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1.
磷酸铵镁沉淀法回收尿液中N和P的实验研究   总被引:1,自引:0,他引:1  
以源分离尿液为研究对象,在氨氮含量为2 850 mg N/L的微稀释尿液中,投加MgCl2.6H2O和Na2HPO4.12H2O,以磷酸铵镁沉淀法回收N和P。通过正交实验确定影响磷酸铵镁沉淀反应的因素依次为:pH值、PO34-∶NH4+、Mg2+∶NH4+、温度。在搅拌速度=100 r/min、反应温度=15℃、反应时间=10 min的条件下,实验分别考察了pH值、PO43-投加量、Mg2+投加量对磷酸铵镁沉淀法去除N、P的影响,结果表明最佳工艺条件为pH=9.5,Mg2+∶NH4+∶PO34-=1.3∶1.0∶1.0。最佳工艺条件下尿液中的NH4+-N可从2 850 mg/L降低到约125 mg/L;剩余磷酸盐浓度约7 mg/L。SEM及XRD分析表明,沉淀物的主要成分为呈斜方晶系的磷酸铵镁晶体。  相似文献   

2.
测定了封闭式循环水生产性半滑舌鳎(Cynoglossus semilaevis Günther)养殖系统和流水养殖系统各水处理单元水质指标以及鱼的生长、免疫和消化指标.结果表明,封闭式循环水养殖系统经过25 d的运行,生物滤池出水NH4+-N、NO2--N、PO34--P、COD及SS浓度显著低于养鱼池中NH4+-N、...  相似文献   

3.
扬州古运河沉积物污染物释放强度与特征研究   总被引:2,自引:0,他引:2  
研究了扬州古运河沉积物中氮、磷、铁和锰等污染物释放强度与特征,着重考察了上覆水中DO和污染物负荷对污染物释放强度的影响,分析了氮、磷、铁和锰等污染物释放条件.结果表明:扬州古运河有一定的自净能力,且呈现初期释放NH4+ -N、后期转化为NO3-- N的特征;随着水环境条件改变,沉积物NH4+ -N、PO34-、铁和锰平均释放强度变化范围是123.14~445.68、13.50~32.45、25.20~198.47、19.97~25.02 mg/(m2·d);上覆水DO浓度越低,污染物平均释放强度越大;上覆水污染物浓度越小,污染物(除铁外)平均释放强度越大;在DO<5 mg/L条件下,沉积物向上覆水释放NH4+ -N;在DO<1 mg/L条件下,沉积物向上覆水释放PO34-、铁和锰;在DO为2~5 mg/L条件下,上覆水PO34-和铁向沉积物中汇入,但锰则呈现释放和汇入的交替变化.  相似文献   

4.
磷酸铵镁沉淀法预处理垃圾渗滤液   总被引:1,自引:0,他引:1  
探讨了用磷酸铵镁沉淀法预处理垃圾渗滤液时,沉淀剂种类、pH值、物质摩尔配比和反应时间等因素对氨氮去除效果的影响。得出了处理氨氮浓度为2 677.34 mg/L的垃圾渗滤液时,在兼顾所用镁盐量尽量低和处理出水氨氮或磷酸盐的残留量都比较低的较佳实验条件为:沉淀剂种类为:MgSO4.7H2O和Na2HPO4.12H2O,反应时间为20 min,pH=9.5,n(Mg)∶n(P)∶n(N)=1.3∶1.15∶1.0。在较佳实验条件下,垃圾渗滤液的NH3-N去除率为97.05%,处理出水PO34--P含量为8.35 mg/L,NH3-N含量为75.86 mg/L。对所得沉淀物进行了成分分析和X-衍射光谱、扫描电镜表征,表明大部分沉淀物为磷酸铵镁物质。  相似文献   

5.
针对榨菜腌制废水高盐高氮磷高有机物浓度的特征,提出"厌氧序批式生物膜反应器(ASBBR)-二级序批式生物膜反应器(SBBR)-化学除磷"组合处理工艺,在前期对组合工艺中单元工艺的关键工况参数研究的基础上,考察组合工艺的处理效能。实验结果表明,采用该组合工艺,可使进水COD、NH4+-N、TN及PO43--P分别为10 000、345、550和38.5mg/L的榨菜腌制废水,处理出水COD、NH4+-N、TN及PO43--P分别达到93.6、12.3、18和0.1 mg/L,去除率分别为99.1%、96.4%、96.7%和99.9%,出水达到污水综合排放一级标准。  相似文献   

