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Reductive Degradation of Perfluorinated Compounds in Water using Mg-aminoclay coated Nanoscale Zero Valent Iron

机译:用mg-氨基包覆纳米级零价铁还原降解水中的全氟化合物

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摘要

Perfluorinated Compounds (PFCs) are extremely persistent micropollutants that are detected worldwide. We studied the removal of PFCs (perfluorooctanoic acid; PFOA, perfluorononanoic acid; PFNA, perfluorodecanoic acid; PFDA and perfluorooctane sulfonate; PFOS) from water by different types of nanoscale zero-valent iron (nZVI). Batch experiments showed that an iron dose of 1 g•L-1 in the form of Mg-aminoclay (MgAC) coated nZVI, at an initial pH of 3.0 effectively removed 38 % to 96 % of individual PFCs. An increasing order of removal efficiency was observed of PFOA & PFNA & PFOS ≈ PFDA. Compared to this, PFCs removal was less than 27 % using a commercial air stabilized nZVI or freshly synthesized uncoated nZVI, under the same experimental conditions. The effectiveness of PFCs removal by MgAC coated nZVI was further investigated at various initial pH, nZVI dosage, temperature and age of the nZVI. A maximum removal was observed for all PFCs with high nZVI concentration, freshly synthesized nZVI, low pH and low temperature. A mass balance experiment with PFOS in a higher concentration of nZVI revealed that the removal was due to both sorption and degradation. Fluoride production partially matched the observed degradation, while no organic byproducts were detected using LC-QTOF-MS.
机译:全氟化合物(PFC)是一种极持久的微污染物,在世界范围内都被发现。我们研究了通过不同类型的纳米零价铁(nZVI)从水中去除PFC(全氟辛酸; PFOA,全氟壬酸; PFNA,全氟癸酸; PFDA和全氟辛烷磺酸; PFOS)的方法。批量实验表明,铁盐剂量为1 g•L-1的Mg-氨基粘土(MgAC)包覆的nZVI的形式在初始pH为3.0时可有效去除38%至96%的单个PFC。观察到去除效率的增加顺序为PFOA <20。 PFNA& PFOS≈PFDA。与此相比,在相同的实验条件下,使用市售的空气稳定nZVI或新鲜合成的未涂层nZVI去除PFCs少于27%。进一步研究了在各种初始pH,nZVI剂量,nZVI的温度和年龄下,MgAC涂层nZVI去除PFC的有效性。对于所有nZVI浓度高,新合成的nZVI,低pH值和低温的PFC,观察到最大去除率。用高浓度nZVI的PFOS进行的质量平衡实验表明,去除是由于吸附和降解。氟化物的产生与观察到的降解部分匹配,而使用LC-QTOF-MS未检测到有机副产物。

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