Asdrubali, F., Schiavoni, S., & Horoshenkov, K. V. (2012). A Review of Sustainable Materials for Acoustic Applications. Building Acoustics, 19(4), 283-311. doi:10.1260/1351-010x.19.4.283
Panyakaew, S., & Fotios, S. (2011). New thermal insulation boards made from coconut husk and bagasse. Energy and Buildings, 43(7), 1732-1739. doi:10.1016/j.enbuild.2011.03.015
Zach, J., Hroudová, J., Brožovský, J., Krejza, Z., & Gailius, A. (2013). Development of Thermal Insulating Materials on Natural Base for Thermal Insulation Systems. Procedia Engineering, 57, 1288-1294. doi:10.1016/j.proeng.2013.04.162
[+]
Asdrubali, F., Schiavoni, S., & Horoshenkov, K. V. (2012). A Review of Sustainable Materials for Acoustic Applications. Building Acoustics, 19(4), 283-311. doi:10.1260/1351-010x.19.4.283
Panyakaew, S., & Fotios, S. (2011). New thermal insulation boards made from coconut husk and bagasse. Energy and Buildings, 43(7), 1732-1739. doi:10.1016/j.enbuild.2011.03.015
Zach, J., Hroudová, J., Brožovský, J., Krejza, Z., & Gailius, A. (2013). Development of Thermal Insulating Materials on Natural Base for Thermal Insulation Systems. Procedia Engineering, 57, 1288-1294. doi:10.1016/j.proeng.2013.04.162
Barreca, F., & Fichera, C. R. (2013). Use of olive stone as an additive in cement lime mortar to improve thermal insulation. Energy and Buildings, 62, 507-513. doi:10.1016/j.enbuild.2013.03.040
Patnaik, A., Mvubu, M., Muniyasamy, S., Botha, A., & Anandjiwala, R. D. (2015). Thermal and sound insulation materials from waste wool and recycled polyester fibers and their biodegradation studies. Energy and Buildings, 92, 161-169. doi:10.1016/j.enbuild.2015.01.056
Buratti, C., Belloni, E., Lascaro, E., Lopez, G. A., & Ricciardi, P. (2016). Sustainable Panels with Recycled Materials for Building Applications: Environmental and Acoustic Characterization. Energy Procedia, 101, 972-979. doi:10.1016/j.egypro.2016.11.123
Faustino, J., Pereira, L., Soares, S., Cruz, D., Paiva, A., Varum, H., … Pinto, J. (2012). Impact sound insulation technique using corn cob particleboard. Construction and Building Materials, 37, 153-159. doi:10.1016/j.conbuildmat.2012.07.064
Pelletier, M. G., Holt, G. A., Wanjura, J. D., Bayer, E., & McIntyre, G. (2013). An evaluation study of mycelium based acoustic absorbers grown on agricultural by-product substrates. Industrial Crops and Products, 51, 480-485. doi:10.1016/j.indcrop.2013.09.008
Pelletier, M. G., Holt, G. A., Wanjura, J. D., Lara, A. J., Tapia-Carillo, A., McIntyre, G., & Bayer, E. (2017). An evaluation study of pressure-compressed acoustic absorbers grown on agricultural by-products. Industrial Crops and Products, 95, 342-347. doi:10.1016/j.indcrop.2016.10.042
Ying, L.Z., Putra, A., Nor, M.J.M., Muhammad, N., 2016. Sound absorption of multilayer natural coir and Kenaf fibers. In: 23rd International Congress on Sound and Vibration.
Glé, P., Gourdon, E., & Arnaud, L. (2012). Modelling of the acoustical properties of hemp particles. Construction and Building Materials, 37, 801-811. doi:10.1016/j.conbuildmat.2012.06.008
Zulkifli. (2010). Noise Control Using Coconut Coir Fiber Sound Absorber with Porous Layer Backing and Perforated Panel. American Journal of Applied Sciences, 7(2), 260-264. doi:10.3844/ajassp.2010.260.264
Zulkifli, R., Nor, M. J. M., Tahir, M. F. M., Ismail, A. R., & Nuawi, M. Z. (2008). Acoustic Properties of Multi-Layer Coir Fibres Sound Absorption Panel. Journal of Applied Sciences, 8(20), 3709-3714. doi:10.3923/jas.2008.3709.3714
Del Rey, R., Uris, A., Alba, J., & Candelas, P. (2017). Characterization of Sheep Wool as a Sustainable Material for Acoustic Applications. Materials, 10(11), 1277. doi:10.3390/ma10111277
Martellotta, F., Cannavale, A., De Matteis, V., & Ayr, U. (2018). Sustainable sound absorbers obtained from olive pruning wastes and chitosan binder. Applied Acoustics, 141, 71-78. doi:10.1016/j.apacoust.2018.06.022
Bartocci, P., D’Amico, M., Moriconi, N., Bidini, G., & Fantozzi, F. (2015). Pyrolysis of Olive Stone for Energy Purposes. Energy Procedia, 82, 374-380. doi:10.1016/j.egypro.2015.11.808
Martínez, M. L., Torres, M. M., Guzmán, C. A., & Maestri, D. M. (2006). Preparation and characteristics of activated carbon from olive stones and walnut shells. Industrial Crops and Products, 23(1), 23-28. doi:10.1016/j.indcrop.2005.03.001
Lussier, M. G., Shull, J. C., & Miller, D. J. (1994). Activated carbon from cherry stones. Carbon, 32(8), 1493-1498. doi:10.1016/0008-6223(94)90144-9
Djilani, C., Zaghdoudi, R., Djazi, F., Bouchekima, B., Lallam, A., Modarressi, A., & Rogalski, M. (2015). Adsorption of dyes on activated carbon prepared from apricot stones and commercial activated carbon. Journal of the Taiwan Institute of Chemical Engineers, 53, 112-121. doi:10.1016/j.jtice.2015.02.025
Kuczmarski, M.A., Johnston, J.C., 2011. Acoustic Absorption in Porous Materials. Nasa/Tm-2011-216995.
Attenborough, K. (1982). Acoustical characteristics of porous materials. Physics Reports, 82(3), 179-227. doi:10.1016/0370-1573(82)90131-4
Tang, X., & Yan, X. (2017). Acoustic energy absorption properties of fibrous materials: A review. Composites Part A: Applied Science and Manufacturing, 101, 360-380. doi:10.1016/j.compositesa.2017.07.002
International Organization For Standardization, 2001. Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 1 - Method using standing wave ratio.pdf. Int. Stand.
Standard, B., 2001. Acoustics-determination of sound absorption coefficient and impedance in impedance tubes—part 2: transfer-function method. BS EN ISO.
Allard, J., & Champoux, Y. (1992). New empirical equations for sound propagation in rigid frame fibrous materials. The Journal of the Acoustical Society of America, 91(6), 3346-3353. doi:10.1121/1.402824
Allard, J. F., Castagnede, B., Henry, M., & Lauriks, W. (1994). Evaluation of tortuosity in acoustic porous materials saturated by air. Review of Scientific Instruments, 65(3), 754-755. doi:10.1063/1.1145097
Qunli, W. (1988). Empirical relations between acoustical properties and flow resistivity of porous plastic open-cell foam. Applied Acoustics, 25(3), 141-148. doi:10.1016/0003-682x(88)90090-4
Oliva, D., & Hongisto, V. (2013). Sound absorption of porous materials – Accuracy of prediction methods. Applied Acoustics, 74(12), 1473-1479. doi:10.1016/j.apacoust.2013.06.004
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