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膜电解法从模拟酸性蚀刻废液中回收铜粉 总被引:1,自引:0,他引:1
酸性蚀刻废液是一种印制电路板制作过程中产生的强酸、高铜的工业废水,对其回收利用具有较高的经济价值。采用膜电解法处理模拟酸性蚀刻废液,在阴极区回收铜粉。研究了铜粉的形成条件,考察了阴极液铜浓度、温度和电流密度对阴极电流效率的影响。结果表明,阴极液的铜浓度在20~25 g/L,温度为45~50℃,电流密度在11~12 A/dm2,阴极的电流效率最高。随着阴极液酸度的增加,铜粉的纯度提高,但阴极电效会降低。为保证较高的铜粉纯度及阴极电效,阴极液的酸度在0.32~0.36 mol/L为宜。 相似文献
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简要分析了碱性蚀刻废液的特点,总结了萃取电积法再生碱性蚀刻废液的基本原理,并进行了工程应用和环境效益分析。结果表明,碱性蚀刻再生液的蚀刻速率达60 m/min,蚀刻因子为3.5以上,回收铜纯度为99.95%。 相似文献
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Yusi Liu Xingru Li Guiqian Tang Lili Wang Bo Lv Xueqing Guo Yuesi Wang 《环境科学学报(英文版)》2019,31(6):107-115
Secondary organic aerosols(SOAs) are an important component of particulates, but whether biogenic SOAs(BSOAs) or anthropogenic SOAs(ASOAs) are the dominant contributors to haze pollution remains poorly characterized. In this study, particulate samples were collected from September 2014 to August 2015 at an urban site in Jinan, which is the capital of Shandong Province and a typical city in the North China Plain. The PM2.5 samples were analyzed for BSOA(isoprene(SOAI) and monoterpenes(SOAM)) and ASOA(aromatic(SOAA)) tracers. The concentrations of the SOAAtracer(1.1 ± 1.0 ng/m3) were lowest, and those of SOAItracers(41.8 ± 86.2 ng/m3) were highest, with the concentrations of SOAMtracers(19.4 ± 9.9 ng/m3) being intermediate. The SOAItracers were more abundant in the summer and less abundant in the winter. Both SOAIand SOAMincreased with increasing ozone level but decreased with increasing NOx level. Correlation analysis revealed a good correlation between 2,3-dihydroxy-4-oxopentanoic acid and levoglucosan levels in three seasons. These results suggested that biomass burning activities occurring in the NCP can enhance the emissions of aromatics and should be controlled, especially in the autumn and winter. SOA tracers were classified according to pollution degree, and the results showed that as pollution increases, the contributions of SOAAincrease. These results indicate that reducing anthropogenic emissions is necessary to prevent SOA pollution, especially during heavy pollution episodes. 相似文献
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Fenton及电-Fenton处理难降解有机废水技术 总被引:1,自引:0,他引:1
Fenton法与电-Fenton法属于高级氧化技术(Advanced Oxidation Technologjes,AOTs),是由H2O2与催化剂Fe2 所构成的氧化体系.在Fenton体系中,H2O2在Fe2 的催化剂作用下,能产生两种活泼的氢氧自由基(HO2·和·OH),从而引发和传播自由基链反应,加快有机物和还原性物质的氧化.本文简要介绍了Fenton法与电-Fenton反应的机理和应用在催化氧化难降解废水领域中的处理技术及研究进展. 相似文献
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