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Improvements of Pd/Fe nanoparticles by ethylenediamine disuccinic acid for 2,4-D dechlorination

机译:乙二胺烟酸的Pd / Fe纳米粒子的改善2,4-D脱氯

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In the current study, the reaction system of ethylenediamine disuccinic acid (EDDS, a green and biodegradable chelating agent) improved nanoscale Pd/Fe was successfully established for effective dechlorination of 2,4-dichlorophenoxyacetic acid (2,4-D). The effects of different experimental parameters including EDDS dosage, initial pH, palladium ratio and reaction temperature on 2,4-D dechlorination were investigated. The results demonstrated that higher chelating agent dosage and palladium ratio, appropriate reaction temperature (20.0-35.0 degrees C) and a lower initial pH were beneficial for the efficient reductive dechlorination of 2,4-D. Over 99.5% of 2,4-D removal and 97.3% of phenoxyacetic acid (PA) generation were reached within just 50 min reaction time under these experimental conditions: 20.0 mmol L-1 EDDS concentration, 1.0 g L-1 nZVI content, initial pH 5.5, palladium loading 0.50%, reaction temperature 25.0 degrees C and stirring speed 200 r min(-1). Characterization tests revealed that EDDS successfully removed the passivation layer on the nano-iron surface and thus exposed more surface active sites. In addition, EDDS chelated iron ions in the solution generated more soluble complex inhibiting the formation of inert layer on nanoscale Pd/Fe particles surface. As a result, the reactivity of nanoscale Pd/Fe was increased significantly. Findings from the present study suggested that the EDDS could be a promising substitute to enhance Pd/Fe reactivity and dechlorination efficiency.
机译:在目前的研究中,成功​​地建立了乙二胺烟酸(EDDS,绿色和可生物和可生物降解螯合剂)改进的纳米级Pd / Fe的反应体系,以有效脱氯(2,4-D)。研究了不同实验参数,包括EDDS剂量,初始pH,钯比和反应温度对2,4-D脱氯的影响。结果表明,螯合剂剂量和钯比,适当的反应温度(20.0-35.0℃)和较低的初始pH有益于2,4-D的有效还原脱氯。在这些实验条件下,在仅50分钟的反应时间内达到超过99.5%的2,4-d去除和97.3%的苯氧乙酸(PA)产生:20.0mmol L-1 EDDS浓度,1.0g L-1 NZVI含量,初始pH 5.5,钯负载0.50%,反应温度25.0℃,搅拌速度200 r min(-1)。表征测试显示,EDD成功地将钝化层成功除去纳米铁表面上,从而暴露更多的表面活性位点。此外,溶液中的EDDS螯合铁离子在纳米级Pd / Fe颗粒表面上产生更可溶的复合物抑制惰性层的形成。结果,纳米级Pd / Fe的反应性显着增加。本研究的结果表明,EDDS可能是有望的替代品,以提高PD / Fe反应性和脱氯效率。

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