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高岭土污水的磁絮凝沉降和影响因素研究 被引量:3
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作者 李建军 谢蔚 +4 位作者 余海洋 朋许杰 但宏兵 梁权威 朱昊 《选煤技术》 CAS 2018年第5期26-31,共6页
为了增加煤泥水内絮团的沉降动力,以质量分数为4%的高岭土污水模拟煤泥水,以球磨后的粉煤灰磁珠作为磁种,并分别以PAM、CaCl2作为絮凝剂和凝聚剂,对其进行磁絮凝沉降处理;通过试验研究磁场强度、磁种用量和磁种粒径三个因素对磁絮凝沉... 为了增加煤泥水内絮团的沉降动力,以质量分数为4%的高岭土污水模拟煤泥水,以球磨后的粉煤灰磁珠作为磁种,并分别以PAM、CaCl2作为絮凝剂和凝聚剂,对其进行磁絮凝沉降处理;通过试验研究磁场强度、磁种用量和磁种粒径三个因素对磁絮凝沉降效果的影响规律,并确定磁絮凝沉降的最佳试验条件。试验结果表明:磁场强度、磁种用量、磁种粒径三个因素均对磁絮凝沉降效果具有显著影响;在PAM用量为0. 035 g/L、CaCl2用量为0. 003 mol/L、磁场强度为196 m T、磁种粒径为10. 66μm、磁种用量为2 g的条件下,高岭土污水的磁絮凝沉降效果最佳,磁絮团沉降速率为2. 675 cm/s,尾泥高度为2. 95 cm,上清液透光率达到93%。 展开更多
关键词 煤泥水 磁絮凝沉降 高岭土污水 粉煤灰 絮团沉降速度 上清液透光率
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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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