Implementasi Energi Surya Sebagai Sumber Daya Terbarukan dalam Sistem Aquaponik Ikan Nila Di Desa Tangkit Baru
DOI:
https://doi.org/10.22437/mjf.v3i01.50812Keywords:
aquaponik,, Deep Flow Technique, energi surya, ikan nila, keberlanjutanAbstract
Kegiatan pengabdian ini bertujuan memperkenalkan sistem aquaponik berbasis energi surya sebagai solusi budidaya berkelanjutan di wilayah pedesaan yang memiliki keterbatasan akses listrik. Program dilaksanakan di Desa Tangkit Baru dengan melibatkan kelompok pembudidaya ikan. Sistem yang digunakan adalah aquaponik metode Deep Flow Technique (DFT), dimana limbah metabolik ikan dimanfaatkan sebagai nutrisi tanaman, sementara tanaman membantu menjaga stabilitas kualitas air. Operasional pompa dan aerasi didukung panel surya sehingga sirkulasi air dapat berlangsung 24 jam tanpa ketergantungan pada listrik PLN. Kegiatan meliputi pemasangan sistem, penyuluhan, pendampingan, serta pemantauan pertumbuhan ikan dan tanaman. Hasil menunjukkan sistem berjalan stabil, tanaman dan ikan tumbuh baik, dan pasokan energi surya dapat memenuhi kebutuhan daya. Selain itu, pengetahuan serta minat masyarakat terhadap teknologi ini juga meningkat, sehingga sistem aquaponik bertenaga surya dinilai layak dan berpotensi dikembangkan sebagai model budidaya berkelanjutan di tingkat masyarakat.
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References
Badiola, M., Mendiola, D., & Bostock, J. (2012). Recirculating Aquaculture Systems (RAS) analysis: Main issues on management and future challenges. Aquacultural Engineering, 51, 26-35.
Chaudhari, A. J., & Bhaskar, P. (2020). Solar powered aquaculture system: A sustainable approach for rural aquafarming. International Journal of Renewable Energy Research, 10(3), 1150–1157.
FAO. (2020). The State of World Fisheries and Aquaculture 2020: Sustainability in Action. Rome: FAO.
Goddek, S., Joyce, A., Kotzen, B., & Burnell, G. M. (2019). Aquaponics food production systems: combined aquaculture and hydroponic production technologies for the future (p. 619). Springer Nature.
Handayani, R., Putra, D., & Sari, E. (2023). Pemanfaatan panel surya dalam sistem akuaponik berkelanjutan di pedesaan tropis Indonesia. Jurnal Energi Terbarukan Indonesia, 8(2), 45–53.
Huang, Y., Zhao, X., Li, C., & Zhang, R. (2022). Application of photovoltaic systems in aquaculture: A review of energy efficiency and sustainability. Renewable and Sustainable Energy Reviews, 162, 112438. https://doi.org/10.1016/j.rser.2022.112438
Ibrahim, M., Sari, L., & Noor, H. (2020). Solar power application for sustainable aquaculture in rural areas of Southeast Asia. Renewable Energy Reports, 5(4), 112–121.
Islam, M. T., Huda, N., Abdullah, A. B., & Saidur, R. (2018). A comprehensive review of state-of-the-art concentrating solar power (CSP) technologies: Current status and research trends. Renewable and Sustainable Energy Reviews, 91, 987-1018.
Knaus, U., & Palm, H. W. (2017). Effects of the fish species choice on vegetables in aquaponics under spring-summer conditions in northern Germany (Mecklenburg Western Pomerania). Aquaculture, 473, 62-73.
Kusuma, A., Pratama, H., & Dewi, L. (2022). Pemberdayaan masyarakat melalui penerapan energi terbarukan di sektor perikanan budidaya. Jurnal Pemberdayaan Masyarakat Perikanan, 9(1), 23–31.
Love, D. C., Fry, J. P., Genello, L., Hill, E. S., Frederick, J. A., Li, X., & Semmens, K. (2014). An international survey of aquaponics practitioners. PloS one, 9(7), e102662.
Mardikanto, T., & Soebianto, P. (2017). Pemberdayaan masyarakat dalam perspektif kebijakan publik. Alfabeta.
Maucieri, C., Nicoletto, C., Junge, R., Schmautz, Z., Sambo, P., & Borin, M. (2018). Hydroponic systems and water management in aquaponics: A review. Italian Journal of Agronomy, 13(1), 1012.
Palm, H. W., Knaus, U., Appelbaum, S., Goddek, S., Strauch, S. M., Vermeulen, T., ... & Kotzen, B. (2018). Towards commercial aquaponics: a review of systems, designs, scales and nomenclature. Aquaculture international, 26(3), 813-842.
Pretty, J. (2018). Intensification for redesigned and sustainable agricultural systems. Science, 362(6417), eaav0294.
Rahman, T., & Rosnelly, I. (2021). Analisis kebutuhan energi pada sistem akuaponik berbasis pompa listrik di wilayah pedesaan Sumatera. Jurnal Teknologi Perikanan Tropis, 12(3), 178–186.
Rakocy, J. E., Masser, M. P., & Losordo, T. M. (2006). Recirculating aquaculture tank production systems: Aquaponics Integrating fish and plant culture (SRAC Publication No. 454). Southern Regional Aquaculture Center.
Rehman, S., Al-Hadhrami, L. M., & Alam, M. M. (2015). Pumped hydro energy storage system: A technological review. Renewable and Sustainable Energy Reviews, 44, 586-598.
Somerville, C., Cohen, M., Pantanella, E., Stankus, A., & Lovatelli, A. (2015). Small-scale aquaponic food production: Integrated fish and plant farming (FAO Fisheries and Aquaculture Technical Paper No. 589). FAO.
Suhl, J., Dannehl, D., Kloas, W., Baganz, D., Jobs, S., Scheibe, G., & Schmidt, U. (2016). Advanced aquaponics: Evaluation of intensive tomato production in aquaponics vs. conventional hydroponics. Agricultural water management, 178, 335-344.
Yildiz, H. Y., Robaina, L., Pirhonen, J., Mente, E., Domínguez, D., & Parisi, G. (2017). Fish welfare in aquaponic systems: Its relation to water quality and production efficiency. Aquaculture, 473, 390–397. https://doi.org/10.3390/w9010013
Yep, B., & Zheng, Y. (2019). Aquaponic trends and challenges–A review. Journal of Cleaner Production, 228, 1586-1599.
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