Open Access
Issue
BIO Web Conf.
Volume 167, 2025
5th International Conference on Smart and Innovative Agriculture (ICoSIA 2024)
Article Number 06004
Number of page(s) 7
Section Smart Genetics Resource Management and Utilization
DOI https://doi.org/10.1051/bioconf/202516706004
Published online 19 March 2025
  • F Zohra, S. Sunarti, T. Listyanto, Ketahanan alami kayu hibrid akasia (Acacia mangium x Acacia auriculiformis) terhadap serangan rayap kayu kering. Jurnal Pemuliaan Tanaman Hutan 15(2), 55–64 (2021) [Google Scholar]
  • S. Sunarti, H. Praptoyo, A. Nirsatmanto, Karakteristik serat kayu hibrid Acacia auriculiformis x Acacia mangium sebagai bahan baku pulp. Jurnal Pemuliaan Tanaman Hutan 10(2), 135–143 (2016) [Google Scholar]
  • S. Sunarti, M. Na’iem, E.B. Hardiyanto, S. Indrioko. Breeding strategy of acacia hybrid (Acacia mangium x Acacia auriculiformis) to increase forest plantation productivity in Indonesia, Journal of Tropical Forest Management). 19(2), 128–137 (2013) [Google Scholar]
  • M.M. Haque, M.I. Azis, M.S. Hossain, M.A. Quaiyyum, M.Z. Alam, M.S. Jahan, Pulping of hybrid acacia planted in a social forestry program in Bangladesh. Cellulose Chemistry and Technology 53(7-8), 739–745 (2019) [Google Scholar]
  • S. Ainayya, A.S. Maharani, S. Sunarti, A. Nirsatmanto, G. Lukmandaru. Kraft pulping of 3- year-old Acacia hybrid (A. mangium x A. auriculiformis) clonal wood. Forestry Ideas 30(1), 79–92 (2024) [Google Scholar]
  • D. Fengel and G. Wegener. Wood: chemistry, ultrastructure, reactions, (Walter de Gruyter, Berlin, 1984) [Google Scholar]
  • P.W. Hart, A.W. Rudie, Anthraquinone a review of the rise and fall pulping catalyst. TAPPI Journal 13(10), 23–31 (2014) [Google Scholar]
  • D. Biswas, M. Misbahuddin, U. Roy, R.C. Francis, S.K. Bose, Effect of additives on fiber yield improvement forkraft pulping of kadam (Anthocephalus chinensis). Bioresource Technology 102, 1284–1288 (2011) [Google Scholar]
  • Z. Gonzales, A. Rodriguez, F. Vargas, L. Jimenez, Refining of soda-AQ, kraft-AQ, and ethanol pulps from orange tree wood. Bioresources 8, 5622–5634 (2013) [Google Scholar]
  • L. Yanez-Espinosa, T. Terrazas, L. Lopez-Mata, J.I. Valdez-Hernandez, Wood variation in Laguncularia racemosa and its effect on fibre quality. Wood Science and Technology. 38, 217–226 (2004) [Google Scholar]
  • J. Ohshima, S. Yokota, N. Yoshizawa, T. Ona, Examination of within-tree variations and heights representing whole-tree values of derived wood properties for quasi-non-destructive breeding of Eucalyptus camaldulensis and Eucalyptus globulus as quality pulpwood. Journal of Wood Science 51, 102–111 (2005) [CrossRef] [Google Scholar]
  • ASTM, ASTM D 1107 - 96 - Standard test method for ethanol-toluene solubility of wood (ASTM, 2007) [Google Scholar]
  • ASTM, ASTM D 1110 - 84 - Standard test method for water solubility of wood (ASTM, 2007) [Google Scholar]
  • B.L. Browning, Methods of wood chemistry. Volume 2. (Interscience Publisher, A Division of John Wiley and Sons, Inc, New York, 1967) [Google Scholar]
  • R.M. Rowell, R. Petersen, J.S. Han, J.S. Rowell, M.A. Tshabalala, Cell wall chemistry. In R.M. Rowell, (Ed), Handbook of wood chemistry and wood composites (CRC Press, 2005) [Google Scholar]
  • Standar Nasional Indonesia, SNI 0492:2008-Pulp dan kayu - Cara uji kadar lignin - Metode Klason (Badan Standardisasi Nasional, Jakarta, 2008) [Google Scholar]
  • Standar Nasional Indonesia, SNI ISO 302:2014. Pulp - Cara uji bilangan Kappa (Badan Standardisasi Nasional, Jakarta, 2014) [Google Scholar]
  • Standar Nasional Indonesia, SNI ISO 5267-2:2010. Pulp Cara uji kemampuan drainase- Bagian 2: metode Canadian Standard Freeness (CSF) (Badan Standardisasi Nasional, Jakarta, 2010) [Google Scholar]
  • Standar Nasional Indonesia, SNI ISO 5269-1:2012. Pulp - Pembuatan lembaran laboratorium untuk pengujian sifat fisik - Bagian 1: Metode pembentuk lembaran konvensional (Badan Standardisasi Nasional, Jakarta, 2012) [Google Scholar]
  • Standar Nasional Indonesia, SNI ISO 2758:2011. Kertas - Cara uji ketahanan retak (Badan Standardisasi Nasional, Jakarta, 2011) [Google Scholar]
  • Standar Nasional Indonesia, SNI 0436-1989. Cara uji ketahanan sobek kertas (Badan Standardisasi Nasional, Jakarta. 1989) [Google Scholar]
  • Standar Nasional Indonesia, SNI 0437-1989. Cara uji ketahanan tarik kertas dan karton (Badan Standardisasi Nasional, Jakarta, 1989) [Google Scholar]
