Aplikasi limbah padat budidaya maggot terhadap pertumbuhan dan produksi tanaman pakcoy (Brassica chinensis L.)
Authors
Listya Purnamasari , Rina Anggraini , Wildan Muhlison , Irwanto Sucipto , Seong Gu HwangDOI:
10.25047/animpro.2022.347Published:
08 November 2022Issue:
Vol. 3 (2022): The 3rd National Conference of Applied Animal Science (N-CAAS) 2022Keywords:
organic waste, maggot, pakchoiConference Paper
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Abstract
Bioconversion of organic waste can use the agent of black soldier fly larvae (Hermetia illucent) or maggot. Maggot cultivation residue can be used as plant fertilizer. This study aimed to determine the effect of the application of maggot cultivation solid waste and the optimal dose that could be used to increase the growth and productivity of pakchoi (Brassica chinensis L.). The study was conducted in a greenhouse with a completely randomized design (CRD) with 5 treatments, namely the dose of maggot solid waste (0, 90, 180, 270, and 360 grams) on planting media with a total weight of 4180 grams per polybag. Each treatment consisted of 5 replications. The results showed that the application of solid waste of maggot cultivation had a significant effect on plant height, the number of leaves, plant fresh weight, and plant dry weight but had no significant effect on root length. Application of a dose of 180 grams on plant media gave the highest average yield compared to other doses. This study concludes that the solid waste of maggot cultivation can be used as organic fertilizer to increase plant productivity.
References
Bahzar, M.H., & Santosa, M. (2018). Pengaruh nutrisi dan media tanam terhadap pertumbuhan hasil tanaman pakcoy (Brassica rapa L. Var. Chinensis) dengan sistem hidroponik sumbu. Produksi Tanaman. 6(7), 1273-1281
Beesigamukama, D., Mochoge, B., Korir, N.K., Fiaboe, K. K. M., Nakimbugwe, D., Khamis, F. M., Subramanian, S., Wangu, M. M., Dubois, T., Ekesi, S., & Tanga, C. M. (2021). Low-cost technology for recycling agro-industrial waste into nutrient-rich organic fertilizer using black soldier fly. Waste Management, 119, 183-194. https://doi.org/10.1016/j.wasman.2020.09.043
BPS. (2021). Statistik Lingkungan Hidup Indonesia 2021. Badan Pusat Ststistik.
Deng, B., Zhu, J., Wang, G., Xu, C., Zhang, X., Wang, P.,& Yuang, Q. (2022). Effects of three major nutrient contents, compost thickness and treatment time on larval weight, process performance and residue component in black soldier fly larvae (Hermetia illucens) composting. Journal of Environmental Management, 307. https://doi.org/10.1016/j.jenvman.2022.114610
Dinkova-Kostova, A. T., & Kostov, R. V. (2012). Glucosinolates and isothiocyanates in health and disease. Trends in Molecular Medicine, 18(6), 337–347. https://doi.org/10.1016/j.molmed.2012.04. 003
Dominiko, T.A., Setyobudi, L., & Herlina, N. (2018). Respon tanaman pakcoy (Brassica rapachinensis) terhadap penggunaan pupuk kascing dan biourin kambing. Produksi Tanaman. 6(1), 188-193
Hui, K., Tang, J., Cui, Y., Xi, B., & Tan, W. 2021. Accumulation of phthalates under high versus low nitrogen addition in a soil-plant system with sludge organic fertilizers instead of chemical fertilizers. Environmental Pollution, 291. https://doi.org/10.1016/j.envpol.2021.118193
Isabelle, M., Lee, B. L., Lim, M. T., Koh, W., Huang, D., & Ong, C. N. (2010). Antioxidant activity and profiles of common vegetables in Singapore. Food Chemistry, 120 (4), 993 – 1003. https://doi.org/10.1016/j.foodchem.2009.11.038
Kahar, A., Busyairi, M., Sariyadi, Hermanto, A., & Ristanti, A. (2020). Bioconversion of municipal organic waste using black soldier fly larvae into compost and liquid organic fertilizer. Konversi. 9(2), 35-40
Limbong, B., Putri, L. A. P., & Kardhinata, E. H. (2014). Respon pertumbuhan dan produksi sawi hijau terhadap pemberian pupuk organik kascing. Agroekoteknologi, 2(4), 1458 – 1489.
