Biogas Production from Tofu Liquid Waste with Cow Manure Mixture
DOI:
https://doi.org/10.23960/jtep-l.v12i1.82-95Abstract
Biogas is a mixture of several gases produced from the process of overhauling organic materials by microorganisms in a state without air or anaerobically. This study aims to analyze the production and quality of biogas produced from tofu liquid waste with a mixture of cow dung. The study was conducted with 4 treatments, namely 80% liquid waste tofu and water + 20% cow dung (T80K20), 70% liquid waste tofu and water + 70% cow dung (T70K30), 60% liquid waste tofu and water + 40% dung cattle (T60K40), and 50% tofu liquid waste and water + 50% cow dung (T50K50). Each was replicated 3 times with data analysis using a completely randomized design (CRD). The highest methane gas production in the T50K50 treatment was 64,986.97 ml and the highest methane gas content in the T50K50 treatment was 43% in the sixth week.
Keywords:Anaerob,Carbon dioxide,Methane,Gas production.
References
Afrian, C., Haryanto, A., Hasanudin, U., & Zulkarnain, I. (2017). Produksi biogas dari campuran kotoran sapi dengan rumput gajah (Pennisetum purpureum). Jurnal Teknik Pertanian Lampung, 6(1), 23–30.
Apriadi, M.S., Wijaya, I.G.B., & Widiyarta, I.M. (2013). Pemurnian biogas terhadap gas pengotor karbondioksida (CO2) dengan teknik absorbsi baris manometer (manometry colum ). Jurnal Logic, 13(1), 55–60.
Budyrahman, R., Hartoyo, T., & Sunarya, Y. (2014). Biogas production from tofu liquid waste on treated agricultural wastes. American Journal of Agricultural and Biological Sciences, 9(2):226-23. doi:10.3844/ajabssp.2014.226.231.
Chadwick, D., Sommer, S., Thorman, R., Fangueiro, D., Cardenas, L., Amon, B., & Misselbrook, T. (2011). Manure management : Implications for greenhouse gas emissions. Anim Feed Sci Technol. 166(167), 514–531. doi:10.1016/j.anifeedsci.2011.04.036.
Esposito G, Frunzo L, Giordano A, Liotta F, Panico A, Prorozzi f. (2012). Anerobic co-digestion of organic waste. Environmental Science and Biotechnology. 11 (4) : 325-341.
KLHK (Kementerian Lingkungan Hidup dan Kehutanan). (2020). Laporan Inventarisasi Gas Rumah Kaca (GRK) dan Monitoring, Pelaporan, Verifikasi (MPV). Jakarta. Indonesia: Kementerian Lingkungan Hidup dan Kehutanan.
Fairuz, A., Haryanto, A., & Tusi, A. (2015). Pengaruh penambahan ampas kelapa dan kulit pisang terhadap produksi biogas dari kotoran sapi. Jurnal Teknik Pertanian Lampung, 4(2), 91–98.
Felix, A.S., Paramitha, S.B.U., & Ikhsan, D. (2012). Pembuatan biogas dari sampah sayuran. Jurnal Teknologi Kimia dan Industri, 1(1), 103–108.
Harlia, E., Priambudi, T.L., Marlina, E.T., Rahmah, K.N., Hidayati, Y.A., & Ridwan, R. (2019). Production of volatile fatty acid in biogas digester with coal media. International Conference on 4th Industrial Revolution and Its Impacts. 27–30 March, 2019. Walailak Procedia, 2019(1), 1-5.
Haryanto, A., Okfrianas, R., & Rahmawati, W. (2019). Pengaruh komposisi subtrat dari campuran kotoran sapi dan rumput gajah (Pennisetum purpureum) terhadap produktivitas biogas pada digester semi kontinu. Jurnal Rekayasa Proses, 13(1), 47-56. doi:10.22146/jrekpros.41125.
Kumar, P. (2021). Device for measuring composition of methane in biogas. International Journal of Modern Agriculture, 10(1), 746-751.
