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首页> 外文期刊>Frontiers of environmental science & eng >The influence of chlorinated aromatics' structure on their adsorption characteristics on activated carbon to tackle chemical spills in drinking water source
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The influence of chlorinated aromatics' structure on their adsorption characteristics on activated carbon to tackle chemical spills in drinking water source

机译:氯代芳烃的结构对其对活性炭吸附特性的影响,以解决饮用水源中的化学溢出物

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This study focused on evaluating the efficiency of powdered activated carbon (PAC) adsorption process and tackling chlorobenzenes and chlorophenols spill in drinking water source. The adsorption kinetics and PAC's capacities for five chlorobenzenes and three chlorophenols at drinking water contamination levels were studied in order to determine the influence of different functional groups on the adsorption behavior. The results showed that PAC adsorption could be used as an effective emergency drinking water treatment process to remove these compounds. The adsorption kinetics took 30 min to achieve nearly equilibrium and could be described by both pseudo first-order and pseudo second-order models. A mathematic relationship was developed between the pseudo first-order adsorption rate constant, k_1, and the solutes' properties including 1gK_(ow), polarizability and molecular weight. The Freundlich isotherm equation could well describe the adsorption equilibrium behaviors of chlorinated aromatics with r~2 from 0.920 to 0.999. The H-bond donor/acceptor group, hydrophobicity, solubility and molecular volume were identified as important solute properties that affect the PAC adsorption capacity. These results could assist water professionals in removing chlorinated aromatics during emergency drinking water treatment.
机译:这项研究的重点是评估粉末状活性炭(PAC)吸附过程的效率以及解决饮用水源中氯苯和氯酚溢出的问题。为了确定不同官能团对吸附行为的影响,研究了饮用水中5种氯苯和3种氯酚的吸附动力学和PAC容量。结果表明,PAC吸附可作为一种有效的紧急饮用水处理工艺来去除这些化合物。吸附动力学花了30分钟才能达到接近平衡,可以用伪一级模型和伪二级模型来描述。拟一级吸附速率常数k_1与溶质的性质(包括1gK_(ow),极化率和分子量)之间建立了数学关系。 Freundlich等温方程可以很好地描述r〜2在0.920至0.999之间的氯化芳烃的吸附平衡行为。 H键供体/受体基团,疏水性,溶解度和分子体积被确定为影响PAC吸附能力的重要溶质性质。这些结果可以帮助水专业人士在紧急饮用水处理过程中去除氯化芳烃。

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