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Investigation of the success of physical and chemically modified process waste in heavy metal removal from synthetic wastewater

机译:从合成废水中重金属去除物理和化学改性过程废弃物成功的调查

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This study investigated removal efficiency of nickel in adsorption system by using the process waste obtained from the exit point of ore processing, modified with ultrasound and acid in laboratory. The experimental study was conducted in an intermittent process by taking into account the criteria of different adsorbent dosages (0,1-5 g/100 mL), pH (2-10), contact times (0-150 minutes) and mixing speeds (100-400 rpm). During experimental optimization, 100 mg/L initial nickel solution concentration, pH original (5.8), adsorbent dose 8 g /L, contact time 40 minutes, mixing speed 200 rpm, temperature 298 Kelvin (25 degrees C) was determined. Chemical properties and SEM images pertaining to modified process waste (MPA) were specified. In nickel removal, it was observed that the obtained results were found more concordant with Langmuir Isotherm models as evidenced by correlation coefficients. Kinetics data were obtained from treatment results, and q(max) value obtained for MPA was found as 25.77 mg/g.
机译:本研究通过使用从矿石加工的出口点获得的工艺废物来研究吸附系统中镍的去除效率,用实验室中的超声和酸改性。通过考虑不同吸附剂剂量(0.1-5g / 100ml),pH(2-10),接触时间(0-150分钟)和混合速度( 100-400 rpm)。在实验优化期间,100mg / L初始镍溶液浓度,pH原始(5.8),吸附剂剂量8g / L,接触时间40分钟,混合速度200rpm,测定温度298 kelvin(25℃)。有关改性工艺废物(MPA)的化学性质和SEM图像。在去除镍中,观察到所得结果与琅勃马尔等温模型相一致,如相关系数所证明的。动力学数据是从治疗结果获得的,并发现MPa的Q(MAX)值为25.77mg / g。

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