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首页> 外文期刊>Iranian journal of science and technology >Comparison of Pb(ll) Adsorption by Ground Granulated Blast-Furnace and Phosphorus Slags; Exploitation of RSM
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Comparison of Pb(ll) Adsorption by Ground Granulated Blast-Furnace and Phosphorus Slags; Exploitation of RSM

机译:地面粒状高炉和磷渣吸附PB(LL)的比较; 剥削RSM.

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摘要

One of the environmental issues is the release of heavy metal ions into groundwater, in which finding a cost-effective solution is crucial. In this study, lead as a toxic heavy metal cation was adsorbed by two low-cost industrial products of ground granulated blast-furnace slag (GGBFS) and phosphorus slag (PS). Both adsorbents were characterized by various analyses. The response surface methodology (RSM) based on the central composite design (CCD) method is employed to compare the performance of both adsorbents in Pb(II) removal from an aqueous solution. The experiment design was performed by considering three factors of initial Pb(II) concentration (20-100 mg.L-1), rotation rate (15-195 rpm), and adsorbent weight (0.1-2.1 g) at five levels. From the RSM predictions, the maximum adsorption capacity was obtained at 0.1 g, 100 mg.L-1, and 195 rpm. Based on the adsorption capacity data, GGBFS was more efficient than PS adsorbent in Pb(II) removal under the same conditions. The most influential parameter on the adsorption capacity was the adsorbent weight, and the other parameters had no significant effects. The influence of rotation rate could be observed only at low adsorbent weights. Two correlations are developed by taking into account the interaction effects between the studied parameters that fitted well the experimental data with R-2-values of 0.986 and 0.993 for GGBFS and PS, respectively. The statistical parameters and plots were also reported for the adsorption capacity of the both adsorbents.
机译:其中一个环境问题是将重金属离子释放到地下水中,其中找到具有成本效益的解决方案至关重要。在这项研究中,作为有毒重金属阳离子的铅被接地粒状高炉炉渣(GGBFS)和磷渣(PS)的两种低成本工业产品吸附。两种吸附剂的特征在于各种分析。基于中央复合设计(CCD)方法的响应面方法(RSM)用于比较从水溶液中除去PB(II)中的吸附剂的性能。通过考虑初始Pb(II)浓度(20-100mg.11),旋转率(15-195rpm)和5级的吸附重量(0.1-2.1g)来进行实验设计。从RSM预测,最大吸附容量在0.1g,100mg.l-1和195rpm获得。基于吸附能力数据,GGBF在相同条件下比PB(II)的PB(II)中的PS吸附剂更有效。吸附能力最有影响力的参数是吸附剂重量,其他参数没有显着影响。旋转速率的影响只能在低吸附重量下观察到。通过考虑所研究参数之间的相互作用效应,可以分别考虑到具有0.986和0.993的R-2值的实验数据之间的实验数据之间的相互作用效应来开发两个相关性。还报道了两种吸附剂的吸附能力也报告了统计参数和图。

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