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1.
Bacterium Providencia rettgeri YL was found to exhibit an unusual ability to heterotrophically nitrify and aerobically denitrify various concentrations of ammonium (NH4 +-N). In order to further understand its removal ability, several experiments were conducted to identify the growth and ammonium removal response at di erent carbon to nitrogen (C/N) mass ratios, shaking speeds, temperatures, ammonium concentrations and to qualitatively verify the production of nitrogen gas using gas chromatography techniques. Results showed that under optimum conditions (C/N 10, 30°C, 120 r/min), YL can significantly remove low and high concentrations of ammonium within 12 to 48 h of growth, respectively. The nitrification products hydroxylamine (NH2OH), nitrite (NO2??) and nitrate (NO3??) as well as the denitrification product, nitrogen gas (N2), were detected under completely aerobic conditions.  相似文献   

2.
The plant can be a source or a sink of ammonia (NH3) depending on its nitrogen (N) supply, metabolism and on the background atmospheric concentrations. Thus plants play a major role in regulating atmospheric NH3 concentrations. For a better understanding of the factors influencing the NH3 stomatal compensation point, it is important to analyse the dynamics of leaf NH3 fluxes. The relationship between the leaf NH3 fluxes and the leaf apoplast ammonium and nitrate concentrations, N nutrition and the light and dark periods was studied here.We designed an experiment to quantitatively assess leaf-atmosphere NH3 exchange and the stomatal compensation point and to identify the main factors affecting the variation of NH3 fluxes in oilseed rape. We tested day and night dynamics as well as the effect of five different N treatments. Two experimental methods were used: a dynamic open flux chamber and extraction of the apoplastic solution.Chamber measurements showed that there was a good correlation between plant NH3 fluxes and water fluxes. Compensation points were calculated by two different methods and ranged between 0.8 and 12.2 μg m−3 NH3 (at 20 °C) for the different N treatments. Apoplastic solution measurements showed that there was no significant differences in the apoplastic NH4+ concentrations ([NH4+]apo) extracted in dark and light periods for the same N treatment. Statistical analysis also showed that [NH4+]apo was correlated with [NH4+] in the nutrient solution and weakly correlated with [NO3]. Apoplast NH4+ concentrations ranged between 0.1 and 2.1 mM, bulk tissue NH4+ concentrations between 3.9 and 6.6 mM and xylem concentrations between 2.4 and 6.1 mM depending on the N supply.Calculated NH3 emission potential from the extraction measurements were over-estimated when compared with the value calculated from chamber measurements. Errors related to chamber measurements included separation of the cuticular and stomatal fluxes and the calculation of total resistance to NH3 exchange. Errors related to the extraction measurements included assessing the amount of cytoplasmic contamination. We do not have another method to assess the NH3 stomatal compensation point and the choice between these two measurement techniques should depend on the scales to which the measurements apply and the processes to be studied.  相似文献   

3.
采用溶液培养法,设置3个氮浓度20、100、200 mg·L-1和3个NH_4~+/NO_3~-比1∶0、0.5∶0.5、0∶1,研究污水氮浓度和NH_4~+/NO_3~-比对粉绿狐尾藻去氮能力和植物体氮组分的影响.结果表明,粉绿狐尾藻的生物量在第1周增长最快,其中氮浓度20 mg·L-1、100 mg·L-1时,生物量以NH_4~+/NO_3~-=1∶0处理最大;氮浓度200 mg·L-1时,以NH_4~+/NO_3~-=0.5∶0.5处理最大.粉绿狐尾藻在第1周对总氮、铵态氮和硝态氮去除速率最高,且随氮浓度升高而增加;氮浓度20 mg·L-1时,铵态氮和硝态氮的去除率无显著差异,氮浓度100 mg·L-1、200 mg·L-1时硝态氮的去除率高于铵态氮.粉绿狐尾藻氮积累量及对水体和底泥氮去除的贡献率均随氮浓度升高而增加,其氮含量和积累量均以第1周增长最快,氮浓度20 mg·L-1时氮积累贡献率以NH_4~+/NO_3~-=0∶1最大,氮浓度100 mg·L-1、200 mg·L-1时以NH_4~+/NO_3~-=0.5∶0.5最大.粉绿狐尾藻体内蛋白质、氨基态氮和硝态氮的含量均随氮浓度的升高而增加,且蛋白质氨基态氮硝态氮;NH_4~+/NO_3~-为1∶0和0.5∶0.5时蛋白质含量较高,NH_4~+/NO_3~-=1∶0时氨基态氮含量最高,NH_4~+/NO_3~-=0∶1时硝态氮含量最高.由此说明,在试验范围内,粉绿狐尾藻的去氮能力随污水氮浓度升高而提高,可以用于高氮浓度污水修复;粉绿狐尾藻喜铵态氮,但在100 mg·L-1以上的高氮浓度下以硝铵等比时生长和去除氮能力最强;粉绿狐尾藻体内氮组分受硝铵比调节,蛋白氮比例最高,铵态氮和硝态氮则分别随污水NH+4和NO-3比升高而提高.  相似文献   