6.
污水厂升级改造仍是目前水处理研究的热点问题,通过桂林七里店污水厂的微孔曝气氧化沟处理过程进行诊断分析,结果表明,将七里店污水厂微孔曝气氧化沟的一个A/O运行模式改造为2个分段A/O供氧模式,改变进水点,提高氧化沟内梯度脱氮环境,缺氧区和好氧区容积比调整为1∶1.2,氧化沟出水口DO浓度到0.5 mg/L以上,二沉池中NO-3-N平均浓度达到7.2 mg/L,氧化沟到二沉池出水口阶段NH+4-N和PO3-4-P的平均释放量由改造前的3.85和1.69mg/L降低到-0.1和-0.2 mg/L的无释放状态。同时也表明,二沉池中NO-3-N浓度适当可抑制沉淀池中氨氮和磷酸盐的释放,改善出水水质。  相似文献   

7.
选取水华束丝藻与铜绿微囊藻作为典型水华蓝藻,探索水华蓝藻净化水体及合成生物柴油的潜力.采用氮磷浓度为NH4-N 7.5 mg/L,PO43--P 1.0 mg/L的模拟污水,重点考察了在光照强度与温度不同的条件下2种微藻对氮磷的去除率,并利用尼罗红荧光染色法测定了微藻中的中性脂含量.结果表明,2种藻对PO43--P的去除率均较高,最高达到98%,对NH4+-N的去除率稍低,最高为52%.水华束丝藻及铜绿微囊藻均具有较强积累中性脂的能力,适宜的温度与光照条件有利于微藻对氮磷的去除及细胞中脂类的积累.2种藻均在光照强度为12 000 lx时中性脂含量更高.水华束丝藻在温度为18 ~22℃条件下,生长更优,氮磷净化效果较好,中性脂积累能力更强.而铜绿微囊藻在温度为22~ 26℃时表现更好.  相似文献   

8.
在中试条件下,考察了地下水中二价锰离子(Mn~(2+))对成熟石英砂表面滤膜去除氨氮(NH+4-N)的影响。结果表明,当进水Mn~(2+)浓度不大于3.5 mg·L~(-1)时,NH+4-N去除率随进水Mn~(2+)浓度增大而增大。相应地,Mn~(2+)的存在使得进水NH+4-N的浓度上限由2.51 mg·L~(-1)提高到2.83 mg·L~(-1),且NH+4-N和Mn~(2+)可实现同步去除。此外,进水Mn~(2+)的存在((2.1±0.1)mg·L~(-1))使得去除NH+4-N所需要的温度下降,这说明Mn~(2+)对石英砂表面复合氧化膜催化NH+4-N氧化具有一定的促进作用,从而提高了NH+4-N在滤柱中的去除速率。  相似文献   

9.
为探讨Cu2+、p H和流速对固定化斜生栅藻去除畜禽废水中NH+4-N、TP效果的影响,在实验室条件下模拟实际污水处理过程,并采用正交实验方案对结果进行分析。结果表明低质量浓度Cu2+(0~0.05 mg/L)改善藻的净化效果,高质量浓度Cu2+(0.50~5.00 mg/L)抑制藻的净化效果;在p H较高的条件下(p H=9),固定化斜生栅藻的净化效果明显提高;流速对结果没有明显影响。通过正交实验,得出固定化斜生栅藻去除畜禽废水中NH+4-N、TP的优化条件如下:Cu2+质量浓度为0.05 mg/L,p H为9,流速为0.3 m/s。此时NH+4-N去除率为96.11%,TP去除率为97.53%。  相似文献   

10.
采用具有实时监测和调控pH功能的连续流反应器,通过人工模拟废水研究了铵盐的形态及浓度对氧氨氧化(anoxic ammonium oxidation,ANAMMOX)菌活性的影响及抑制规律。结果表明,在进水NH+4-N、NO-2-N浓度分别为990.4mg/L和121.9 mg/L的条件下,经过38 h运行反应器内NO-2-N浓度积累至85.60 mg/L,ANAMMOX菌活性被抑制了70.2%。通过pH的调控,使得铵盐的形态发生转化,出水NH+4-N和NO-2-N出现同步下降,ANAMMOX菌活性得到恢复,证实了游离氨(FA)才是ANAMMOX菌的真正抑制物。同时,随着进水NH+4-N浓度由1 000 mg/L增加到5 000 mg/L,厌氧氨氧化菌活性达到半抑抑所需的抑制时间由18 h缩短到了7 h,抑制时所对应的FA浓度不同。结果表明,FA对ANAMMOX菌的抑制水平与进水NH+4-N浓度、T、pH和t存在一定的函数关系。  相似文献   