Ma, J., Jiang, C., Tao, X., Sheng, J., Sun, X., Zhang, T., & Zhang Z. (2022). Insights on dissolved organic matter and bacterial community succession during secondary composting in residue after black soldier fly larvae (Hermetia illucens L.) bioconversion for food waste treatment. Waste Management, 142, 55-64. https://doi.org/10.1016/j.wasman.2022.01.034
Moctava, M. A., Koesriharti, K., & Maghfoer, M. D. 2013. Respon Tiga Varietas Sawi (Brassica Rapa L.) Terhadap Cekaman Air. Jurnal Produksi Tanaman, 1(2), 90-98. https://dx.doi.org/10.21176/protan.v1i2.23
Muhlison, W., Purnamasari, L. Sucipto, I., Saputra, T. W., & Ahmad, N. K. N. 2021. Study of the Bioconversion Process of Black Soldier Fly (Hermetia illucens) Larvae in Decomposition of Various Variations of Organic Waste. Techno: Jurnal Penelitian, 10 (2), 115-124. http://dx.doi.org/10.33387/tjp.v10i2.2803
Mukti, M.S., Wardiyati, T., & Islami, T. (2017). Pengaruh waktu pemberian pupuk kandang dan dosis urea terhadap hasil pertumbuhan dan kadar nitrogen tanaman kailan (Brassica oleraceae L. var. Nova). Produksi Tanaman, 5(2), 224-231.
Niu, S. H., Liu, S., Deng, W. K.,Wu, R. T. Cai, Y. F., Liao, X. D., & Xing, S. C. (2022). A sustainable and economic strategy to reduce risk antibiotic resistance genes during poultry manure bioconversion by black soldier fly Hermetia illucens larvae: Larval density adjustment. Ecotoxicology and Environmental Safety, 232. https://doi.org/10.1016/j.ecoenv.2022.113294
Noverita, S. V. (2005). Pengaruh pemberian nitrogen dan kompos terhadap komponen pertumbuhan tanaman lidah buaya (Aloe vera). Bidang Ilmu Pertanian, 3(3), 95-105
Oktavia, E., & Rosariawari, F. (2020). Rancangan unit pengembangbiakan Black Soldier Fly (BSF) sebagai alternatif biokonversi sampah organik rumah tangga (Review), 1(1), 65-75
Parodi,A., Gerrits, W. J. J., Van Loon, J. J. A. De Boer I. J. M., Aarnink, A. J. A., & Van Zanten, H. H. E. (2021). Black soldier fly reared on pig manure: bioconversion efficiencies, nutrients in the residual material, greenhouse gas and ammonia emissions. Waste Management, 126, 674 – 683. https://doi.org/10.1016/j.wasman.2021.04.001
Perwatasari, B., Tripatmasari, M., & Wasonowati, C. (2012). Pengaruh media tanam dan nutrisi terhadap pertumbuhan dan hasil tanaman pakchoi (Brassica juncea L.) dengan sistem hidroponik. Agrovigor, 5(1), 14-25
Purnamasari, L., Muhlison M., & Sucipto, I. (2021). Biokonversi limbah ampas tahu dan limbah sayur dengan menggunakan agen larva Black Soldier Fly (Hermetia illucent). ANIMPRO: Conference of Applied Animal Science Proceeding Series, 105–111. https://doi.org/10.25047/animpro.2021.13
Rahmina, W., Nurlaelah I., & Handayani. (2017). Pengaruh perbedaan komposisi limbah ampas tahu terhadap pertumbuhan tanaman pakchoi (Brassica rapa L. Ssp. Chinensis). Pendidikan dan Biologi, 9(2), 32-38
Rees, J. R., Morris, C. B., Peacock, J. L., Ueland, P. M., Barry, E. L., McKeown-Eyssen, G. E., Figueiredo, J. C., Snover, D. C., & Baron, J. A. (2017). Unmetabolized folic acid, tetrahydrofolate, and colorectal adenoma risk Cancer Prevention Research, 10(8), 451-458. https://doi.org/10.1158/1940-6207.CAPR-16-0278
Rizal, S. (2017). Pengaruh nutrisi yang diberikan terhadap pertumbuhan tanaman sawi pakcoy (Brassica rapa L.) yang ditanam secara hidroponik. Sainmatika, 14(1), 38-44.