4.
A European scale network was established in 2006 as part of the NitroEurope Integrated Project to infer reactive nitrogen (Nr) dry deposition fluxes, based on low-cost sampling of gaseous and aerosol species and inferential modelling. The network provides monthly measurements of NH3, NH4+, HNO3 and NO3, as well as SO2, SO42−, HCl, Cl and base cations at 58 sites. Measurements are made with an established low-cost denuder methodology (DELTA) as a basis to: (1) examine temporal trends and spatial patterns across Europe, (2) improve and calibrate inferential modelling techniques to estimate exchange of Nr species, (3) provide best estimates of atmospheric dry N deposition, and (4) permit an analysis of net GHG exchange in relation to atmospheric and agricultural N inputs at the European scale. Responsibility for measurements is shared among seven European laboratories. An inter-comparison of the DELTA implementation by 6 laboratories at 4 test sites (Montelibretti, Italy; Braunschweig, Germany; Paterna, Spain and Auchencorth, UK) from July to October 2006 provided training for the laboratories and showed that good agreement was achieved in different climatic conditions (87% of laboratory site-means within 20% of the inter-laboratory median). Results obtained from the first year of measurements show substantial spatial variability in atmospheric Nr concentrations, illustrating the major local (NH3) and regional (HNO3, NO3, and NH4+) differences in Nr concentrations. These results provide the basis to develop future estimates of site-based Nr dry deposition fluxes across Europe, and highlight the role of NH3, largely of agricultural origin, which was the largest single constituent and will dominate dry Nr fluxes at most sites.  相似文献   

5.
亚热带农区生态沟渠对农业径流中氮素迁移拦截效应研究   总被引:8,自引:7,他引:8  
以我国亚热带农业面源污染防控工程——生态沟渠为研究对象,在2013~2014年对其径流量和每月进出口水质中NH~+_4-N、NO~-_3-N和TN的质量浓度进行监测,通过分析生态沟渠在不同时间段对不同形态氮素的去除差异,探讨了生态沟渠对面源污染中氮素迁移的拦截效应.结果表明,2 a内生态沟渠对NH~+_4-N、NO~-_3-N和TN的平均去除率分别为77.8%、58.3%和48.7%;拦截量分别为38.4、59.6和171.1 kg·a~(-1);进水中无机态氮NO~-_3-N和NH~+_4-N之和占TN质量分数的平均值为47.5%,出水中平均值为33.6%,比进水显著降低(P0.01).2014年生态沟渠中水生植物全部改种为绿狐尾藻后,对NO~-_3-N和TN的拦截率比2013年分别增加了30.5%和18.2%,表明种植绿狐尾藻进一步提升了生态沟渠对氮素的拦截能力.可见,生态沟渠对农区地表径流中氮素迁移有较好的拦截作用,可作为一项重要的农业面源氮污染防控技术.  相似文献   

