Stonys R, Kuznetsov D, Krasnikovs A, Škamat J, Baltakys K, Antonovič V, Černašėjus O
Vilnius Gediminas Technical University, Sauletekio al. 11, LT-10223, Vilnius, Lithuania.
National University of Science and Technology "MISIS'', Leninsky pr. 4, Moscow 119049, Russia.
J Environ Manage. 2016 Jul 1;176:149-56. doi: 10.1016/j.jenvman.2016.03.045. Epub 2016 Apr 6.
The paper deals with the mineral wool production waste (cupola dust - CD), presents CD characterization and aims to reuse CD in production of refractory concrete with calcium aluminate cement. The study of CD covers its chemical, phase and thermal analyses along with the morphological study and determination of particles size distribution. Zeta-potential, electrical conductivity and pH values of CD suspension are presented in the paper as well. Commercial microsilica additive in refractory concrete has been replaced with cupola dust. Compositions of refractory concrete have been prepared by incorporating 1%, 2% and 3% of CD. The bulk density, ultrasonic wave velocity, cold crushing strength and thermal shock resistance of the created refractory concrete have been determined. Based on experimental results, it has been found that cupola dust may be used for the production of refractory concrete. The environmental impact related to the CD reuse in refractory concrete production has been evaluated as well.
本文论述了矿棉生产废料(冲天炉粉尘 - CD),介绍了CD的特性,并旨在将其用于生产含铝酸钙水泥的耐火混凝土。对CD的研究涵盖了其化学分析、相分析和热分析,以及形态学研究和颗粒尺寸分布测定。文中还给出了CD悬浮液的zeta电位、电导率和pH值。耐火混凝土中的商用微硅粉添加剂已被冲天炉粉尘取代。通过掺入1%、2%和3%的CD制备了耐火混凝土的配方。测定了所制备耐火混凝土的体积密度、超声波速度、冷压强度和抗热震性。基于实验结果,发现冲天炉粉尘可用于生产耐火混凝土。还评估了在耐火混凝土生产中回用CD所产生的环境影响。