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461.
为了降低松香改性酚醛树脂生产废水的COD并改善其可生化性,采用微电解—芬顿氧化工艺对该废水进行预处理。研究了pH、微电解反应时间、曝气、双氧水投加量等对微电解和芬顿氧化处理效果的影响,考察了COD去除率和BOD5/COD值的变化趋势。实验结果表明:曝气条件下,调节废水pH为4、进行2次微电解、微电解反应时间各2.0 h时,废水的COD去除率为38%,BOD5/COD值提高为0.18;再投加7.5%(w)的双氧水,废水的COD去除率为65.3%,BOD5/COD值为0.37。采用微电解—芬顿氧化的预处理工艺,不仅有效去除了废水的COD,而且显著改善了废水的可生化性。  相似文献   
462.
单级SBR生物膜中全程自养脱氮的研究   总被引:17,自引:0,他引:17       下载免费PDF全文
研究了具有全程自养脱氮作用的生物膜中无机碳源浓度、pH值、溶解氧(DO)对全程自养脱氮的影响.结果表明,当NaHCO3浓度从1.75g/L上升到2.50g/L时,反应体系中的pH值从7.6~8.0上升到8.8左右,氨氮转化率和总无机氮去除率分别急剧下降到53%和48.8%.在进水氨氮负荷为60g/(m3·d)时,最佳DO应控制在0.5~0.7mg/L,此时氨氮转化率达到90%以上.  相似文献   
463.
•Bacterially-mediated coupled N and Fe processes examined in incubation experiments. •NO3 reduction was considerably inhibited as initial Fe/N ratio increased. •The maximum production of N2 occurred at an initial Fe/N molar ratio of 6. •Fe minerals produced at Fe/N ratios of 1–2 were mainly easily reducible oxides. The Fe/N ratio is an important control on nitrate-reducing Fe(II) oxidation processes that occur both in the aquatic environment and in wastewater treatment systems. The response of nitrate reduction, Fe oxidation, and mineral production to different initial Fe/N molar ratios in the presence of Paracoccus denitrificans was investigated in 132 h incubation experiments. A decrease in the nitrate reduction rate at 12 h occurred as the Fe/N ratio increased. Accumulated nitrite concentration at Fe/N ratios of 2–10 peaked at 12–84 h, and then decreased continuously to less than 0.1 mmol/L at the end of incubation. N2O emission was promoted by high Fe/N ratios. Maximum production of N2 occurred at a Fe/N ratio of 6, in parallel with the highest mole proportion of N2 resulting from the reduction of nitrate (81.2%). XRD analysis and sequential extraction demonstrated that the main Fe minerals obtained from Fe(II) oxidation were easily reducible oxides such as ferrihydrite (at Fe/N ratios of 1–2), and easily reducible oxides and reducible oxides (at Fe/N ratios of 3–10). The results suggest that Fe/N ratio potentially plays a critical role in regulating N2, N2O emissions and Fe mineral formation in nitrate-reducing Fe(II) oxidation processes.  相似文献   
464.
• Gas diffusion electrode (GDE) is a suitable setup for practical water treatment. • Electrochemical H2O2 production is an economically competitive technology. • High current efficiency of H2O2 production was obtained with GDE at 5–400 mA/cm2. • GDE maintained high stability for H2O2 production for ~1000 h. • Electro-generation of H2O2 enhances ibuprofen removal in an E-peroxone process. This study evaluated the feasibility of electrochemical hydrogen peroxide (H2O2) production with gas diffusion electrode (GDE) for decentralized water treatment. Carbon black-polytetrafluoroethylene GDEs were prepared and tested in a continuous flow electrochemical cell for H2O2 production from oxygen reduction. Results showed that because of the effective oxygen transfer in GDEs, the electrode maintained high apparent current efficiencies (ACEs,>80%) for H2O2 production over a wide current density range of 5–400 mA/cm2, and H2O2 production rates as high as ~202 mg/h/cm2 could be obtained. Long-term stability test showed that the GDE maintained high ACEs (>85%) and low energy consumption (<10 kWh/kg H2O2) for H2O2 production for 42 d (~1000 h). However, the ACEs then decreased to ~70% in the following 4 days because water flooding of GDE pores considerably impeded oxygen transport at the late stage of the trial. Based on an electrode lifetime of 46 days, the overall cost for H2O2 production was estimated to be ~0.88 $/kg H2O2, including an electricity cost of 0.61 $/kg and an electrode capital cost of 0.27 $/kg. With a 9 cm2 GDE and 40 mA/cm2 current density, ~2–4 mg/L of H2O2 could be produced on site for the electro-peroxone treatment of a 1.2 m3/d groundwater flow, which considerably enhanced ibuprofen abatement compared with ozonation alone (~43%–59% vs. 7%). These findings suggest that electrochemical H2O2 production with GDEs holds great promise for the development of compact treatment technologies for decentralized water treatment at a household and community level.  相似文献   
465.
UV photolysis and UV based advanced oxidation processes (AOPs) are gaining more and more attention for drinking water treatment. Quantum yield (ø) and molar absorption coefficient (ε) are the two critical parameters measuring the effectiveness of photolysis of a compound. The product of the two was proposed as a fundamental measure of a constituent’s amenability to transformation by photolysis. It was shown that this product, named the photolysis coefficient, k p , can be determined using standard bench tests and captures the properties that govern a constituent’s transformation when exposed to light. The development showed the photolysis coefficient to be equally useful for microbiological, inorganic and organic constituents. Values of k p calculated by the authors based on quantum yield and molar absorption coefficient data from the literature were summarized. Photolysis coefficients among microorganisms ranged from 8500 to more than 600000 and are far higher than for inorganic and organic compounds, which varied over a range of approximately 10 to 1000 and are much less sensitive to UV photolysis than the microorganisms.  相似文献   
466.
