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1.
一体式厌氧氨氧化工艺处理高氨氮污泥消化液的启动   总被引:1,自引:0,他引:1  
利用新型固定生物膜一活性污泥反应器处理实际污泥消化液,通过接种短程硝化污泥和厌氧氨氧化生物膜填料,逐渐提高进水氨氮浓度并控制溶解氧浓度在0.11~0.42mg/L,系统在65d内实现了短程硝化-厌氧氨氧化反应的启动.反应器系统稳定运行阶段具有良好的污染物去除效果,进水COD和氨氮浓度为921和1120.8mg/L,COD、氨氮和总氮去除率分别为66.8%,99.0%和94.4%,总氮去除负荷为0.27kgN/(m3·d).试验表明采取逐步提高进水中消化液比例的策略,有利于一体式厌氧氨氧化工艺的快速启动.进一步分析发现系统同时存在厌氧氨氧化和反硝化的脱氮途径,对总氮去除的贡献率分别为67.4%~91.1%和8.9%~32.6%.  相似文献   

2.
试验通过在进水中投加有机碳源(白糖),研究有机碳源对一体化厌氧氨氧化反应器脱氮性能的影响。试验结果表明:进水COD浓度对一体化厌氧氨氧化反应器脱氮性能产生明显的影响。当进水中COD浓度约为50mg/L时,即可导致系统总氮去除率大幅度下降,出水总氮去除率由不添加COD的87.8%降至76%,氨氮去除率由不添加COD的98.8%降至85%;当进水COD浓度上升至约100mg/L时,出水总氮的去除率由不添加COD的87.8%降至69%,氨氮去除率由不添加COD的98.8%降至77%;当进水COD浓度约为100mg/L时,并将调节槽曝气量由原来的0.4L/min增至0.6L/min,系统出水水质明显得到优化,总氮去除率恢复到未投加COD时的水平。有效地控制一体化厌氧氨氧化反应器内有机碳源的量,能明显地提高系统的脱氮效果。  相似文献   

3.
填充床快速启动厌氧氨氧化反应器及其脱氮性能研究   总被引:8,自引:4,他引:4  
陈胜  孙德智  遇光禄 《环境科学》2010,31(3):691-696
以城市污水厂二沉池污泥为种泥,以悬浮填料填充床生物膜反应器为厌氧氨氧化(ANAMMOX)反应器,采用高负荷培养法和好氧预挂膜低负荷培养法分别培养与富集厌氧氨氧化菌,并研究其脱氮性能.结果表明,好氧预挂膜低负荷培养法可以在较短时间内(90 d左右)快速启动厌氧氨氧化反应器,稳定期反应器出水氨氮和亚硝氮保持稳定,去除率均接近100%,总氮去除率在75%以上,高负荷培养法因高浓度氨氮和亚硝氮的抑制作用而启动失败(190d).启动过程中pH变化表明,厌氧氨氧化反应器出水pH略高于进水,pH值可用作厌氧氨氧化反应器启动进程的指示参数.上流式厌氧填充床ANAMMOX反应器具有高负荷和高效率的优点,当反应器进水氨氮和亚硝氮浓度低于800 mg/L时,其去除率几乎达100%,低于国家一级标准.  相似文献   

4.
王凡  陆明羽  殷记强  李祥  黄勇 《环境科学》2018,39(8):3782-3788
本研究在一体式分区反应器中接种成熟的厌氧氨氧化污泥和亚硝化污泥,通过与反硝化反应器串联,研究了前置反硝化与短程硝化-厌氧氨氧化串联工艺处理晚期垃圾渗滤液的脱氮除碳性能.结果表明,未串联反硝化之前,短程硝化-厌氧氨氧化反应器在进水氨氮浓度为600 mg·L~(-1),COD浓度483 mg·L~(-1)时,总氮去除速率(NRR)可达1.88 kg·(m3·d)-1,总氮去除率(NRE)可达90.3%;而在进水COD浓度483 mg·L~(-1),即C/N0.8时,短程硝化-厌氧氨氧化反应器的NRR下降至1.50 kg·(m3·d)-1.通过前置反硝化反应器可以迅速缓解有机物对厌氧氨氧化的不利影响;反硝化与短程硝化-厌氧氨氧化串联反应器在进水NH+4-N浓度为1 100 mg·L~(-1),COD浓度1 150 mg·L~(-1)时,仍可稳定高效运行,整体NRR可达1.37kg·(m3·d)-1,厌氧区NRRana高达15.6 kg·(m3·d)-1,平均NRE可达98.6%,在仅利用原水中有机碳源的情况下实现了垃圾渗滤液的高效深度脱氮.此工艺晚期处理垃圾渗滤液可去除大部分易生物降解有机物.  相似文献   