6.
Nitrates leaching from agricultural land in Hamadan, western Iran   总被引:2,自引:0,他引:2  
Nitrogen (N) is vital for plant and microbial growth and rather large amounts are required by most arable and horticulture plants. High nitrate (NO3) levels of water supplies have been attributed to leaching from the soil and into water systems. In the arid and semi-arid regions, irrigation water carries NO3 into groundwater. This study was conducted to investigate NO3 pollution of groundwater in Hamadan, western Iran. The water samples were mostly taken from domestic and community wells. In this area, the drinking water supply comes mainly from groundwater sources. Nitrate concentrations in the well samples varied from 3 to 252 with the average of 49 mg l−1. Results showed that of 311 wells, 196 (63%) had levels less than 50 mg l−1 and 115 (37%) had levels in excess of the 50 mg l−1 NO3. Agriculture is the dominant land use in the area and application of N fertilizers clearly has an impact on groundwater. If agricultural losses remain stable, it could be expected that the concentration of NO3 in groundwater will reach or exceed the international recommendations for drinking water (50 mg l−1) in the future. Irrigation with high NO3 groundwater can minimise the requirement for N fertilizers. To maintain yield increase and minimise NO3 pollution of the groundwater, best management practices, for N fertilizer use should be applied and excessive fertilizer application prevented.  相似文献   

7.
1株异养硝化-好氧反硝化细菌DK1的分离鉴定及其脱氮特性   总被引:4,自引:3,他引:4  
从某反应器活性污泥中分离筛选出1株假单胞菌属(Pseudomonas sp.)细菌,命名为DK1,并对该菌进行脱氮特性研究.在以葡萄糖为碳源,C/N量比为5时,分别以NaNO_3和NaNO_2为氮源,二者的好氧反硝化速率为4.09 mg·(L·h)-1和4.43mg·(L·h)~(-1).以二者同时为氮源脱氮率为100%;此外,菌株DK1具有异养硝化性能,NH_4~+-N平均去除速率为2.32mg·(L·h)-1.缺氧时以NO_2~--N为氮源菌株DK1可将一系列梯度浓度NO_2~--N(约100~300 mg·L-1)在36 h内降为0.当NO_3~--N和NO_2~--N同时存在时,菌株DK1会优先利用NO_3~--N进行反硝化.同时该菌株还具有同步硝化反硝化(SND)性能,可同时去除NH_4~+-N、NO_2~--N或NH_4~+-N、NO_3~--N,30 h内脱氮率分别达95.06%和94.69%.相同时间内在NH_4~+-N、NO_2~--N和NO_3~--N三者均存在时,脱氮效果最佳,达100%.菌株DK1的高效SND及反硝化性能表明其在处理含氮废水方面有一定的潜力和应用价值.  相似文献   

8.
海洋菌株y3的分离鉴定及其异养硝化-好氧反硝化特性   总被引:5,自引:4,他引:5  
从胶州湾海底沉积物中筛选出1株高效的海洋异养硝化-好氧反硝化细菌y3,经形态学观察、生理生化实验和16S rRNA基因序列分析,确定该菌株为假单胞菌属(Pseudomonas sp.).对其在实际含氮海水中的脱氮实验结果表明,菌株y3的最佳碳源为柠檬酸三钠,最适p H为7.0,最适C/N为13;菌株均能以NH4Cl、Na NO_2和KNO_3为唯一氮源进行反应,20 h后其去除率分别为98.69%、78.38%和72.95%,在硝化过程中几乎没有亚硝酸盐和硝酸盐的积累.以不同比例混合两种氮源反应20 h,当NO~-_3-N∶NO~-_2-N分别为2∶1、1∶1和1∶2时,脱氮率分别为99.56%、99.75%和99.41%;当NH~+_4-N∶NO~-_3-N分别为2∶1、1∶1、1∶2时,脱氮率均为100%;当NH~+_4-N∶NO~-_2-N分别为2∶1、1∶1、1∶2时,脱氮率分别为90.43%、92.79%和99.96%,多高于单一氮源的情况.该菌株具有较好的高盐废水脱氮处理效能.  相似文献   

