Potential Composting Paper and Food Waste using Cow Rumen Bioactivator at IPB University Dramaga Campus
DOI:
https://doi.org/10.29244/jsil.10.1.149-158Keywords:
kertas, kompos, open windrow, rumen sapi, sisa makananAbstract
Educational institutions including IPB University Dramaga is generating paper and food waste. Waste paper reaching 679.84 kg per day and food waste reached 379.55 kg/ day. Both is collected at Taman Semangat located in Cikabayan IPB Dramaga and has the potential to pollute the environment if not treated further. On the other hand, IPB has the potential of cattle rumen that has not been effectively utilized. One of the waste treatments that can be done is composting. This study aims to analyze the characteristics and quality of compost, determine the best compost variation, and analyze the potential of composting in reducing paper and food waste at IPB Dramaga Campus. Composting was done by mixing waste paper and food waste using cow rumen bioactivator. Composting was carried out for 8 weeks aerobically with two composting methods, namely open windrow and aerated static pile (ASP). The results showed that compost characteristics including color, volume, temperature, moisture content, pH, C-Organic, N-Total and C/N ratio were in accordance with SNI 19-7030-2004. Compost that is in accordance with the standard is found in variations A3 and B3 in four weeks. In this variation, the weight ratio of waste paper to food waste and cow rumen is 1.75: 5: 3,25. This composting variation is able to reduce waste paper and food waste based on variations A3 and B3 by 67% and 13%.
References
[2] Sari AP, Diansafitri M, Simbolon VA. 2023. Pengolahan sampah kertas menjadi drawing paper terhadap peningkatan pengetahuan dan sikap siswa sekolah dasar. Jurnal Sanitasi Lingkungan. 3(2): 75-82. doi: 10.36086/jsl.v3i2.1989.
[3] Wicaksono AP, Mahfuro R, Risang AL. 2020. Perilaku pengurangan sampah: potensi pengungkapan dan pelaporan keberlanjutan di Perguruan Tinggi. Jurnal Ilmiah Akuntansi. 5(1): 151-176.
[4] Yang J, Liang X, Niu T, Meng W, Zhao Z, Zhou GW. 1998. Crystal structure of the catalytic domain of protein-tyrosine phosphatase SHP1. J Biol Chem. 273(43): 28199-207. doi: 10.1074/jbc.273.43.28199.
[5] Masithah ED, Choiriyah N, Prayogo. 2011. Pemanfaatan isi rumen sapi yang difermentasikan dengan bakteri bacillus pumilus terhadap kandungan klorofil pada kultur dunaliella salina. Jurnal Ilmiah Perikanan dan Kelautan. 3(1): 97-102. doi: 10.20473/jipk.v3i1.11630.
[6] Oktiawan W, Sarminingsih A, Purwono, Afandi M. 2015. Strategi produksi pupuk organik cair komersial dari limbah rumah potong hewan (rph) Semarang. Jurnal Presipitasi. 12(2): 89-94. doi: 10.14710/presipitasi.v12i2.86-94.
[7] Laura AC. 2024. Aanalisis komposisi sampah sebagai dasar pemilihan metode pengelolaan sampah pada green building. Populer: Jurnal Penelitian Mahasiswa. 3(1): 167-175. doi: 10.58192/populer.v3i1.1849.
[8] Dewi CM, Mirasari DM, Antaresti, Irawati W. 2007. Pembuatan kompos secara aerob dengan builking agent sekam padi. WIDYA TEKNIK. 6(1): 21-31. doi: 10.33508/wt.v6i1.1229.
[9] Anungputri PS, Yuliandari P, Suroso E. 2019. Karakterisasi sampah di lingkungan Universitas Lampung. Journal of Tropical Upland Resources. 1(1): 171-176. doi: 10.23960/jtur.vol1no1.2019.22.
[10] Nafis D, Yaman MA, Allaily. 2021. Pengaruh lama fermentasi pada pembuatan kompos dari bahan liter ayam, limbah serbuk kayu pinus dan eceng gondok terhadap kualitas fisik. JURNAL ILMIAH MAHASISWA PERTANIAN. 6(3): 70-78. doi: 10.17969/jimfp.v6i3.18307.
[11] Addinsyah A, Herumurti W. 2017. Studi timbulan dan reduksi sampah rumah kompos serta perhitungan emisi gas rumah kaca di Surabaya Timur. JURNAL TEKNIK ITS. 6(1): 62-67. doi: 10.12962/j23373539.v6i1.22973.
[12] Dewilda Y, Darfyolanda FL. 2017. Pengaruh komposisi bahan baku kompos (sampah organik pasar, ampas tahu, dan rumen sapi) terhadap kualitas dan kuantitas kompos. Jurnal Teknik Lingkungan UNAND. 14(1): 52-61. doi: 10.25077/dampak.14.1.52-61.2017.
[13] A’la M, Winarsih. 2021. Pengurangan karbon (c) pada serasah daun angsana (pterocarpus indicus) dan daun trembesi (samanea saman) melalui metode pengomposan lubang resapan biopori inovatif. Lentera Bio. 10(2): 234-244. doi: 10.26740/lenterabio.v10n2.p234-244.
[14] Amnah R, Friska M. 2019. Pengaruh aktivator terhadap kadar unsur c, n, p dan k kompos pelepah daun salak sidimpuan. Jurnal Pertanian Tropik. 6(3): 342-347.
[15] Ismayana A, Indrasti NS, Suprihatin, Maddu A, Fredy A. 2012. Faktor rasio c/n awal dan laju aerasi pada proses co-composting bagasse dan blotong. Jurnal Teknologi Industri Pertanian. 22(3): 173-179.
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