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Removal of EDTA from low pH printed-circuit board wastewater in a fluidized zero valent iron reactor

机译:在流化零价铁反应器中从低pH印刷电路板废水中去除EDTA

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Fluidized zero valent iron (ZVI) process was adopted to reduce ethylenediaminetetraacetic acid (EDTA) from low pH printed-circuit board (PCB) wastewater for two reasons: (1) low pH of the wastewater favoring the ZVI reaction; (2) higher ZVI utilization for fluidized process due to abrasive motion of the ZVI. The results showed that the degradation of EDTA was greatly enhanced under acidic pH, longer hydraulic detention time (HRT) and presence of dissolved oxygen (DO). Without addition of oxygen, 65% of EDTA was removed with capacity of 7.33 mg EDTA/g ZVI at pH 2, ZVI dosage of 424g/L and HRT 10 min. With 6.8 mg/L of DO, 83% of EDTA was reduced with capacity of 19.01 mg EDTA/g ZVI for the same experimental condition. The presence of oxygen/ZVI initiated a Fenton type reaction to reduce EDTA. The end product after EDTA degradation was analyzed by high performance liquid chromoagraphy (HPLC), where propionic acid (C2H5COOH) was observed, indicating EDTA (oxidation number for carbon is 2) was oxidized to propionic acid (oxidation number for carbon is 3). Nitrogen species was also measured and the nitrogen in EDTA was converted to ammonium instead of nitrate and nitrite.
机译:采用流化零价铁(ZVI)工艺从低pH值印刷电路板(PCB)废水中还原乙二胺四乙酸(EDTA)的原因有两个:(1)废水的低pH值有利于ZVI反应; (2)由于ZVI的研磨运动,ZVI在流化过程中的利用率更高。结果表明,在酸性pH,更长的水力停留时间(HRT)和存在溶解氧(DO)的情况下,EDTA的降解得到了极大的促进。在不添加氧气的情况下,去除了65%的EDTA,在pH 2,ZVI剂量为424g / L和HRT 10分钟的条件下,容量为7.33 mg EDTA / g ZVI。在相同的实验条件下,使用6.8 mg / L的DO可以减少83%的EDTA,容量为19.01 mg EDTA / g ZVI。氧气/ ZVI的存在引发了Fenton型反应以减少EDTA。 EDTA降解后的终产物通过高效液相色谱(HPLC)分析,观察到丙酸(C2H5COOH),表明EDTA(碳的氧化数为2)被氧化为丙酸(碳的氧化数为3)。还测量了氮的种类,并将EDTA中的氮转化为铵,而不是硝酸盐和亚硝酸盐。

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