202
Views
2
CrossRef citations to date
0
Altmetric
Original Articles

Effect of novel scavengers based on phenolic compounds on formaldehyde emission and physical-mechanical properties of particleboard

, , &
Pages 954-964 | Received 29 Jun 2021, Accepted 31 Aug 2021, Published online: 01 Oct 2021

References

  • Alkhalf, M. I. and Mirghani, M. E. S. (2017) Detection of formaldehyde in cheese using FTIR spectroscopy. Internation Food Research Journal, 24, 496–500.
  • Ayrilmis, N. and Kaymakci, A. (2012) Reduction of formaldehyde emission from light MDF panels by adding chestnut shell flour. Holzforschung, 66, 443–446.
  • Ayrilmis, N., Lee, Y. K., Kwon, J. H., Han, T. H. and Kim, H. J. (2016) Formaldehyde emission and VOCs from LVLs produced with three grades of urea-formaldehyde resin modified with nanocellulose. Building and Environment, 97, 82–87.
  • Ayrilmis, N., Kapti, T., Gürel, A. and Ohlmeyer, M. (2018) Reducing formaldehyde emission from wood-based panels by modification of UF and MUF resins with condensates obtained from kiln-drying of wood. Holzforschung, 72, 753–757.
  • Cademartori, P. H. G., Artner, M. A., De Freitas, R. A. and Esteves Magalhães, W. L. (2019) Alumina nanoparticles as formaldehyde scavenger for urea-formaldehyde resin: Rheological and in-situ cure performance. Composite Part B, 176, 107281–107290.
  • Costa, N. A., Pereira, J., Ferra, J., Cruz, P., Martins, J., Magalhaes, F. D., Mendes, A. and Carvalho, L. H. (2013) Scavengers for achieving zero formaldehyde emission of wood-based panels. Wood Science and Technology, 47, 1261–1272.
  • Dentinho, I. V. (2017) Formaldehyde-scavenging nanoparticles for high performance resins. Instituto Superior Técnico, 3, 1–19.
  • EN 310 (1993) Wood Based Panels, Determination of Modulus of Elasticity in Bending and Bending Strength (Brussels, Belgium: European Committee for Standardization).
  • EN 312 (2010) Particleboards-specifications (Brussels, Belgium: European Committee for Standardization).
  • EN 317 (1993) Particleboard and Fiberboards, Determination of Swelling in Thickness After Immersion in Water (Brussels, Belgium: European Committee for Standardization).
  • EN 319 (1993) Particleboards and Fiberboards, Determination of Tensile Strength Perpendicular to the Plane of the Board (Brussels, Belgium: European Committee for Standardization).
  • EPF (2020) Wood-based Panel Production Declined in 2019. Wood Based Panels INTERNATIONAL. https://www.wbpionline.com/news/epf-stats-show-wood-based-panel-production-declined-in-2019-8030459.
  • Fagnani, E., Melios, C. B., Pezza, L. and Pezza, H. R. (2003) Chromotropic acid-formaldehyde reaction in strongly acidic media, the role of dissolved oxygen and replacement of concentrated sulphuric acid. Talanta, 60, 171–176.
  • Ghania, A., Ashaaria, Z., Bawona, P. and Lee, S. H. (2018) Reducing formaldehyde emission of urea formaldehyde-bonded particleboard by addition of amines as formaldehyde scavenger. Building and Environment, 142, 188–194.
  • IARC (2012) Chemical Agents and Related Occupations: A Review of Human Carcinogens Monographs on the Evaluation of the Carcinogenic Risks to Humans (Lyon, France).
  • ISO 12460-4 (2016) Wood-based Panels, Determination of Formaldehyde Release – Part 4: Desiccator Method (Geneva, Switzerland: International Organization for Standardization).
  • JIS A 5908 (1994) Particleboards (Tokyo, Japan: Japanese Standards Association (JSA)).
  • Kordkheili, H. Y., Pizzi, A. and Niyatzade, G. (2016) Reduction of formaldehyde emission from particleboard by phenolated kraft lignin. Journal of Adhesive, 92, 485–497.
  • Krishnamurthy, A., Thakkar, H., Rownaghi, A. A. and Rezaei, F. (2018) Adsorptive removal of formaldehyde from air using mixed-metal oxides. Industrial and Engineering Chemistry Research, 57, 12916–12925.
  • Liu, K., Su, C., Ma, W., Li, H., Zeng, Z. and Li, L. (2020) Free formaldehyde reduction in urea-formaldehyde resin adhesive: Modifier addition effect and physicochemical property characterization. BioResources, 15, 2339–2355.
  • Migneault, S., Koubaa, A., Riedl, B., Nadji, H., Deng, J. and Zhang, S. (2011) Potential of pulp and paper sludge as a formaldehyde scavenger agent in MDF resins. Holzforschung, 65, 403–409.
  • Moriguchi, T., Yano, K., Nakagawa, S. and Kaji, F. (2003) Elucidation of adsorption mechanism of bone-staining agent alizarin red S on hydroxyapatite by FT-IR microspectroscopy. Journal of Colloid and Interface Science, 260, 19–25.
  • Neimsuwan, T., Siramon, P., Hengniran, P. and Punsuvon, V. (2017) Effect of tannin addition as a bio-scavenger on formaldehyde content in particleboard. Journal of Tropical Forest Research, 1, 45–56.
  • Nemli, G. and Öztürk, I. (2006) Influences of some factors on the formaldehyde content of particleboard. Building and Environment, 41, 770–774.
  • Nigam, N., Kumar, S., Dutta, P. K. and Ghosh, T. (2015) Studies on thermo-optic property of chitosan–alizarin yellow GG complex: a direction for devices for biomedical applications. Bulletin of Mathematical Sciences, 38, 1639–1643.
  • Pal, A., Dey, T. K., Debnath, A. K., Bhushan, B., Sahu, A. K., Bindal, R. C. and Kar, S. (2017) Mixed-matrix membranes with enhanced antifouling activity: probing the surface-tailoring potential of Tiron and chromotropic acid for nano-TiO2. Royal Society Open Science, 4, 170368–170375.
  • Park, H. S. and Lee, H. H. (2009) A novel manufacturing method of urea-formaldehyde resin with the titanium dioxide for reducing formaldehyde emission. Journal of Agricultural Science, 36, 11–18.
  • Ryu, D. Y., Shimohara, T., Nakabayashi, K., Miyawaki, J., Park, J. and Yoon, S. H. (2019) Urea/nitric acid co-impregnated pitch-based activated carbon fiber for the effective removal of formaldehyde. Journal of Industrial and Engineering Chemistry, 80, 98–105.
  • Siimer, K., Kaljuvee, T., Christjanson, P. and Lasn, I. (2006) Curing of urea-formaldehdye resins on a wood substrate. Journal of Thermal Analalysis and Calorimetry, 84, 71–77.
  • Taghiyari, H. R., Hosseini, S. B., Ghahri, S., Ghofrani, M. and Papadopoulos, A. N. (2020) Formaldehyde emission in micron-sized wollastonite-treated plywood bonded with soy flour and urea-formaldehyde resin. Applied Sciences, 10, 6709–6723.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.