Pengaruh Biochar Pukan Ayam terhadap Ketersediaan Hara dan Produksi Cabai Rawit di Tanah Alluvial

https://doi.org/10.22146/veg.107252

Urai Suci Yulies Vitri Indrawati(1*), Abdul Mujib Alhaddad(2), Agus Suyanto(3), Tri Mulya Hartati(4)

(1) Fakultas Pertanian, Universitas Tanjungpura
(2) Fakultas Pertanian, Universitas Tanjungpura
(3) Fakultas Pertanian, Sains dan Teknologi Universitas Panca Bhakti
(4) Fakultas Pertanian, Universitas Khairun
(*) Corresponding Author

Abstract


The latest data shows that cayenne pepper production in Indonesia has declined since 2024. According to the Statistics Indonesia (BPS) Horticultural Statistics, household consumption of cayenne pepper in 2024 fell 2.03% compared to 2023, and the downward trend is also evident in production. This is due to declining soil fertility, including alluvial soil, as well as climate conditions that affect crop yields. To overcome this, additional organic ameliorants such as biochar from chicken manure are needed, in addition to the use of inorganic fertilizers. The purpose of this study was to examine the effect of applying biochar from chicken manure on the productivity of chili peppers planted in alluvial soil. This study design was RAL, chicken manure biochar using 5 doses and repeated 5 times for a total of 25 treatment polybags. The treatments were P0 = control, still given NPK as recommended, P1 = 15 tons/ha, P2 = 30 tons/ha, P3 = 45 tons/ha, P4 = 60 tons/ha. The research parameters were pH, organic C, total N, available P, K-dd, height growth, and plant production. The results showed that the application of chicken manure biochar at a dose of 60 tons/ha (P4) significantly affected soil acidity (pH) (increased by 12.29%), organic carbon (74.34%), total nitrogen (62,06%), available phosphorus (170.95%), exchangeable potassium (842.80%), cayenne pepper plant height (270.57%), and fruit weight (204%).

Keywords


alluvial; cayenne pepper; chicken manure biochar; fruit weight; plant height

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References

Badan Pusat Statiska. 2020. Provinsi Kalimantan Barat Dalam Angka 2020.

Darma,S. Syamad Ramayana, Sadaruddin, Bambang Suprianto. 2020. Investigasi Kandungan C Organik, N, P, K dan C/N ratio Daun Tanaman Buah Untuk Bahan Pupuk Organik. Jurnal Agroekoteknologi Tropika Lembab, 3(1): 12-18.

Deamalda Tarigan, A. 2020. of Biochar Oil Palm Empty Bunches and Mycorrhiza on the Growth and Yield of Sweet Corn (Zea mays sacharrata L.) in Ultisol Soil. In Jur. Agroekotek, 12(1).

Hikmah, N; Lilik Maslukah, Sri Yulina Wulandari, Denny Nugroho Sugianto, Anindya Wirasatriya. 2021. Kajian Stok Karbon Organik dalam Sedimen di Area Vegetasi Mangrove Karimunjawa. Indonesian Journal of Oceanography (IJOCE), 3(4): 88 - 95.

Hanafiah, Kemas Ali. 2018. Dasar Dasar IlmuTanah (VIII). Rajawali Pers.

Afitin, R., Darmanti, S. 2012. Pengaruh Dosis Kompos dengan Stimulator Trichoderma terhadap Pertumbuhan dan Produksi Tanaman Jagung (zea mays l.) Varietas Pioner -11 pada Lahan Kering. Bioma : Berkala Ilmiah Biologi, 11(2): 69. https://doi.org/10.14710/bioma.11.2.69-75

Alami, M. J., Fang, X., Zhong, D., Zhou, W., Gao, B., Huang, W., & Cui, S. 2024. Impacts of Chicken Manure Biochar on Nitrous Oxide and Methane Emissions from Vegetable Field in Subtropical China. Retrieved from https://www.researchsquare.com/article/rs-4072056/latest

Borneo, G.N; U.S.Y.V.Indrawati. Junaidi. 2024. Pengaruh Pemberian Kombinasi Biochar Tankos Dan Pukan Sapi Terhadap Efesiensi Serapan N, P, K, Dan Hasil Tanaman Cabai Besar Di Tanah Alluvial. Jurnal Pertanian Agros, 26(2):543-555

Cha, J. S., Park, S. H., Jung, S. C., Ryu, C., Jeon, J. K., Shin, M. C., & Park, Y. K. (2016). Production and utilization of biochar: A review. Journal of Industrial and Engineering Chemistry, 40: 1–15. https://doi.org/10.1016/j.jiec.2016.06.002

Ding, Y., Liu, Y.-X., Wu, W.-X., Shi, D.-Z., Yang, M., & Zhong, Z.-K. (2010). Evaluation of Biochar Effects on Nitrogen Retention and Leaching in Multi-Layered Soil Columns. Water, Air, & Soil Pollution; 213(1): 47–55. https://doi.org/10.1007/s11270-010-0366-4.