9.
基质比对ABR厌氧氨氧化工艺脱氮性能的影响   总被引:6,自引:5,他引:1  
为解决厌氧氨氧化底物去除不彻底导致总氮去除偏低的问题,通过控制不同的进水基质比,对厌氧折流板反应器(ABR)的厌氧氨氧化脱氮性能进行了研究.结果表明,ABR厌氧氨氧化系统最佳进水N_2~O--N/NH+4-N为1.34,此时NH+4-N和N_2~O--N的去除率同时达到99.99%左右,总氮去除率达到峰值为87%,当进水N_2~O--N/NH+4-N从1逐渐降低至0.49和从1.34逐渐提高至1.62时,反应器对NH+4-N和N_2~O--N的绝对去除量较为稳定,NH+4-N或N_2~O--N过量对ABR厌氧氨氧化系统没有产生明显抑制;此外,不同基质比条件下,NH+4-N和N_2~O--N的去除基本在第1隔室完成,基质比变化对ABR各隔室的脱氮效果没有产生显著影响,ABR厌氧氨氧化系统对基质浓度的变化具有较好的稳定性.  相似文献   

10.
工厂化海水养殖废水C/N(碳氮比)较低,有效碳源不足,生物脱氮工艺往往由于缺乏碳源而受到抑制.为揭示脱氮工艺中不同过程对碳源匮乏的敏感程度,应用A/O-MBBR(缺氧/好氧-移动床生物膜反应器)处理模拟海水养殖废水,探讨进水C/N降低(从12降至1)对反应器运行效果的影响,并根据EPS(胞外聚合物)、AMO(氨单加氧酶)、NOR(亚硝酸盐氧化酶)、NIR(亚硝酸盐还原酶)、NR(硝酸盐还原酶)的活性,分析碳源不足对不同脱氮过程的抑制状况.结果表明:①C/N降低时,CODCr、NH4+-N、NO2--N的去除率均未下降,自养型的氨氧化、亚硝化过程不受影响,AMO和NOR活性提高.②缺氧区pH降低,ρ(DO)升高,NO3--N的去除率显著降低,C/N为5时开始积累,NR活性明显下降.③异养反硝化反应电子供体出现由外碳源向内碳源和EPS的转换,缺氧区EPS含量逐渐减少,C/N为1时比C/N为6时减少了47%.研究显示,碳源不足是造成海水养殖废水生物反硝化不彻底的主要原因,为了实现高效脱氮,需要在海水养殖废水处理过程中严格控制ρ(DO)并且提供足够的碳源.   相似文献   

11.
异养硝化细菌Bacillus sp. LY脱氮性能研究   总被引:1,自引:1,他引:0  
何霞  赵彬  吕剑  何义亮  靳强  张文英 《环境科学》2007,28(6):1404-1408
研究了异养硝化细菌Bacillus sp. LY的脱氮性能.结果表明,Bacillus sp. LY是1株具有脱氮能力的异养硝化细菌.在NH+4-N浓度分别为40、80和120 mg/L 3种情况下,120 h反应后,氨氮的去除率分别是100%、85.7%、73.7%,总氮的去除率分别是76.6%、53.4%、64.8%,在菌液初始浓度相同的情况下,随着NH+4-N浓度的增加,细菌的硝化速率以及脱氮速率呈现下降的趋势.有机物浓度是影响Bacillus sp. LY脱氮性能的重要因素,低的有机物浓度会阻碍细菌脱氮性能的发挥,中的有机物浓度会促进细菌脱氮性能的发挥,使体系的脱氮效果达到最佳,高的有机物浓度并不能再次提升细菌的脱氮性能.在Bacillus sp. LY作用下,有机氮经过氨化作用生成氨氮,通过2条可能的途径转化为氮气.1条途径是氨氮先硝化生成亚硝酸盐与硝酸盐,然后反硝化生成氮气.另1条途径是氨氮被氧化生成羟胺,然后脱氢生成氧化亚氮并进一步转化为氮气.这些研究可为开发新型高效生物脱氮工艺提供参考.  相似文献   

