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An evaluation procedure for flocculation of coal preparation plant tailings

机译:选煤厂尾矿絮凝的评价程序

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In solid-liquid separation of coal preparation plant tailings by flocculation, in addition to the type and amount of flocculants, the composition of waste materials including clay minerals must be determined in order to devise an effective and economic sedimentation system. In this study, the characterization of organic and inorganic impurities was made with the help of mineralogical data and instrumental analysis techniques. The effects of polymer type (medium and low anionic, cationic and nonionic), polymer dosage and suspension pH on flocculation mechanism of tailings particles (-0.18mm) in the Tuncbilek Coal Preparation Plant tailings of Tungbilek (Turkey) were investigated. Medium anionic polymer accelerated the settling rate of particles. An optimum settling rate (300mm/min) was reached at a dosage rate of 34.19g/ton-solids (2.0mg/l), 51.28 g/ton-solids (3.0mg/l), 102.56 g/ton-solids (6.0mg/l) and 119.66 g/ ton-solids (7.0mg/l) for medium anionic, low charged anionic, nonionic and cationic polymers, respectively. The lowest turbidity values at low polymer dosages were obtained by the cationic polymer at around 25.64 g/ton-solids (1.5mg/l) polymer dosages; however, the low anionic and nonionic polymers produced lower turbidity values at higher dosages (> 25.64 g/ton-solids). At optimum dosages of the polymer, the settling rate decreased at low and high pHs indicating that the natural pH (pH 8.3) of the suspension is the most appropriate pH for the settling rate. On the other hand, the water clarity values at natural pHs were high for all of the polymers.
机译:在通过絮凝对选煤厂尾矿进行固液分离时,除了絮凝剂的类型和数量外,还必须确定包括粘土矿物在内的废料的成分,以设计出一种有效而经济的沉降系统。在这项研究中,借助于矿物学数据和仪器分析技术对有机和无机杂质进行了表征。研究了Tungbilek(土耳其)Tuncbilek选煤厂尾矿中聚合物类型(中低阴离子,阳离子和非离子型),聚合物用量和悬浮液pH对尾矿颗粒(-0.18mm)絮凝机理的影响。中型阴离子聚合物可加快颗粒的沉降速度。在34.19g /吨固形物(2.0mg / l),51.28 g /吨固形物(3.0mg / l),102.56 g /吨固形物(6.0)的剂量率下达到了最佳沉降速度(300mm / min)毫克/升)和119.66克/吨固体(7.0毫克/升),分别用于中等阴离子,低电荷阴离子,非离子和阳离子聚合物。在约25.64克/吨固体(1.5毫克/升)的聚合物剂量下,阳离子型聚合物在低剂量的聚合物下获得最低的浊度值;但是,低阴离子和非离子聚合物在较高剂量(> 25.64 g /吨固体)下产生较低的浊度值。在聚合物的最佳剂量下,在低pH和高pH下沉降速度降低,表明悬浮液的自然pH(pH 8.3)是最适合沉降速度的pH。另一方面,所有聚合物在天然pH下的水透明度值都很高。

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