Gani. (2009). Biochar Penyelamat Lingkungan. Balai Besar Penelitian Tanaman Padi. Warta Penelitian dan Pengembangan Pertanian

Gundale, M. J., & DeLuca, T. H. 2007. Charcoal effects on soil solution chemistry and growth of Koeleria macrantha in the ponderosa pine/Douglas-fir ecosystem. Biology and Fertility of Soils, 43(3): 303–311. https://doi.org/10.1007/s00374-006-0106-5

Indrawati, U. S. Y. V., & Alhaddad, A. M. (2024). Pengaruh Pemberian Biochar Sekam Padi-pukan ayam untuk Pertumbuhan dan Produksi Tomat di Lahan Gambut. Vegetalika, 13(2): 171–183. https://doi.org/10.22146

Indrawati, U. S. Y. V., Herawatiningsih, R., & Kurniati, D. 2023. Effect of Combination of Biochar Tankos and Urea-enriched Chicken Manure (BIOCHIKE+) on Growth Oil Palm Seedling. Indian Journal of Agricultural Research, 57(6): 807–811. https://doi.org/10.18805/IJARe.AF-761

Iswiyanto, A., Radian, R., & Abdurrahman, T. 2022. Pengaruh Nitrogen Dan Fosfor Terhadap Pertumbuhan Dan Hasil Kedelai Edamame Pada Tanah Gambut. Jurnal Sains Pertanian Equator, 12(1): 95.https://doi.org/10.26418/jspe.v12i1.60354

Jassal, R. S., Johnson, M. S., Molodovskaya, M., Black, T. A., Jollymore, A., & Sveinson, K. 2015. Nitrogen enrichment potential of biochar in relation to pyrolysis temperature and feedstock quality. Journal of Environmental Management, 152: 140–144. https://doi.org/10.1016/j.jenvman.2015.01.021

Kasifah, K., & Petta Pudji, N. 2023. Evaluasi Produktiftas Tanah Ultisol Melalui Amandemen Kompos pukan ayam Evaluation of Ultisol productivity through amendment of chicken manure compost, 7(2).

Katherina Depari, E., Senoaji, G., Fajrin Hidayat Jurusan Kehutanan, dan, & Pertanian, F. 2014. Pemanfaatan Limbah pukan ayam Sebagai Bahan Baku Pembuatan Kompos Utilization Of Chicken Muck Waste As A Raw Material For Organic Fertilizer. In Dharma Raflesia Unib Tahun XII.

Kumar Yadav, N., Vijay Kumar, I., Kumar, V., Sharma, K., Singh Choudhary, R., Singh Butter, T Kumar, R. 2018. Biochar and their impacts on soil properties and crop productivity: a review.49.Journal of Pharmacognosy and Phytochemistry, 7(4): 49–54.

Kuśmierz, S., Skowrońska, M., Tkaczyk, P., Lipiński, W., & Mielniczuk, J. 2023. Soil Organic Carbon and Mineral Nitrogen Contents in Soils as Affected by Their pH, Texture and Fertilization. Agronomy, 13(1): 1–13. https://doi.org/10.3390/agronomy13010267

Latuponu, H., Shiddiq, D., Syukur, A., & Hanudin, E. 2012. Kajian Daya Sanggah Biochar Limbah Sagu Pada Pelindian Terhadap Ketersediaan NPK di Tanah Ultisol. Buana Sains Journal, 12(2): 91–99.

Listyarini,Diah., Refliaty, Nyayu Chyntia Vasha. 2023. Aplikasi Bokashi Sekam Padi dan pukan ayam Terhadap Perbaikan Kepadatan Ultisol dan Hasil Kedelai. Jurnal Fruitset Science

Mardiana, S., Panggabean, E. L., Kuswardani, R. A., & Usman, M. (2018). Pemanfaatan Limbah Serbuk Teh sebagai Substitusi Serbuk Gergaji terhadap Pertumbuhan Miselium dan Produksi Jamur Tiram Putih (Pleurotus Ostreatus). Agrotekma: Jurnal Agroteknologi Dan Ilmu Pertanian, 3(27).https://doi.org/10.31289/agr.v3i1.2065

Masmoudi, S., Magdich, S., Rigane, H., Medhioub, K., Rebai, A., & Ammar, E. 2020. Effects of Compost and Manure Application Rate on the Soil Physico-Chemical Layers Properties and Plant Productivity. Waste and Biomass Valorization, 11(5): 1883–1894. https://doi.org/10.1007/s12649-018-0543-z

Masulili, A., Utomo, W. H., & MS, S. 2010. Rice Husk Biochar for Rice Based Cropping System in Acid Soil 1. The Characteristics of Rice Husk Biochar and Its Influence on the Properties of Acid Sulfate Soils and Rice Growth in West Kalimantan, Indonesia. Journal of Agricultural Science, 2(1). https://doi.org/10.5539/jas.v2n1p39

