Pengaruh Waktu Pengomposan Limbah Debu Sabut Kelapa dengan Kotoran Ayam Terhadap Kualitas Kimia Kompos dan Pertumbuhan Tanaman Pakcoy (Brassica chinensis)


Abstract

The long fermentation chain of coconut husk dust waste needs the addition of a bioactivator to speed up the composting process. Chicken manure is an opportunity for natural activators in the fermentation process of coconut husk dust waste. The time required in composting waste will be more optimal with the addition of bioactivators such as EM-4. The research was conducted at the organic fertilizer manufacturing site 'Minak Jinggo' which is located in Sumberbaru Village, Singojuruh District, Banyuwangi Regency and continued the analysis at the Soil Science Study Program Laboratory, Faculty of Agriculture, University of Jember. In the first coronation design using a Complete Randomized Design (RAL) with one factorial and 7 treatments. Compost content testing was carried out which included analysis of measuring pH, N, P. K, C-Organic and C / N ratio of compost. Compost results with time and content in accordance with Kepmentan No. 261 of 2019 were then designed an effect test experiment on mustard pakcoy plants with 2 factorials, namely the compost used and the dosage. Done with replays 3 times each treatment. The variables observed included plant height (cm), total number of leaves (strands), stem diameter (cm), plant leaf area (cm3), total fresh weight of the plant (g) and total dry weight of the plant (g). The data obtained will then be analyzed descriptively and statistically using Anova variety analysis at the level of 5% and an Honest Real Difference Test (BNJ) at a level of 95% confidence (P<0.05) to determine the differences between treatments. The comparative treatment of coconut husk dust waste material and chicken manure 30:70 with a composting time of 28 days is the right compost formulation and effect composting time to become compost in accordance with Kepmentan No. 261 of 2019 with an NPK content of 2.074%, C-Organic of 18.47, and A C/N ratio of 11.76. Compost treatment and the best doses on the growth and yield of pakcoy plants are in the treatment of adding compost with a ratio of 30:70 (K3) material and a dose of 20 tons perhektar (D2) which affects plant height growth, number of leaves, dry weight of plants, N content of plants, and the highest absorption of plant N. As for the wet weight of the plants, the highest is found in the compost addition treatment with a material ratio of 50:50 (K2) and a dose of 20 tons perhektar (D2).

Downloads

Download data is not yet available.

Alex, S. (2019). Sayuran Dalam Pot Sayuran Konsumsi Tak Harus Beli. Yogyakarta: Pustaka Baru Press.

Asquer, C., G. Cappai, G. D. Gioannis, A. Muntoni, M. Piredda, and D. Spiga. (2017). Biomass Ash Reutilisation As An Additive In The Composting Process Of Organic Fraction Of Municipal Solid Waste. Waste Management, 69(1): 127-135.

Banaget, C. K., G. S. B. A. Kristanto, dan I. D. Gusniani. (2017). Pengaruh Perubahan Parameter Fisik Dan Kimia Terhadap Aktivitas Mikroorganisme Selama Proses Pengomposan Sampah Organik Kantin. Technology, 1(3): 55-65.

Barokah, R., Sumarsono., dan A. Darmawati. (2017). Respon Pertumbuhan Dan Produksi Tanaman Sawi Pakcoy (Brassica chinensis L.) Akibat Pemberian Berbagai Jenis Pupuk Kandang. Agro Complex, 1(3): 120-125.

Chang, J. J., and Y. J. Chen. (2010). Effect Of Bulking Agents On Food Waste Composting. Bioresource Technology, 101(10): 5917-5924.

Dharma, P. A. W., A. A. N. G. Suwastika, dan N. W. S. Sutari. (2018). Kajian Pemanfaatan Limbah Sabut Kelapa Menjadi Larutan Mikroorganisme Lokal. Agroekoteknologi Tropika, 7(2): 200-211.

Duan, M., Y. Zhang, B. Zhou, Z. Qin, J. Wu, Q. Wang, and Y. Yin. (2020). Effect Of Bacillus subtilis On Carbon Compoments And Microbial Functional Metabolism During Cow Manure-Straw Composting. Bioresource Technology, 303(1): 1-8.

Guo, R., G. Li, T. Jiang, F. Schuchardt, T. Chen, Y. Zhao, and Y. Shen. (2012). Effect Of Aeration Rate, C/N Ratio And Moisture Content On The Stability And Maturity Of Compost. Bioresource Technology, 112(5): 171-178.

Hagemann, N., E. Subdiaga, S. Orsetti, J. M. De-la-Rosa, H. Kcicker, H. P. Schmidt, A. Kappler, and S. Behrens. (2018). Effect Of Biochar Amandment On Compost Organic Matter Composition Following Aerobic Compositing Of Manure. Science Of The Total Environment, 613(614): 20-29.

Huang, M., Y. Zhu, Z. Li, B. Huang, N. Lou, C. Liu, and G. Zeng. (2016). Compost As A Soil Amendment To Remediate Heavy Metal-Contaminated Agricultural Soil: Mechanisms, Efficacy, Problems, And Strategies. Water Air Soil Pollut, 227(359): 1-18.

Kurniawan, A., T. Islami, dan Koesriharti. (2017). Pengaruh Aplikasi Pupuk N Dan K Terhadap Pertumbuhan Dan Hasil Tanaman Pakcoy (Brassica rapa var. chinensis) Flamingo F1. Produksi Tanaman, 5(2): 281-289.