Ni'mah, L. (2014). Biogas from solid waste of tofu production and cow manure mixture : Composition effect. Chemica, 1(1), 1–9.
Nurjuwita, W., Sasongko, A., Hartanto, T.J., & Purwanto, M. (2021). Potential and characterization biogas from tofu liquid waste with addition cow dung and effective microorganisms 4 as biocatalyst. Mater Today Proc. 46, 1908–1912. doi:10.1016/j.matpr.2021.02.025.
Nurhayati, I.S., & Widiawati, Y. (2017). Emisi gas rumah kaca dari peternakan di Pulau Jawa yang dihitung dengan metode Tier-1 IPCC. Prosiding Seminar Nasional Teknologi Peternakan dan Veteriner. Kementerian Pertanian, 292-300.
Puspitasari, R., Muladno, M., Atabany, A., & Salundik, S. (2015). Produksi gas metana (CH4) dari feses sapi FH laktasi dengan pakan rumput gajah dan jerami padi. Jurnal Ilmu Produksi dan Teknologi Hasil Peternakan, 03(1), 40-45.
Ritonga, A.M., & Masrukhi, M. Optimasi kandungan metana (CH4) biogas kotoran sapi menggunakan berbagai jenis adsorben. Rona Teknik Pertanian, 10(2), 8-17.
Sanjaya, D., Haryanto, A., & Tamrin, T. (2015). Produksi biogas dari campuran kotoran sapi dengan kotoran ayam. Jurnal Teknik Pertanian Lampung, 4(2), 127–136.
Saputra, T., Triatmojo, S., & Ambar, P. (2010). Produksi biogas dari campuran feses sapi dan ampas tebu (bagasse) dengan rasio C/N yang berbeda. Buletin Peternakan, 34(2), 114–122.
Sato, A., Utomo, P., Sustantyo, H., Abineri, B., & Kimia, J.T. (2015). Pengolahan limbah tahu secara anaerobik-aerobik kontinyu. Seminar Nasional Sains dan Teknologi Terapan III. Surabaya, 13 Oktober 2015. Institut Teknologi Adhi Tama Surabaya, 185-192.
Susetyo, N.D., Rhohman, F., & Ilham, M.M. 2019. Perbandingan zat penyusun dalam pemanfaatan limbah cair tahu sebagai energi alternatif biogas. Jurnal Mesin Nusantara, 2(2), 109-118.
Tampio, E.A., Blasco, L., Vainio, M.M., Kahala, M.M., & Rasi, S.E. (2019). Volatile fatty acids ( VFAs ) and methane from food waste and cow slurry : Comparison of Comparison of biogas and VFA fermentation processes. GCB Bioenergy, 11(1), 72-84. https://doi.org/10.1111/gcbb.12556
Utami, A.R.I., Ryantara, R.A., Sumaryatie, E.D., & Chandra, I. (2021). Analysis of the effect of internal gas pressure of an anaerobic digester on biogas productivity of a mixture of cow dung and tofu liquid waste. The 9th National Physics Seminar 2020. 2020 Juni 20, Jakarta, Indonesia. AIP Conference Proceedings, 2320, 050028. https://doi.org/10.1063/5.0037446
Uwar, N.A., Wardana, I.N.G, & Widhiyanuriyawan, D. (2012). Karakteristik pembakaran CH4 dengan penambahan CO2 pada model Helle- Shaw Cell pada penyalaan bawah. Jurnal Rekayasa Mesin, 3(1), 249–257.
Wahyudi, A., Istiqlaliyah, H., & Ilham, M.M. (2019). Pengaruh penambahan bahan campuran dalam proses biogas limbah cair tahu. Jurnal Mesin Nusantara, 2(2), 119-126.
Widarti, B.N., Syamsiah, S., & Mulyono, P. (2012). Degradasi substrat volatile solid pada produksi biogas dari limbah pembuatan tahu dan kotoran sapi. Jurnal Rekayasa Proses, 6(1), 14–19.
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