Please use this identifier to cite or link to this item: http://repository.ipb.ac.id/handle/123456789/125099
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dc.contributor.advisorHermawan, Dede-
dc.contributor.advisorKusumah, Sukma Surya-
dc.contributor.authorAdelka, Yunia Frida-
dc.date.accessioned2023-09-20T23:35:23Z-
dc.date.available2023-09-20T23:35:23Z-
dc.date.issued2023-09-20-
dc.identifier.urihttp://repository.ipb.ac.id/handle/123456789/125099-
dc.description.abstractPengembangan papan partikel bagas sorgum menggunakan perekat hayati dengan penambahan nanokatalis berpotensi menghasilkan papan partikel ramah lingkungan dengan sifat fisis-mekanis yang lebih baik. Penelitian ini bertujuan untuk mengembangkan papan partikel berbahan baku biomassa bagas sorgum dan perekat hayati molase-asam sitrat dengan penambahan nanokatalis seng oksida (ZnO) dan grafena oksida (GO). Papan partikel dibuat dengan kerapatan target 0,8 g/cm3, berukuran 35 x 35 x 0,6 cm3 dan dikempa panas pada suhu 200 ○C selama 10 menit dengan tekanan 10 MPa. Sifat fisis dan sifat mekanis papan partikel dievaluasi menggunakan standar JIS A 5908-2003. Papan partikel berperekat molase-asam sitrat dengan penambahan nanopartikel ZnO merupakan perlakuan terbaik pada penelitian ini. Papan partikel molase-asam sitrat ZnO memiliki kerapatan sebesar 0,79 g/cm3, kadar air sebesar 6,22%, pengembangan tebal sebesar 6,49%, modulus of rupture sebesar 127,16 kgf/cm2 dan keteguhan rekat sebesar 2,26 kgf/cm2. Sifat fisis dan mekanis papan partikel molase-asam sitrat ZnO telah memenuhi standar JIS A 5908-2003. Berdasarkan hasil analisis FTIR diketahui bahwa pada papan partikel bagas sorgum berperekat hayati dengan penambahan nanopartikel telah terbentuk ikatan ester.id
dc.description.abstractThe development of sorghum bagasse particleboard using bio-adhesive with the addition of nanocatalysts has the potential to produce environmentally friendly particleboard with better physical-mechanical properties. This study aims to develop particleboard made from sorghum bagasse biomass and molasses-citric acid bio-adhesive with the addition of zinc oxide (ZnO) and graphene oxide (GO) nanocatalysts. The particleboard was made with a target density of 0.8 g/cm3, 35 x 35 x 0,6 cm3 in dimensions and hot pressed at 200 °C for 10 minutes under 10 MPa pressure. The physical and mechanical properties of the particleboard were evaluated using the JIS A 5908-2003 standard. Particleboard bonded with molasses-citric acid with ZnO nanoparticles addition was the best treatment in this study. The molasses-citric acid ZnO particleboard has density value of 0.79 g/cm3, moisture content value of 6.22%, thickness swelling value of 6.49%, modulus of rupture value of 127.16 kgf/cm2 and a internal bonding value of 2.26 kgf/cm2. The physical and mechanical properties of molasses-citric acid ZnO particleboard have satisfied the JIS A 5908-2003 standard. Based on the results of FTIR analysis, it is known that the bio-adhesive sorghum bagasse particleboard with the addition of nanoparticles has formed ester bonds.id
dc.language.isoidid
dc.publisherIPB Universityid
dc.titlePapan Partikel Bagas Sorgum Berperekat Hayati dengan Penambahan Nanokatalis.id
dc.title.alternativeSorghum Bagasse Particleboard Bonded by Bio-Adhesive with Nano-Catalyst Additionid
dc.typeThesisid
dc.subject.keywordcitric acidid
dc.subject.keywordmolassesid
dc.subject.keywordgraphene oxideid
dc.subject.keywordsorghum bagasseid
dc.subject.keywordzinc oxideid
Appears in Collections:MT - Forestry

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