Kano, K., H. Kitazawa, K. Suzuki, A. Widiastuti, H. Odani, S. Zhou, Y. D. Chinta, Y. Eguchi, M. Shinohara, and T. Sato. (2021). Effects Of Organic Fertilizer On Bok Choy Growth And Quality In Hydroponic Cultures. Agronomy, 11(1): 1-17.

Setiyo, Y., I. B. W. Gunam, B. A. Harsojuwono. (2019). Bioproses Limbah Pertanian. Malang: Intimedia.

Sugiyarto, A. Salim, and R. Firgiyanto. (2021). The Effect Of The Use Of Various Kinds Of Biochar And Soil Nutrients On Pakcoy (Brassica rapa L.). Earth And Environmental Science, 627 (1): 1-6.

Suryani, Yoni, Astuti, Bernadeta, Oktavia, dan S. Ummiyati. (2010). Isolasi dan Karakteristik Bakteri Asam Laktat dari Kotoran Ayam sebagai Agensi Probiotik dan Enzim Kolesterol Reduktase. Prosiding Seminar Nasional Biologi Yogyakarta. 138-147.

Sutejo, H., M. Napitupulu, W. Setiawan, and A. Fatah. (2022). Effect Of NPK Mestibiru Fertilizer And Mamigro Fertilizer On The Growth And Yield Of Mustard (Brassica rapa L.), Chia Tai Variety. Budapest International Research In Exact Science Journal, 4(1): 116-123.

Tabrika, I., E. H. Mayad, M. Zaafrani, M. E. Guilli, and K. Azim. (2021). Optimization Of Solid Phosphate Sludge Composting By Integration Of Horticultural Waste. Organic agriculture, 11(1): 319-325.

Tong, B., X. Wang, S. Wang, L. Ma, and W. Ma. (2019). Transformation of nitrogen and carbon during composting of manure litter with different methods. Bioresource technology, 293(1): 1-8.

Trisakti, B., dan I. P. Sijabat. (2020). Profil pH Dan Volatile Suspended Solids Pada Proses Pengomposan Tandan Kosong Kelapa Sawit Menggunakan Pupuk Cair Organik Aktif Sebagai co-Composting. Teknik Kimia USU, 9(1): 11-15.

Trivana, L., A. Y. Pradhana, dan A. P. Manambangtua. (2017). Optimalisasi Waktu Pengomposan Pupuk Kandang Dari Kotoran Kambing Dan Debu Sabut Kelapa Dengan Bioaktivator EM4. Sains dan Teknologi Lingkungan, 9(1): 16-24.

Trivana, L., dan A. Y. Pradhana. (2017). Optimalisasi Waktu Pengomposan dan Kualitas Pupuk Kandang dari Kotoran Kambing dan Debu Sabut Kelapa dengan Bioaktivator PROMI dan Orgadec. Jurnal Sain Veteriner, 35 (1): 136-144.

Utami, S., D. M. Tarigan, and I. F. Syair. (2020). Respon Of Growth Mustard Plant Pakchoy (Brassica Chinensis L.) The Composition Of Plant Medium And Dosage Of NPK By Verticulture. Sustainable Agriculture And Natural, 2(1): 1-6

Vandecasteele, B., B. Reubens, K. Willekens, and S. D. Neve. (2014). Composting For Increasing The Fertilizer Value Of Chicken Manure: Effect Of Feedstock On P Availability. Waste Biomass Valor, 5(1): 491-503.

Wang, X., J. Zhao, D. Yu, S. Du, M. Yuan, and J. Zhen. (2019). Evaluating The Potential For Sustaining Mainstream Anammox By Endogenous Partial Denitrification And Phosphorus Removal For Energy-Efficient Wastewater Treatment. Bioresource Technology, 284(1): 301-314.

Wei, Y., Y. Zhao, B. Xi, Z. Wei, X. Li, and Z. Cao. (2015). Change In Phosphorus Fractions During Organic Waste Composting From Different Sources. Bioresource Technology, 189(1): 349-356.

Widawati, S. and Sulasih. (2020). Comprehensive Test Of Rhizobacteria As Biostimulant, Vesicular Arbuscular Mycorhizza (VAM) And Graded Dose Of NPK Fertilizer On The Growth Of Bok Choy (Brassica rapa L.). Earth and Evironmental Science, 572 (1): 1-11.

Witasari, W. S., K. Sa’diyah, dan M. Hidayatulloh. (2021). Pengaruh Jenis Komposter Dan Waktu Pengomposan Terhadap Pembuatan Pupuk Kompos Dan Activated Sludge Limbah Industri Bioetanol. Teknik Kimia Dan Lingkungan, 5(1): 31-40.


Title Pengaruh Waktu Pengomposan Limbah Debu Sabut Kelapa dengan Kotoran Ayam Terhadap Kualitas Kimia Kompos dan Pertumbuhan Tanaman Pakcoy (Brassica chinensis)
Issue: Vol. 23 No. 2 (2022): JURNAL AGRI-TEK
Section Articles
Published: Oct 24, 2022
DOI: https://doi.org/10.33319/agtek.v23i2.117
Keywords: debu sabut kelapa, kotoran ayam, pakcoy, chicken manure; cocconut husk dust; pakcoy.
Author Jaliya Anjana