Academic literature on the topic 'Betung bamboo'

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Journal articles on the topic "Betung bamboo"

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Suhasman, Suhasman, Detti Yunianti, Sahriyanti Saad, and Baharuddin Baharuddin. "Characteristics of Binderless Particleboard Made of Three Species of Sulawesi Bamboos." Wood Research Journal 4, no. 2 (2017): 68–71. http://dx.doi.org/10.51850/wrj.2013.4.2.68-71.

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Binderless particleboards (BP) were produced from three different species of Sulawesi bamboos. Parring bamboo (Gigantochloa ater) was extracted from Tanralili Maros while betung bamboo (Dendrocalamus asper) and tallang bamboo (Schizostacyum barcahycladum) were extracted from Batu Papan Makale Tana Toraja. The bark and nodes were removed, followed by cutting into chips; air drying, and finally converting into fine particles. The particles were oxidized using hydrogen peroxide 15% based on oven dry particle weight and 7.5% ferrous sulfat based on hydrogen peroxide weight. Hot pressing was applie
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Park, Sehwi, Min Lee, Fauzi Febrianto, and Nyoman Jaya Wistara. "Effects on Morphology and Chemical Properties of Indonesian Bamboos by Carbonization." Jurnal Sylva Lestari 9, no. 2 (2021): 190. http://dx.doi.org/10.23960/jsl29190-201.

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A simple carbonization technique was applied to utilize Indonesian bamboo resources. Several bamboo species as betung (Dendrocalamus asper), andong (Gigantochloa pseudoarundinacea (Steudel) Widjaja), hitam (G. atroviolacea), tali (G. apus), kuning (Bambusa vulgaris var. striata), and ampel bamboo (B. Vulgaris Scharad) were selected for carbonization. Carbonization was conducted using a laboratory electrical furnace at 200, 400, 600, 800, and 1,000 1,000°C. The morphological and chemical properties of bamboos before and after carbonization were then analyzed. Betung, hitam, tali, kuning, and am
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Saputra, Bagus, Karina Gracia Agatha Tambunan, Intan Fajar Suri, Indra Gumay Febryano, Dian Iswandaru, and Wahyu Hidayat. "Effects of Torrefaction Temperature on the Characteristics of Betung (Dendrocalamus asper) Bamboo Pellets." Jurnal Teknik Pertanian Lampung (Journal of Agricultural Engineering) 11, no. 2 (2022): 339. http://dx.doi.org/10.23960/jtep-l.v11i2.339-353.

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The objective of this study was to evaluate the effects of torrefaction temperature on the physical and mechanical properties of betung bamboo (Dendrocalamus asper) pellets. Torrefaction was conducted in an electric furnace at 200°C, 240°C, and 280°C for 50 minutes. The physical properties evaluated included color change, density, moisture content, water resistance, and water adsorption. The mechanical properties were also investigated by compressive strength test. The result showed that torrefaction affected the color properties of betung bamboo pellets with ∆E values of more than 12 or total
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Mutiar, Sri, Malse Anggia, Yogi Riyanda Putra, and Nurul Aini. "Quality class of Betung Bamboo fiber (Dendrocalamus Asper) from West Sumatra and its Potential as a Raw Material for Paper." Journal of Fibers and Polymer Composites 4, no. 1 (2025): 45–55. https://doi.org/10.55043/jfpc.v4i1.246.

