微生物诱导矿化抑制金属腐蚀:机制、设计策略及展望
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李伟华, 李中, 张丹妮, 徐大可
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Microbial-induced Mineralization for Inhibiting Metal Corrosion: Mechanism, Design Strategies and Prospects
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LI Weihua, LI Zhong, ZHANG Danni, XU Dake
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表1 微生物矿化抑制不同金属腐蚀效果的比较
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Table 1 Comparison of the inhibitory effects of microbial mineralization on corrosion of different metals
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| Material | Bacterium | Testing environment | Inhibition efficiency |
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| X70 carbon steel[36] | E. coli MBD | Simulated seawater | 90%1 | | Q235 steel[81] | ΔflrA mutant strains of Shewanella putrefaciens | Artificial seawater | 26%1 | | Mild steel[41] | Pseudomonas putida | Minimal broth | 96%1 | | Mild steel[77] | Pseudomonas flava | BSS medium | 89%2 | | Mild steel[77] | Pseudomonas stutzeri | BSS medium | 69%2 | | 316L stainless steel[78] | Bacillus cereus | Artificial seawater | 95%2 | | A36 steel[82] | Vibrio neocaledonicus sp. | Artificial seawater | 97%2 | | Alloy steel[83] | Pseudoalteromonas piscicida | 2216E medium | 86%1 | | 2A14 Aluminum alloy[84] | Bacillus subtilis | 2216E medium | 93%2 | | Low-alloy steel[46] | Bacillus subtilis | 2216E medium | 88%2 | | Low-alloy steel[77] | Pseudoalteromonas lipolytica | Artificial seawater | 98%2 | | Low-alloy steel[19] | Pseudoalteromonas lipolytica Δ17125 | 2216E medium | 98%2 | | Low-alloy steel[85] | Pseudoalteromonas lipolytica | 2216E medium | 62%2 | | Low-alloy steel[86] | Pseudoalteromonas lipolytica | 2216E medium | 28%2 |
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