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561.
利用城市实际污水考察了ρ(MLSS)在2 400、3 350、4 300和5 250 mg/L 4种工况下SBR反应器(厌氧/好氧/缺氧/再好氧/沉淀/排水/预缺氧运行模式)的脱氮除磷效果,并分析了反应器单个周期内有机物、氮和磷的转化过程及污泥产量. 结果表明:ρ(MLSS)由2 400 mg/L升至5 250 mg/L时,系统TN去除率由52.5%升至66.6%;后续缺氧及预缺氧工序的脱氮比例(该工序TN去除量占系统TN总去除量的比例)由12.7%增至23.1%;ρ(MLSS)为4 300 mg/L时系统TP去除率(75.6%)达到最大. 后续缺氧及预缺氧工序中,ρ(MLSS)与内源反硝化速率呈正相关(R2=0.703 7);提高ρ(MLSS)可使PAOs(聚磷菌)在下一个周期内获得更多的碳源,使厌氧释磷量由1.62 mg/L升至9.10 mg/L,但PAOs吸磷动力会减弱,对除磷不利. 在后置反硝化、污泥衰减、能量解偶联等减量机制共同作用下,ρ(MLSS)为4 300 mg/L时系统污泥减量可提高24.4%. 从脱氮除磷及污泥减量效果综合考虑,ρ(MLSS)是双重后置反硝化工艺重要的控制参数,在该研究条件下控制在4 300 mg/L最优. 相似文献
562.
聚乙烯醇凝胶包埋固定化细菌联合植物的除氮研究 总被引:1,自引:0,他引:1
为了解聚乙烯醇(PVA)凝胶包埋固定化菌在富营养化水体生态修复中的效果,利用PVA凝胶包埋固定硝化和反硝化细菌并联合水芹(Oenanthe clecumbens)和蕹菜(Ipomoea aquatica)2种植物进行21 d的除氮试验。结果表明,加菌试验组TN、NH4+-N、NO3--N、NO2--N及TP去除率显著高于无菌试验组(P0.05);各试验组N的去除效率与添加PVA凝胶包埋固定硝化和反硝化细菌呈显著正相关(P0.05)。添加PVA凝胶固定硝化和反硝化细菌的蕹菜和水芹试验组植物的平均生长速率(RGR)分别为38.5和19.6 mg·g-1·d-1,而单纯蕹菜和水芹试验组RGR分别为29.9和9.5 mg·g-1·d-1。 相似文献
563.
Lei Shen Yuntao Guan Guangxue Wu Xinmin Zhan 《Frontiers of Environmental Science & Engineering》2014,8(5):776-783
Nitrous oxide (N2O) is a greenhouse gas that can be released during biological nitrogen removal from wastewater. N2O emission from a sequencing batch reactor (SBR) for biological nitrogen and phosphorus removal from wastewater was investigated, and the aims were to examine which process, nitrification or denitrification, would contribute more to N2Oemission and to study the effects of heterotrophic activities on N2O emission during nitrification. The results showed that N2O emission was mainly attributed to nitrification rather than to denitrification. N2O emission during denitrification mainly occurred with stored organic carbon as the electron donor. During nitrification, NaO emission was increased with increasing initial ammonium or nitrite concentrations. The ratio of N2O emission to the removed ammonium nitrogen (N2O- N/NH4-N) was 2.5% in the SBR system with high heterotrophic activities, while this ratio was in the range from 0.14% to 1.06% in batch nitrification experiments with limited heterotrophic activities. 相似文献
564.
A/O脱氮工艺实时控制对策的试验研究 总被引:2,自引:0,他引:2
以人工合成废水为研究对象,系统研究了提高A/O(anoxic/oxic)工艺氨氮和硝酸氮去除效率的实时控制对策.氨氮控制的本质是通过控制DO设定值和好氧区体积大小使出水氨氮浓度达标排放.硝酸氮控制的本质在于高效利用缺氧区反硝化潜力,为此建立了以调节内循环回流量或(和)外碳源投加量维持缺氧区末端硝酸氮浓度处于设定值的实时控制对策.系统控制采用两级结构,高水平监控层用来选择低水平执行层的设定值,而低水平执行层对DO值、好氧区体积、内循环回流量和外碳源投加量进行直接控制,试验表明上述控制对策可以显著提高系统脱氮效率,降低出水氨氮和硝酸氮浓度,并最大程度节约运行费用. 相似文献
565.
论述了关于重庆钢铁股份有限公司炼钢厂LF炉除尘工艺的现状和系统的不足,并且就相关技术问题进行了分析与研讨,提出了相应的处理方案。 相似文献
566.
