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首页> 外文期刊>Chemical engineering journal >Preparation and characterization of a novel mountain soursop seeds powder adsorbent and its application for the removal of crystal violet and methylene blue from aqueous solutions
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Preparation and characterization of a novel mountain soursop seeds powder adsorbent and its application for the removal of crystal violet and methylene blue from aqueous solutions

机译:一种新型山地Soursop种子粉吸附剂的制备及表征及其在水溶液中除去晶体紫和亚甲基蓝的应用

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Herein, a novel mountain soursop seeds powder (MSSP) adsorbent was employed to explore the adsorption mechanism of two relevant environmental pollutants: crystal violet CV and methylene blue MB. As a first assessment to investigate the adsorption mechanism and to analyze the performance of this adsorbent, the dye adsorption isotherms were measured at 298-328 K and pH 8. Experimental results demonstrated that this adsorbent was more effective to remove the CV dye compared to MB dye from aqueous solution, thus concluding that it could utilized for the treatment of dye polluted industrial effluents. To further interpret the adsorption mechanism and to obtain a new physicochemical vision, a successful phenomenological theoretical analysis via double layer adsorption model was detailed in this paper. At high equilibrium concentration, the adsorbed quantities at saturation were calculated and they followed this sequence: Q(sat) (CV-MSSP) > Q(sat) (MB-MSSP). This theoretical finding explained the highest adsorption for CV dye at different temperatures and characterized analytically its affinity for tested adsorbates. The geometry inclination of tested dyes on MSSP adsorbent surface was described in the paper by analyzing the bonded number of CV and MB dye molecules per site. It was demonstrated that these dyes were adsorbed via a mixed orientation. Based on the estimated concentrations at half-saturation, the calculated adsorption energies suggested that the adsorption of CV and MB on MSSP adsorbent was endothermic. A general analytical description of the dye adsorption mechanism showed that the density of receptor sites and adsorption energies followed the same trend as the adsorption capacity, then they can be considered as the factors that governed this separation process.
机译:在此,采用新型山地酸液种子粉末(MSSP)吸附剂来探讨两个相关环境污染物的吸附机制:晶体紫CV和亚甲基蓝MB。作为研究吸附机制并分析这种吸附剂的性能的第一次评估,在298-328k和pH8中测量染料吸附等温线。实验结果表明,与MB相比,该吸附剂更有效地除去CV染料从水溶液中染料,得出结论是它可以用于治疗染料污染的工业污染。为了进一步解释吸附机制并获得新的物理化学视觉,本文详述了通过双层吸附模型的成功现象学理论分析。在高平衡浓度下,计算饱和度的吸附量,然后遵循该顺序:Q(SAT)(CV-MSSP)> Q(SAT)(MB-MSSP)。该理论发现对不同温度的CV染料的吸附最高,并分析其对测试吸附剂的亲和力。通过分析每位位点的键合的CV和MB染料分子的键合数量的CV和MB染料分子在MSSP吸附表面上进行测试染料的几何形状倾斜。证明这些染料通过混合取向吸附。基于半饱和度的估计浓度,计算的吸附能表明CV和MB对MSSP吸附剂的吸附是吸热的。染料吸附机制的一般分析描述表明,受体位点和吸附能量的密度随着吸附容量而遵循相同的趋势,然后它们可以被认为是治理该分离过程的因素。

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