5.
考察了三价铁(2.24~7.84mg/L)存在下厌氧氨氧化系统对有机物的耐受性能,并通过16SrRNA高通量测序技术和定量PCR探究其机理.结果表明,进水COD浓度为50和100mg/L时,4个反应器的氨氮和总氮去除率均较高(>90%),三价铁的强化作用不明显;进水COD浓度继续升高(150和200mg/L),厌氧氨氧化受到抑制,三价铁的强化作用逐渐增加;COD浓度为200mg/L时,添加三价铁(7.84mg/L)可将氨氮和总氮去除率由61.3%和79.8%(对照组)提升至71.2%和84.7%.16SrRNA高通量测序技术表明,有机物存在下,污泥微生物群落结构出现变化,主要表现为厌氧氨氧化菌丰度的降低及反硝化菌群的大量增殖,进水添加三价铁可提高浮霉菌(Planctomycetes)的丰度.定量PCR结果表明,三价铁能够提高厌氧氨氧化菌16S rRNA及功能基因hzsB的丰度.  相似文献   

6.
亚硝化-厌氧氨氧化联合工艺处理高含氮废水的研究   总被引:8,自引:2,他引:6  
采用实验室规模的亚硝化-厌氧氨氧化联合工艺,研究其对高含氮、低C/N废水的处理能力.结果表明,亚硝化反应器的水力停留时间控制在1.0d时,亚硝化活性比较稳定,进水氨氮浓度对其影响不大.进水氨氮浓度在400~600 mg/L时,出水亚硝酸氮浓度都在260~280 mg/L,可以通过控制进水氨氮浓度调节出水亚硝酸氮/氨氮的比率.亚硝化反应器出水的亚硝酸氮/氨氮的比率对厌氧氨氧化脱氮率有重要的作用.当进水氨氮浓度为480 mg/L时,出水中亚硝酸氮/氨氮的比率为1.2左右,进入厌氧氨氧化反应器的氮物质去除率达到  相似文献   

7.
郑照明  李军  马静  杜佳  赵白航 《中国环境科学》2016,36(10):2957-2963
通过批试实验研究了氨氮浓度对SNAD生物膜厌氧氨氧化性能的影响.SNAD生物膜反应器以生活污水为进水.进水NH4+-N和COD浓度平均值分别为70mg/L和180mg/L,出水NH4+-N,NO2--N,NO3--N和COD浓度平均值分别为2mg/L,2mg/L,7mg/L和50mg/L.SNAD生物膜具有良好的厌氧氨氧化活性.初始NH4+-N和NO2--N浓度都为70mg/L时,厌氧氨氧化批试NH4+-N、NO2--N和TIN去除速率分别为0.121kg N/(kg VSS·d),0.180kg N/(kg VSS·d)和0.267kg N/(kg VSS·d).采用Haldane模型可以很好的拟合氨氮浓度对厌氧氨氧化活性的影响.在高FA和低FA工况下氨氮浓度对厌氧氨氧化活性的抑制动力学常数相差不大.M1(FA浓度为0.7~20.4mg/L)和M2(FA浓度为6.3~190.5mg/L)的最大NO2--N理论去除速率rmax分别为0.209kg N/(kg VSS·d)和0.221kg N/(kg VSS·d),氨氮半饱和常数Ks分别为9.5mg/L和6.1mg/L,氨氮自身抑制常数KI分别为422mg/L和597mg/L.氨氮(而不是游离氨)对SNAD生物膜的厌氧氨氧化活性起主要抑制作用.  相似文献   

8.
采用间歇曝气在MBBR反应器中成功实现一段式部分硝化耦合厌氧氨氧化(PN/A)过程.结果表明,在实验温度为35℃,进水氨氮浓度为150.00mg/L,进水氮负荷为0.24kg/(m3·d),DO浓度为(1.41±0.24)mg/L条件下,反应器总氮去除效率达到83.74%.生物膜中厌氧氨氧化菌(AnAOB)和氨氧化菌(...  相似文献   

9.
厌氧氨氧化是一种高效、经济的脱氮新技术.为了探讨SBR厌氧氨氧化反应器中相关运行参数对脱氮效率的影响,文章利用自制的反应器对模拟废水进行了控制性试验.结果表明:(1)SBR厌氧氨氧化反应器的脱氮效率与HRT、内循环流速和有机物含量有关,试验条件下确定最佳运行参数HRT为20h,内循环流速为24~96mL/min, C/N为2;可处理氨氮浓度为200~500mg/L的废水.(2)在最佳条件下,当进水总氮为200mg/L,pH为7.5~8.2时,脱氮效率达到80%,总氮的容积负荷率达588.00 mg/L·d,容积去除总氮为448.57mg/L·d.  相似文献   