567.
568.
In this paper, a study was conducted on the effect of polyhydroxyalkanoates (PHA) and glycogen transformations on biologic nitrogen and phosphorus removal in low dissolved oxygen (DO) systems. Two laboratory-scale sequencing batch reactors (SBR1 and SBR2) were operating with anaerobic/aerobic (low DO, 0.15–0.45 mg·L-1) configurations, which cultured a propionic to acetic acid ratio (molar carbon ratio) of 1.0 and 2.0, respectively. Fewer poly-3-hydroxybutyrate (PHB), total PHA, and glycogen transformations were observed with the increase of propionic/acetic acid, along with more poly-3-hydroxyvalerate (PHV) and poly-3-hydroxy-2-methyvalerate (PH2MV) shifts. The total nitrogen (TN) removal efficiency was 68% and 82% in SBR1 and SBR2, respectively. In the two SBRs, the soluble ortho-phosphate (SOP) removal efficiency was 94% and 99%, and the average sludge polyphosphate (poly-P) content (g·g-MLVSS-1) was 8.3% and 10.2%, respectively. Thus, the propionic to acetic acid ratio of the influent greatly influenced the PHA form and quantity, glycogen transformation, and poly-P contained in activated sludge and further determined TN and SOP removal efficiency. Moreover, significant correlations between the SOP removal rate and the (PHV+ PH2MV)/PHA ratio were observed (R 2>0.99). Accordingly, PHA and glycogen transformations should be taken into account as key components for optimizing anaerobic/aerobic (low DO) biologic nitrogen and phosphorus removal systems. 相似文献
569.
Rongchang WANG Xinmin ZHAN Yalei ZHANG Jianfu ZHAO 《Frontiers of Environmental Science & Engineering》2011,5(1):48-56
Nitrogen removal performance and nitrifying population dynamics were investigated in a redox stratified membrane biofilm reactor (RSMBR) under oxygen limited condition to treat ammonium-rich wastewater. When the N H 4 + - N loading rate increased from 11.1±1.0 to 37.2 ± 3.2 g N H 4 + - N · m - 2 · d - 1 , the nitrogen removal in the RSMBR system increased from 18.0±9.6 mgN·d-1 to 128.9±61.7 mgN·d-1. Shortcut nitrogen removal was achieved with nitrite accumulation of about 22.3 ± 5.3 m g N O 2 - - N · L - 1 . Confocal micrographs showed the stratified distributions of nitrifiers and denitrifiers in the membrane aerated biofilms (MABs) at day 120, i.e., ammonia and nitrite oxidizing bacteria (AOB and NOB) were dominant in the region adjacent to the membrane, while heterotrophic bacteria propagated at the top of the biofilm. Real-time qPCR results showed that the abundance of amoA gene was two orders of magnitude higher than the abundance of nxrA gene in the MABs. However, the nxrA gene was always detected during the operation time, which indicates the difficulty of complete washout of NOB in MABs. The growth of heterotrophic bacteria compromised the dominance of nitrifiers in biofilm communities, but it enhanced the denitrification performance of the RSMBR system. Applying a high ammonia loading together with oxygen limitation was found to be an effective way to start nitrite accumulation in MABs, but other approaches were needed to sustain or improve the extent of nitritation in nitrogen conversion in MABs. 相似文献
570.
Biodegradation of paclobutrazol by a microbial consortium isolated from industrially contaminated sediment 总被引:1,自引:0,他引:1
Biodegradability of the plant growth retardant paclobutrazol by a microbial consortium in which Pseudomonas was the predominant strain was investigated in batch culture. The consortium which had been isolated from an industrially contaminated sediment was proven to be useful for the treatment of effluents containing paclobutrazol. Paclobutrazol was degraded by the pure isolated strain of Pseudomonas sp. as well as the microbial consortium. Paclobutrazol was utilized as the sole source of carbon and energy. Sixty percent of the paclobutrazol was degraded by the microbial consortium from an initial concentration of 54 mg L?1 within 48 h and more than 98% of an initial concentration of 3.4 mg L?1 was degraded within 36 h. The optimum temperature and pH were determined to be 30°C and 7.0, respectively. A pure strain of a bacterium, isolated from the enrichment culture was identified as Pseudomonas sp. The microbial consortium was tolerant of high pH and could degrade paclobutrazol faster than the pure strain. The degradation rate of this plant growth regulator in an aerobic environment was greater than that under anaerobic conditions. 相似文献