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厌氧除磷同步脱氮及影响因素研究 总被引:1,自引:0,他引:1
采用鸡粪污泥为种泥,在厌氧混合连续流反应装置内进行厌氧还原磷产生磷化氧功能菌的富集,进行硝酸盐、硫酸盐、不同碳源和氮源条件下厌氧除磷效率的研究,并考察磷化氧的生成与硝酸、总磷、氨氮去除的关系.结果表明,(1)SO_4~(2-)-S适宜的投加量为26 mg·L~(-1),不投加NO_3~--N.水中含有氧化态的无机物在厌氧条件下与磷争夺[H]导致厌氧除磷的效率下降.(2)合适的碳源为葡萄糖1 000 mg·L~(-1),纤维素不适合作为碳源,合适的氮源为蛋白胨500 mg·L~(-1),水中含有的还原糖和有机氮源促进磷化氧的生成.(3)pH值控制在6.5~7.0的范围,最适宜的生长温度在35℃左右.(4)氨氮的去除率随着总磷的去除率而增加,在厌氧条件下可达到同时脱氮除磷的效果.磷的去除由厌氧除磷菌还原磷生成磷化氧完成,氨氮由生成氮气或生成蛋白质来去除. 相似文献
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采用新型厌氧好氧一体化生物反应器对发酵废水进行了中试处理研究.试验结果表明,系统总有机负荷最高可达到8.88kg(COD)m-3d-1,系统去除率稳定在88.10%~96.88%,说明反应器处理效率高,抗冲击能力强.反应器结构合理,利于保持丰富、高活性的微生物,反应器厌氧区颗粒污泥TS高达83.9gL-1,VS/TS为56.9%~57.4%,比产甲烷活性为280~350mL(CH4)gvss-1d-1;好氧区固定化微生物TS高达64.03gL-1载体,VS/TS为94.02%~94.30%.反应器各功能区对废水的降解过程分析,说明反应器厌氧区和好氧区一体化结构合理,可将废水逐级降解,从而保证整个系统的处理效果.图8表4参11 相似文献
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常温SBR厌氧-好氧反应器的短程硝化 总被引:2,自引:0,他引:2
短程硝化-反硝化是污水节能脱氮新技术之一,其关键在于实现短程硝化,而水温是控制短程硝化的主要因素。在生活污水氨氮浓度小于100mg/L的水质条件下,采用SBR厌氧-好氧反应器进行了常温短程硝化试验研究。研究结果表明,水温14.5℃~16.5℃的条件下,在好氧段可以实现短程硝化,亚硝化率达到了94.9%。亚硝化的程度还与曝气时间的长短有关,曝气时间短时,可以将氨氧化控制在亚硝化阶段,积累大量的亚硝酸盐,但是氨转化率比较低;曝气时间延长,氨氮去除率增加,同时部分亚硝酸氮会被进一步氧化成硝酸氮。该研究结果打破了只有在中高温条件下才能实现短程硝化的普遍看法,从而为在常温下实现短程硝化提供了新的依据。 相似文献
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生物除硫理论与技术研究进展 总被引:5,自引:0,他引:5
现今含硫废水、废气的处理并没有得到应有的重视,使得技术发展缓慢。以往通常采用物化方法,这种处理方式不仅投资量大,而且对含硫有害物质的去除并不彻底,而生物方法与物化方法相比,在投资和环保效益方面都有相当积极的作用。文章从硫的生物循环入手,分别介绍了生物除硫的机理和影响因素;描述了下水道中的生物硫循环,提出抑制其中H2S气体释放的经验模型及具体措施。在对厌氧消化系统中硫酸盐还原菌的研究中发现:ρ(COD)/ρ(SO42-)比、碳源、pH值等各影响因素相互作用,共同决定厌氧消化系统中硫酸盐还原菌、产甲烷菌和产酸菌三者之间的抑制及共生关系;无论三者之间的关系如何变化,只要底物中含有一定量的硫酸根,它们必然共同存在于厌氧系统中,并产生硫化氢气体,造成污染。在反硫化细菌的研究中得出:当污水中同时含有硫化物和硝酸根,缺氧条件下,必然产生反硝化除硫的生物代谢过程。利用这一过程,不但能够在无需碳源的条件下有效去除硝酸根,节约的碳源可以用于消化产能;而且能够减少游离硫化氢的排放,或直接以含硫化氢的废气作为硫源。而抑制下水道中硫化氢气体释放的主要手段包括:降低水的紊流程度,增加入流污水的碱度,向下水道内充氧,改善通风环境。文章最后结合理论,介绍了部分用于含硫污水、尾气的生物除硫工艺,并提出了日后的研究方向。 相似文献
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本研究利用稻壳制备高介孔率生物炭,然后用共沉淀法负载金属La、Al,制得镧铝改性稻壳基生物炭吸附剂.通过控制反应时间、磷浓度、共存阴离子、初始pH等条件,研究共存钙离子时对吸附剂除磷性能的影响.结果表明,La、Al在稻壳基生物炭上负载后呈无定型态;吸附剂的除磷过程符合伪二阶动力学模型和Langmuir模型,且Ca~(2+)的加入有利于提高磷的去除率,含Ca~(2+)体系的最终除磷效果是无Ca~(2+)时的2.6倍;含竞争阴离子时,Ca~(2+)的加入会使F~-对磷吸附的抑制作用减弱,使HCO_3~-对磷吸附的抑制作用略微增强;在pH值为2.0—8.0时,Ca~(2+)能提高改性生物炭的吸附容量,而pH8.0时主要是钙离子与磷酸盐的沉淀作用使体系中磷大量被去除. 相似文献
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利用好氧颗粒污泥对酸性淡黄2G溶液进行吸附脱色研究,考察了pH值、吸附剂用量、初始酸性淡黄2G的浓度、温度以及NaCl浓度对吸附过程的影响.实验结果表明,吸附过程对溶液pH值具有很高的依赖性,其最佳pH值为2.0.Temkin等温线在整个实验染料浓度范围内能够很好地描述吸附过程.吸附动力学符合准二级动力学模型.内部扩散和边界层扩散都可能影响生物吸附速率.热力学分析表明,吸附过程是一个自发的放热过程.采用FTIR分析的结果进一步揭示了颗粒污泥上官能团(如胺基、羧基和羟基等)可能是染料生物吸附的活跃结合位点.这些结果表明,好氧颗粒污泥可以作为吸附剂以去除水中的酸性淡黄2G。 相似文献
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Hongxun HOU Shuying WANG Yongzhen PENG Zhiguo YUAN Fangfang YIN Wang GAN 《Frontiers of Environmental Science & Engineering》2009,3(1):106-111
