方解石
碳酸钙
自来水
硫酸
硫酸盐
抗压强度
化学
钙
核化学
碳化作用
醋酸
活性污泥
材料科学
废水
矿物学
化学工程
复合材料
冶金
环境工程
生物化学
环境科学
工程类
作者
Kirthi Chetty,Ulf Garbe,Zhiyang Wang,Shuxin Zhang,Timothy J. McCarthy,Faisal I. Hai,Guangming Jiang
标识
DOI:10.1080/21650373.2022.2153389
摘要
Using waste-activated sludge as a source for non-axenic sulfate-reducing bacterial (SRB) granules, this study developed an innovative bioconcrete with 1% and 2% SRB granules. The mechanical properties (AS 1012.9 and AS 1012.21) and self-healing performance of bioconcrete was systematically examined. The 28-d compressive strength of bioconcrete samples met the design requirement of 50 MPa and the general limit of 13% for average volume of permeable voids (AVPV). Within 3–4 weeks, both 1% and 2% bioconcrete samples precipitated 300–400 µm of calcite in different water media such as glucose, calcium acetate, tap water, and real wastewater. The SEM analysis revealed that SRB granules survived mortar incorporation and precipitated calcium carbonate in the form of calcite which were further confirmed by EDS and XRD analysis. The tap water healed 1% and 2% bioconcrete samples had water permeabilities 64.2% and 69.9% lower than the control, respectively. The mass loss in 5% sulfuric acid was 3.8% and 3.2% less, respectively, for 1% and 2% bioconcrete specimens with surface calcite deposition after 120 d.
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