首页> 外文期刊>Journal of Environmental Engineering >Optimization of Organic Nitrogen Compounds Removal in Pymetrozine Production Wastewater Using Complex Extraction with Response-Surface Methodology
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Optimization of Organic Nitrogen Compounds Removal in Pymetrozine Production Wastewater Using Complex Extraction with Response-Surface Methodology

机译:利用响应表面方法的复合萃取优化Pymetrozine生产废水中的有机氮化合物去除

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摘要

Production wastewater of pymetrozine leads to producing a lot of highly concentrated saline organic wastewater so that the related environmental aspects must be studied. In this study, a response surface methodology (RSM) was employed to investigate the effects of different operating conditions on the removal organic nitrogen compounds in pymetrozine production wastewater by a complex extraction with a mixed extractant containing di(2-ethylhexyl) phosphate and benzene. The Box-Behnken design (BBD) was used to optimize the extraction process and to evaluate the individual and interactions effects of the pH, diluent volume fraction, water to organic phase (W/O), temperature, and extraction time on organic nitrogen compounds removal. An optimized extraction efficiency of 78.91% from the RSM was obtained at a pH of 12.7, diluent volume fraction of 54.8%, W/O of 0.8, temperature of 24 degrees C, extraction time of 35 min. Also, 2.94mol/L of HCl solution was used as stripping agent in the back extraction process. The back extraction efficiency of organic nitrogen compounds reached 88.9% when the W/O was 1:1 and the extraction time was 15 min. An extractant after stripping can be repeatedly used by test verification.
机译:Pymetrozine的生产废水导致生产大量高度浓缩的盐水有机废水,从而必须研究相关的环境方面。在该研究中,使用响应表面方法(RSM)来研究不同操作条件对Pymetrozine生产废水中除去有机氮化合物的影响,通过含有不同萃取剂的二(2-乙基己基)磷酸盐和苯的混合萃取剂。 Box-Behnken设计(BBD)用于优化提取过程,并评估pH,稀释体积分数,水与有机相(W / O),温度和提取时间对有机氮化合物的个体和相互作用的影响移动。优化的提取效率从RSM的pH值为12.7,稀释剂体积分数为54.8%,W / O 0.8,温度为24℃,提取时间35分钟。此外,2.94mol / L的HCl溶液在后萃取过程中用作汽提剂。当W / O为1:1时,有机氮化合物的后萃取效率达到88.9%,提取时间为15分钟。可以通过测试验证重复使用剥离后的萃取剂。

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