12.
Chlorella salina was successfully cultivated in secondarily treated domestic sewage effluent of salinity (14%) in an outdoor cultivation tank. Removal efficiencies of NH4+ -N, NO3 -N, and PO43− -P by this alga from secondarily treated sewage effluent were 89–100%, 35–66% and 100%, respectively. The high removal efficiencies of inorganic N and P means that this process can be used as a tertiary sewage treatment. The yield of the sewage-grown algae was 5.1 g m−2 day−1 for a retention time of 6 days. The high protein content (46.8%), relatively good amino-acid profile and low metal content enabled the use of algal biomass as feed supplement for the silver carp (Hypophthalmichthys molitrix). The food conversion ratios (FCR) of 5% and 10% sewage-grown algae supplemented fish food were better than on the control diet (i.e. artificial fish food alone), while the FCR of 20% sewage-grown algae supplemented fish food and live sewage-grown algae alone were inferior to that on the control diet. These results indicate that cultivation of C. salina in secondarily treated sewage effluent of high salinity can be used as a tertiary sewage treatment to remove inorganic N and P from secondarily treated sewage effluent to reduce pollution problems, and to produce algal protein suitable as a supplement for fish feed in aquaculture.  相似文献   

13.
海洋厌氧氨氧化菌的富集培养及其脱氮特性   总被引:1,自引:0,他引:1  
冯莉  于德爽  李津  单晓静  杨振琳 《环境科学》2017,38(6):2435-2443
采用ASBR厌氧氨氧化反应器,通过接种胶州湾底泥,研究了海洋厌氧氨氧菌的富集培养及其脱氮特性.实验结果表明:海洋厌氧氨氧化菌的富集培养可分为4个阶段:菌体自溶期(1~15 d)、迟滞期(16~152 d)、活性提高期(153~183 d)与稳定运行期(184~192 d).与淡水厌氧氨氧化相比,其迟滞期(137 d)较长,活性提高期(30 d)较短,对基质浓度与HRT的变化更敏感,且由进出水导致的菌活性延迟时间为5 h,远长于淡水厌氧氨氧化菌,因此海洋厌氧氨氧化菌对新环境的适应能力更弱,更难富集培养.经过192 d运行,对NH_4~+-N与NO-2-N的去除率分别达到96.98%与95.66%,三氮转化比n(NH_4~+-N)∶n(NO-2-N)∶n(NO-3-N)为1∶(1.2±0.2)∶(0.22±0.06),接近理论比(1∶1.32∶0.26),NRRNH_4~+-N升至0.080 kg·(m~3·d)-1,海洋厌氧氨氧化菌活性显著提高,这标志着海洋厌氧氨氧化菌富集成功.反应器运行过程中,污泥逐渐由黑色泥状变为砖红色颗粒状,扫描电镜观察,该砖红色颗粒为表面光滑,排列紧密、有类似火山口形状的球状菌相互黏聚而成的菌团.  相似文献   

14.
有机物料对两种紫色土氮素矿化的影响   总被引:2,自引:0,他引:2  
张名豪  卢吉文  赵秀兰 《环境科学》2016,37(6):2291-2297
以猪粪沼渣(PM)、牛粪沼渣(CM)、污泥堆肥(SC)、农村生活垃圾堆肥(RWC1)、农村生活垃圾与污泥的堆肥产物(堆肥过程中添加20%的污泥,RWC2)为材料,采用室内恒温好气培养试验研究了不同有机物料施入酸性紫色土和石灰性紫色土后土壤氮矿化的差异.结果表明,不同有机物料有机氮组分含量及其占全氮比例的基本顺序为:氨基酸态氮酸解未知氮酸解铵态氮非酸解氮氨基糖态氮.添加有机物料显著提高了酸性紫色土的NH~+_4-N和NO~-_3-N含量,而石灰性紫色土中猪粪沼渣和污泥堆肥显著提高了NH~+_4-N的含量,牛粪沼渣却使其NO~-_3-N含量降低.牛粪沼渣对酸性紫色土氮矿化量的影响不显著,使石灰性紫色土的氮矿化量降低,其余4种有机物料均明显提高两种土壤的氮矿化量.相关分析表明土壤氮矿化量与有机物料中的氨基酸态氮和酸解铵态氮呈显著正相关,与有机物料的有机质含量和C/N呈显著负相关.上述结果说明有机物料对土壤氮素矿化的效应因土壤和有机物料的性质不同而异,特别是有机物料中的有机质含量、C/N以及有机氮组分.  相似文献   

