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预絮凝-Fenton-磁助凝处理环氧氯丙烷废水
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作者 李会 李腾飞 吴杰 《山东化工》 CAS 2021年第2期267-269,271,共4页
采用预絮凝-Fenton-磁助凝耦合工艺处理环氧氯丙烷废水,对影响工艺的主要影响因素进行了研究和优化。预絮凝过程中,选择最佳pH值、聚合氯化铝(PAC)加入量、聚丙烯酰胺(PAM)加入量,CODCr去除率可达到最大值30.5%。Fenton过程中选择最佳p ... 采用预絮凝-Fenton-磁助凝耦合工艺处理环氧氯丙烷废水,对影响工艺的主要影响因素进行了研究和优化。预絮凝过程中,选择最佳pH值、聚合氯化铝(PAC)加入量、聚丙烯酰胺(PAM)加入量,CODCr去除率可达到最大值30.5%。Fenton过程中选择最佳p H值、双氧水加入量和Fe SO4加入量,反应时间为40 min时,CODCr去除率达到71.8%。如果Fenton过程中增加365 nm紫外光照射,处理时间可缩短至30 min且CODCr去除率提高至83.1%。后续絮凝处理在最佳PAC加入量和PAM投加量条件下,CODCr去除率为65%,通过添加磁粉可以提高CODCr去除率至82%,且能明显缩短絮凝时间至10 min。 展开更多
关键词 环氧氯丙烷废水 FENTON氧化 磁助凝
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内电解—磁种助凝法处理印染废水的研究 被引量:10
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作者 朱又春 段瑞文 《广东工业大学学报》 CAS 1996年第2期34-39,共6页
研究了内电解法与磁种助凝结合处理印染废水的工艺及其可行性,对影响处理效果的主要因素进行了探讨。实验表明,废水的COD去除率可达84%以上,脱色率可达95%以上。
关键词 内电解 磁助凝 印染废水处理
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Dynamic experiments on flocculation and sedimentation of argillized ultrafine tailings using fly-ash-based magnetic coagulant 被引量:11
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作者 李帅 王新民 张钦礼 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第7期1975-1984,共10页
In order to accelerate the sedimentation of super-large-scale argillized ultrafine tailings with bad features such as low settling velocity, muddy overflow water, and large flocculant dosage, a fly-ash-based magnetic ... In order to accelerate the sedimentation of super-large-scale argillized ultrafine tailings with bad features such as low settling velocity, muddy overflow water, and large flocculant dosage, a fly-ash-based magnetic coagulant (FAMC) was used in a dynamic experimental device. To obtain the best possible combination of the impact factors (magnetic intensity, FAMC dosage, flocculant dosage, and feed speed) for minimum overflow turbidity, a response surface methodology test coupled with a four-factor five-level central composite design was conducted. The synergy mechanism of FAMC and flocculant was analyzed based on the potential measurement and scanning electron microscopy. The results show that the flocculant dosage, overflow turbidity, and solid content can be reduced by 50%, 90%, and 80%, while the handling capacity per unit and efficiency of backfill and dry stacking can be promoted by 20%, 17%, and 13%, respectively, with a magnetic intensity of 0.3 T, FAMC dosage of 200 mL/t, flocculant dosage of 30 g/t, and feed speed of 0.6 t/(m^2·h). Therefore, synergy of FAMC and flocculant has obvious efficiency in saving energy and protecting the environment by allowing 70×10^6 t/a of argillized ultrafine tailings slurry to be disposed safely and efficiently with a cost saving of more than 53×106 Yuan/a, which gives it great promise for use in domestic and foreign mines. 展开更多
关键词 super-large-scale argillized ultrafine tailings flocculation and sedimentation fly-ash-based magnetic coagulant dynamic experimental device response surface methodology synergy mechanism
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