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Betung bamboo is one of the Non-Timber Forest Products referring to the Minister of Forestry Regulation P.35 / MENNUT-II / 2007. In Indonesia, betung bamboo (Dendrocalamus asper) is included in the type of large bamboo which has a very wide potential for pulp and paper raw materials. Identification information of betung bamboo from Agam district, West Sumatra is important to know. Bamboo characteristics include the characteristics and dimensions of bamboo fibers based on bamboo stem sections. The purpose of this study was to determine the characteristics and physical properties of betung bambo
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Suri, Intan Fajar, Wahyu Hidayat, Indra Gumay Febryano, Rudi Hilmanto, Ratu Husaina Hadida, and Hafizh Awandi. "PENGARUH MODIFIKASI PANAS OIL HEAT TREATMENT TERHADAP PERUBAHAN WARNA DAN BERAT PADA BAMBU BETUNG (Dendrocalamus asper) DAN BAMBU ANDONG (Gigantochloa pseudoarundinacea)." MAKILA 18, no. 1 (2024): 136–47. http://dx.doi.org/10.30598/makila.v18i1.13225.

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Betung bamboo (Dendrocalamus asper) and andong bamboo (Gigantochloa pseudoarundinacea) are non-timber forest products that can be used as a substitute for wood. However, both bamboos have light colors that are less aesthetic and susceptible to fungal and pest damage. Therefore, it is necessary to modify the bamboo. One of the modification methods used is oil heat treatment (OHT). This research aims to determine the effect of OHT on the color of betung and andong bamboo. This research was carried out the OHT using palm oil at temperatures of 180°C, 200°C, 220°C and 240°C for 2 hours. Color para
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Sari, Erviana, Indriyanto ., and Afif Bintoro. "Respon Setek Cabang Bambu Betung (Dendrocalamus Asper) Akibat Pemberian Asam Indol Butirat (AIB)." Jurnal Sylva Lestari 4, no. 2 (2016): 61. http://dx.doi.org/10.23960/jsl2461-68.

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Betung bamboo (Dendrocalamus asper) as multipurpose plant could be developed with vegetative and generative propagation. Branch cuttings was the easiest way in the betung bamboo vegetative propagation. One of plant growth regulators that could be used to spur betung bamboo branch cutting was indole butyric acid (IBA). This study was conducted to evaluate the betung bamboo branch cutting response from various concentration of IBA and to know the best concentration of IBA to spur the growth. The experiment was conducted in Palembang’s Bamboo Plantation Collection and Development Research Institu
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Hidayah, Anissa Mayliana, Evi Sribudiani, and Sonia Somadona. "KARAKTERISTIK GLULAM BAMBU BETUNG (Dendrocalamus asper) MENGGUNAKAN PEREKAT STYROFOAM BERDASARKAN JUMLAH LAPISAN DAN POLA PENYUSUNAN." JURNAL ILMU-ILMU KEHUTANAN 5, no. 2 (2021): 1. http://dx.doi.org/10.31258/jiik.5.2.1-7.

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Bamboo is one of the non-timber natural forest products that has the potential to be used as raw material for wood substitutes because bamboo has many advantages. If for wood with high durability, it takes time from planting seedlings to be ready for harvest is 30-40 years and even then after cutting down the seeds must be planted again, but bamboo takes up to 4-5 years to be ready to be harvested. The problem that arises is that bamboo has a limited dimension so that it requires lamination technology that can shape bamboo into a dimensioned material according to construction needs. Lamination
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Hidayah, Anissa Mayliana, Evi Sribudiani, and Sonia Somadona. "KARAKTERISTIK GLULAM BAMBU BETUNG (Dendrocalamus asper) MENGGUNAKAN PEREKAT STYROFOAM BERDASARKAN JUMLAH LAPISAN DAN POLA PENYUSUNAN." JURNAL ILMU-ILMU KEHUTANAN 6, no. 1 (2022): 24. http://dx.doi.org/10.31258/jiik.6.1.24-30.

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Bamboo is one of the non-timber natural forest products that has the potential to be used as raw material for wood substitutes because bamboo has many advantages. If for wood with high durability, it takes time from planting seedlings to be ready for harvest is 30-40 years and even then after cutting down the seeds must be planted again, but bamboo takes up to 4-5 years to be ready to be harvested. The problem that arises is that bamboo has a limited dimension so that it requires lamination technology that can shape bamboo into a dimensioned material according to construction needs. Lamination
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Putri, Rumanintya Lisaria, Lya Rochmawati, Dodi Nandika, and I. Wayan Darmawan. "Pengawetan Bambu dengan Metode Boucherie." Jurnal Ilmu Pertanian Indonesia 25, no. 4 (2020): 618–26. http://dx.doi.org/10.18343/jipi.25.4.618.