10.
生活污水预沉淀-SNAD颗粒污泥工艺小试   总被引:1,自引:1,他引:0  
李冬  崔雅倩  赵世勋  刘志诚  张杰 《环境科学》2019,40(4):1871-1877
采用人工配水,在SBR反应器中启动同步短程硝化、厌氧氨氧化耦合反硝化(SNAD)颗粒污泥工艺,随后逐渐降低进水氨氮浓度,低氨氮稳定运行一段时间后通入预沉淀后生活污水,考察SNAD颗粒污泥工艺处理生活污水的脱氮性能及稳定性.结果表明,SNAD工艺启动成功后,氨氮去除率大于98%,总氮去除率在89%左右,随着进水氨氮浓度逐渐降低,亚硝酸盐氧化菌(NOB)活性升高,总氮去除率逐渐下降至75%左右.通入预沉淀生活污水(NH4+-N 52~63 mg·L-1,COD 99~123 mg·L-1)后,平均总氮去除率为73.2%,出水COD浓度在35 mg·L-1以下,最大出水氨氮和总氮浓度为0.7 mg·L-1和12.8 mg·L-1,连续30d以上出水氨氮和总氮浓度达到《城镇污水处理厂污染物排放标准》一级A排放标准,实现了生活污水碳氮同步高效去除的目的.  相似文献   

11.
Toxic effects of two agrochemicals on nifH gene in agricultural black soil were investigated using denaturing gradient gel electrophoresis (DGGE) and sequencing approaches in a microcosm experiment. Changes of soil nifH gene diversity and composition were examined following the application of acetochlor, methamidophos and their combination. Acetochlor reduced the nifH gene diversity (both in gene richness and diversity index values) and caused changes in the nifH gene composition. The effects of acetochlor on nifH gene were strengthened as the concentration of acetochlor increased. Cluster analysis of DGGE banding patterns showed that nifH gene composition which had been affected by low concentration of acetochlor (50 mg/kg) recovered firstly. Methamidophos reduced nifH gene richness that except at 4 weeks. The medium concentration of methamidophos (150 mg/kg) caused the most apparent changes in nifH gene diversity at the first week while the high concentration of methamidophos (250 mg/kg) produced prominent effects on nifH gene diversity in the following weeks. Cluster analysis showed that minimal changes of nifH gene composition were found at 1 week and maximal changes at 4 weeks. Toxic effects of acetochlor and methamidophos combination on nifH gene were also apparent. Different nifH genes (bands) responded differently to the impact of agrochemicals: four individual bands were eliminated by the application of the agrochemicals, five bands became predominant by the stimulation of the agrochemicals, and four bands showed strong resistance to the influence of the agrochemicals. Fifteen prominent bands were partially sequenced, yielding 15 different nifH sequences, which were used for phylogenetic reconstructions. All sequences were affiliated with the alpha- and beta-proteobacteria, showing higher similarity to eight different diazotrophic genera.  相似文献   

12.
The effects of arbuscular mycorrhizal (AM) fungus (Glomus mosseae) and phosphorus (P) addition (100 mg/kg soil) on arsenic (As) uptake by maize plants (Zea mays L.) from an As-contaminated soil were examined in a glasshouse experiment.Non-mycorrhizal and zero-P addition controls were included.Plant biomass and concentrations and uptake of As,P,and other nutrients,AM colonization,root lengths,and hyphal length densities were determined.The results indicated that addition of P significantly inhibited root colonization and development of extraradical mycelium.Root length and dry weight both increased markedly with mycorrhizal colonization under the zero-P treatments,but shoot and root biomass of AM plants was depressed by P application.AM fungal inoculation decreased shoot As concentrations when no P was added,and shoot and root As concentrations of AM plants increased 2.6 and 1.4 times with P addition,respectively.Shoot and root uptake of P,Mn,Cu,and Zn increased,but shoot Fe uptake decreased by 44.6%,with inoculation, when P was added.P addition reduced shoot P,Fe,Mn,Cu,and Zn uptake of AM plants,but increased root Fe and Mn uptake of the nonmycorrhizal ones.AM colonization therefore appeared to enhance plant tolerance to As in low P soil,and have some potential for the phytostabilization of As-contaminated soil,however,P application may introduce additional environmental risk by increasing soil As mobility.  相似文献   

