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Original Article

Flame retardancy of wood treated by TiO2/ZnO coating

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Pages 555-559 | Received 27 Dec 2011, Accepted 24 May 2012, Published online: 12 Nov 2013

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Juarez Benigno Paes, Fernanda Dalfiôr Maffioletti, Marcio Rogerio Silva, Antonio Henrique Cordeiro Ramalho, Jaqueline Rocha de Medeiros, Yonny Martinez Lopez, Pedro Gutemberg de Alcântara Segundinho & Francisco Antônio Rocco Lahr. (2022) Biological resistance of sandwich particleboard made with sugarcane, thermally-treated Pinus wood and malva fiber. Journal of Wood Chemistry and Technology 42:3, pages 171-180.
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Jianfeng Xu, Huagui Wu, Ru Liu, Ling Long & Peng Lin. (2019) Preparation and properties of light-resistant printing UV ink modified with nano-TiO2 on wood substrate. Surface Engineering 35:7, pages 557-564.
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G. Z. Dong, H. Q. Fan, Y. N. Zhu, X. B. Pan & X. B. Jiang. (2014) Effects of hyperthermia induced crystalline aggregation on properties of TiO2 thin films. Surface Engineering 30:8, pages 600-605.
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S. Basak, M. Bhowmick & S. Sengupta. (2023) Flame retardant sisal rope: combustion properties and characterization. Cellulose 30:6, pages 3931-3952.
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Paula Zanatta, Taline Mattoso, Ezequiel Gallio, Marília Lazarotto, Darci Alberto Gatto, Alexsandro Bayestorff Da Cunha & Rafael Beltrame. (2022) Exposure of Pinus elliottii wood treated with titanium dioxide to the fungus Postia placenta and photodegradation. Madera y Bosques 28:1, pages e2811895.
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Mezbah Uddin, Maitham Alabbad, Ling Li, Olli Orell, Essi Sarlin & Antti Haapala. (2022) Novel Micronized Mica Modified Casein–Aluminum Hydroxide as Fire Retardant Coatings for Wood Products. Coatings 12:5, pages 673.
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Ezequiel Gallio, Andrey Pereira Acosta, Rafael de Ávila Delucis, Patricia Soares Bilhalva dos Santos & Darci Alberto Gatto. (2021) Flammability of a softwood impregnated with alumina nanoparticles. Journal of the Indian Academy of Wood Science 18:2, pages 75-82.
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Andreja Pondelak, Andrijana Sever Škapin, Nataša Knez, Friderik Knez & Tomaž Pazlar. (2021) Improving the flame retardancy of wood using an eco-friendly mineralisation process. Green Chemistry 23:3, pages 1130-1135.
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Mezbah Uddin, Kalle Kiviranta, Sari Suvanto, Leila Alvila, Jari Leskinen, Reijo Lappalainen & Antti Haapala. (2020) Casein-magnesium composite as an intumescent fire retardant coating for wood. Fire Safety Journal 112, pages 102943.
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Yujia Liang, Esfandiar Pakdel, Mingwen Zhang, Lu Sun & Xungai Wang. (2019) Photoprotective properties of alpaca fiber melanin reinforced by rutile TiO2 nanoparticles: A study on wool fabric. Polymer Degradation and Stability 160, pages 80-88.
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Abdul Fatah Deraman & Sheela Chandren. Fire-retardancy of wood coated by titania nanoparticles. Fire-retardancy of wood coated by titania nanoparticles.
Santanu Basak, Animesh Laha, Mahadev Bar & Rupayan Roy. 2018. Advanced Textile Engineering Materials. Advanced Textile Engineering Materials 55 86 .
Paula Zanatta, Matheus Lemos Peres, Ezequiel Gallio, Debora Duarte Ribes, Marília Lazarotto, Darci Alberto Gatto & Mário Lúcio Moreira. (2018) Redução da inflamabilidade da madeira de Pinus elliottii modificada com partículas de TiO2. Matéria (Rio de Janeiro) 23:1.
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Santanu Basak & S. Wazed Ali. (2018) Fire resistant behaviour of cellulosic textile functionalized with wastage plant bio-molecules: A comparative scientific report. International Journal of Biological Macromolecules 114, pages 169-180.
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Mahendra Sheshama, Hitesh Khatri, Manish Suthar, Santanu Basak & Wazed Ali. (2017) Bulk vs. Nano ZnO: Influence of fire retardant behavior on sisal fibre yarn. Carbohydrate Polymers 175, pages 257-264.
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M. Ameen Khan, G. M. Madhu & R. R. N. Sailaja. (2017) Reinforcement of polymethyl methacrylate with silane-treated zinc oxide nanoparticles: fire retardancy, electrical and mechanical properties. Iranian Polymer Journal 26:10, pages 765-773.
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Thomas Hübert & Muhammad Shabir Mahr. 2017. Handbook of Sol-Gel Science and Technology. Handbook of Sol-Gel Science and Technology 1 48 .
Thomas Hübert & Muhammad Shabir Mahr. 2016. Handbook of Sol-Gel Science and Technology. Handbook of Sol-Gel Science and Technology 1 52 .

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