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631.
漂白粉和敌百虫对净化养鱼水生物膜活性的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
以附着在固体表面的生物膜为材料,实验研究了渔药漂白粉和敌百虫对其菌类数量及活性的影响。通过分析生化需氧量(BOD5)的曲线,测定实验前后细菌、放线菌、真菌的数量和水中化学需氧量(CODMn)、铵氮(NH+4-N)的质量浓度,并用电子显微镜观察。结果表明:ρ(漂白粉)小于6 17mg L,生物膜的活性能够恢复;ρ(漂白粉)为0 7mg L时,15d后生物膜的活性可恢复80%以上。在实验浓度范围内,虽然敌百虫对生物膜的活性和水质净化能力影响不明显,但也应谨慎使用以防止污染环境。   相似文献   
632.
综述了生物流化床处理有机废水时生物膜的特性及其对反应器效率的影响。包括反应器中生物膜的形成及影响生物膜形成的因素;生物膜的活性及膜厚、基质浓度和不同种群微生物在生物膜中的分布对其活性的影响;生物膜的传质特性;生物膜厚度与反应器效率的关系;生物膜的脱膜及其数学模型;提出了生物流化床今后的研究重点  相似文献   
633.
● MnO x /Ti flow-through anode was coupled with the biofilm-attached cathode in ECBR. ● ECBR was able to enhance the azo dye removal and reduce the energy consumption. ● MnIV=O generated on the electrified MnO x /Ti anode catalyzed the azo dye oxidation. ● Aerobic heterotrophic bacteria on the cathode degraded azo dye intermediate products. ● Biodegradation of intermediate products was stimulated under the electric field. Dyeing wastewater treatment remains a challenge. Although effective, the in-series process using electrochemical oxidation as the pre- or post-treatment of biodegradation is long. This study proposes a compact dual-chamber electrocatalytic biofilm reactor (ECBR) to complete azo dye decolorization and mineralization in a single unit via anodic oxidation on a MnOx/Ti flow-through anode followed by cathodic biodegradation on carbon felts. Compared with the electrocatalytic reactor with a stainless-steel cathode (ECR-SS) and the biofilm reactor (BR), the ECBR increased the chemical oxygen demand (COD) removal efficiency by 24 % and 31 % (600 mg/L Acid Orange 7 as the feed, current of 6 mA), respectively. The COD removal efficiency of the ECBR was even higher than the sum of those of ECR-SS and BR. The ECBR also reduced the energy consumption (3.07 kWh/kg COD) by approximately half compared with ECR-SS. The advantages of the ECBR in azo dye removal were attributed to the synergistic effect of the MnOx/Ti flow-through anode and cathodic biofilms. Catalyzed by MnIV=O generated on the MnOx/Ti anode under a low applied current, azo dyes were oxidized and decolored. The intermediate products with improved biodegradability were further mineralized by the cathodic aerobic heterotrophic bacteria (non-electrochemically active) under the stimulation of the applied current. Taking advantage of the mutual interactions among the electricity, anode, and bacteria, this study provides a novel and compact process for the effective and energy-efficient treatment of azo dye wastewater.  相似文献   
634.
生物膜厚度对流化床反应器性能影响分析   总被引:8,自引:0,他引:8  
建立了生物流化床反应器的数学模型,并通过大量试验验证了该模型的可靠性,进而分析了生物膜不同厚度的情况下有机物在其中的分布以及生物膜厚度(δ=30-400μm)对生物浓度、效率因子、出水有机物浓度和有机物降解速率的影响。研究结果表明,本试验条件下当进水COD=530mg/L时,单位体积生物膜对有机物的最大降解速率为0.52kg COD/(L·d),最佳膜厚为180μm左右。  相似文献   
635.
生物膜A/O法处理PTA废水的试验研究   总被引:8,自引:0,他引:8  
赵洪波 《环境科学》1994,15(6):47-50,62
在含两级A/O和生物炭的连续运行试验装置上处理PTA废水,结果表明:进水CODcr为1101mg/L,HRT为40h,O2段和生物炭出水中残余CODcr分别为82mg/L和55mg/L,相应CODcr去除率分别为92%和95%;进水CODcr为1112mg/L,HRT为32h,O2段和生物炭出水中残余CODcr分别为86mg/L和64mg/L,其去除率分别为92%和95%;在上述试验条件下刀;段TA去除率均为93%。  相似文献   
636.
Virulence factors (VFs) confer upon pathogens the ability to cause various types of damage or diseases. Wastewater treatment plants (WWTPs) are important point sources for the emission of pathogens and VFs into receiving rivers. Conventional WWTP upgrades are often implemented to improve the water quality of receiving ecosystems. However, knowledge on the pathogens, VFs, and health risks to receiving aquatic ecosystems after upgrade remains limited. In this study, we investigated detailed pathogenic information, including taxa, pathogenicity, and health risk, in two wastewater-dominant rivers after WWTP upgrade. Using 16S rRNA gene sequencing, we screened 14 potential pathogens in water and epilithic biofilm samples, though they were significantly more enriched in the biofilms. Combining 16S rRNA and metagenomic sequencing data, we identified Pseudomonas and Aeromonas as the dominant pathogenic taxa carrying functional VFs (e.g., mobility and offensive) in the epilithic biofilm. Moreover, strong pathogen-specific VF-host co-occurrence events were observed in the epilithic biofilm samples, indicating the importance of biofilms as reservoirs and vehicles for VFs. Further, we demonstrated that mobility VF is crucial for biofilm formation and pathogens in biofilm carrying offensive VF may be highly invasive. Quantification and health risk assessment suggested that the skin contact risk of P. aeruginosa carrying VFs was higher than the acceptable probability of 10?4 in both water and epilithic biofilm samples, which may threaten ecological and human health.  相似文献   
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