13.
Several main metabolites of benzo[a]pyrene (BaP) formed by Penicillium chrysogenum, Benzo[a]pyrene-1,6-quinone (BP 1,6- quinone), trans-7,8-dihydroxy-7,8-dihydrobenzo[a]pyrene (BP 7,8-diol), 3-hydroxybenzo[a]pyrene (3-OHBP), were identified by high-performance liquid chromatography (HPLC). The three metabolites were liable to be accumulated and were hardly further metabolized because of their toxicity to microorganisms. However, their further degradation was essential for the complete degradation of BaP. To enhance their degradation, two methods, degradation by coupling Penicillium chrysogenum with KMnO4 and degradation only by Penicillium chrysogenum, were compared; Meanwhile, the parameters of degradation in the superior method were optimized. The results showed that (1) the method of coupling Penicillium chrysogenum with KMnO4 was better and was the first method to be used in the degradation of BaP and its metabolites; (2) the metabolite, BP 1,6-quinone was the most liable to be accumulated in pure cultures; (3) the effect of degradation was the best when the concentration of KMnO4 in the cultures was 0.01% (w/v), concentration of the three compounds was 5 mg/L and pH was 6.2. Based on the experimental results, a novel concept with regard to the bioremediation of BaP-contaminated environment was discussed, considering the influence on environmental toxicity of the accumulated metabolites.  相似文献   

14.
Sorption of chlorotoluron in ammonium sulfate, urea and atrazine multi-solutes system was investigated by batch experiments. The results showed application of nitrogen fertilizers to the soil could affect the behavior of chlorotoluron. At the same concentration of N, sorption of chlorotoluron decreased as the concentration of atrazine increased on the day 0 and 6 in soil, respectively. The sorption of chlorotoluron increased from 0 to 6 d when soils were preincubated with deionized water, ammonium sulfate and urea solution for 6 d. That indicated incubation time was one of the most important factors for the sorption of chlorotoluron in nitrogen fertilizers treatments. The individual sorption isotherms of chlorotoluron in rubbery polymer and silica were strictly linear in single solute system, but there were competition sorption between pesticides or between pesticides and nitrogen fertilizers. That indicated the sorption taken place by concurrent solid-phase dissolution mechanism and sorption on the interface of water-organic matter or water-mineral matter.  相似文献   

15.
In this study an effort has been made to use plant polyphenol oxidases; potato (Solanum tuberosum) and brinjal (Solanum melongena), for the treatment of various important dyes used in textile and other industries. The ammonium sulphate fractionated enzyme preparations were used to treat a number of dyes under various experimental conditions. Majority of the treated dyes were maximally decolorized at pH 3.0. Some of the dyes were quickly decolorized whereas others were marginally decolorized. The initial first hour was sufficient for the maximum decolorization of dyes. The rate of decolorization was quite slow on long treatment of dyes. Enhancement in the dye decolorization was noticed on increasing the concentration of enzymes. The complex mixtures of dyes were treated with both preparations of polyphenol oxidases in the buffers of varying pH values. Potato polyphenol oxidase was significantly more effective in decolorizing the dyes to higher extent as compared to the enzyme obtained from brinjal polyphenol oxidase. Decolorization of dyes and their mixtures, followed by the formation of an insoluble precipitate, which could be easily removed simply by centrifugation.  相似文献   

16.
RemovalofheavymetalsfromsewagesludgebylowcostingchemicalmethodandrecyclinginagricultureWuQitang,NyirandegePascasie,MoCehuiF...  相似文献   

17.
Single and joint effects of pesticides and mercury on soil urease   总被引:6,自引:3,他引:3  
The influence of two pesticides including chlorimuron-ethyl and furadan and mercury (Hg) on urease activity in 4 soils (meadow burozem and phaeozem) was investigated. The soils were exposed to various concentrations of the two pesticides and Hg individually and simultaneously. Results showed that there was a close relationship between urease activity and organic matter content in soil. Chlorimuron-ethyl and furadan could both activate urease in the 4 soils. The maximum increment of urease activity by chlorimuronethyl was up to 14%-18%. There was almost an equal increase (up to 13%-21%) in the urease activity by furadan. On the contrary, Hg markedly inhibited soil urease activity. A logarithmic equation was used to describe the relationship (P〈0.05) between the concentration of Hg and the activity of soil urease in the 4 tested soils. Semi-effect dose (ED50) values by the stress of Hg based on the inhibition of soil urease in the 4 soils were 88, 5.5, 24 and 20 mg/kg, respectively, according to the calculation of the corresponding equations. The interactive effect of chlorimuron-ethyl or furadan with metal Hg on soil urease was mainly synergic at the highest tested concentrations.  相似文献   