11.
以浮萍优势品种青萍(Lemna minor)为研究对象,开展受污染河水修复。分析了青萍在不同营养盐浓度条件下的生长特征,探讨了青萍对受污染河水的修复效果。在表面积为0.0095 m2的限制空间条件下,青萍在1、2和5 mg总氮(TN)/L营养液中的生长特征都能较好地服从Logistic生长模型,受制约的临界鲜重(FW)分别为1.20、1.36和1.36 g;青萍对受污染河水中氮磷污染物具有较好的去除效果,氨氮(NH+4-N)的平均去除率、平均去除量和平均去除速率分别为56.87%、1.22 mg/d和0.0466 mg/(g FW·h),正磷酸盐(PO3-4-P)的平均去除率、平均去除量和平均去除速率分别为66.95%、0.25 mg/d和0.0088 mg/(g FW·h)。根据相关性分析,进水NH+4-N和PO3-4-P浓度与其对应去除量之间极显著相关;青萍FW与NH+4-N去除速率之间显著负相关,但与PO3-4-P去除速率之间不存在显著相关性;NH+4-N进水浓度与去除速率相关性不显著,但PO3-4-P进水浓度与去除速率显著正相关。  相似文献   

12.
Leachate samples with a high strength of ammonium-nitrogen (NH4+-N) were collected from a local landfill site in Hong Kong. Two experiments were carried out to study (1) the inhibition of microbial activity of activated sludge by NH4+-N and (2) the chemical precipitation of NH4+-N from leachate as a preliminary treatment prior to the activated sludge process. The experimental results demonstrated that the efficiency of COD removal decreased from 97.7% to 78.1%, and the dehydrogenase activity of activated sludge decreased from 9.29 to 4.93 microg TF/mg MLSS, respectively, when the NH4+-N concentration increased from 53 to 800 mg/l. The experiment also demonstrated that the NH4+-N in the leachate can be quickly precipitated as MgNH4PO4 x 6H2O after addition of MgCl2 x 6H2O + Na2HPO4 x 12H2O. The NH4+-N concentration was reduced from 5618 to 112 mg/l within 15 min when a molar ratio of Mg2+:NH+:PO4(3-) = 1:1:1 was used. The optimum pH to reach the minimum solubility of MgNH4PO4 x 6H2O was found to be in the range of 8.5-9.0. Attention should be given to the high salinity formed in the treated leachate by using MgCl2 x 6H2O + Na2HPO4 x 12H2O, which may affect microbial activity in the following biological treatment processes. Using two other combinations of chemicals [MgO + 85%H3PO4 and Ca(H2PO4)2 x H2O + MgSO4 x 7H2O] could minimise salinity generation after precipitation, while they were less efficient for NH4+-N removal.  相似文献   

13.
太湖流域小型水源性湖泊氮、磷时空分布及营养状态评价   总被引:3,自引:0,他引:3  
2009年11月至2010年10月,对太湖流域小型水源性湖泊20个采样点水体的TN、TP、NO3--N、NH4+-N、NO2--N以及PO43-等水质因子进行测定分析,讨论了氮、磷时空分布特征,并评价其富营养化程度。结果表明,TN、TP年均值分别为1.50、0.05mg/L;TN、TP的季节性变化规律具有一定差异,TN浓度为冬、春季高于夏、秋季,而TP浓度为2009年11月至2010年3月高于其他月份。由于受入湖河流的影响,TN、TP的空间分布格局较为相似,均表现为西南部高于东北部、入湖口分别高于湖中心和出湖口。NO3--N年均值为0.68mg/L,浓度变化趋势呈双峰型(2010年3、9月为峰值),基本同TN的变化趋势一致,空间分布表现为入湖口分别低于湖中心和出湖口(除冬季外),显示水体硝化过程对硝酸盐的贡献。NH4+-N年均值为0.23mg/L,从2010年4月开始浓度逐渐升高,到2010年7月达到全年最高值,其浓度空间分布特征表现为入、出湖口均高于湖中心(除秋季外)。NO2--N和PO43-的年均值都较低,均为0.01mg/L(以P计),时空差异不明显。根据CARLSON提出的营养状态指数法计算分析可知,该湖泊冬、春季处于中营养状态,夏、秋季营养状态略高,且磷是全年初级生产力的限制因子。  相似文献   