The anaerobic-anoxic oxidation ditch (A2/O OD) process is popularly used to eliminate nutrients from domestic wastewater. In order to identify the existence of denitrifying phosphorus removing bacteria (DPB), evaluate the contribution of DPB to biological nutrient removal, and enhance the denitrifying phosphorus removal in the A2/O OD process, a pilot-scale A2/O OD plant (375 L) was conducted. At the same time batch tests using sequence batch reactors (12 L and 4 L) were operated to reveal the significance of anoxic phosphorus removal. The results indicated that: The average removal efficiency of COD, N H 4 + , P O 4 3 - , and TN were 88.2%, 92.6%, 87.8%, and 73.1%, respectively, when the steady state of the pilot-scale A2/O OD plant was reached during 31-73 d, demonstrating a good denitrifying phosphorus removal performance. Phosphorus uptake took place in the anoxic zone by poly-phosphorus accumulating organisms N O 2 - could be used as electron receptors in denitrifying phosphorus removal, and the phosphorus uptake rate with N O 2 - as the electron receptor was higher than that with N O 3 - when the initial concentration of either N O 2 - or N O 3 - was 40 mg/L. 相似文献
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纤毛状生物膜脱氮除磷工艺(CNR)是一种高效的生物脱氮除磷工艺.好氧池中纤毛状生物膜填料的添加,固化了大量世代时间长的硝化菌,提高了硝化反应速度,而且成功地解决了好氧段硝化菌与聚磷菌的泥龄矛盾.通过对天津某污水处理厂进行CNR工艺中试,得出结论如下:填料比表面积大,微生物附着量高达1 350~1 500g·m~(-2);填料容易挂膜、脱膜,无堵塞现象,更不需要反冲洗,维护管理简单;填料上形成的生物膜中,微生物体系稳定,种群丰富,微生物相包括钟虫(vorticella)、轮虫(rotaria)、表壳虫(arcella)、吸管虫(tokophrya)等;采用CNR工艺对污水处理,常规项目的去除率均达到80%以上,出水水质除总氮达到一级B标准,其他均达到<城镇污水处理厂污染物排放标准>(GB 18918-2002)的一级A排放标准. 相似文献
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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
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考察了不同进水有机物浓度下厌氧/好氧序批式移动床生物膜反应器(SBMBBR)污染物去除特性,实验结果表明,SBMBBR能够实现低碳源污水中氮和磷的同步去除,在进水TN和TP浓度分别为116.7 mg.L-1和11.5 mg.L-1、COD浓度为456 mg.L-1的条件下,TN和TP去除率分别达到94.3%和92.2%以上.反应器除磷是基于常规生物除磷和反硝化除磷过程实现的,脱氮主要是基于好氧段发生的同时硝化反硝化(SND)作用而完成.由于生物膜内部存在的DO扩散梯度,在好氧阶段混合液DO浓度不断提高的条件下反应器内具有良好SND反应的发生.进水COD浓度由149 mg.L-1提高至456 mg.L-1的过程中,反应器硝化效果不变,反硝化和除磷效果改善.反应器在好氧阶段pH值基本维持在7.0—7.1之间,为各类菌群的生长创造了条件.碱度变化较pH值更能反映硝化和反硝化反应发生的程度.反应器中微生物相丰富,生物膜以丝状菌为骨架,其上附着大量的球状菌和杆状菌,而悬浮活性污泥中丝状菌较少,形成了由细菌、真菌到原生动物和后生动物的复杂的生态体系,为系统取得稳定的污水处理效果提供了有效的保证. 相似文献
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表面流人工湿地中氮磷的去除机理 总被引:67,自引:5,他引:67
人工湿地作为一种高效、低耗的污水处理新工艺已被广泛接受,特别是其在脱氮、除磷方面的应用逐步为人们所重视。本文深入地讨论了表面流人工湿地中各种生物、物理、化学过程对污水中各种形态含氮、含磷化合物的去除机理,及其具体途径、相关反应和反应类型,总结了国内外对各个过程影响因素、控制条件、反应速度、去除能力及相互之间协调拮抗作用的研究结果。虽然硝化/反硝化作用和土壤吸附沉淀作用已被公认为是表面流人工湿地脱氮、除磷的主要途径,但不同研究结果之间仍存在着明显差异,鲜有多介质环境条件下各种脱氮、除磷过程中多种氮、磷形态的质量平衡研究,而以此为基础的人工湿地生态动力学模型的研究则是深入了解人工湿地运行机理、设计和预测其处理效率,以及推动人工湿地污水处理工艺广泛应用的关键。 相似文献
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Junfeng Dou Guyuan Luo Xiang Liu 《Frontiers of Environmental Science & Engineering》2007,1(2):233-239
