Bio-Pulping of Bagasse As The Material For Paper Making Using Different Species of White Rot Fungi and Incubation Time

  • Vio Indah Budiarti
  • Nuniek Ina Ratnaningtyas
  • Aris Mumpuni

Abstract

The Biopulping is defined as the biological process of lignin degradation by utilizing microorganisms that produce some enzymes. A microorganism which widely known in the degradation of lignin and cellulose is a group of white-rot fungi. The aims for this research to know the most effective  white rot fungi species of G.lucidum, P.tuber-regium, and T.versicolor in the degradation of lignin and cellulose with different incubation time on bagasse substrate. The effectivity of biopulping indicated by the highest degradation of lignin concentration and the lowest degradation of cellulose concentration. This study used an experimental design with Completely Randomized design with a two factorial pattern. The independent variable of this study is white rot fungi species and incubation time while the dependent variable is the concentration of lignin and cellulose. The main parameter was the concentration of lignin and cellulose, supporting parameters were pH, weight loss of substrate and mycelial growth. The result showed the degradation of lignin and cellulose in all treatment. The best degradation of lignin and cellulose showed by species T.versicolor and P.tuber-regium within 30 days of incubation

References

Adinipekun, C.O.,Okunlade, O.A., Ogunjobi, A.A. 2012. Effect of Pleorotus tuber-regium Singer on degradation of rattan wood and maize stozers. Journal of Applied Biosciences, 51: 3633-3641.

Aguiar, A., Gavioli, D., & Ferraz, A. 2014. Metabolite secretion, Fe3+-reducing activity and wood degradation by the white-rot fungus Trametes versicolor ATCC 20869. Fungal Biology. 118(11): 935–942.

Asif, M.B., Hai, F.I., Singh, L., Price W.E., dan Nghiem, L.D. 2017. Degradation of Pharmaceuticals and Personal Care Products by White-Rot Fungi – A Critical Review. Curr Pollution Rep.

Away, Y., Goenadi, D. H., Pasaribu, R. A., Santosa, G.I. 2000. Biopulping Tandan Kosong Kelapa Sawit. Bogor: Unit Penelitian Bioteknologi Perkebunan.

Aziz, A.A., M. Husin & A. Mokhtar. 2002. Preparation of cellulose from oil palm empty fruit bunches via ethanol digestion: effect of acid and alkali catalysts. Journal of Oil Palm Research, 4(1): 9-14.

Chesson, A. 1981. Effects of sodium hydroxide on cereal straws in relation to the enhanced degradation of structural polysaccharides by rumen microorganisms. J. Sci. Food Agric, 32 : 745–758.

Del Rio, J. C., Alessandro, G. L., Jorge, L. C., Claudio, F. L., Ana, G ,E., Angel, T. M., Fachuang, L., John, R., Jorge, R. 2015. Differences in the chemical structure of the lignins from sugarcane bagasse and straw. Biomass & Bioenergy, 81: 322-338.

Hadioetomo, R.S. 1985. Mikrobiologi Dasar dalam Praktek Teknik dan Prosedur Dasar Laboratorium. Jakarta: Gramedia.

Hossain, S.K. M., Anantharaman, N. 2006. Activity enhancement of ligninolytic enzymes of Trametes versicolor with bagasse powder. African Journal of Biotechnology, 5 (1): 189-194.

Jonathan, S. G., Fasidi, I. O., Ajayi, A. O., & Adegeye, O. 2008. Biodegradation of Nigerian wood wastes by Pleurotus tuber-regium (Fries) Singer. Bioresource Technology, 99 : 807-811.

Knezevica, A., Ivan, M., Mirjana, S., Nikola, L., Ilija, B., Jelena, V., Jasmina, C. 2013. Lignin degradation by selected fungal species. Bioresorce Technology, 138 : 117-123.

Krik, T. K. & H., M. Chang., 1990. Biotechnology in Pulp and Paper Manufacture. USA : Butterwort-Heineman.

Nwogu, N.A., Atuanya. E., Akpaja, E.O. 2012. Capability of selected mushrooms to biodegrade polyethylene. Mycosphere 3(4) : 455–462

Purwita, C, A., Hendro, R. 2016. Pengaruh Aplikasi Jamur Pelapuk Putih Pada Biopulping Rami (Boehmeria Nivea) Terhadap Kualitas Pulp Belum Putih. Jurnal Selulosa, 6 (2) : 105-144.

Risdianto, H., Tjandra, S., sri, H. S., Wardono, N. 2007. Pemilihan Spesies Jamur dan Media Imobilisasi untuk Produksi Enzim Ligninolitik. Bandung : Prosiding Seminar Nasional Rekayasa Kimia dan Proses.

Rouches, E., Herpoël-Gimbert, I.., P. Steyer., H. Carrere. 2016 Improvement of anaerobic degradation by white-rot fungi pretreatment of lignocellulosic biomass: A review. Renewable and Sustainable Energy Reviews, 59 : 179–198.

Salbeti, D., Harlia.,Intan, S. 2018. Sintesis Dan Karakterisasi Termal Plastik Ramah Lingkungan Polyblend Selulosa Ampas Tebu Dan Limbah Botol Plastik Polietilen Tereftalat. Jurnal Kimia Khatulistiwa, 7(2): 54-60.

Septiningrum, K., Ikhwan, P. 2017. Aplikasi Enzim Di Industri Pulp Dan Kertas: I. Bidang Pulp. Jurnal Selulosa, 7(1) : 1-16.

Shabiri, A.N., Ritonga, R.S., Ginting, M.H.S., 2014. Pengaruh Rasio Epoksi/Ampas Tebu Dan Perlakuan Alkali Pada Ampas Tebu Terhadap Kekuatan Bentur Komposit Partikel Epoksi Berpengisi Serat Ampas Tebu. Jurnal Teknik Kimia USU, 3(3): 28-31.

Saloheimo M., & Niku-Paavola M.L. 1991. Heterologous production of a ligninolytic enzyme: expression of the Phlebia radiata laccase gene in Trichoderma reesei. Biotechnol, 9 : 987–990.

Solar, R., Stanislav, K. Miroslav, M., Eva, N., Joze, H. 2006. Wood Structure and Properties: Selected Chemical And Physical Properties Of Beech Wood Degraded By Wood Destroying Fungi. Slovakia: Arbora Publisher

Tudses. 2016. Isolation and Mycelial growth of mushroom on different yam based on culture media. Journal of Applied Biology & Biotechnology,4 (05) : 033-036.

Yang, Q.H., Zhan, S., Wang, S., Fu, K. L. 2007. Bio-modification of eucalyptus chemithermo-mechanical pulp with different white-rot fungi. Bioresource, 2 (4) : 682-692
Published
2020-12-23
How to Cite
BUDIARTI, Vio Indah; RATNANINGTYAS, Nuniek Ina; MUMPUNI, Aris. Bio-Pulping of Bagasse As The Material For Paper Making Using Different Species of White Rot Fungi and Incubation Time. BioEksakta : Jurnal Ilmiah Biologi Unsoed, [S.l.], v. 2, n. 3, p. 305-312, dec. 2020. ISSN 2714-8564. Available at: <http://jos.unsoed.ac.id/index.php/bioe/article/view/1798>. Date accessed: 25 apr. 2024. doi: https://doi.org/10.20884/1.bioe.2020.2.3.1798.
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Articles