Position: Home > Articles > Study on the Degradation of Dye Wastewater with Solar Photo-catalysis and Aerobian
Journal of Anhui Agricultural Sciences
2009,37
(28)
3782-3784
日光光催化-好氧生物降解染料废水的研究
作 者:
刘凤艳;尚红超;苏增;郑志宏;翟鸿飞
单 位:
华北水利水电学院;中原石油勘探局供水管理处;浙江省温州市人民政府防汛防旱指挥部
关键词:
光催化-好氧生物降解;活性墨绿;酸性大红;TiO_2
摘 要:
[目的]加强印染行业节能减排,提高染料废水处理效率。[方法]采用自制的日光光催化与好氧生物降解在同一反应器同时进行的装置降解印染废水。考察了溶液pH值、催化剂用量、溶液初始浓度、曝气量等单因素以及单一染料和混合染料的影响。[结果]单因素试验条件为:GR进水浓度为20.0 mg/L,曝气量为60.0 ml/min,pH值为3.0,催化剂投加量为0.6 mg/L。此时影响光催化降解去除率的4个因素主次顺序依次为:进水浓度,曝气量,pH值,催化剂投加量。日光光催化-好氧生物降解单一染料B-4BLN、GR废水的染料去除率分别为85.66%、76.93%,COD去除率分别为90.67%、83.33%;此时,日光光催化降解对单一染料B-4BLN、GR废水的染料去除率分别45.78%、36.54%,相应的COD去除率分别为44.18%、28.41%。因此,组合工艺在染料和COD去除方面均比单一的日光光催化要好。虽然二氧化钛对微生物有少量毒性,但不影响好氧菌的活性。[结论]日光光催化-好氧生物降解单一染料和混合染料废水的处理效果都比较好,且此组合工艺具有成本低、投资少、工艺简单等特点,采用日光催化降解与好氧降解在同一反应器同时进行是可行的。
译 名:
Study on the Degradation of Dye Wastewater with Solar Photo-catalysis and Aerobian
作 者:
LIU Feng-yan et al(Water Supply Management Office,Zhongyuan Petroleum Exploration Bureau,Puyang,Henan 457001)
关键词:
Degradation with solar photo-catalysis and aerobian;;Active blackish green;;Acid scarlet;;TiO_2
摘 要:
[Objective]It was tried to improve the efficiency of dye wastewater treatment for the strength of the energy-saving and emission-reducing of waster in the dyeing and printing industry.[Method]The dyeing and printing waster was degraded with the solar photo-catalysis and aerobian in the reactor installation made at home.The effect of the factor such as pH value of solution,catalyst dosage,initial concentration of solution,aeration on single dye and mixed dye were inspected.[Result]The single-faetor test condition was:the inlet concentration of GR influent was 20.0 mg/L,the aeration capacity was 60.0 ml/min,the pH value was 3.0 and the catalyst amount was 0.6 mg/L,under which condition,the order of four factors affecting the removal rate of photo-catalytic degradation was the inlet concentration>aeration capacity>pH value>catalyst amount.The removal rate of the dye from the wastewater of single dye B-4BLN and GR dye was 85.66%and 76.93%; the removal efficiency of COD was 90.67%and 83.33%,respectively,with the degradation measure of solar photocatalysis and aerobian. The removal rate of the dye from the wastewater of single dye B-4BLN and GR dye was 45.78%and 36.54%and the removal efficiency of COD was 44.18%and 28.41%,respectively,with the solar photocatalytic degradation.Therefore,the treatment of combined factor was better than single factor.The titanium dioxide had a small amount of toxic micro-organisms,which did not affect the activity of aerobic bacteria. [Conclusion]There was the good efficiency in the degradation of the wastewater containing single dye and mixed dye with solar photocatalysis and aerobian.The treatment of combined factor was low cost,low investment and simple technology.It was feasible that solar photocatalytic degradation and aerobic degradation in same reactor installation at the same time could be used.