Sistem Komposter Otomatis Pengolahan Limbah Organik di Laboratorium Kewirausahaan Manajemen Agroindustri PSDKU Sidoarjo

Authors

  • Susan Devi Manajemen Agroindustri Politeknik Negeri Jember
  • Achmad Syaifulloh
  • Ika Puspitasari D.R
  • Wahyu Tri M.
  • Zayd Al Munshif

DOI:

https://doi.org/10.25047/plp.v4i1.5454

Keywords:

Organic waste, Automatic composter

Abstract

Organic waste is a type of trash that practical operations in the Agro-Industrial Management Entrepreneurship Laboratory at PSDKU Sidoarjo produce but have yet to deal with explicitly. A method to manage organic waste from practical activities is to employ it as organic fertiliser. At PSDKU Sidoarjo, organic fertiliser manufacture is often conducted solely during practical sessions via a composter. Technicians manually assembled the laboratory-scale composters to meet the requirements of the actual job. The challenges encountered with the manual composter include the fact that the quantity of EM4/Bioactivator applied meets expectations, but the manual mixing performed by students resulted in inconsistent mixing outcomes. This research aims to transform the current manual composter in the entrepreneurship laboratory into an automatic composter capable of processing organic waste from the laboratory while establishing a spraying timer that accurately produces the requisite quantity of bioactivator (EM4) according to the research specifications. The study was conducted in the Agroindustry Management Entrepreneurship Laboratory at PSDKU Sidoarjo from May to November 2024,  financed by the PNBP of Jember State Polytechnic 2024. This study has three phases: designing an aerobic organic composter with an automated mixer and sprayer system, building the automated composter, and implementing organic waste management. The study effectively created an automated composter that disperses 125 ml of EM4 liquid for 58 seconds for every 1 kilogram of organic waste.

Downloads

Download data is not yet available.

References

[1] Christy, J., Haloho, R. D., Sinaga, R., Sembiring, S., Karo, S. B., Saragih, C. L., Sembiring, R., Gultom, D. M. T., & Sinulingga, S. (2022). Pengelolaan Sampah Berbasis Komposter Untuk Remaja “Go Organik.” JMM (Jurnal Masyarakat Mandiri), 6(3), 1831. https://doi.org/10.31764/jmm.v6i3.7793

[2] Hibino, K., Takakura, K., Budi Nugroho, S., Nakano, R., Ismaria, R., Hartati, T., Zusman, E., & Fujino, J. (2020). Panduan Operasional Pengomposan Sampah Organik Skala Kecil dan Menengah dengan Metoda Takakura. 1–52.

[3] Nur, T., Noor, A. R., & Elma, M. (2018). PEMBUATAN PUPUK ORGANIK CAIR DARI SAMPAH ORGANIK RUMAH TANGGA DENGAN BIOAKTIVATOR EM4 (Effective Microorganisms). Konversi, 5(2), 5. https://doi.org/10.20527/k.v5i2.4766

[4] Purba, T., Situmeang, R., & Rohman, H. F. (2021). Pemupukan dan Teknologi Pemupukan. In Angewandte Chemie International Edition, 6(11), 951–952.

[5] Sahwan, F. L., & Wahyono, S. (2011). Kualitas Kompos Sampah Rumah tangga Yang Dibuat Dengan Menggunakan Komposter Aerobik. 12(3), 233–240.

[6] Suharno. (2021). Perbedaan Penggunaan Komposter An-Aerob dan Aerob Terhadap Laju Proses Pengomposan Sampah Organik. 353900(5865), 251–255.

Downloads

Published

2025-02-28

How to Cite

Devi, S., Syaifulloh, A., D.R, I. P., M., W. T., & Munshif, Z. A. (2025). Sistem Komposter Otomatis Pengolahan Limbah Organik di Laboratorium Kewirausahaan Manajemen Agroindustri PSDKU Sidoarjo. Jurnal Pengembangan Potensi Laboratorium, 4(1), 48–54. https://doi.org/10.25047/plp.v4i1.5454

Issue

Section

Articles