15.
冷璐  信欣  鲁航  唐雅男  万利华  郭俊元  程庆锋 《环境科学》2015,36(11):4180-4188
以低COD/N生活污水(C/N为3∶1~4∶1)为进水基质,在序批式活性污泥反应器(SBR)中接种好氧颗粒污泥(AGS),通过逐步降低溶解氧(DO)浓度的方式快速实现同步硝化反硝化耦合除磷.反应器运行20 d后(DO浓度为0.50~1.0mg·L-1),系统出现同步硝化反硝化耦合除磷的现象.在随后运行的40 d里,反应器对废水COD、NH+4-N、TN和TP的平均去除率分别为84.84%、93.51%、77.06%和85.69%;出水NO-3-N和NO-2-N平均浓度分别为4.01 mg·L-1和3.17 mg·L-1.反应器启动运行后期,污泥体积指数(SVI)为55.22 m L·g-1,沉降性能良好,颗粒结构较完整.不同氮源的周期曝气阶段结果表明,对TN的去除率为NH+4-NNO-2-NNO-3-N;对TP的去除率为NO-3-NNO-2-NNH+4-N,反应器主要以同步硝化反硝化脱氮和反硝化方式除磷.  相似文献   

16.
为了解富营养水体中NH4+-N胁迫对埃格草(Egeria densa)的影响,通过室外模拟试验,研究了埃格草在不同ρ(NH4+-N)(0、0.5、2.0 mg/L)下的RGR(relative growth rate,相对生长率)、R/S(root/shoot ratio,根冠比)、w(SC)(SC为可溶性糖,soluble sugar)、w(淀粉)、w(蔗糖)、w(FAA)(FAA为游离氨基酸,free amino acid)、w(NH4+-N)和w(NO3--N)的变化.结果表明:随着外源ρ(NH4+-N)的增加,埃格草的RGR和R/S呈降低的趋势,并且在ρ(NH4+-N)为2.0 mg/L时显著降低(RGR为P < 0.001,R/S为P < 0.05);埃格草中w(SC)和w(淀粉)在ρ(NH4+-N)为0.5和2.0 mg/L下有不同程度显著降低[w(SC)为P < 0.01和P < 0.001,w(淀粉)为P < 0.001和P < 0.05],w(蔗糖)在ρ(NH4+-N)为2.0 mg/L时显著降低(P < 0.001);w(FAA)和w(NH4+-N)有随外源ρ(NH4+-N)升高而升高的趋势,并且在ρ(NH4+-N)为2.0 mg/L时升高显著[w(FAA)为P < 0.01,w(NH4+-N)为P < 0.05];w(NO3--N)在ρ(NH4+-N)为0.5和2.0 mg/L下有不同程度显著降低(P < 0.01和P < 0.001).相关分析表明,w(SC)、w(淀粉)和w(蔗糖)之间呈显著正相关,三者与w(FAA)和w(NH4+-N)之间均呈显著负相关,而与w(NO3--N)呈显著正相关;w(FAA)和w(NH4+-N)呈显著正相关,而二者与w(NO3--N)均呈显著负相关.研究显示,NH4+-N影响埃格草的生长,导致C-N代谢的不平衡.   相似文献   