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Bamboo is known as fast-growing species that could be derived into various products. However, bamboo is suspectible to the wood destroying organisms. Preservation is one way to improve the service life of bamboo. This study aimed to analyze the effect of differences in anatomical structures of betung bamboo (Dendrocalamus asper Backer) and andong bamboo (Gigantochloa pseudoarundinaceae (Steudel) Widjaja), and the effect of pressure on the flow time and retention of entiblu preservative in the Boucherie method. Bamboo stems with diameters of 10-14 cm were cut in 1; 1,5; 2; and 2,5 m lengths. Th
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Latifah, Ayu Noor, Kurdiansyah Kurdiansyah, and Wiwin Tyas Istikowati. "PENGUKURAN KADAR AIR JENIS BAMBU BETUNG (Dindrocalamos asper), BAMBU KUNING (Bambusa vulgaris Schard) dan BAMBU SULUK (Gigantochloa levis Merr)." Jurnal Sylva Scienteae 4, no. 5 (2021): 897. http://dx.doi.org/10.20527/jss.v4i5.4212.

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The aim of this research is to determine water content of three types of bamboo (betung bamboo (Dindrocalamos asper), kuning bamboo (Bambusa vulgaris Schard), and suluk bamboo (Gigantochloa levis Merr)) and to determine the differences based on their position in bamboo. Five bamboos each species was harvested from Tapin Regency, South Kalimantan. Bamboo was divided into three positions, the bottom, middle, and the end and moisture content were measured. This measurement of water content can provide information for further utilization. Based on the results, the water content of the bamboo betun
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Dissertations / Theses on the topic "Betung bamboo"

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Kobayashi, Tsuyoshi, Naoko Miki, Kyoko Kato, et al. "Understory removal increases carbon gain and transpiration in the overstory of birch (Betula ermanii) stands in northern Hokkaido, Japan: trends in leaf, shoot and canopy." 2006. http://hdl.handle.net/2237/6894.

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Book chapters on the topic "Betung bamboo"

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Astuti, Widi, Triastuti Sulistyaningsih, Dhoni Hartanto, Irene Nindita Pradnya, Khoiriyah Rahmawati, and Kusnia Kusnia. "Betung Bamboo-Based Magnetic Biochar for Dye Removal." In Food Sustainability, Environmental Awareness, and Adaptation and Mitigation Strategies for Developing Countries. IGI Global, 2023. http://dx.doi.org/10.4018/978-1-6684-5629-3.ch008.

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Water is one of the vital resources of human life. The rapid development of the industrial sector in developing countries is one of the main factors that contribute to water pollution, due to a lack of environmental awareness. Therefore, it is very important to remove the pollutants from industrial wastewater before being discharged into water bodies. Adsorption using inexpensive and high availability materials such as magnetic biochar is a promising alternative. Embedding magnetite (Fe3O4) into biochar not only aims to solve the separating problem, but also to strengthen the adsorption perfor
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Uebachs, Stephan. "Dünnschichtige Wannen aus faserbewehrtem Beton als „Innenabdichtung“." In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-313.

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Stürmer, Silvia. "Ziegelsplittbetone der Nachkriegsjahre und moderne RC‐Betone – Nachhaltigkeit an Objektbeispielen." In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-277.

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Jonasch, Leonore. "Bauforschung, Analyse und Konzeptentwicklung für die Ziegelei „Rotes Haus“ in Meißen." In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-235.

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Ackermann, Thomas. "Realität des Raumklimas – Erkenntnisse ausLangzeitmessungen." In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-137.