14.
A unicellular green microalga, Chlorella vulgaris, entrapped in calcium alginate as algal beads were employed to remove nutrients (N and P) from simulated settled domestic wastewater. A significantly higher nutrient reduction was found in bioreactors containing algal beads (at concentrations ranging from 4 to 20 beads ml(-1) wastewater) than the blank alginate beads (without algae). A complete removal of NH(4)(+)-N and around 95% reduction of PO(4)(3-)-P was achieved within 24 h of treatment in bioreactors having the optimal algal bead concentration (12 beads ml(-1), equivalent to 1:3 algal beads:wastewater, v/v). The NH(4)(+)-N removal was significantly lower at low (around 4 beads ml(-1)) and high (>15 beads ml(-1)) algal bead concentrations. On the other hand, the effect of bead concentration on phosphate removal was less obvious, and bead concentrations ranging from 8 to 20 beads ml(-1) showed comparable percentages of phosphate reduction. Algal uptake and adsorption on alginate gels were found to be the major processes involved in the removal of N and phosphate in the present study. In addition, NH(4)(+)-N could be lost via ammonia volatilization while PO(4)(3-)-P was removed by chemical precipitation, as alkaline pH was recorded in the immobilized microalgal treatment system.  相似文献   

15.
Kim EH  Lee DW  Hwang HK  Yim S 《Chemosphere》2006,63(2):192-201
A phosphorus crystallization process for recovering phosphates was developed using a completely mixed reactor and powdered converter slag as a seed crystal. This completely mixed phosphorus crystallization process achieved a stable and high phosphorus recovery: the average PO4-P removal efficiency during 200 d of operation was 87%, with a range of 70-98%. The apparent volume of the slag doubled due to crystal growth during the long-term phosphorus-removal experiments. The Ca2+ concentration, slag dosage, and temperature were found to govern the phosphorus recovery system for a given condition of pH and hydraulic retention time. The equations for the rate constant and reaction order were obtained by evaluating the model parameters. The model developed in this study was observed to successfully simulate the behavior of effluent PO4-P in a completely mixed phosphorus crystallization reactor over a wide variety of operating conditions of temperature, Ca2+ concentration, and influent PO4-P. Model investigations of design factors suggest that the completely mixed phosphorus crystallization process with influent PO4-P concentrations of less than 10 mg l(-1) could ensure effluent PO4-P concentrations of less than 0.5 and 1.0 mg l(-1) during summer and winter in Korea, respectively.  相似文献   

16.
在连续流生物膜反应器中通过控制DO、pH和HRT,对低氨氮浓度废水进行了亚硝化的实验研究。结果表明,在进水氨氮浓度为35~45 mg/L,温度为34℃的情况下,当DO=1.4~1.5 mg/L,pH=8.3,HRT=6 h时,氨氮的去除率与亚硝态氮的积累率均可达到80%左右,实现了较好的氨氮降解及稳定的亚硝态氮的积累。  相似文献   

17.
接种比对碱超声波耦合溶胞污泥水解酸化的影响   总被引:2,自引:1,他引:1  
以城市污水生物处理过程中的剩余污泥减量化为研究背景,通过实验研究了经碱超声波耦合溶胞后的剩余污泥在不同接种比下水解酸化的效果,分析了污泥上清液中pH、SCOD、VFAs、NH4+-N和PO34--P等参数随时间的变化趋势。结果表明,溶胞污泥经过72 h的水解酸化反应,20%接种比下的水解酸化COD溶出率和VFAs增长率最高,分别为75.5%和177%。蛋白质水解程度为16.9%,也高于50%和70%两组接种比。此外,COD、NH4+-N和PO34--P等主要溶出物均在12 h后达到基本稳定状态。  相似文献   

18.
A combined approach of biological treatment, solids digestion and nutrient recovery was tested on dairy manure. A sequencing batch reactor (SBR) was operated in three modes, in order to optimize nutrient (nitrogen and phosphorus) removals. The highest average removal efficiencies of 91% for NH4-N, 59% for PO4-P and 80% for total chemical oxygen demand (COD) were achieved. Staining experiments suggested the coexistence of glycogen and phosphorus accumulating organisms. Anaerobic digestion of wasted bio-solids was able to produce a PO4-P concentration of 70 mgL-1 in the supernatant. A pilot-scale experiment, designed to recover phosphorus in the supernatant as struvite (magnesium ammonium phosphate), was able to remove 82% of soluble PO4-P.  相似文献   

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