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Mechanistic Investigation of Haloacetic Acid Reduction Using Carbon-Ti_4O_7 Composite Reactive Electrochemical Membranes

机译:碳-Ti_4O_7复合活性电化学膜还原卤代乙酸的机理研究

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Carbon-Ti_4O_7 composite reactive electrochemical membranes (REMs) were studied for adsorption and electrochemical reduction of haloacetic acids (HAAs).Powder activated carbon (PAC) or multiwalled carbon nanotubes (MWCNTs) were used in these composites.Results from flow-through adsorption experiments with dibromoacetic acid (DBAA) as a model HAA were interpreted with a transport model.It was estimated that ~46% of C in the MWCNT-REM and ~10% of C in the PAC-REM participated in adsorption reactions.Electrochemical reduction of 1 mg L~(-1) DBAA in 10 mM KH_2PO_4/K_2HPO_4 at -1.5 V/SHE (hydraulic residence time,~11s) resulted in 73,94,and 96% DBAA reduction for Ti_4O_7,PAC-Ti_4O_7,and MWCNT-Ti_4O_7 REMs,respectively.The reactive-transport model yielded k_(obs) values between 9.16 and 33.3 min~(-1),which were 2 to 4 orders of magnitude higher than previously reported.PAC-Ti_4O_7 REM was tested with tap water spiked with 0.11 mg L~(-1) of nine different HAAs in a similar reduction experiment.The results indicated that all HAAs were reduced to <20 μg L~(-1).Moreover,the total combined concentration of five regulated HAAs was lower than the regulatory limit (60 μg L~(-1)).Density functional theory simulations suggest that a direct electron transfer reaction was the probable rate-determining step for HAA reduction.
机译:研究了碳-Ti_4O_7复合反应性电化学膜(REMs)对卤代乙酸(HAAs)的吸附和电化学还原,并在其中采用了粉末活性炭(PAC)或多壁碳纳米管(MWCNTs)。用二溴乙酸(DBAA)作为模型HAA可以用输运模型解释。据估计,MWCNT-REM中约46%的C和PAC-REM中约10%的C参与了吸附反应。 1 mg L〜(-1)DBAA在-1.5 V / SHE下的10 mM KH_2PO_4 / K_2HPO_4(水停留时间,〜11s)中导致Ti_4O_7,PAC-Ti_4O_7和MWCNT-的DBAA降低73,94和96% Ti_4O_7 REMs分别为。反应性传输模型产生的k_(obs)值介于9.16和33.3 min〜(-1)之间,比先前报道的值高2至4个数量级.PAC-Ti_4O_7 REM用自来水加标测试在相似的还原实验中用0.11 mg L〜(-1)的九种不同HAA t。结果表明,所有HAA均降低至<20μgL〜(-1)。此外,五种被调节的HAA的总合浓度低于调节极限(60μgL〜(-1))。理论模拟表明,直接电子转移反应是降低HAA的速率决定步骤。

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