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首页> 外文期刊>Journal of Cleaner Production >Microbial Fuel Cells (MFCs) remediation activity of marine sediments sampled at a dismissed industrial site: What opportunities?
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Microbial Fuel Cells (MFCs) remediation activity of marine sediments sampled at a dismissed industrial site: What opportunities?

机译:在废弃的工厂现场采样的海洋沉积物的微生物燃料电池(MFCs)修复活动:什么机会?

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Microbial Fuel Cells (MFCs) remedial technology was used for the degradation of Polycyclic Aromatic Hydrocarbons (PAHs) in marine sediments taken in front of the brownfleld steelwork facility of Bagnoli, Gulf of Pozzuoli, South Western Italy. PAHs levels were quite high and up to 30 mu g/g for fluoranthene and 0.21 mu g/g d.w. L of sediments for acenaphthene. Heavy PAHs prevailed vs light PAHs in the sediment samples before, during and after the treatment by MFCs. Different degradation rates were measured according to the complexity of each PAH, as expected. Among all PAHs, naphthalene showed after four weeks the highest degradation rate (86%), while just the 10% of Indenol[1,2,3-c,d]pyrene was degraded. MFCs achieved their highest performance in terms of Power Density (PD) after two weeks, with values ranging between 20.4 mW/m(2) and 3.17 mW/m(2) of anodic surface. CD values were normalized to the anodic surface as well, falling within a maximum of 204.8 mA/m(2) and a minimum of 9.5 mA/m(2). Even though the dynamics of PAHs degradation in MFCs and the influence of other pollutants (like metals) on MFCs performance as well as the potential mobilization of pollutants in consequence of microbial activity have to be ascertained, our preliminary results prove the high potentialities of MFCs for in-situ marine sediments remediation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:微生物燃料电池(MFCs)修复技术用于降解意大利西南部波佐利海湾Bagnoli棕场钢厂设施前海底沉积物中的多环芳烃(PAHs)。 PAHs含量非常高,荧蒽的PAHs高达30μg/ g,d.w为0.21μg/ g。 L为ena的沉积物。在MFCs处理之前,期间和之后,沉积物样品中的重PAH相对于轻PAH占优势。如预期的那样,根据每个PAH的复杂程度测量了不同的降解率。在所有PAH中,萘在四周后表现出最高的降解率(86%),而茚满酚[1,2,3-c,d] py的降解率仅为10%。 MFC在两周后就达到了功率密度(PD)方面的最高性能,其阳极表面的值介于20.4 mW / m(2)和3.17 mW / m(2)之间。 CD值也被标准化为阳极表面,落在最大204.8 mA / m(2)和最小9.5 mA / m(2)之内。即使必须确定MFC中PAHs降解的动力学以及其他污染物(如金属)对MFCs性能的影响以及由于微生物活动而导致的潜在污染物迁移,但我们的初步结果证明了MFCs的高潜力原位海洋沉积物修复。 (C)2019 Elsevier Ltd.保留所有权利。

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