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氨基酸废水     
相关语句
  amino acid waste water
     For saturated amino acid wastewater, after processing 215 min, the results showed that removal rate of amino acid, current efficiency and power consumption are 79.7%, 87.2%, 6.09kwh/m respectively.
     对于饱和氨基酸废水的脱除,处理215分钟后,脱除率可达79.7%、电流效率为87.2%、耗电量为6.Ogkwh/m3。
短句来源
     Recovery and treatment of amino acid wastewater
     氨基酸废水的回收利用及处理
短句来源
     (4)When applied voltage, flow rate, temperature was 17.5 V,5 1/h,26C respectively, the removal rate of saturated amino acid wastewater and power consumption were about 78.9%,3.675 kwh/m3 after processing 3 h. This method can reduce the costs of the membrane.
     (4)在普通离子交换膜和双极膜组合、操作电压为17.5V、流量为51爪、温度为26℃下,脱除3小时后,饱和氨基酸废水的脱除率可达78.9%、耗电量为3.675 kwh/m3。
短句来源
     The Study of Amino Acid Waste Water Treatment by the Bipolar Membrane Electrodialysis
     双极膜电渗析技术处理氨基酸废水的研究
短句来源
     In the paper, the separation and recovery of the dilute and saturated amino acid wastewater (0.002mol/l and 0.05 mol/1) was studied in the laboratory.
     本课题是在实验室范围内,应用双极膜电渗析来对低浓度(0.002mol/l)和饱和浓度(0.05mol/l)的氨基酸废水进行处理与回收研究。 实验表明:
短句来源
更多       
  amino acid wastewater
     For saturated amino acid wastewater, after processing 215 min, the results showed that removal rate of amino acid, current efficiency and power consumption are 79.7%, 87.2%, 6.09kwh/m respectively.
     对于饱和氨基酸废水的脱除,处理215分钟后,脱除率可达79.7%、电流效率为87.2%、耗电量为6.Ogkwh/m3。
短句来源
     Recovery and treatment of amino acid wastewater
     氨基酸废水的回收利用及处理
短句来源
     (4)When applied voltage, flow rate, temperature was 17.5 V,5 1/h,26C respectively, the removal rate of saturated amino acid wastewater and power consumption were about 78.9%,3.675 kwh/m3 after processing 3 h. This method can reduce the costs of the membrane.
     (4)在普通离子交换膜和双极膜组合、操作电压为17.5V、流量为51爪、温度为26℃下,脱除3小时后,饱和氨基酸废水的脱除率可达78.9%、耗电量为3.675 kwh/m3。
短句来源
     The Study of Amino Acid Waste Water Treatment by the Bipolar Membrane Electrodialysis
     双极膜电渗析技术处理氨基酸废水的研究
短句来源
     In the paper, the separation and recovery of the dilute and saturated amino acid wastewater (0.002mol/l and 0.05 mol/1) was studied in the laboratory.
     本课题是在实验室范围内,应用双极膜电渗析来对低浓度(0.002mol/l)和饱和浓度(0.05mol/l)的氨基酸废水进行处理与回收研究。 实验表明:
短句来源
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  wastewater containing amino acids
     Treatment of the wastewater containing amino acids by electrodialysis
     电渗析法处理氨基酸废水
短句来源
  “氨基酸废水”译为未确定词的双语例句
     Experimental studies indicate that 13X zeolite is suitable for the purification of lysine-bearing wastewater.
     实验研究表明可用13X分子筛处理含氨基酸废水,为实际处理含氨基酸废水提供了可行性依据。
短句来源
     TREATMENT OF ACIDIC WASTE WATER CONTAINING AA FROM PHARMACEUTICAL FACTORY BY ELECTRODIALYSIS
     电渗析法处理制药厂酸性氨基酸废水
短句来源
     Peptide was Found From Waste Water Containing Amino Acid With Field Desorption Mass Spectrum
     采用质谱场解析法从氨基酸废水中发现肽类物质
短句来源
     The experimental results as follows:(1) By the bipolar membrane electrodialysis ,the treatment of amino acid waster water is economical and efficient, meanwhile, the discharge of amino acid waster water and the recovery of valuable amino acid solution can be resolved.
     (1)用双极膜电渗析技术来处理酸性氨基酸废水是可行的,不仅解决了分离低浓度和饱和浓度的氨基酸废水的问题,而且浓缩回收了具有很高实用价值的氨基酸,达到了既处理了废水又回收了有用物质的双重目的。
短句来源
     (2) The effectiveness of applied voltage, flow rate, temperature and loading concentration ratio on the bipolar membrane electrodialysis performance was investigated, in which applied voltage has a decisive influence on the treatment prosess.
     (2)操作电压、物料流量、进料温度和进料比等因素对双极膜电渗析技术处理氨基酸废水的过程性能有影响,其中操作电压影响最大。
短句来源
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The waste water containing amino acid (AA) from pharmaceutical factory is treated by electrodialysis. The results show that recoveries of both AA and COD are up to 80%,only by one-stage treatment, the light color waste water with lower concentration of AA will meet the disposal requirement, and the concentration ratio of AA in a concentrated and dilute solution smay reach up to 20, AA in the concentrated effluent may approach to saturation. Also,the ionic mobility and polarization of the ions in waste water...

The waste water containing amino acid (AA) from pharmaceutical factory is treated by electrodialysis. The results show that recoveries of both AA and COD are up to 80%,only by one-stage treatment, the light color waste water with lower concentration of AA will meet the disposal requirement, and the concentration ratio of AA in a concentrated and dilute solution smay reach up to 20, AA in the concentrated effluent may approach to saturation. Also,the ionic mobility and polarization of the ions in waste water passing through an ion exchange membrane are studied.

用电渗析对制药厂酸性氨基酸废水进行了处理,结果表明:氨基酸和COD的脱除率均可达80%,低浓浅色废水经一级处理即可达排放标准,氨基酸的浓淡比可达20倍,浓水中氨基酸浓度可接近其饱和浓度。对废水中离子通过离子交换膜的极化现象和迁移性也做了研究。

The concentration recovery biological treatment process is used to treat amino acid wastewater. The water quality of the effluent can meet the requirements of the overall National Sewage Discharge Standard. It has better economic and social benefit.

采用浓缩回收—生物处理的方法对氨基酸废水进行处理 ,出水水质达到了国家排放标准 ,有较好的经济效益和社会效益

The waste disposal of amino acid industry has been the hot spot of environmental protection field.The treatment technology of amino acid waste water,such as methods of membrane separation,biological method is rewiewed.Biological method is regarded as the ultimate outlet for the resolution of the pollution problem of amino acid industry in China.Meanwhile the application of three dimensional electrode electrochemical method to the treatment is also discussed.

氨基酸废水处理技术一直是国内外氨基酸生产厂家和环保界的研究热点。本文对国内外氨基酸废水处理方法,如膜分离法、生物法等进行了详细评述,认为生物法是解决我国氨基酸废水污染的最终出路,同时提出将三维电极电化学法应用于氨基酸废水的处理,具有重要的理论意义和实际的应用价值。

 
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