  • Standar Nasional Indonesia, SNI ISO 2470-1-2014. Kertas, Karton, dan Pulp - Cara uji faktor pantul biru cahaya baur - Bagian 1: Kondisi siang hari di dalam ruangan (derajat cerah ISO) (Badan Standardisasi Nasional, Jakarta, 2014) [Google Scholar]
  • Standar Nasional Indonesia, SNI ISO 2470-1-2014. Kertas, Karton, dan Pulp - Cara uji faktor pantul biru cahaya baur - Bagian1: Kondisi siang hari di dalam ruangan (derajat cerah ISO) (Badan Standardisasi Nasional, Jakarta, 2014) [Google Scholar]
  • ISO, ISO 2471:2008(E) - Paper and board — Determination of opacity (paper backing) — Diffuse reflectance method (ISO, Switzerland, 2008) [Google Scholar]
  • M. Area, V. Popa, Wood fibres for papermaking (Smithers Rapra Technology Ltd, Shropshire, 2014) [Google Scholar]
  • R. Yahya, J. Sugiyama, J. Gril, Some anatomical features of Acacia hybrid, Acacia mangium and Acacia auriculiformis grown in Indonesia with regard to pulp yield and strength paper. Journal of Tropical Forest Science 33(3), 343–351 (2010) [Google Scholar]
  • R. Shmulsky, P.D. Jones, Forest products and wood science: An introduction, Sixth Edition. (John Wiley & Sons, Inc. 2011) [CrossRef] [Google Scholar]
  • S.B. Lestari, Yoswita, Sifat pengolahan dan sifat fisik pulp sembilan jenis kayu dari Indonesia Bagian Timur. Buletin Penelitian Hasil Hutan. 21(2), 91–98. (2003) [Google Scholar]
  • E. Supraptiah, S.N. Aisyah, Sofiah, Pengaruh rasio cairan pemasak (AA Charge) pada proses pembuatan pulp dari kayu sengon (Albizia falcataria) terhadap kualitas pulp. Kinetika. 5, 14–21 (2014) [Google Scholar]
  • Y.P. Theo, Sifat pulp campuran kayu randu dan tusam pada konsentrasi alkali aktif yang berbeda. Jurnal Hutan Tropis 12, 83–91 (2011) [Google Scholar]
  • K. Purba, B. Putritjatur, R. Surdiding, R.M. Siagian. Sifat pulp soda antrakinon kayu akasia (Acacia mangium) dan agathis (Agathis dammara Rich). Jurnal Penelitian Hasil Hutan. 6(3), 198–204, (1989) [Google Scholar]
  • R.C. Francis, T.S. Bolton, N. Abdoulmoumine, N. Lavrykova, S.K. Bose, Positive and negative aspect of soda-antraquinone pulping of hardwood. Bioresources Technology 99, 8453–8457, (2008) [Google Scholar]
  • R. Alen. Basic chemistry of wood delignification. In: Forest products chemistry. Stenius P (Ed). (Fapet Oy, Finland, 2000) [Google Scholar]
  • Standar Nasional Indonesia, SNI 6107:2009. Pulp kraft putih kayu daun (Badan Standardisasi Nasional, Jakarta, 2009) [Google Scholar]
  • T. Ona, T. Sonoda, K. Ito, M. Shibata, Y. Tamai, Y. Kojima, J. Ohshima, S. Yokota, N. Yoshizawa. Investigation of relationships between cell and pulp properties in Eucalyptus by examination of within-tree property variations. Wood Science and Technology 35, 229–243 (2001) [Google Scholar]
  • E. Brannvall. Pulp and paper chemistry and technology: Pulp Characterisation (Volume 2) (De Gruyter, Berlin, 2009) [Google Scholar]
  • H. Sixta. Handbook of pulp, Volume 1. (Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, 2006) [Google Scholar]
  • Q. Meng, S. Fu, B. Li, L. Lucia, The impact of xilanase and hot acid pretreatment on HexAs in eucalyptus kraft pulp bleaching. Journal of Wood Chemistry and Technology 35, 239–250 (2015) [CrossRef] [Google Scholar]
  • J.P. Casey, Pulp and paper chemistry and chemical technology (John Wiley & Sons, New Jersey, 1980) [Google Scholar]
  • S.R. Masrol, M.H.I. Ibrahim, S. Adnan, R.A. Raub, A.M. Sa’adon, K.I. Sukarno, M.F.H. Yusoff, Durian rind soda-anthraquinone pulp and paper: Effects of elemental chlorine-free bleaching and beating. Journal of Tropical Forest Science 30(1), 106–116 (2018) [CrossRef] [Google Scholar]
  • M. Lehr, M. Miltner, A. Friedl, Removal of wood extractives as pulp (pre-treatment): A technological review. SN Applied Sciences. 3(12), (2021) [Google Scholar]
  • O.P. Sarosi, D. Bammer, E. Fitz, A. Potthast, Partial exchange of ozone by electron beam irradiation shows better viscosity control and less oxidation in cellulose upgrade scenarios. Carbohydrate Polymers 265, 118037, (2021) [Google Scholar]
  • N.H.M. Hassan, N.A. Mohammad, M. Ibrahim, N.Y.M. Yunus, S.N. Sarmin, Soda-anthraquinone pulping optimization of oil palm empty fruit bunch. Bio-Resources 15(3), 5012–5031 (2020) [Google Scholar]

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