattunallur lake, Southern India. Sustainable Water Resources Management, 1(2), 137–154. https://doi.org/10.1007/s40899-015-0011-x
Rengganis, H. (2016). Potensi dan upaya pemanfaatan air tanah untuk irigasi lahan kering di Nusa Tenggara. Jurnal Irigasi, 11(2), 67–80. https://doi.org/10.31028/ji.v11.i2.67-80
Riyanto, D., Yustisia, Anshori, A., & Srihartanto, E. (2021). Application of rice-corn intercropping as an optimization of the land use utilization and increasing of farmer income in Playen Gunungkidul. E3S Web of Conferences, 232, 01033. https://doi.org/10.1051/e3sconf/202123201033
Sasmita, P., Satoto, Rahmini, Agustiani, N., Handoko, D. D., Suprihanto, Guswara, A., & Suharna, S. (2019). Deskripsi varietas unggul baru padi. Badan Penelitian dan Pengembangan Pertanian. Kementerian Pertanian. Retrieved from https://scholar.google.co.id/scholar?hl=id&as_sdt=0%2C5&q=Deskripsi+varietas+unggul+baru+padi+sasmita&oq=Deskripsi+varietas+unggul+baru+padi+sasmi
Shoidah, F., & Adnan, A. (2021). Pertumbuhan dan produktivitas 5 varietas unggul baru padi di lahan bukaan baru Kabupaten Boven Digoel. Agrosains: Jurnal Penelitian Agronomi, 23(1), 6–11. https://doi.org/10.20961/agsjpa.v23i1.44200
Singh, A. K., Chakraborti, M., & Datta, M. (2014). Improving rice-based cropping pattern through soil moisture and integrated nutrient management in mid-tropical plain zone of Tripura, India. Rice Science, 21(5), 299–304. https://doi.org/10.1016/S1672-6308(13)60190-0
Steel, R. G. D., & Torie, J. H. (1978). Principles and procedures of statistics: Biometrical Approach. New York, USA: Mac Graw Hill Inc. Retrieved from https://www.cabdirect.org/cabdirect/abstract/19810721475
Sudarmaji. (2013). Mata air: Perspektif hidrologis dan lingkungan. Yogyakarta: Penerbit Sekolah Pascasarjana Universitas Gadjah Mada. Retrieved from https://scholar.google.co.id/scholar?hl=id&as_sdt=0%2C5&q=Mata+air%E2%80%AF%3A+Perspektif+hidrologis+dan+lingkungan&btnG=
Suparman, & Abdurahman. (2003). Teknik pengujian galur kacang tanah toleran naungan di bawah tegakan pohon kelapa. Buletin Teknik Pertanian, 8(2), 76–79. Retrieved from https://lib.ui.ac.id/file?file=pdf/metadata-67340.pdf
Supriyadi, Pratiwi, M. K., Minardi, S., & Prastiyaningsih, N. L. (2020). Carbon organic content under organic and conventional paddy field and its effect on biological activities (A case study in Pati Regency, Indonesia). Caraka Tani: Journal of Sustainable Agriculture, 35(1), 108–116. https://doi.org/10.20961/carakatani.v35i1.34630
Supriyadi, Vera, I. L. P., & Purwanto, P. (2021). Soil quality at rice fields with organic, semi-organic and inorganic management in Wonogiri Regency, Indonesia. Caraka Tani: Journal of Sustainable Agriculture, 36(2), 259–269. https://doi.org/10.20961/carakatani.v36i2.42556
Suryana, A. (2014). Menuju ketahanan pangan Indonesia berkelanjutan 2025: Tantangan dan penanganannya. Forum Penelitian Agro Ekonomi, 32(2), 123–135. https://doi.org/10.21082/fae.v32n2.2014.123-135
Sutrisno, N., Hamdani, A., & Sosiawan, H. (2016). Pengelolaan sumber daya air mendukung indeks pertanaman padi. Proceeding Seminar Nasional, pp. 48–62. Retrieved from http://repository.ut.ac.id/6373/1/FMIPA2016_06.pdf
Suwarno. (2010). Meningkatkan produksi padi menuju ketahanan pangan lestari. Jurnal Pangan, 19(3), 233–243. Retrieved from https://www.jurnalpangan.com/index.php/pangan/article/view/150
Syamsiyah, J., Sunarminto, B. H., Hanudin, E., Widada, J., & Mujiyo. (2019). Carbon dioxide emission and carbon sequestration potential in Alfisol. Bulgarian Journal of Agricultural Science, 25(1), 42–48. Retrieved from https://www.cabdirect.org/cabdirect/abstract/20203368618
Terán-Chaves, C. A., & Polo-Murcia, S. M. (2021). Cropping pattern simulation-optimization model for water use efficiency and economic return. Journal of Agricultural Engineering, 52(4). https://doi.org/10.4081/jae.2021.1197
Tkemaladze, G., & Makhashvili, K. A. (2016). Climate changes and photosynthesis. Annals of Agrarian Science, 14(2), 119–126. https://doi.org/10.1016/j.aasci.2016.05.012
Todd, D. K., & Mays, L. W. (2005). Groundwater hydrology (3rd edition). New York, USA: John Wiley and Sons Inc. Retrieved from https://books.google.co.id/books?hl=id&lr=&id=X3T6DwAAQBAJ&oi=fnd&pg=PA16&dq=Groundwater+hydrology&ots=TWM9nXXiDR&sig=JR-ZlebmBlCpHgqRFacmw6N6q8A&redir_esc=y#v=onepage&q=Groundwater%20hydrology&f=false
Viandari, N. A., & Anshori, A. (2021). Rice cultivation on dryland during dry season supported by deep well irrigation and soil amelioration. IOP Conference Series: Earth and Environmental Science, 672, 012019. https://doi.org/10.1088/1755-1315/672/1/012019
Viandari, N. A., Wihardjaka. A., Pulunggono, H. B., & Suwardi, S. (2022). Sustainable development strategies of rainfed paddy fields in Central Java, Indonesia: A review. Caraka Tani: Journal of Sustainable Agriculture, 37(2), 275–288. https://doi.org/10.20961/carakatani.v37i2.58242
Wahdah, R., Langai, B. F., & Sitaresmi, T. (2015). Keragaman karakter varietas lokal padi pasang surut Kalimantan Selatan. Jurnal Penelitian Pertanian Tanaman Pangan, 31(3), 158–165. Retrieved from http://repository.pertanian.go.id/handle/123456789/1334
Witjaksono, J. (2018). Kajian sistem tanam jajar legowo untuk peningkatan produktivitas tanaman padi di Sulawesi Tenggara. Jurnal Pangan, 27(1), 1–8. Retrieved from https://jurnalpangan.com/index.php/pangan/article/view/400
Young, D, B., Rosen, T., Fisher, T, R., Moorshead, T., & Koslow, D. (2017). Dynamics of nitrate and methane in shallow groundwater following land use conversion from agricultural grain production to conservation easement. Agriculture, Ecosystems and Environment, 248, 200–214. https://doi.org/10.1016/j.agee.2017.07.026
Zhang, C., McBean, E. A., &·Huang, J. (2014). A virtual water assessment methodology for cropping pattern investigation. Water resources management, 28(8), 2331–1349. https://doi.org/10.1007/s11269-014-0618-y
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