Enhancing the hydrophobicity of the mineral wool through surface modification with organo-silane

被引:1
|
作者
Goswami, Abhijeet D. [1 ,2 ]
Shinde, Dnyaneshwar G. [1 ,2 ]
Singh, Sakshi [3 ]
Jadhav, Ananda J. [4 ]
Pinjari, Dipak V. [1 ,2 ]
机构
[1] Inst Chem Technol, Dept Polymer, Mumbai 400019, India
[2] Inst Chem Technol, Surface Engn Dept, Mumbai 400019, India
[3] Inst Chem Technol, Polymer & Surface Engn Dept, Marathwada Campus, Jalna 431203, India
[4] Bharati Vidyapeeth Deemed Be Univ, Coll Engn, Dept Chem Engn, Pune 411043, India
关键词
Superhydrophobic surface; Mineral wool; Organo-silane; Sonication; THERMAL-CONDUCTIVITY; CONTACT-ANGLE;
D O I
10.1016/j.jics.2023.101085
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Mineral wool materials are consistently preferred material to be used for building thermal insulation because of their low heat conductivity, making energy-efficient structures impossible to construct without highly insulating thermal envelopes. A mineral wool with a hydrophobic external surface could be used for several applications where hydrophobicity would be helpful. Organo-silanes are one of the most promising materials to impart hydrophobic character to varied surfaces to achieve performance properties such as dust-resistant coatings on building glass, solar panels with self-cleaning surfaces, biofouling resistant paints, self-cleaning car windshields etc. In this study, mineral wool was treated with methyltrimethoxysilane (MTMS) to achieve hydrophobic surfaces.A Fourier Transform Infrared Spectrometer is used to confirm the successful deposition of organosilane/ siloxane networks on glass wool fibre surfaces. The hydrophobicity of treated wool was assessed and quantified using a contact angle measurement. Contact angle measurement was used to quantify the hydrophobicity of treated wool. The thermal conductivity of treated mineral wool fiber was calculated using the portable Lee's disc method. To determine the thermal stability and crystallinity of the treated wool, X-ray diffraction spectroscopy and thermogravimetric analysis were used, respectively. The treated mineral wool exhibited excellent thermal stability up to 800 degrees C, and wettability tests proved the treated surface highly hydrophobic, allowing water droplets to roll off with contact angles up to 134.9 degrees. Surface modification reduced thermal conductivity by 20%, showing good thermal resistance. Here, we show easy and sustainable methods of treating mineral wool surfaces, which can serve as a thermal insulation option under humid conditions.
引用
收藏
页数:8
相关论文
共 50 条
  • [32] Enhancing surface free energy and hydrophilicity through chemical modification of microstructured titanium implant surfaces
    Rupp, F
    Scheideler, L
    Olshanska, N
    de Wild, M
    Wieland, M
    Geis-Gerstorfer, J
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2006, 76A (02) : 323 - 334
  • [33] Enhancing the high-frequency signal performance through surface morphological modification of Cu interconnects
    Chiang, Ying-Chih
    Chang, Yu-Hsun
    Yang, Zhao-Yu
    Yu, Chun-Jou
    Chou, Wei-Ling
    Ho, Cheng-En
    MEASUREMENT, 2025, 250
  • [34] Enhancing the interfacial bonding between PE fibers and cementitious matrices through polydopamine surface modification
    Rezaie, Ali Bashiri
    Liebscher, Marco
    Ranjbarian, Majid
    Simon, Frank
    Zimmerer, Cordelia
    Drechsler, Astrid
    Frenzel, Ralf
    Synytska, Alla
    Mechtcherine, Viktor
    COMPOSITES PART B-ENGINEERING, 2021, 217
  • [35] Enhancing antibacterial performance and stability of implant materials through surface modification with polydopamine/silver nanoparticles
    Cui, Junnan
    Shu, Haobo
    Gu, Xin
    Wu, Shutong
    Liu, Xiaodan
    Cao, Pan
    COLLOIDS AND SURFACES B-BIOINTERFACES, 2025, 245
  • [36] Enhancing the Cytocompatibility of Cobalt-Iron Ferrite Nanoparticles Through Chemical Substitution and Surface Modification
    Gonzalez, Christian Chapa
    Urquizo, Israel Alejandro Flores
    Tozcano, Dayana Irais Maynez
    Gomez, Laura Elizabeth Valencia
    Perez, Jorge Alberto Roacho
    ADVANCED MATERIALS INTERFACES, 2023, 10 (18)
  • [37] Enhancing multi-crystalline silicon wafer performance through surface modification and AZO treatment
    Krishnan, Akhil
    Guruswamy, Aravindan
    Bhargav, P. Balaji
    Ramasamy, P.
    SURFACE ENGINEERING, 2023, 39 (7-12) : 823 - 835
  • [38] Enhancing performance of molybdenum doped strontium ferrite electrode by surface modification through Ni infiltration
    Xu, Jiahui
    Wan, Shuaibin
    Wang, Yao
    Huang, Su
    Yuan, Zhihao
    Chen, Fanglin
    Zhang, Yanxiang
    Liu, Tong
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (18) : 10876 - 10891
  • [39] Enhancing Native Plant Establishment in Mine Tailings under Drought Stress Conditions through the Application of Organo-Mineral Amendments and Microbial Inoculants
    Atika, Madline
    Leila, Benidire
    Pereira, Sofia I. A.
    Castro, Paula M. L.
    Ali, Boularbah
    PLANTS-BASEL, 2024, 13 (06):
  • [40] Enhancing mechanical performance in SLS-printed PA12-slate composites through amino-silane treatment of mineral waste
    Nobre, Luis
    Barros, Daniel
    Bessa, Joao
    Cunha, Fernando
    Machado, Michael
    Mendonca, Joao P.
    Luis, Jorge
    Oliveira, Martinho
    Machado, Paulo
    Fernandes, Cesar
    Fangueiro, Raul
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2024, 134 (5-6): : 2979 - 2992