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Arnold, Ulrich. "Problemfall Holzbalkon – Planung und Schadensvermeidung." In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-93.

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Krause, Detlef. "Hausschwammbefall nach einer Sanierung – Ursachen, Haftung und GFK‐Einsatz." In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-79.

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Erbes, Elisabeth. "Laboranalyse von Holz und dessen Eigenschaften nach einer Lagerung in aggressiven Lösungen." In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-213.

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Schulz, Joahim. "Betoninstandsetzungs‐ und WU‐Richtlinie – Alles neu?" In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-291.

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Koch, Jens. "Vorwort." In Baustoffe im Fokus - von Bambus bis Beton. Fraunhofer IRB Verlag, 2018. http://dx.doi.org/10.51202/9783738802085-9.

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Conference papers on the topic "Betung bamboo"

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Amin, Yusup, Renaldi Purnomo Adji, Wahyu Dwianto, Naresworo Nugroho, Effendi Tri Bahtiar, and Lina Karlinasari. "Comparison physical, mechanical and acoustical properties of Jabon and Betung bamboo." In THE 4TH INTERNATIONAL CONFERENCE ON MATHEMATICS: EDUCATION, THEORY & APPLICATION (ICMETA) 2022. AIP Publishing, 2025. https://doi.org/10.1063/5.0240558.

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Mikha, M., Alfi Rumidatul, Rudi Dungani, and Ihak Sumardi. "A comparative study of preservation method for bamboo Betung (Dendrocalamus asper) based on its retention and penetration." In THE 4TH INTERNATIONAL CONFERENCE ON MATHEMATICS: EDUCATION, THEORY & APPLICATION (ICMETA) 2022. AIP Publishing, 2025. https://doi.org/10.1063/5.0240219.

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Hau, Rambu Ririnsia Harra, Masturi Masturi, Ian Yulianti, Salvo Kahumbu Hau, and Soleman Dappa Talu. "MODULUS ELASTISITAS BAMBU BETUNG DENGAN VARIABEL PANJANG." In SEMINAR NASIONAL FISIKA 2016 UNJ. Pendidikan Fisika dan Fisika FMIPA UNJ, 2016. http://dx.doi.org/10.21009/0305020108.

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Idris, N. A., H. M. Noh, M. I. Harun, et al. "The performance of concrete cube with fiber from Betong bamboo as the strengthener." In 10TH INTERNATIONAL CONFERENCE ON APPLIED SCIENCE AND TECHNOLOGY. AIP Publishing, 2022. http://dx.doi.org/10.1063/5.0104455.

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Osman, Syaiful, and Mansur Ahmad. "Chemical and thermal characterization of Malaysian bamboo lignin (Beting & Semantan) extracted via soda pulping method." In DISRUPTIVE INNOVATION IN MECHANICAL ENGINEERING FOR INDUSTRY COMPETITIVENESS: Proceedings of the 3rd International Conference on Mechanical Engineering (ICOME 2017). Author(s), 2018. http://dx.doi.org/10.1063/1.5047196.

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Junnaidy, R., A. D. Masdar, R. Marta, and A. Masdar. "Penggunaan serat bambu pada campuran beton untuk meningkatkan daktalitas pada keruntuhan beton." In SEMINAR NASIONAL Strategi Pengembangan Infrastruktur ke-3. ITP Press, 2017. http://dx.doi.org/10.21063/spi3.1017.131-135.

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Mulyati, Mulyati, and Arman Arman. "EVALUASI PENGGUNAAN TULANGAN BAMBU TERHADAP BEBAN LENTUR PADA STRUKTUR BETON BANGUNAN RUMAH TINGGAL." In SEMINAR NASIONAL Strategi Pengembangan Infrastruktur ke-3. ITP Press, 2017. http://dx.doi.org/10.21063/spi3.1017.74-79.

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