Response of Robusta Coffee Seedling Growth to The Application of Various Concentrations of Ecoenzymes to PMK Soil

Authors

  • Febby Febyola Mahasiswa Politeknik Negeri Ketapang
  • Venti Jatsiyah Politeknik Negeri Ketapang

DOI:

https://doi.org/10.58812/wsa.v4i03.3075

Keywords:

Ecoenzyme, Robusta Coffee, Red-Yellow Podzolic Soil, Application, PMK Soil

Abstract

This study examined the growth of Robusta coffee seedlings treated with ecoenzymes derived from fruit peel and addressed the limitations of red-yellow podzolic soil, which is deficient in macronutrients and organic matter. The objective of this study was to determine whether the application of different concentrations of ecoenzymes could enhance the growth of Robusta coffee seedlings. This study employed a non-factorial completely randomized design (CRD) consisting of 5 treatments with 4 replicates. The treatments were as follows: K0 = application of 0 mL/L ecoenzyme concentration (Control), K1 = 25 mL/L ecoenzyme concentration, K2 = 50 mL/L ecoenzyme concentration, K3 = 75 mL/L ecoenzyme concentration, and K4 = 100 mL/L ecoenzyme concentration. The research data were analyzed using Analysis of Variance (ANOVA) and Duncan’s Multiple Range Test (DMRT) at the 5% significance level using the DSAASTAT software. The results showed that the application of different ecoenzyme concentrations had a significant effect on improving the growth of Robusta coffee in terms of seedling height, stem diameter, leaf length, leaf width, root length, and dry weight. The optimal ecoenzyme treatment dose was K2 (a concentration of 50 mL/L), which increased seedling height by 6.91 cm, stem diameter by 1.88 mm, leaf length by 7.62 cm, leaf width by 3.35 cm, root length by 9.17 cm, and dry weight by 0.48 g.

References

[1] F. Adriansyah, L. Hanum, M. Muharni, and Y. Windusari, “Analisis polimorfisme padi varietas lokal Sumatera Selatan berdasarkan pendekatan PCR-RAPD,” J. Lahan Suboptimal J. Suboptimal Lands, vol. 7, no. 1, pp. 50–58, 2018.

[2] I. P. Sujana, “Pengelolaan tanah ultisol dengan pemberian pembenah organik biochar menuju pertanian berkelanjutan,” Agrimeta, vol. 5, no. 09, p. 89640, 2015.

[3] T. Pakki, R. Adawiyah, A. Yuswana, N. Namriah, M. A. Dirgantoro, and A. Slamet, “Pemanfaatan eco-enzyme berbahan dasar sisa bahan organik rumah tangga dalam budidaya tanaman sayuran di pekarangan,” Pros. Pepadu, vol. 3, pp. 126–134, 2021.

[4] D. Larasati, A. P. Astuti, and E. T. W. Maharani, “Uji organoleptik produk eco-enzyme dari limbah kulit buah (studi kasus di Kota Semarang),” Edusaintek, vol. 4, 2020.

[5] E. V Wiyono, “Karakteristik fisik dan kimia kopi rakyat di kawasan pegunungan argopuro–jember,” Skripsi Univ. Jember, 2019.

[6] D. Rizki, B. R. Wijonarko, and P. Purwanto, “Karakter agronomis dan fisiologis tanaman kopi robusta (coffea canephora) pada dataran tinggi di Kecamatan Pejawaran Kab. Banjarnegara,” Compos. J. Ilmu Pertan., vol. 2, no. 1, pp. 11–16, 2020.

[7] D. R. Hasibuan, “Unsur Hara Makro Tanah Podsolik Merah Kuning (PMK) dengan Pemberian Biochar Bonggol Jagung.” UNIVERSITAS ISLAM NEGERI SULTAN SYARIF KASIM RIAU, 2021.

[8] S. Rusli and E. Wardiana, “Pengaruh pemupukan terhadap pertumbuhan, hasil dan kualitas biji empat klon kopi robusta di tanah Podsolik Merah Kuning, Lampung Utara,” J. Tanam. Ind. dan Penyegar, vol. 2, no. 2, pp. 107–112, 2015.

[9] W. S. Wulandari and W. Winarsih, “Pengaruh Ekoenzim Berbagai Limbah Kulit Buah terhadap Penurunan Konsentrasi Surfaktan pada Air Limbah Laundry,” LenteraBio Berk. Ilm. Biol., vol. 13, no. 1, pp. 93–104, 2024.

