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71.
72.
采用Fenton试剂处理汽车油漆废渣。考察了FeSO_4用量、H_2O_2用量、反应温度、反应时间对处理效果的影响。实验结果表明,在FeSO_4用量为20.5 mg/g、H_2O_2用量为0.6 g/g、反应温度为80 ℃、反应时间为3 h的最优条件下,清漆渣、色漆渣、底漆渣3种漆渣的干基减量率均为20%左右,湿基减量率分别为67.9%、48.2%和64.2%,3种产物的脱水性能均有不同程度的提高,处理后废液的COD均为2 000 mg/L左右。采用Fenton试剂处理后的清漆渣产物粒径与原料相似,产物颗粒球形度高,表面粗糙,内部为多孔结构,产物作为固体燃料时燃烧更充分。Fenton试剂处理未对漆渣中的树脂主体产生较大的破坏。 相似文献
73.
Sulfate removal from waste chemicals by precipitation 总被引:3,自引:0,他引:3
Chemical oxidation using Fenton's reagent has proven to be a viable alternative to the oxidative destruction of organic pollutants in mixed waste chemicals, but the sulfate concentration in the treated liquor was still above the acceptable limits for effluent discharge. In this paper, the feasibility of sulfate removal from complex laboratory wastewaters using barium and calcium precipitation was investigated. The process was applied to different wastewater cases (two composite samples generated in different periods) in order to study the effect of the wastewater composition on the sulfate precipitation. The experiments were performed with raw and oxidized wastewater samples, and carried out according to the following steps: (1) evaluate the pH effect upon sulfate precipitation on raw wastewaters at pH range of 2-8; (2) conduct sulfate precipitation experiments on raw and oxidized wastewaters; and (3) characterize the precipitate yielded. At a concentration of 80 g L(-1), barium precipitation achieved a sulfate removal up to 61.4% while calcium precipitation provided over 99% sulfate removal in raw and oxidized wastewaters and for both samples. Calcium precipitation was chosen to be performed after Fenton's oxidation; hence this process configuration favors the production of higher quality precipitates. The results showed that, when dried at 105 degrees C, the precipitate is composed of hemidrate and anhydrous calcium sulfate ( approximately 99.8%) and trace metals ( approximately 0.2%: Fe, Cr, Mn, Co, Ag, Mg, K, Na), what makes it suitable for reuse in innumerous processes. 相似文献
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75.
Removal of inorganic nitrogen (inorganic-N) from toilet wastewater, using a pilot-scale airlift external circulation membrane bioreactor (AEC-MBR) was studied. The results showed that the use of AEC-MBR with limited addition of alkaline reagents and volumetric loading rates of inorganic-N of 0.19-0.40 kg inorganic-N/(m3·d) helped achieve the desired nitrification and denitrification. Furthermore, the effects of pH and dissolved oxygen (DO) on inorganic-N removal were examined. Under the condition of MLSS at 1.56-2.35 g/L, BOD5/ammonia nitrogen (NH/-N) at 1.0, pH at 7.0-7.5, and DO at 1.0-2.0 mg/L, the removal efficiencies of NH4 -N and inorganic-N were 91.5% and 70.0%, respectively, in the AEC-MBR. The cost of addition of alkaline reagent was approximately 0.5-1.5 RMB yuan/m3, and the energy consumption was approximately 0.72 kWh/m3 at the flux of 8 L/(m2·h). 相似文献
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78.
太阳光Fenton氧化对含酚废水生物降解影响研究 总被引:5,自引:2,他引:3
研究了太阳光Fenton氧化预处理对含酚废水生物降解性的影响及太阳光Fenton氧化-生化法联合工艺对煤气含酚废水的处理效果。结果表明,煤气含酚废水和模拟含酚废水的生物降解性均较差,太阳光Fenton氧化预处理可明显提高含酚废水的生物降解性,随着H2O2投加量的增加,废水的BOD5/COD比值逐渐增大,生物降解性明显增强。煤气含酚废水直接进行生化处理的COD和挥发酚去除率均较低。当太阳光Fenton氧化过程H2O2用量为22.5%理论投加量时,采用太阳光Fenton氧化-生化法联合工艺可使煤气含酚废水的COD由1357mg/L降低至104mg/L,挥发酚由198.2mg/L降低至0.47mg/L,COD和挥发酚均达到国家二级排放标准。 相似文献
79.
微波诱导Fenton试剂氧化降解水中对硝基氯苯 总被引:3,自引:1,他引:2
采用微波辐射诱导Fenton氧化工艺处理对硝基氯苯模拟废水。考察了H2O2用量、Fe2+用量、溶液pH、微波辐射时间、微波功率对降解效果的影响;比较了微波诱导Fenton氧化法和单纯的Fenton氧化法对对硝基氯苯的去除效果。结果表明,微波辐射不仅可以提高对硝基氯苯的去除效率,还可促进对硝基氯苯的矿质化,大大提高COD去除率,并缩短反应时间。微波诱导Fenton氧化降解对硝基氯苯的适宜工艺条件为:H2O2和Fe2+用量分别为3.0g/L和160mg/L、pH为3、微波功率为800W、微波辐射时间为10min。在此工艺条件下,对硝基氯苯和COD的去除率分别可达98.9%和90.8%。 相似文献
80.