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Preparation and application of a tyre-based activated carbon solid phase extraction of heavy metals in wastewater samples

机译:废水样品中重金属轮胎基活性炭固相萃取的制备及应用

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In this paper, the tyre-based activated carbon solid phase extraction (SPE) method was successfully developed for simultaneous preconcentration of metal ions in the model and real water samples before their determination using flame atomic absorption spectrometry (FAAS). The activation of carbon was achieved by chemical activation and the tyre-based activated carbon was used as a sorbent for solid phase extraction. The prepared activated carbon was characterized using the scanning electron microscope (SEM), Brunauer-Emmett-Teller (BET), and Fourier Transform Infrared spectroscopy. Moreover, optimization of the proposed method was performed by the two-level full factorial design (FFD). The FFD was chosen in order to fully investigate the effect of the experimental variables (pH, eluent concentration and sample flow rate) that significantly influence the preconcentration procedure. In this model, individual factors are considered along with their interactions. In addition, modelling of the experiments allowed simultaneous variation of all experimental factors investigated, reduced the required time and number of experimental runs which consequently led to the reduction of the overall required costs. Under optimized conditions, the limits of detection and quantification (LOD and LOQ) ranged 0.66-2.12 mu g L-1 and 1.78-5.34 mu g L-1, respectively and the enrichment factor of 25 was obtained. The developed SPE/FAAS method was validated using CWW-TM-A and CWW-TM-B wastewater standard reference materials (SRMs). The procedure showed to be accurate with satisfactory recoveries ranging from 92 to 99%. The precision (repeatability) was lower than 4% in terms of the relative standard deviation (%RSD). The developed method proved to have the capability to be used in routine analysis of heavy metals in domestic and industrial wastewater samples. In addition, the developed method can be used as a final step (before being discharged to the rivers) in wastewater treatment process i
机译:在本文中,成功地开发了基于轮胎的活性炭固相萃取(SPE)方法,以在使用火焰原子吸收光谱(FAAS)测定之前的模型和实水样中的金属离子中的金属离子前浓度。通过化学活化来实现碳的活化,并且使用轮胎的活性炭作为用于固相萃取的吸附剂。使用扫描电子显微镜(SEM),Brunauer-Emmett-Teller(Bet)和傅里叶变换红外光谱,表征制备的活性炭。此外,所提出的方法的优化是由两级全部因子设计(FFD)进行的。选择FFD以充分研究实验变量(pH,洗脱液浓度和样品流速)的效果,从而显着影响前浓度的预浓缩过程。在该模型中,各个因素被认为与他们的相互作用一起。此外,实验的建模允许同时调查所有实验因素的变化,降低了所需的时间和实验运行的数量,从而导致减少总体所需成本。在优化条件下,检测和定量限制(LOD和LOQ)分别范围为0.66-2.12μg1和1.78-5.34μg1-1,得到富集因子25。使用CWW-TM-A和CWW-TM-B废水标准参考资料(SRMS)验证开发的SPE / FAAS方法。该方法表明,令人满意的回收率为92%至99%。在相对标准偏差(%RSD)方面,精度(重复性)低于4%。已证明的方法证明具有在国内和工业废水样本中重金属的常规分析中使用的能力。此外,开发的方法可以用作废水处理过程中的最后一步(在排出到河流之前)

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