Water resistance evaluation of a MFU resins with different molar ratio catalyzed with citric acid
暂无分享,去创建一个
[1] J. Pereira,et al. Valorisation of non-timber by-products from maritime pine (Pinus pinaster, Ait) for particleboard production , 2021 .
[2] Jorge Santos,et al. New Cardoon (Cynara cardunculus L.) Particleboards Using Cardoon Leaf Extract and Citric Acid as Bio-adhesive , 2021, Materials Circular Economy.
[3] G. Du,et al. Preparation and properties of a novel type of tannin-based wood adhesive , 2020, The Journal of Adhesion.
[4] D. Dziurka,et al. The Application of Oak Bark Powder as a Filler for Melamine-Urea-Formaldehyde Adhesive in Plywood Manufacturing , 2020 .
[5] S. Shi,et al. A high-performance soybean meal-based plywood adhesive prepared via an ultrasonic process and using significantly lower amounts of chemical additives , 2020 .
[6] Tzung-Han Chou,et al. Preparation and evaluation of particleboard from insect rearing residue and rice husks using starch/citric acid mixture as a natural binder , 2020, Biomass Conversion and Biorefinery.
[7] F. Magalhães,et al. Impact of condensation degree of melamine-formaldehyde resins on their curing behavior and on the final properties of high-pressure laminates , 2020 .
[8] Zhongyuan Zhao,et al. Further Exploration of Sucrose–Citric Acid Adhesive: Investigation of Optimal Hot-Pressing Conditions for Plywood and Curing Behavior , 2019, Polymers.
[9] V. Causin,et al. Influence of synthesis method and melamine content of urea-melamine-formaldehyde resins to their features in cohesion, interphase, and adhesion performance , 2019, Journal of Industrial and Engineering Chemistry.
[10] Zhongyuan Zhao,et al. Further Exploration of Sucrose-Citric Acid Adhesive: Synthesis and Application on Plywood , 2019, Polymers.
[11] F. Magalhães,et al. Partial replacement of melamine by benzoguanamine in MUF resins towards improved flexibility of agglomerated cork panels , 2018, International Journal of Adhesion and Adhesives.
[12] G. Du,et al. Effects of Molar Ratio and pH on the Condensed Structures of Melamine-Formaldehyde Polymers , 2018, Materials.
[13] C. Fuentealba,et al. Exterior grade plywood adhesives based on pine bark polyphenols and hexamine , 2018, Industrial Crops and Products.
[14] A. Pizzi,et al. Reactions with Wood Carbohydrates and Lignin of Citric Acid as a Bond Promoter of Wood Veneer Panels , 2018, Polymers.
[15] Q. Gao,et al. Effects of Compounded Curing Agents on Properties and Performance of Urea Formaldehyde Resin , 2017, Journal of Polymers and the Environment.
[16] T. A. Prayitno,et al. Bonding Ability of a New Adhesive Composed of Citric Acid-Sucrose for Particleboard , 2016 .
[17] Zhongyuan Zhao,et al. Effects of the Addition of Citric Acid on Tannin-Sucrose Adhesive and Physical Properties of the Particleboard , 2015 .
[18] J. Ferra,et al. Evaluation of Bonding Performance of Amino Polymers Using ABES , 2014 .
[19] A. Mendes,et al. Scavengers for achieving zero formaldehyde emission of wood-based panels , 2013, Wood Science and Technology.
[20] O. Campanella,et al. Impact of urea on the three-dimensional structure, viscoelastic and thermal behavior of iota-carrageenan. , 2013, Carbohydrate polymers.
[21] Michel Perrier,et al. The forest biorefinery and its implementation in the pulp and paper industry: Energy overview , 2013 .
[22] K. Umemura,et al. Investigation of a new natural adhesive composed of citric acid and sucrose for particleboard , 2013, Journal of Wood Science.
[23] J. Ferra,et al. Study of influence of synthesis conditions on properties of melamine–urea formaldehyde resins , 2012 .
[24] K. Umemura,et al. Application of citric acid as natural adhesive for wood , 2012 .
[25] E. G. Ferrer,et al. Vibrational Study and Force Field of the Citric Acid Dimer Based on the SQM Methodology , 2011 .
[26] A. Sviklas,et al. Reaction of Urea with Citric Acid , 2005 .
[27] M. Dunky. Adhesives based on Formaldehyde condensation resins , 2004 .
[28] M. Dunky,et al. Urea–formaldehyde (UF) adhesive resins for wood , 1998 .