Published since 1923
DOI: 10.33622/0869-7019
Russian Science Citation Index (RSCI) на платформе Web of Science


  • BUILDING MATERIALS AND PRODUCTS
  • Development Of Thermal Insulation Materials From The Waste Of Cardboard Production
  • UDC 691.11
    doi: 10.33622/0869-7019.2025.07.39-44
    Irina L. CHULKOVA, le5@inbox.ru
    Igor A. SELIVANOV, igoralk2014@mail.ru
    Siberian State Automobile and Highway University (SibADI), prospekt Mira, 5, Omsk 644080, Russian Federation
    Abstract. The formulations of building thermal insulation materials from moisture-saturated osprey pulp developed by the authors are presented. It has been established that osprey pulp, by virtue of its composition and structure, can be used as an independent binder, as well as in solutions with filler to obtain thermal insulation materials. The physico-mechanical and thermal engineering characteristics of osprey pulp thermal insulation materials meet the requirements for similar building materials manufactured in accordance with the state standard. The use of osprey pulp in building materials science technologies makes it possible to expand the range of areas for recycling cardboard production waste, reduce the negative impact on the environment and improve the environmental situation near waste storage sites, which is one of the directions of the strategy for the development of the building materials industry in the Russian Federation for the period up to 2030.
    Keywords: cardboard production waste, thermal insulation, osprey pulp, astringent, adhesion, building mortars
  • REFERENCES
    1. Batalin B. S., Selivanov I. A. Construction materials based on osprey - waste from the pulp and paper industry. Stroitel'nye materialy, 2004, no. 1, pp. 42-43. (In Russ.).
    2. Plyshevskij S. V., Kovsh A. L., Mel'nikova R. Ya., Salita A. V. Osprey waste: composition, properties and ways of disposal. Ekologiya na predpriyatii, 2016, no. 4(58), pp. 35-47. (In Russ.).
    3. Lovachevskij V. I. et al. Thermal insulation materials based on osprey waste from the pulp and paper industry. Sotrudnichestvo - katalizator innovacionnogo rosta : sb. materialov 4-go Belorussko-Pribaltijskogo foruma [Cooperation is a catalyst for innovative growth. Collection of materials of the 4th Belarusian-Baltic Forum (May 31 - June 1, 2018)]. Minsk, BNTU Publ., 2018, pp. 47-48. (In Russ.).
    4. Plotnikova G. V., Dashko L. V., Klyuchnikov V. Yu., Sinyuk V. D. Application of thermal analysis methods in the study of cement stone. Problemy pozharnoj bezopasnosti, 2013, no. 2(65). (In Russ.).
    5. Makarova I. A., Lohova N. A. Physico-chemical methods of building materials research. Bratsk, BrGU Publ., 2011. 139 p. (In Russ.).
    6. Selivanov I. A., CHulkova I. L., Galdina V. D. Study of the structure formation of organomineral compositions with fibrous filler by electron microscopy. Promyshlennoe i grazhdanskoe stroitel'stvo, 2019, no. 12, pp. 41-47. (In Russ.).
    7. Dul'kin D. A., Blinova L. A., Blinushova O. I. The effect of the degree of grinding of secondary fiber fractions on the strength properties of cardboard. Himiya rastitel'nogo syr'ya, 2007, no. 1, pp. 85-89. (In Russ.).
  • For citation: Chulkova I. L., Selivanov I. A. Development of Thermal Insulation Materials From the Waste of Cardboard Production. Promyshlennoe i grazhdanskoe stroitel'stvo [Industrial and Civil Engineering], 2025, no. 7, pp. 39-44. (In Russ.). doi: 10.33622/0869-7019.2025.07.39-44


BACK