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Treatment of Copper from Cu CMP Waste Streams Using Polyethyleneimine

机译:聚乙烯亚胺处理Cu CMP废液中的铜

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Commercially available Cu CMP waste treatment processes involve: 1) pretreatment chemistry using oxidizers to break down complexed copper resulting in precipitation of copper in the form of copper hydroxide; 2) microfiltration of both slurry particles and copper hydroxide; and 3) ion exchange to remove ${rm Cu}^{2+}$ ions. Ion exchange resins used to remove ${rm Cu}^{2+}$ ions are limited to only removing cations and also have a low efficiency in binding ${rm Cu}^{2+}$ ions. The treatment strategy to be evaluated here only requires using two processes to remove the copper from Cu CMP waste—filtration to remove the particles followed by chelation. This paper focuses on the chelation step. The chelator of interest is polyethyleneimine (PEI) bound to agarose beads. PEI removes both ${rm Cu}^{2+}$ ions and Cu-complexes. The particles from slurry in the actual Cu CMP waste were removed by filtration before the experiment. The results show that PEI has a higher binding capacity for ${rm Cu}^{2+}$ ions than ion exchange resins. Its performance and reproducibility did not change after multiple regenerations. Furthermore, PEI has the ability to bind Cu-complexes through electrostatic attraction. Although the bonds aren''''t strong, the result is more overall copper removal from the waste stream. The copper component of the Cu CMP waste was concentrated 12 fold using this system.
机译:商业上可获得的Cu CMP废物处理工艺包括:1)使用氧化剂进行预处理化学作用以分解络合的铜,导致以氢氧化铜形式沉淀出铜; 2)对浆液颗粒和氢氧化铜进行微滤; 3)离子交换以去除$ {rm Cu} ^ {2 +} $离子。用于去除$ {rm Cu} ^ {2 +} $离子的离子交换树脂仅限于去除阳离子,并且在结合$ {rm Cu} ^ {2 +} $离子时效率也很低。这里要评估的处理策略仅需要使用两个过程从Cu CMP废料中除去铜-过滤除去颗粒,然后进行螯合。本文重点介绍螯合步骤。目标螯合剂是结合到琼脂糖珠上的聚乙烯亚胺(PEI)。 PEI会同时去除$ {rm Cu} ^ {2 +} $离子和Cu络合物。在实验前,通过过滤除去实际Cu CMP废料中的浆液中的颗粒。结果表明,PEI对$ {rm Cu} ^ {2 +} $离子的结合能力高于离子交换树脂。多次再生后,其性能和可重复性没有改变。此外,PEI具有通过静电吸引结合铜络合物的能力。尽管结合力不强,但结果是从废物流中去除了更多的铜。使用该系统将Cu CMP废料中的铜成分浓缩了12倍。

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