Use of macromolecules lignosulfonate and graphene oxide to prepare non-autoclaved aerated concrete

被引:0
|
作者
Ali, Imran [1 ]
Burakova, Irina V. [2 ]
Burakov, Alexander E. [2 ]
Aljaboobi, Dhafer Z. M. [2 ]
Yarkin, Vladimir O. [2 ]
Tkachev, Alexey G. [2 ]
Bentalib, Abdulaziz [3 ]
Imanova, Gunel [4 ,5 ,6 ]
机构
[1] Cent Univ, Jamia Millia Islamia, Dept Chem, New Delhi 110025, India
[2] Tambov State Tech Univ, Dept Equipment & Technol Nanoprod Manufacture, 106-5 Sovetskaya St, Tambov 392000, Russia
[3] King Saud Univ, Coll Engn, Dept Chem Engn, POB 800, Riyadh 11421, Saudi Arabia
[4] Minist Sci & Educ Republ Azerbaijan, Inst Radiat Problems, 9B Vahabzade Str, AZ-1143 Baku, Azerbaijan
[5] Khazar Univ, Dept Phys & Elect, 41 Mahsati Str, AZ-1096 Baku, Azerbaijan
[6] Western Caspian Univ, AZ-1001 Baku, Azerbaijan
关键词
Concrete; Nanomaterials; Lignosulfonate; Compressive and bending strength; Water absorption; Thermal conductivity; PORTLAND-CEMENT; MECHANICAL-PROPERTIES; EARLY HYDRATION; PERFORMANCE;
D O I
10.1016/j.ijbiomac.2024.136763
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The development of new structural materials with thermal insulation properties is urgently need in the construction of smart buildings. Besides, there is a need to develop environmentally friendly and sustainable concrete mix designs. Lignosulfonate (LS) macromolecule and graphene oxide (GO) were used to prepare nonautoclaved aerated concrete (NAC). The addition of a complex GO/LS additive of the composition (0.16/ 0.0002 wt%) increased the compressive strength by 54 %, and bending strength by 45 % at the age of 28 days' strength gain. The addition of an effective complex GO/LS additive to NAC made it possible to achieve a reduction in water absorption by up to 63 % and thermal conductivity by up to 29 % in comparison. The thermal conductivity coefficient of such NAC specimens was 0.092 W/m & sdot;K with water absorption of 9 %. The options for the interactions of the GO/LS modifier with calcium hydroaluminates using the type of ion exchange were proposed. Thus, the introduction of GO/LS nano modifier contributed to high-quality filling of free areas of the cement mixture with mineral formations, which helpd to increase the strength of the aerated concrete and its durability.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] The use of anthracite fly ash for the production of autoclaved aerated concrete
    Drochytka, Rostislav
    Cerny, Vit
    Kulisek, Karel
    RENEWABLE AND SUSTAINABLE ENERGY II, PTS 1-4, 2012, 512-515 : 3003 - 3006
  • [42] Non-autoclaved high strength cellular concrete from alkali activated slag
    Esmaily, H.
    Nuranian, H.
    CONSTRUCTION AND BUILDING MATERIALS, 2012, 26 (01) : 200 - 206
  • [43] POSSIBILITIES FOR THE USE OF WASTE PERLITE IN THE PRODUCTION OF AERATED AUTOCLAVED CONCRETE
    Hust'avova, Jana
    Sebestova, Pavlina
    Meszarosova, Lenka
    Cerny, Vit
    Drochytka, Rostislav
    MATERIALI IN TEHNOLOGIJE, 2020, 54 (03): : 373 - 378
  • [44] Investigating the use of autoclaved aerated concrete as an infill in reinforced concrete sandwich panels
    M. ElKashef
    M. AbdelMooty
    Materials and Structures, 2015, 48 : 2133 - 2146
  • [45] Investigating the use of autoclaved aerated concrete as an infill in reinforced concrete sandwich panels
    ElKashef, M.
    AbdelMooty, M.
    MATERIALS AND STRUCTURES, 2015, 48 (07) : 2133 - 2146
  • [46] Thermogravimetry analysis, compressive strength and thermal conductivity tests of non-autoclaved aerated Portland cement-fly ash-silica fume concrete
    Narattha, Chalermphan
    Thongsanitgarn, Pailyn
    Chaipanich, Arnon
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2015, 122 (01) : 11 - 20
  • [47] Use of untreated phosphogypsum as a raw material for autoclaved aerated concrete preparation
    Luo, Yang
    Ma, Bing
    Liang, Feiyue
    Xue, Zhiyuan
    Qian, Binbin
    Wang, Jiaqing
    Zhou, Lianzhu
    Zang, Jun
    Liang, Ruihuan
    Li, Yanbo
    Hu, Yueyang
    JOURNAL OF BUILDING ENGINEERING, 2023, 64
  • [48] Preliminary results on the use of GFRP as an external reinforcement for autoclaved aerated concrete
    Memari, AM
    Eminaga, A
    ADVANCES IN BUILDING TECHNOLOGY, VOLS I AND II, PROCEEDINGS, 2002, : 865 - 872
  • [49] The Use of Bamboo and Autoclaved Aerated Concrete Block to Reduce the Weight of Precast Concrete Beam
    Dewi, Sri Murni
    Simatupang, Roland Martin
    Waluyohadi, Indra
    GREEN CONSTRUCTION AND ENGINEERING EDUCATION FOR SUSTAINABLE FUTURE, 2017, 1887
  • [50] A study of mechanical and microstructures properties of autoclaved aerated concrete containing nano-graphene
    Seddighi, Fazel
    Pachideh, Ghasem
    Salimbahrami, Seyyedeh Behnoush
    JOURNAL OF BUILDING ENGINEERING, 2021, 43