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处理糠醛废水
相关语句
  furfural waste water treatment
     Iron Dust Filtration / Bio-chemical Process for Furfural Wastewater Treatment
     铁屑过滤/生化法处理糠醛废水
短句来源
     Study on furfural waste water treatment in artificial marsh
     人工湿地系统处理糠醛废水的研究
短句来源
     The paper explains the furfural waste water treatment mechanism of artificial marsh,utilizes the mathematics formula model for calculating the area of constructed marsh,the result provides the reference to similar enterprise utilizing the marsh system.
     文章阐述了人工湿地处理糠醛废水的机理,利用数学公式模型分析计算出建设湿地的面积,可以为相似企业合理有效利用湿地系统提供借鉴。
短句来源
  furfural wastewater treatment
     Iron Dust Filtration / Bio-chemical Process for Furfural Wastewater Treatment
     铁屑过滤/生化法处理糠醛废水
短句来源
     Study on furfural waste water treatment in artificial marsh
     人工湿地系统处理糠醛废水的研究
短句来源
     The paper explains the furfural waste water treatment mechanism of artificial marsh,utilizes the mathematics formula model for calculating the area of constructed marsh,the result provides the reference to similar enterprise utilizing the marsh system.
     文章阐述了人工湿地处理糠醛废水的机理,利用数学公式模型分析计算出建设湿地的面积,可以为相似企业合理有效利用湿地系统提供借鉴。
短句来源
  “处理糠醛废水”译为未确定词的双语例句
     Experimental Study on Treatment of Furfural Wastewater with Membrane Distillation
     膜蒸馏处理糠醛废水的实验研究
短句来源
     The method of improving oxidation capability of hydrogen peroxide is called Feitong method, namely the method of Fe2+— H2O2. The biochemical property of furfural waste water can be improved significantly through treatment by the method of Feitong.
     利用Fe2+提高过氧化氢氧化能力的方法称为费通法,即Fe2+— H2O2法。 使用费通法处理糠醛废水,可明显改善糠醛废水的可生化性。
短句来源
     A Study on Treatment of Furfural Wastewater with Iron Filings Filtering- Multistage Hydrolytic/Aerobic Processes
     铁屑过滤-多阶段水解/好氧工艺处理糠醛废水的研究
短句来源
     Treating Furfural Wastewater by Eleetrodialysis
     电渗析处理糠醛废水
短句来源
     Treatment of furfural wastewater using SBR process
     SBR工艺处理糠醛废水研究
短句来源
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The process of the recovery of acetic acid from furfural wastewater by electrodialysis is investigated in the paper.In the view of concentration polarization,the effect of working conditions on the limiting current has been examined,and the regularity has been traced.It provides the reliable base for elaborating the characteristics of the electrodialysis device and selecting suitable working current.

本文针对电渗析处理糠醛废水回收乙酸过程,从浓差极化出发,探计操作条件对极限电流的影响规律,为阐述电渗析装置的特性,选择适宜的操作电流提供依据。

To eliminate pollution and contol water quality,a new method of recover-ing acetic acid from furfural wastewater containing 1—2.5w% acetic acid by elec-trodialysis has been developed.In the pilot plant-scale operation,concentrationof recovered acetic acid reached 20%wt.The quality of the wastewater is improvedand can be reused.

为了消除污染、控制废水水质,开发了电渗析处理糠醛废水的新方法。中间试验表明,通过电渗析可以回收浓度为20%的乙酸。再经过萃取、精馏工艺得到工业一级的乙酸,废水可回用。

o eliminate pollution and control water quality,a new method of recovering acetic acid from furfural wastewater containing 1%~2.5% acetic acid by electrodialysis has been developed.In the electrodialysis operation, concentration of recovered acetic acid reaches about 20%, and disposed wastewater containing <002% acetic acid can be drained safely or reused.Furthermore,industrial firstclass acetic acid has been produced by means of extraction and distillation.This technology of electrodialysisextractiondistillation for the comprehensive treatment of furfural wastewater has been used in industry....

o eliminate pollution and control water quality,a new method of recovering acetic acid from furfural wastewater containing 1%~2.5% acetic acid by electrodialysis has been developed.In the electrodialysis operation, concentration of recovered acetic acid reaches about 20%, and disposed wastewater containing <002% acetic acid can be drained safely or reused.Furthermore,industrial firstclass acetic acid has been produced by means of extraction and distillation.This technology of electrodialysisextractiondistillation for the comprehensive treatment of furfural wastewater has been used in industry.

开发了电渗析处理糠醛废水回收乙酸的新方法。糠醛废水中含1%~2.5%的乙酸,通过电渗析分离,可回收浓度为20%左右的乙酸,外排废水中含乙酸<0.02%,达到安全排放或回收利用的目的。粗乙酸经萃取、精馏制得工业一级乙酸。此方法已工业应用。

 
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