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Nitrite producing bacteria inhibit reinforcement bar corrosion in cementitious materials

机译:产生亚硝酸盐的细菌抑制水泥材料中钢筋的腐蚀

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摘要

Chemicals and synthetic coatings are widely used to protect steel against corrosion. Bio-based corrosion inhibition strategies can be an alternative in the arising bioeconomy era. To maintain the good state of steel reinforcement in cracked concrete, microbe-based self-healing cementitious composites (MSCC) have been developed. Yet, proposed strategies involve reasonably slow crack filling by biomineralization and thus risk the possible rebar corrosion during crack healing. Here we upgrade the rebar protection to a higher level by combining MSCC with microbial induced corrosion inhibition. Presented NO3 reducing bacterial granules inhibit rebar corrosion by producing the anodic corrosion inhibitor NO2 and meanwhile heal a 300-µm-wide crack in 28 days. During 120 days exposure to 0.5 M Cl solution, the rebars in cracked MSCC keep showing open circuit potentials above the critical value of −250 mV and they lose less than 2% of the total rebar material which corresponds to half the material loss in cracked plain mortar. Overall, the obtained rebar protection performance is comparable with that of uncracked mortar and mortar containing chemical inhibitor, hence the microbe-based system becomes an alternative to the traditional methods.
机译:化学药品和合成涂料被广泛用于保护钢不受腐蚀。在新兴的生物经济时代,基于生物的腐蚀抑制策略可以作为替代方案。为了保持开裂混凝土中钢筋的良好状态,已经开发了基于微生物的自修复水泥复合材料(MSCC)。然而,提出的策略涉及通过生物矿化来相当缓慢地填充裂纹,因此冒着在裂纹愈合期间可能发生钢筋腐蚀的风险。在这里,我们通过将MSCC与微生物诱导的腐蚀抑制相结合,将钢筋保护提高到更高的水平。提出的还原型NO3 -细菌颗粒通过产生阳极腐蚀抑制剂NO2 -抑制钢筋腐蚀,并在28天之内治愈300微米宽的裂纹。在暴露于0.5 M Cl -溶液的120天中,破裂的MSCC中的钢筋一直显示出高于-250 mV临界值的开路电势,并且损失的钢筋少于总钢筋材料的2%破裂的普通砂浆的材料损失减少了一半。总体而言,所获得的钢筋保护性能可与未开裂的砂浆和含化学抑制剂的砂浆相媲美,因此基于微生物的系统成为传统方法的替代方案。

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