Mawardiana, Sufardi, & Edi, H. 2013. Pengaruh Residu Biochar dan Pemupukan NPK terhadap Sifat Kimia Tanah dan Pertumbuhan Serta Hasil Tanaman Padi Musim Tanam Ketiga. Jurnal Manajemen Sumber Daya Lahan, 2(3): 255–260. Retrieved from http://e-repository.unsyiah.ac.id/MSDL/article/view/2198

Moru, N. 2021. Pengaruh Takaran Biochar Kotoran Ternak Kambing Diperkaya Kompos dalam Media Tanam terhadap Pertumbuhan dan Hasil Tanaman Sawi (Brassica juncea L.) pada Tanah Entisol. Savana Cendana, 6(4): 69–71. https://doi.org/10.32938/sc.v6i04.1394

Nalita Sari, M., & Darmawan, dan. 2017. Pengaruh Bahan Organik Terhadap Ketersediaan Fosfor Pada Tanah-Tanah Kaya Al Dan Fe. Buletin Tanah Dan Lahan, 1(1): 65–71.

Novizan. 2002. Petunjuk Pemupukan yang Efektif. Jakarta:Agromedia Pustaka.

Nurida, N. L. 2014. Potensi Pemanfaatan Biochar untuk Rehabilitasi Lahan Kering di Indonesia. Jurnal Sumberdaya Lahan Edisi Khusus, 57–68.

Raihan, Suaidi. Pemupukan NPK dan Ameliorasi Pasang Surut Sulfat Masam Berdasarkan Nilai Uji Tanah Untuk Tanaman Jagung. 2012. Jurnal Ilmu Pertanian, 9(1): 20-28.

Salawati, Basir, M., Kadekoh, I., & Thaha, A. 2016. Potency of Rice Husk Biochar on ModifyingSoil pH, CEC, C-Organicand Available P in Wetland Rice of Inceptisols. Agroland, 23(2): H 101–109.

Sari, W. K., & Malik, P. A. 2023. The effects of application of biochar from oil palm empty fruit bunches on chemical properties of ultisols and the growth of cacao seedlings. Kultivasi, 22(2): 157–167. https://doi.org/10.24198/kultivasi.v22i2.46525

Sekaran, C., Elangovan, R., Rangasami, S., & Murugaragavan, R. 2022. The Pharma Innovation Journal 2022;11(12):243-246 Characteristics of biochar:A review. NAAS Ratvcing: 5.23 TPI, 11(12): 243–246. Retrieved from www.thepharmajournal.com

Situmeang, Y. P., Dewa, I., Sudita, N., & Suarta, M. (2021). Application of Compost and Biochar from Cow, Goat, and Chicken Manure to Restore Soil Fertility and Yield of Red Chili, 11(5).

Sofiarani, F. N., & Ambarwati, E. 2020. Pertumbuhan dan Hasil cabai Rawit (Capsicum frutescens L.) pada Berbagai Komposisi Media Tanam dalam Skala Pot. Vegetalika, 9(1): 292. https://doi.org/10.22146/veg.44996

Solfianti, M., Herviyanti, H., Prasetyo, T. B., & Maulana, A. 2021. Pengaruh Aplikasi Biochar Limbah Kulit Pinang Dosis Rendah terhadap Sifat Kimia Inceptisol. Agrikultura, 32(1): 77. https://doi.org/10.24198/agrikultura.v32i1.32602

Sudirja, R., Machfud, Y., Sofyan, E. T., Joy, B., Rosniawaty, S., & Ros, R. 2018. Pengaruh Organo-mineral Terhadap Beberapa Sifat Kimia Tanah dan Hasil Jagung pada Ultisol Jatinangor. SoilREns, 16(1): 59–64. https://doi.org/10.24198/soilrens.v16i1.18349

Sukitprapanon, T. S., Jantamenchai, M., Tulaphitak, D., Prakongkep, N., Gilkes, R. J., & Vityakon, P. 2021. Influence of application of organic residues of different biochemical quality on phosphorus fractions in a tropical sandy soil. Agronomy, 11(2). https://doi.org/10.3390/agronomy11020248

Tambunan, S., Handayanto, E., & Siswanto, B. 2014. Pengaruh Aplikasi Bahan Organik Segar Dan Biochar Terhadap Ketersediaan P Dalam Tanah Di Lahan Kering Malang Selatan. In Jurnal Tanah dan Sumberdaya Lahan. Vol 1. http://jtsl.ub.ac.id

Yanti, I., & Kusuma, Y. R. 2022. Pengaruh Kadar Air dalam Tanah Terhadap Kadar C-Organik dan Keasaman (pH) Tanah. Indonesian Journal Of Chemical Research, H 92–97. https://doi.org/10.20885/ijcr.vol6.iss2.art5



DOI: https://doi.org/10.22146/veg.107252

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