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The effects of magnetic nanoparticles embedded with SA/PVA and pH on chemical-mechanical polishing wastewater and magnetic particle regeneration and recycle

机译:内含SA / PVA和pH的磁性纳米粒子对化学机械抛光废水和磁性粒子再生与循环的影响

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Abstract Experiments were conducted using sodium alginate (SA) and polyvinyl alcohol (PVA) as embedded materials for Fe3O4 magnetic nanoparticles (MNPs). The materials provided excellent protection to the embedded {MNPs} in low-pH conditions. This study observed and compared the adsorption capacity of the unaltered and embedded MNPs. At pH 3 and without additional magnetic fields, the wastewater turbidity removal rate of the embedded {MNPs} reached a maximum of 95%, similar to that of the unaltered MNPs. Moreover, this study examined the recyclability and reusability of the unaltered and embedded {MNPs} and discovered that the embedded {MNPs} could be reused up to seven times. Overall, the use of SA/PVA prevented {MNPs} from disintegrating and contaminating the wastewater through the dissolution of Fe ions. {SA} and {PVA} also increased the reusability of the unaltered MNPs.
机译:摘要使用藻酸钠(SA)和聚乙烯醇(PVA)作为Fe3O4磁性纳米粒子(MNP)的嵌入材料进行了实验。这些材料在低pH条件下为嵌入的{MNPs}提供了出色的保护。这项研究观察并比较了未改变和嵌入的MNPs的吸附能力。在pH为3且没有其他磁场的情况下,嵌入的{MNPs}的浊度去除率最高达到95%,与未改变的MNPs相似。此外,这项研究检查了未更改和嵌入的{MNPs}的可回收性和可重复使用性,并发现嵌入的{MNPs}最多可以重复使用七次。总体而言,使用SA / PVA可以防止{MNPs}通过溶解Fe离子而分解和污染废水。 {SA}和{PVA}还提高了未更改的MNP的可重用性。

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