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首页> 外文期刊>Separation and Purification Technology >Removal of aqueous phenanthrene by brown seaweed Sargassum hemiphyllum:Sorption-kinetic and equilibrium studies
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Removal of aqueous phenanthrene by brown seaweed Sargassum hemiphyllum:Sorption-kinetic and equilibrium studies

机译:褐海藻Sargassum hemiphyllum去除水中菲的吸附动力学及平衡研究

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The batch sorption-kinetics and equilibrium uptake of phenanthrene(PHE),a hydrophobic organic compound(HOC),in aqueous compartment were investigated using dead tissue of brown seaweed Sargassum hemiphyllum under various conditions for 24 h.It was found that the higher the shaking rates(50-250 rpm)and temperatures(15-35 deg C),the higher the sorption rates of PHE,but no significant changes were observed for the maximum sorption capacities.Study with different initial PHE concentrations(50-1000 mu gL~(-1))showed that a higher ambient level of PHE resulted in a faster initial uptake rate and greater sorption capacity.The presence of ionic species(0.01-1 M NaCl)changed the sorption-kinetics of PHE markedly by altering the maximum removal of PHE,but not the initial sorption rates.No significant removal variations were noted under various initial pH(pH 2-11),while constant alkalinity resulted in an alleviated PHE sorption by Sargassum.The sorption-kinetics of PHE typically followed more closely to the pseudo-second-order model(r2>0.85)than pseudo-first-order equation(r2>0.72).Removal capacities were in the range of 430-460 mu g g~(-1)for tests spiked with 1000 mu gL~(-1)PHE.Typical percentage removals of aqueous PHE by Sargassum for all the investigated factors(e.g.initial pH and ionic strength)were in the range of 91.7-98.4%.Log Sargassum-water and the organic carbon normalized partition coefficient were calculated as 3.83 and 3.96 mLg~(-1),respectively.The present study provided valuable information for achieving optimal sorption of aqueous PHE using Sargassum as an effective sorbent for removing HOCs in wastewaters and urban runoffs.
机译:在不同条件下,使用褐藻海藻半衰期为24小时,研究了疏水性有机化合物菲(PHC)在水性隔室中的分批吸附动力学和平衡吸收,发现其振荡程度越高。速率(50-250 rpm)和温度(15-35摄氏度)时,PHE的吸附速率较高,但最大吸附容量未见明显变化。不同初始PHE浓度(50-1000μgL〜 (-1))表明,较高的PHE环境水平会导致较快的初始吸收速率和更大的吸附能力。离子种类(0.01-1 M NaCl)的存在通过改变最大去除量显着改变了PHE的吸附动力学。在不同的初始pH(pH 2-11)下,没有观察到明显的去除变化,而恒定的碱度导致Sargassum对PHE的吸附减少.PHE的吸附动力学通常伴随着更多的闭合与伪一阶方程(r2> 0.72)相比,伪二阶模型(r2> 0.85)的效率更高。对于加标1000亩的试验,去除容量在430-460 mu gg〜(-1)范围内。 gL〜(-1)PHE。对于所有研究的因素(例如初始pH和离子强度),Sargassum去除PHE水溶液的典型百分数在91.7-98.4%范围内.Log Sargassum-水和有机碳归一化分配系数分别计算为3.83和3.96 mLg〜(-1)。本研究为利用Sargassum作为去除废水和城市径流中的HOC的有效吸附剂实现对PHE水溶液的最佳吸附提供了有价值的信息。

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