[10] R. J. Junaidi et al., “Pembuatan eco-enzyme sebagai solusi pengolahan limbah rumah tangga,” J. Pembelajaran Pemberdaya. Masy., vol. 2, no. 2, p. 118, 2021.

[11] F. Gultom, H. Hernawaty, H. Brutu, and S. Karo-Karo, “Pemanfaatan pupuk ekoenzim dalam meningkatkan pertumbuhan dan produksi tanaman bawang merah (Allium cepa L.),” J. UDA, vol. 30, no. 1, pp. 142–159, 2022.

[12] M. M. E. Nugraha and H. Sadiyah, “Pengaruh penambahan eco enzyme kulit nanas terhadap hasil tiga varietas sawi pakcoy (Brassica chinensis L.) pada hidroponik wick system,” J. Agrium, vol. 20, no. 2, pp. 95–106, 2023.

[13] G. A. Sapitri, A. T. Maryani, and E. I. Swari, “Efek Konsentrasi Eko-Enzim dan Pupuk NPK Terhadap Pertumbuhan Bibit Kopi Liberika (Coffea Liberica W Bull Ex Hiern) Tungkal Jambi,” J. Ilm. Univ. Batanghari Jambi, vol. 24, no. 2, pp. 1036–1043, 2024.

[14] R. K. Salsabila, “Pengaruh pemberian ekoenzim sebagai pupuk organik cair terhadap pertumbuhan tanaman sawi pakcoy (Brassica rapa L.),” LenteraBio Berk. Ilm. Biol., vol. 12, no. 1, pp. 50–59, 2023.

[15] J. Simanullang, A. P. Lestari, H. Salim, Y. Alia, and G. Gusniwati, “PENINGKATAN PERTUMBUHAN BIBIT KOPI LIBERIKA TUNGKAL KOMPOSIT (Coffea liberica Var. liberika Tungkal Komposit) DI POLYBAG DENGAN PEMBERIAN EKOENZIM PLUS,” J. Agroecotania Publ. Nas. Ilmu Budid. Pertan., vol. 8, no. 1, 2025.

[16] P. B. Hastuti and N. M. Titiaryanti, “Respon pertumbuhan bibit kelapa sawit di pre nursery dengan berbagai konsentrasi eco enzyme dan dosis NPK,” J. Pertan. Agros, vol. 24, no. 2, pp. 598–606, 2022.

[17] A. Rahmah, M. Izzati, and S. Parman, “Pengaruh pupuk organik cair berbahan dasar limbah sawi putih (Brassica Chinensis L.) terhadap pertumbuhan tanaman jagung manis (Zea Mays L. Var. Saccharata),” Anat. Fisiol., vol. 22, no. 1, pp. 65–71, 2014.

[18] A. Nugroho, S. Mahareni, B. Sitepu, and H. M. Z. N. Amrul, “MEDIA TANAM TERHADAP PERTUMBUHAN BIBIT KOPI ROBUSTA ( COFFEA CANEPHORA ),” vol. 5, no. 3, pp. 97–105, 2023.

[19] M. Mahdiannoor, N. Istiqomah, and S. Syarifuddin, “Aplikasi pupuk organik cair terhadap pertumbuhan dan hasil tanaman jagung manis,” Ziraa’ah Maj. Ilm. Pertan., vol. 41, no. 1, pp. 1–10, 2016.

[20] H. E. Pramitasari, T. Wardiyati, and M. Nawawi, “Pengaruh dosis pupuk nitrogen dan tingkat kepadatan tanaman terhadap pertumbuhan dan hasil tanaman kailan (Brassica oleraceae L.).” Brawijaya University, 2016.

[21] I. A. K. Pramushinta and R. Yulian, “Pemberian POC (pupuk organik cair) air limbah tempe dan limbah buah pepaya (Carica papaya L.) terhadap pertumbuhan dan produktivitas tanaman pakcoy (Brassica rapa L.),” J. Pharmasci, vol. 5, no. 1, pp. 29–32, 2020.

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Published

2026-08-30

How to Cite

Response of Robusta Coffee Seedling Growth to The Application of Various Concentrations of Ecoenzymes to PMK Soil (F. Febyola & V. Jatsiyah, Trans.). (2026). West Science Agro, 4(03), 256-268. https://doi.org/10.58812/wsa.v4i03.3075