Department of Materials Engineering and Chemistry, Faculty of Civil Engineering, Czech Technical University in Prague, Thákurova 7, 166 29 Prague, Czech Republic.
Department of Materials Engineering and Chemistry, Faculty of Civil Engineering, Czech Technical University in Prague, Thákurova 7, 166 29 Prague, Czech Republic.
Waste Manag. 2018 Oct;80:89-100. doi: 10.1016/j.wasman.2018.09.004. Epub 2018 Sep 7.
Wood chips ash coming from biomass heating plant is studied as an eco-friendly mineral admixture in mortar mix design. The raw material was mechanically activated by milling in a vibratory disc mill to a degree of fineness comparable to cement. For the mortars with ash dosage, basic physical, mechanical, hygric, and thermal properties is accessed. The mortars with partial Portland cement replacement with wood chips ash exhibited good functional properties for all studied ash dosages. With increasing amount of the ash used, the average pore diameter decreased due to the partial filler effect of WCHA in mortar mix. The strength activity index was very high for all studied mortars and gave evidence of the wood chips ash pozzolanity. The pozzolan effectiveness coefficient varied from 1.52 to 0.59, which proved the pozzolanity of the studied ash and synergic effects in the Portland cement-ash-water system. The results of leaching tests showed, the chlorides contained in ash were safely immobilized in the silicate matrix. The environmental evaluation revealed decrease in both carbon dioxide production and energy consumption by the use of wood chips ash in mortar mix. For the mortar with 20% substitution of Portland cement with wood chips ash, it represents 15% of CO and 16% of energy, as compared with the reference mortar mix. As the developed mortars possess good functional and environmental parameters the analyzed wood chips ash can be considered as an eco-efficient low-cost alternative to other pozzolans for production of blended binders.
从生物质加热厂来的木片灰被研究为一种生态友好型的矿物掺和料,用于砂浆配合比设计。原材料在振动盘磨机中通过机械活化,使其细度与水泥相当。对于掺有灰分的砂浆,评估了其基本物理、机械、吸湿和热性能。用木片灰部分替代波特兰水泥的砂浆表现出所有研究灰分剂量的良好功能特性。随着灰分用量的增加,由于 WCHA 在砂浆中的部分填充作用,平均孔径减小。对于所有研究的砂浆,强度活性指数都非常高,证明了木片灰的火山灰活性。火山灰有效性系数在 1.52 到 0.59 之间变化,这证明了研究灰分的火山灰活性以及波特兰水泥-灰分-水系统中的协同效应。浸出试验的结果表明,灰分中所含的氯化物在硅酸盐基质中得到了安全固定。环境评估表明,在砂浆中使用木片灰可以减少二氧化碳的排放和能源消耗。对于用 20%的木片灰替代波特兰水泥的砂浆,与参考砂浆相比,其 CO 排放量减少了 15%,能源消耗减少了 16%。由于所开发的砂浆具有良好的功能和环境参数,因此所分析的木片灰可以被认为是一种生态高效、低成本的替代其他火山灰的混合胶凝材料。