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Simultaneous biosorption of methylene blue and trivalent chromium onto olive stone

机译:亚甲基蓝和三价铬在橄榄石上的同时生物吸附

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In this work, olive stone (OS) was utilized to investigate its capacity as biosorbent for methylene blue (MB) and Cr(III), which are usually present in textile industry effluents. Equilibrium and kinetic experiments were performed in batch experiments. The biosorption process followed pseudo-second-order kinetics. The equilibrium data were fitted with several models, but Langmuir and Sips models best reproduced the experimental results. Maximum biosorption capacities were 3.296 mg/g (0.0116 mmol/g) and 4.990 mg/g (0.0960 mmol/g) for MB and Cr(III), respectively. Several operation variables, such as biosorbent mass, flow rate, and initial concentration on the removal of dye and metal, were evaluated in column system. The removal efficiency improved as OS mass increased and decreased when flow rate and initial concentration increased. Also, MB uptake was substantially decreased by increasing the initial concentration of Cr(III), ranging from 6.09 to 2.75 mg/g. These results show that the presence of Cr(III) significantly modifies the biosorption capacity of MB by the OS. These results suggest that OS is a potential low-cost food industry waste for textile industry wastewater treatment.
机译:在这项工作中,利用橄榄石(OS)来研究其作为亚甲基蓝(MB)和Cr(III)的生物吸附剂的能力,这些物质通常存在于纺织工业废水中。平衡和动力学实验在批处理实验中进行。生物吸附过程遵循伪二级动力学。平衡数据拟合了几种模型,但是Langmuir和Sips模型最好地再现了实验结果。 MB和Cr(III)的最大生物吸附容量分别为3.296 mg / g(0.0116 mmol / g)和4.990 mg / g(0.0960 mmol / g)。在色谱柱系统中评估了几个操作变量,例如生物吸附剂的质量,流速和去除染料和金属时的初始浓度。当流速和初始浓度增加时,去除效率随OS质量的增加和减少而提高。另外,通过增加Cr(III)的初始浓度从6.09至2.75 mg / g,MB摄取量显着降低。这些结果表明,Cr(III)的存在显着改变了OS对MB的生物吸附能力。这些结果表明,OS是纺织工业废水处理的潜在低成本食品工业废物。

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