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The strengthening effect of a static magnetic field on activated sludge activity at low temperature

机译:低温下静磁场对活性污泥活性的增强作用

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The strengthening effects of static (homopolar and heteropolar) magnetic fields (MF) on microorganisms were compared in activated sludge degrading organic matter at low temperature. The TTC dehydrogenase activity improved substantially through external heteropolar MF intensification, and led to the highest COD removal rate of 94.9% at 5 ℃. Phospholipid fatty acid analysis showed that C16:1x7c, C18:1x7c and C18:1x9c were the essential unsaturated fatty acids in cell membrane at low temperature (4– 15 ℃), accounting for the majority of the whole unsaturated fatty acids. The MF effect increased the Gram-negative bacteria content to improve the cold adaptability. Shannon–Wiener diversity analysis demonstrated the samples with heteropolar MF had a higher PLFA diversity index (1.17–1.25) than that with homopolar MF (0.89–1.13). AFM observation showed MF smoothed part of the microbial cell surface, with some remaining distinct protuberances. Heteropolar MF enhancement performance is much more effective than that of the homopolar MF with identical plate distance.
机译:在低温下活性污泥降解有机物的过程中,比较了静态(同极性和异极性)磁场(MF)对微生物的增强作用。 TTC脱氢酶的活性通过外部异极性MF的强化得到了实质性的改善,并在5℃下导致最高的COD去除率为94.9%。磷脂脂肪酸分析表明,C16:1x7c,C18:1x7c和C18:1x9c是低温(4-15℃)细胞膜中必需的不饱和脂肪酸,占整个不饱和脂肪酸的大部分。 MF效应增加了革兰氏阴性细菌的含量,从而提高了冷适应性。 Shannon–Wiener多样性分析表明,异极性MF样品的PLFA多样性指数(1.17–1.25)比同极性MF(0.89–1.13)高。原子力显微镜的观察表明,MF使微生物细胞表面光滑,部分仍有明显的突起。异极MF增强性能比相同极板距离的同极MF更为有效。

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