Enhanced biological phosphorus removal (EBPR) is a commonly used and sustainable method for phosphorus removal from wastewater. Poly-β-hydroxybutyrate (PHB), polyphosphate, and glycogen are three kinds of intracellular storage polymers in phosphorus accumulation organisms. The variation of these polymers under different conditions has an apparent influence on anaerobic phosphorus release, which is very important for controlling the performance of EBPR. To obtain the mechanism and kinetic character of anaerobic phosphorus release, a series of batch experiments were performed using the excessively aerated sludge from the aerobic unit of the biological phosphorus removal system in this study. The results showed that the volatile suspended solid (VSS) had an increasing trend, while the mixed liquid suspended sludge (MLSS) and ashes were reduced during the anaerobic phosphorus release process. The interruption of anaerobic HAc-uptake and phosphorus-release occurs when the glycogen in the phosphorus-accumulating-organisms is exhausted. Under the condition of lower initial HAc-COD, HAc became the limiting factor after some time for anaerobic HAc uptake. Under the condition of higher initial HAc-COD, HAc uptake was stopped because of the depletion of glycogen in the microorganisms. The mean ratio of Δρ P/Δρ PHB, Δρ GLY/Δρ PHB, Δρ P/ΔCOD, was 0.48, 0.50, 0.44, and 0.92, respectively, which was nearly the same as the theoretical value. The calibrated kinetic parameters of the HAc-uptake and phosphorus-release model were evaluated as follows: Q HAc,max was 164 mg/(g · h), Q P,max was 69.9 mg/(g · h), K gly was 0.005, and KCOD was 3 mg/L. An apparently linear correlation was observed between the ratio of Δρ P/ΔCOD and pH of the solution, and the equation between them was obtained in this study. 相似文献
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Lu LI Shuguang XIE Hui ZHANG Donghui WEN 《Frontiers of Environmental Science & Engineering》2009,3(1):38-47
In this study two types of biological contact oxidation processes (BCOP), a step-feed (SBCOP) unit and an inter-recycle (IBCOP) unit, were designed to investigate the treatment of heavily polluted river water. The Daqing River, which is the largest pollutant contributor to the Dianchi Lake, one of the most eutrophic freshwater lakes in China, was taken for the case study. It was found that the SBCOP had higher adaptability and better performance in the reduction of COD, TN, and TP, which made it applicable for the treatment of polluted river water entering the Dianchi Lake. Nitrification rate was observed to be greatly affected by the influent temperature. During each season, the nitrification in the SBCOP was higher than that in the IBCOP. TN removal efficiency in the SBCOP was higher than that in the IBCOP during the winter and spring but poorer during the summer, possibly due to the inhibition of denitrification by higher dissolved oxygen level in the summer. Moreover, symbiotic algaebacteria growth may be conducive to the removal of pollutants. 相似文献
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湿地对水中磷素净化作用的研究进展 总被引:18,自引:2,他引:18
随着对湿地功能认识的加强,湿地科学研究从资源考察开始向湿地过程研究转变,尤其是全球环境问题的加剧,使得湿地对营养物质的截留功能倍受关注。磷是农业非点源污染的重要元素之一,又是导致湿地及下游水体富营养化的重要原因,研究湿地对水中磷素的净化作用是湿地生物地球化学研究和流域水环境保护研究的重要环节。文章综述了湿地系统各因子(土壤、植被、水文、微生物)及其它环境因子(如温度、CO2浓度、污染物负荷)对磷的净化作用的影响以及湿地中磷的动态模型等方面的国内外研究进展,指出在研究手段、方法和内容方面的不足,强调今后研究应注重长期连续的湿地动态监测,湿地净化功能模型和净化能力阈值以及景观生态学在湿地净化功能方面的应用。 相似文献