Banevičienė Vilma, Malaiškienė Jurgita, Boris Renata, Zach Jiri
Laboratory of Composite Materials, Faculty of Civil Engineering, Institute of Building Materials, Vilnius Gediminas Technical University, 10223 Vilnius, Lithuania.
Institute of Building Materials and Components, Faculty of Civil Engineering, Brno University of Technology, 60200 Brno, Czech Republic.
Materials (Basel). 2022 Jan 28;15(3):1035. doi: 10.3390/ma15031035.
Pervious concrete (PCO) has many advantages and applications, such as water pooling reduction, noise attenuation, replenishment of groundwater reserves, etc. However, the use of pervious concrete is limited due to its low compressive strength and durability, especially as a result of portlandite leaching from concrete exposed to flowing water. The effects of active additives (nano SiO (NS) spent catalyst generated at the fluid catalytic cracking unit (FCCCw) and paper sludge waste burned at 700 °C (PSw)) along with particle size distribution of the coarse aggregate on the properties and durability of pervious concrete were determined in the research. Active additives used in the binder were found to reduce portlandite leaching from concrete exposed to flowing water to significantly increase the resistance of concrete to freezing and thawing cycles and to increase sound absorption, compressive strength and infiltration rate. In addition, industrial waste (FCCCw and PSw) used as active additives significantly reduced the use of clinker in concrete applied in the construction of water pervious systems. The coarse aggregate size distribution had the greatest effect on the density, ultrasound pulse velocity (UPV), porosity, compressive strength and infiltration rate of pervious concrete.
透水混凝土(PCO)有许多优点和应用,比如减少积水、降低噪音、补充地下水资源储备等。然而,透水混凝土的使用受到限制,因为其抗压强度和耐久性较低,特别是当暴露于流动水的混凝土中的氢氧化钙发生沥滤时。本研究确定了活性添加剂(纳米二氧化硅(NS)、流化催化裂化装置产生的废催化剂(FCCCw)以及在700°C下燃烧的纸污泥废料(PSw))以及粗集料的粒径分布对透水混凝土性能和耐久性的影响。研究发现,在胶凝材料中使用活性添加剂可减少暴露于流动水的混凝土中的氢氧化钙沥滤,显著提高混凝土的抗冻融循环能力,并提高吸音性、抗压强度和渗透速率。此外,用作活性添加剂的工业废料(FCCCw和PSw)显著减少了用于透水系统建设的混凝土中熟料的用量。粗集料粒径分布对透水混凝土的密度、超声脉冲速度(UPV)、孔隙率、抗压强度和渗透速率影响最大。