Rose, A. J. (2019). Amino acid nutrition and metabolism in health and disease. Nutrients, 11 (11). https://doi.org/10.3390/nu11112623
Safitri, K., Dharma, I P., & Dibia, I N. 2020. Pengaruh Komposisi Media Tanam terhadap Pertumbuhan dan Hasil Tanaman Pakcoy (Brassica chinensis L.). Jurnal Agroekoteknologi Tropika, 9(4), 198-207.
Salam, M., Shahzadi, A., Zheng, H., Alam, F., Nabi, G., Dezhi, S., Ullah, W., Ammara, S., Ali, N., & Bilal, M. (2022). Effect of different environmental conditions on the growth and development of Black Soldier Fly Larvae and its utilization in solid waste management and pollution mitigation. Enviromental Technology & Innovation, 28. https://doi.org/10.1016/j.eti.2022.102649
Samec, D., & Salopek-Sondi, B. (2019). Cruciferous (Brassicaceae) Vegetables. Nonvitamin and Nonmineral Nutritional Supplements, 195-202.
Sarif, P., Hadid, A., & Wahyudi I. (2015). Pertumbuhan dan hasil tanaman sawi (Brassica juncea L.) akibat pemberian berbagai dosis pupuk urea. Agrotekbis, 3(5), 585-591.
Sukasana, I. W., Karnata, I.N., & Irawan B. (2019). Meningkatkan pertumbuhan dan hasil pakcoy (Brassica juncea rapa L.) dengan mengatur dosis nutrisi AB Mix Agrifarm dan umur bibit secara hidroponik sistem NFT. Unmasmataram, 13(2), 212-220.
Surendra, K. C., Tomberlin, J. K., van Huis A., Cammack J. A., Heckmann H. L., & Khanal, S. K. (2020). Rethinking organic wastes bioconversion: Evaluating the potential of the black soldier fly (Hermetia illucens (L.)) (Diptera: Stratiomyidae) (BSF). Waste Management, 117, 58–80. https://doi.org/10.1016/j.wasman.2020.07.050
Utami, K.P., & Setiawati M.R. (2018). Pengaruh pupuk hayati dan anorganik terhadap populasi bakteri pelarut fosfat, tinggi tanaman, dan hasil tanaman pakcoy pada nutrient film technique. Penelitian Saintek, 23(1), 1-9.
Vivonda, T., Armaini., & Yoseva, S. (2016). Optimalisasi pertumbuhan dan produksi tanaman pakcoy (Brassica rapa L.) melalui aplikasi beberapa dosis pupuk bokashi. JOM Faperta, 3(2), 1-11.
Wahyuningsih, A., Fajriani S., & Aini, N. (2016). Kompisisi nutrisi dan media tanam terhadap pertumbuhan dan hasil tanaman pakcoy (Brassica rapa L.) sistem hidroponik. Produksi Tanaman, 4(8), 595-601.
Wang, S. Y., Wu, L., Li, B., & Zhang, D. (2020). Article Navigation Reproductive Potential and Nutritional Composition of Hermetia illucens (Diptera: Stratiomyidae) Prepupae Reared on Different Organic Wastes. Journal of Economic Entomology, 113(1), 527-537. https://doi.org/10.1093/jee/toz296
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Copyright (c) 2022 Listya Purnamasari, Rina Anggraini, Wildan Muhlison, Irwanto Sucipto, Seong Gu Hwang
This work is licensed under a Creative Commons Attribution 4.0 International License.