References
- Fang, J., Zhang, H., Ren, P., He1, B.-J., Tang, M., & Feng, C. (2022). Influence of Climates and Materials on the Moisture Buffering in Office Buildings: A Comprehensive Numerical Study in China. Environmental Science and Pollution Research, 29, 14158–14175. https://doi.org/10.1007/s11356-021-16684-3
- Kaczorek, D., Basińska, M., & Koczyk, H. (2023). Hygrothermal Behaviour of a Room with Different Occupancy Scenarios. Journal of Building Engineering, 66, 105928. https://doi.org/10.1016/j.jobe.2023.105928
- Zhang, M., Qin, M., & Chen, Z. (2017) Moisture Buffer Effect and its Impact on Indoor Environment. Procedia Engineering, 205, 1123–1129. https://doi.org/10.1016/j.proeng.2017.10.417
- McGregor, F., Heath, A., Shea, A., & Lawrence, M. (2014). The Moisture Buffering Capacity of Unfired Clay Masonry. Building and Environment, 82, 599–607. https://doi.org/10.1016/j.buildenv.2014.09.027
- Pavlík, Z., Fořt, J., Pavlíková, M., Pokorný, J., Anton Trníka, A., & Cerný, R. (2016). Modified Lime-Cement Plasters with Enhanced Thermal and Hygric Storage Capacity for Moderation of Interior Climate. Energy and Buildings, 126, 113–127. https://doi.org/10.1016/j.enbuild.2016.05.004
- Acevedo-Sánchez, C.D., Villaquirán-Caicedo, M.A., & Marmolejo-Rebellón, L.F. (2023). Recycling of EPS Foam and Demolition Wastes in the Preparation of Ecofriendly Render Mortars with Thermal-Acoustic Insulation Properties. Materiales de Construcción, 73 (351), e317. https://doi.org/10.3989/mc.2023.342422
- Ferrández, D., Álvarez, M., Saiz, P., & Zaragoza, A. (2022). Experimental Study with Plaster Mortars Made with Recycled Aggregate and Thermal Insulation Residues for Application in Building. Sustainability, 14, 2386. https://doi.org/10.3390/su14042386
- Kirwan, M.J. (2013). Handbook of Paper and Paperboard Packaging Technology. Wiley-Blackwell.
- Teearu, M-L. (2018). Determinantion of Hygrothermal Performance of Paper Clay: Sorption, Water Vapour Permeability and Moisture Buffering. Master’s Thesis. Tallinn University of Technology, Tartu, Estonia. (in Estonian).
- Vares, M.-L., Ruus, A., Nutt, N., Kubjas, A., & Raamets, J. (2021). Determination of Paper Plaster Hygrothermal Performance: Influence of Different Types of Paper on Sorption and Moisture Buffering. Journal of Building Engineering, 33, 101830. https://doi.org/10.1016/j.jobe.2020.101830
- Nutt, N., Kubjas, A., Nei, L., & Ruus, A. (2020). The Effects of Natural Paint on the Moisture Buffering Ability of Paper Plaster. Latvian Journal of Physics and Technical Sciences, 57 (5), 51−60. https://doi.org/10.2478/lpts-2020-0027
- Nutt, N., & Kubjas, A. (2020). Moisture Buffer Value of Composite Material Made of Clay-Sand Plaster and Wastepaper. Journal of Sustainable Architecture and Civil Engineering, 27 (2), 108−115. https://doi.org/10.5755/j01.sace.27.2.25391.
- Soolepp, M. (2019). The Effects of Different Production Methods on Hygrothermal Properties of Paper Plaster. Master’s Thesis. Tallinn University of Technology, Tartu, Estonia. (in Estonian).
- Soolepp, M., Ruus, A., Nutt, N., Kubjas, A., & Raamets, J. (2020). Hygrothermal performance of paper plaster: Influence of different types of paper and production methods on moisture buffering. In NSB 2020 – 12th Nordic Symposium on Building Physics, 6 – 9 September 2020. Tallinn, Estonia.
- Allikvee, K. (2019). Analysis of Paper Plaster Wastewater. Bachelor Thesis. Tallinn University of Technology, Tartu, Estonia. (in Estonian).
- Fatima, M., Ejaz, A., Sikandar, G., & Abbas, B. (2022). Recycling paper waste into plaster composite mixture. In 1st International Conference on Advances in Civil & Environmental Engineering, University of Engineering & Technology Taxila, Pakistan, 129.
- Rode, C. (2005). Moisture Buffering of Building Materials. Report BYG·DTU R-126. Available at: http://orbit.dtu.dk/fedora/objects/orbit:75984/datastreams/file_2415500/content
- Metslang, J. (2012). Vana maamaja käsiraamat. [Old Country House: Handbook]. Tallinn: Tammeraamat (in Estonian).
- Pere, R. (2008). Looduslikud ehitusmaterjalid. Seinad, põrand, katused ja siseviimistlus. [Natural Building Materials: Walls, Floor, Roofs and Interior Decorations]. Tallinn: AS Ajakirjade Kirjastus (in Estonian).
- Janssen, H., & Roels, A. (2009). Qualitative and Quantitative Assessment of Interior Moisture Buffering by Enclosures. Energy and Buildings, 41 (4), 382–394. https://doi.org/10.1016/j.enbuild.2008.11.007
- Phelipot-Mardelé, A., Collet, F., Jiang, Y., Lanos, C., Lawrence, M., Lemke, M. (2019). Moisture Buffering Capacity of Clay Based Plasters. Academic Journal of Civil Engineering, 37 (2), 363−370. https://doi.org/10.26168/icbbm2019.52
- Nutt, N., Kubjas, A., & Nei, L. (2020). Adding Waste Paper to Clay Plaster to Raise its Ability to Buffer Moisture. Proceedings of the Estonian Academy of Sciences, 69 (3), 179−185. https://doi.org/10.3176/proc.2020.3.01