在一维管式沉降炉燃烧试验装置上,以汞的氧化率为评价指标,进行了溴化物种类、添加浓度、添加方式等因素对燃煤烟气汞形态转化影响的实验研究.结果表明: 溴对汞的氧化起促进作用,汞氧化率在一定的范围快速增加,超过此范围缓慢增加.不同的煤质,不同的溴添加物,这个范围是不同的;综合考虑添加成本,操作难易程度以及汞的氧化率,添加同浓度的溴化物时,汞的氧化率由低到高的排列顺序依次是:HBr炉后< HBr炉前< CaBr2< NaBr.在本实验条件下,汞的氧化效果最佳的条件是,褐煤中添加200mg/kg溴化钠,汞的氧化率约72%;亚烟煤添加1000mg/kg溴化钠,汞的氧化率约83%.  相似文献   
467.
DOC+CDPF对生物柴油燃烧颗粒排放特性的影响   总被引:2,自引:0,他引:2  
以一台满足国五排放法规的车用柴油机为样机,研究加装氧化催化转化器DOC与催化型颗粒捕集器CDPF(DOC+CDPF后处理装置)前后,柴油机燃用B20燃料(燃料含20%体积掺混比的生物柴油)的颗粒排放特性.结果表明,在未加装该后处理装置时,该机排气颗粒数量浓度的粒径分布呈双峰形态,B20燃料的排气颗粒数量浓度的峰值粒径在10nm和50nm附近,纯柴油的排气颗粒数量浓度的峰值粒径在50nm和200nm附近.在颗粒粒径小于120nm的区域,该机燃用B20燃料的排气颗粒数量浓度大于纯柴油.加装该后处理装置后,该机排气颗粒数量浓度的粒径分布呈多峰形态,峰值粒径在10nm、20nm和60nm附近.加装DOC+CDPF后,不论是柴油还是B20燃料,与原机相比,柴油机排气颗粒总数量下降明显,其中60~200nm粒径范围的颗粒数量浓度降幅更为显著.在相同工况下,DOC+CDPF对柴油机燃用B20燃料的颗粒总数量净化效率高于纯柴油.  相似文献   
468.
In this study, the performance of nitrogen and phosphorus removal in a full-scale closed-loop bioreactor (oxidation ditch) system was simulated using the ASM2d model. Routine data describing the process for two years were compiled for calibration and validation. To overcome the identifiability problem, the classic Bayesian inference approach was utilized for parameter estimation. The calibrated model could describe the long-term trend of nutrient removal and short-term variations of the process performance, showing that the Bayesian method was a reliable and useful tool for the parameter estimation of the activated sludge models. The anoxic phosphate uptake by polyphosphate accumulating organisms (PAO) contributed 71.2% of the total Poly-P storage, which reveals the dominance of denitrifying phosphorus removal process under the oxygen limiting conditions. It was found that 58.7% of the anoxic Poly-P storage and denitrification by PAO in the reactor was achieved in the aerated compartment, implying that the PAO’s anoxic activity was significantly stimulated by the low dissolved oxygen (DO) level in this compartment due to the oxygen gradient caused by brush aerator.  相似文献   
469.
利用小试试验研究了太阳光/TiO2体系对铜绿微囊藻细胞内的溶解性有机氮(DON)的氧化降解过程,考察了氧化降解过程中总可溶性蛋白、多糖、UV254等指标的变化,分析了其作用机理.结果表明,7h处理后,太阳光/TiO2体系对水样中的DON降解率为29%,且降解过程中TN含量基本没有变化,而NH4+和NO3-的浓度明显增加;氧化过程中,总可溶性蛋白和多糖的含量明显减少,去除率达48.6%和54.5%.水样的浑浊度、UV254和DOC也有不同程度的去除.  相似文献   
470.
为研究生物膜技术在低污染水体净化中的应用前景,以洱海入湖河流——白鹤溪为研究对象,采用分段进水和分区曝气方式强化砾间接触氧化工艺的脱氮性能,探讨HRT(水力停留时间)、O/A(曝气区和非曝气区容积比)对低污染水体中CODMn、NH4+-N、TN去除的影响. 结果显示:①HRT对有机物去除效果影响较大,在HRT为0.8、1.5、2.5、3.5 h下,CODMn去除率平均值分别为14.7%、28.6%、42.7%、48.8%;而当HRT为2.5 h时为较佳运行工况,CODMn、NH4+-N、TN去除率平均值分别为42.7%、83.6%、31.6%. ②O/A对NH4+-N的去除影响不大,在O/A为1∶1、1∶2、1∶3下,NH4+-N去除率平均值分别为86.7%、83.1%、80.5%;而当O/A为1∶3时具有较佳的脱氮除碳效果,CODMn、NH4+-N、TN去除率平均值分别为42.2%、80.5%、40.2%. ③在HRT为2.5 h、O/A为1∶3下稳定运行15 d后,对生物膜样品的微生物群落结构分析表明,在装置后段有脱氮微生物的富集,其优势菌为Pseudomonas、Pantoe、Synechococcus、Chloroflexi bacterium. 研究表明,砾间接触氧化工艺对低污染水具有较好的脱氮除碳效果.   相似文献   
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