18.
A study was conducted to compare the diversity of 2-, 3-, and 4-chlorobenzoate degraders in two pristine soils and one contaminated sewage sludge. These samples contained strikingly different populations of mono-chlorobenzoate degraders. Although fewer cultures were isolated in the uncontaminated soils than contaminated one, the ability of microbial populations to mineralize chlorobenzoate was widespread. The 3- and 4-chlorobenzoate degraders were more diverse than the 2-chlorobenzoate degraders. One of the strains isolated from the sewage sludge was obtained. Based on its phenotype, chemotaxonomic properties and 16S rRNA gene, the organism S-7 was classified as Rhodococcus erythropolis. The strain can grow at temperature from 4 to 37℃. It can utilize several (halo)aromatic compounds. Moreover, strain S-7 can grow and use 3-chlorobenzoate as sole carbon source in a temperatures range of 10-30℃ with stoichiometric release of chloride ions. The psychrotolerant ability was significant for bioremediation in low temperature regions. Catechol and chlorocatechol 1,2-dioxygenase activities were present in cell free extracts of the strain, but no (chloro)catechol 2,3- dioxygenase activities was detected. Spectral conversion assays with extracts from R. erythropolis S-7 showed accumulation of a compound with a similar UV spectrum as chloro-cis,cis-muconate from 3-chlorobenzoate. On the basis of these results, we proposed that S-7 degraded 3-chlorobenzoate through the modified ortho-cleave pathway.  相似文献   

19.
A field study was conducted in the Taihu Lake region, China in 2004 to reveal the organochlorine pesticide concentrations in soils after the ban of these substances in the year 1983. Thirteen organochlorine pesticides (OCPs) were analyzed in soils from paddy field, tree land and fallow land. Total organochlorine pesticide residues were higher in agricultural soils than in uncultivated fallow land soils. Among all the pesticides, ΣDDX (DDD, DDE and DDT) had the highest concentration for all the soil samples, ranging from 3.10 ng/g to 166.55 ng/g with a mean value of 57.04 ng/g and followed by ΣHCH, ranging from 0.73 ng/g to 60.97 ng/g with a mean value of 24.06 ng/g. Dieldrin, endrin, HCB and α-endosulfan were also found in soils with less than 15 ng/g. Ratios of p,p'-(DDD DDE)/DDT in soils under three land usages were: paddy field > tree land > fallow land, indicating that land usage inlfuenced the degradation of DDT in soils. Ratios of p,p'-(DDD DDE)/DDT >1, showing aged residues of DDTs in soils of the Taihu Lake region. The results were discussed with data from a former study that showed very low actual concentrations of HCH and DDT in soils in the Taihu Lake region, but according to the chemical half-lives and their concentrations in soils in 1980s, the concentration of DDT in soils seemed to be underestimated. In any case our data show that the ban on the use of HCH and DDT resulted in a tremendous reduction of these pesticide residues in soils, but there are still high amounts of pesticide residues in soils, which need more remediation processes.  相似文献   

20.
The contribution of aliphatic-rich plant biopolymer to sorption of hydrophobic organic compounds is significantly important because of their preservation and accumulation in the soil environment,but sorption mechanism is still not fully understood.In this study, sorption of 1-naphthol by plant cuticular fractions was examined to better understand the contributions of respective fraction.Toward this end,cuticular materials were isolated from the fruits of tomato by chemical method.The tomato cuticle sheet consisted of waxes (6.5 wt%),cuticular monomer (69.5 wt%),and polysaccharide (24.0 wt%).Isotherms of l-naphthol to the cuticular fractions were nonlinear (N value (0.82-0.90)) at the whole tested concentration ranges.The KodKow ratios for bulk cuticle (TC1),dewaxed cuticle (TC2),cutin (TC4),and desugared cuticle (TC5) were larger than unity,suggested that tomato bulk cuticle and cutin are much powerful solption medium.Sorption capability of cutin (TC4) was 2.4 times higher than the nonsaponifiable fraction (TC3).The 1-naphthol interactions with tomato cuticular materials were governed by both hydrophobic-type interactions and polar (H-bonding) interactions. Removal of the wax and polysaccharide materials from the bulk tomato cuticle caused a significant increase in the sorption ability of the cuticular material.There was a linear negative trend between K_(oc) values and the amount of polysaccharides or fraction's polarities ((N O)/C);while a linear positive relationship between K_(oc) values and the content of cutin monomer (linear R~2=0.993) was observed for present in the cuticular fractions.Predominant sorbent of the hydrophobic organic compounds (HOCs) in the plant cuticular fraction was the cutin monomer,contributing to 91.7% of the total sorption of tomato bulk cuticle.  相似文献   

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