Water Footprint Produksi Tanaman Melon pada Sistem Budidaya Hidroponik dan Konvensional

Fadil Rohman, Tri Rini Kusparwanti, Refa Firgiyanto, Rindha Rentina Darah Pertami, Edi Siswadi, Muhammad Zayin Sukri, Hanif Fatur Rohman, Gallyndra Fatkhu Dinata, Eliyatiningsih Eliyatiningsih, Anggita Rizky Fadilah

Sari


Water use efficiency is a critical issue in melon production, particularly under greenhouse cultivation systems. This study aimed to compare the water footprint of melon (Cucumis melo L.) production under hydroponic and conventional cultivation systems. The experiment was conducted at the Teaching Factory Smart Greenhouse, Politeknik Negeri Jember, from March to June 2023. Each cultivation system consisted of 30 sampled plants. Both systems applied drip irrigation with a nutrient solution concentration of 1400 ppm. Water footprint was calculated following Hoekstra’s method, considering only the blue water footprint, while green and grey components were assumed to be zero due to the protected greenhouse environment. The results showed that the conventional system produced greater vegetative growth, earlier generative phase development, and higher fruit diameter and weight than the hydroponic system. However, the water footprint of the conventional system was significantly higher. Differences in water footprint were mainly attributed to differences in planting area per plant, which affected plant water use calculated as evapotranspiration multiplied by planting area. The hydroponic system demonstrated higher water use efficiency per unit yield.

Kata Kunci


crop yield, evapotranspiration, greenhouse, soilless farming

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Referensi


Allen, R. G., Pereira, L. S., Raes, D., & Smith, M. (1998). Evapotranspiration Crop (guidelines for computing crop water requirements). In FAO Irrigation and Drainage Paper No. 56 (Issue 56). http://www.kimberly.uidaho.edu/water/fao56/fao56.pdf

Anggara, H., Suwarno, W. B., Saptomo, S. K., Endang Gunawan, Amalia Nurul Huda, & Budi Indra Setiawan. (2020). Keragaan Lima Varietas Melon (Cucumis melo L.) dengan Perlakuan Irigasi Cincin di Rumah Kaca. Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy), 48(3), 307–313. https://doi.org/10.24831/jai.v48i3.32206

Ariessandy, I., Triyono, S., Amien, R., & Tusi, D. A. (2022). Influence of aggregate hydroponic media type and nutrition solution ec on the growth and production of melon (Cucumis melo L.). Jurnal Agricultural Biosystem Engineering, 1(1), 20–31. https://jurnal.fp.unila.ac.id/index.php/ABE/index

Franke, N. A., Boyacioglu, H., & Hoekstra, A. Y. (2013). Grey Water Footprint Accounting: Tier 1 supporting guidelines, Value of Water Research Report Series. UNESCO-IHE Institute for Water Education.

Ginting, A. P., Barus, A., & Sipayung, R. (2017). Pertumbuhan dan Produksi Melon (Cucumis meloL.) terhadap Pemberian Pupuk NPK dan Pemangkasan Buah Growth and Production of Melon (Cucumis melo L.)by Giving NPK Fertilizer and Fruit Prunning. Agroekoteknologi FP USU, 5(4), 786–798. https://core.ac.uk/download/pdf/196255896.pdf

Hoekstra, A. Y., Chapagain, A. K., Aldaya, M. M., & Mekonnen, M. M. (2011). The Water Footprint Assessment Manual. Earthscan.

Huda, A. N., Suwarno, W. B., & Maharijaya, D. A. (2019). Karakteristik Buah Melon (Cucumis melo L.) pada Lima Stadia Kematangan. Jurnal Agronomi Indonesia, 46(3), 298–305. https://doi.org/10.24831/jai.v46i3.12660

Malik, A., & Arif, C. (2023). Optimasi pemberian air irigasi tanaman melon (Cucumis melo L.) pada sistem pocket fertigation dengan algoritma genetika. Jurnal Sumber Daya Air, 19(1), 57–67. https://doi.org/10.32679/jsda.v19i1.825

Maruapey, A., & Soekamto, M. H. (2022). Pertumbuhan dan Hasil Tanaman Melon (Cucumis melo L.) pada Berbagai Dosis Pupuk Organik Bokashi dari Limbah Pertanian Jerami Padi. Jurnal Agribisnis Perikanan , 15(1), 129–139.

Mekonnen, M. M., & Hoekstra, A. Y. (2010). The Green, Blue and Grey Water Footprint of Crops and Derived Crop Products: Vol. 1: Main Re (Issue 47). UNESCO-IHE Institute for Water Education.

Palandro, N. S. S. D., Purnamaningsih, S. L., & Saptadi, D. (2023). Respon Beberapa Varietas Melon (Cucumis melo L.) terhadap Aplikasi EM4. Jurnal Produksi Tanaman, 11(8), 525–531. https://doi.org/http://dx.doi.org/10.21776/ub.protan.2023.011.08.05

Pawitra, A. N. M. (2020). Analisis Pertumbuhan Tanaman Melon dengan dan Tanpa Perlakuan Pengaturan Kondisi Lingkungan Mikro Terbatas. Universitas Gadjah Mada.

Peres, J. G., Marcussi, L., Souza, C. F., & Brugnaro, C. (2013). Use of weighing lisimeters to determine crop coefficients for melon (Cucumis melo L.) to be cultivated in plastic greenhouse in the region of Araras sp. Eng. Agríc., Jaboticabal, 33(3), 475–487. https://doi.org/10.2207/jjws.91.328

Poorter, H., Hler, J. B., Dusschoten, D. van, Climent, J., & Postma, J. A. (2012). Pot size matters: a meta-analysis of the effects of rooting volume on plant growth. Funct Plant Biol., 39(11). https://doi.org/10.1071/FP12049

Rohman, F., Kurniasari, L., Azizah, M., Firgiyanto, R., Sukri, M. Z., Rohman, H. F., Restanto, D. P., & Tini, E. W. (2024). Water footprint of melon production under different nutrient and plant growth regulator management. Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy), 52(3), 400–409. https://doi.org/10.24831/jai.v52i3.60461

Samsuri, S. A., Dinarto, W., & Sriwijaya, B. (2024). Pertumbuhan, Hasil, dan Mutu Melon dengan Pupuk Larutan Hara Racikan Sendiri dan AB Mix Pabrikan pada Media Tanah. Proceedings Series on Physical & Formal Sciences. Prosiding Seminar Nasional Fakultas Pertanian Dan Perikanan, 7, 101–107. https://doi.org/10.30595/pspfs.v7i.1208

Tara, K. K., Sharma, N., & Vishal, R. (2024). Melon (Cucumis melo L.): A Horticultural Delicacy Endowing Nutritional Benefits. Biotica Research Today, 6(1), 3–5. https://www.mdpi.com/2223-7747/12/16/2969

Triadiati, Muttaqin, M., & Saidah Amalia, N. (2019). Growth, Yield, and Fruit of Melon Quality Using Silica Fertilizer. Jurnal Ilmu Pertanian Indonesia, 24(4), 366–374. https://doi.org/10.18343/jipi.24.4.366

Yang, Z., Kong, T., Xie, J., Yang, T., Jiang, Y., Feng, Z., & Zhang, Z. (2023). Appropriate water and fertilizer supply can increase yield by promoting growth while ensuring the soil ecological environment in melon production. Agricultural Water Management, 289(August), 1–12. https://doi.org/10.1016/j.agwat.2023.108561




DOI: https://doi.org/10.33387/jpk.v4i2.11169

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