17.
李航  王毅  宋立芳  李勇  李玮  吴金水 《环境科学学报》2014,34(10):2668-2674
以湖南省长沙县的脱甲小流域为例,研究了中亚热带典型农业小流域中氮素输出的规律,并采用统计学方法确定合理的氮素输出监测频率.研究结果表明,该地区农业小流域氮素输出过程受降雨-径流过程和农业管理活动的影响明显,除颗粒态氮(PN)外,流域出口水体中铵态氮(NH+4-N)、硝态氮(NO-3-N)、可溶性氮(DN)和全氮(TN)的浓度均与沟渠径流量显著相关(p0.01).降雨-径流过程和农业管理活动也会影响河道水体中氮素化学形态,但其对氮素化学形态的影响往往是短期的,因为在整个观测期间内,仅NH+4-N/TN比例与径流量有显著相关关系(p0.01).对于不同形态氮素采样频率计算结果表明,水体中氮素浓度变异系数越大,在允许的误差范围内需要的监测频率越高.按照平均值误差的20%控制,NH+4-N和PN的采样频率要达到每天2次才能满足要求,采样频率显著高于NO-3-N、DN和TN(1天1次).如果将典型小流域中的氮素输出监测频率定为每天1次,NH+4-N和PN的相对误差将达到30%.该研究为阐明中亚热带农业小流域氮素输出规律和制定氮素监测策略和规范提供了样本.  相似文献   

18.
补充碳源提取液对人工湿地脱氮作用的影响   总被引:6,自引:1,他引:5  
为了提高人工湿地的脱氮效率,在不同条件下分别对美人蕉、香蒲及稻杆进行稀硫酸水解,以获得相应碳源提取液.正交实验表明,稀硫酸浓度的提高和水解时间的增加都会导致碳源释碳能力的提高,稻杆在5%稀硫酸溶液中水解30 min以上,释碳能力最高.通过观察,前2 d是系统脱氮反应高峰时段.对以NH4+-N和NO3--N为氮源的脱氮过程,随C/N比升高,NO3--N和TN去除率增长明显;而NH4+-N受溶解氧制约,去除有限;随C/N比升高,碳源对系统溶解氧的竞争会进一步抑制硝化反应的彻底进行.而对以NO3--N为氮源的反硝化过程,补充碳源对TN和NO3--N的去除有明显作用;TN去除率由54%提高到95%,NO3--N去除率由48%提高到96%;中间产物NO2--N的积累与NO3--N去除率有关;当NO3--N去除率较高时,NO2--N无积累.此外,基质反硝化强度也随C/N比升高呈上升趋势,湿地填料细沙层的反硝化强度略高于碎石层.  相似文献   

19.
Greenhouse gas budgets as well as the productivity of grassland systems are closely related to the carbon (C) and nitrogen (N) cycles. Within the framework of the CarboEurope and NitroEurope projects we have measured C and N exchange on the field scale at the grassland site Oensingen previously converted from arable rotation. The site is located on the Swiss Central Plateau and consists of two parallel fields of equal size. One field was subjected to intensive management with average nitrogen input of 230 kg-N ha−1 year−1 and 4–5 cuts per year, and the other to an extensive management with no fertilisation and less frequent cutting. The total C budget of the fields was assessed by measuring the CO2 exchange by eddy covariance and analysing the carbon import by manure application and export by harvest. The N budget of the managed grassland is more complex. Besides the management related import and export, it includes gaseous exchange in many different forms (NO, NO2, HNO3, N2O, NH3, N2) needing different analytical techniques, as well as input by rain and leaching of N-compounds with the soil water. The main (“level-3”) field sites in the NitroEurope project are supposed to measure 95% of the N fluxes at the field scale. For several of the N fluxes specific measurements have been performed for 1 year or longer at the site. Some of the remaining N budget components (dry and wet deposition) could be estimated from results of a national deposition network, while other components (NH3 and N2 emission) were estimated based on literature parameterisations. However, we found indications that the (systematic) uncertainties of these estimated N-fluxes are large and that it is important to make site-specific measurement for all relevant budget components. The suitability of corresponding experimental methods is discussed.Analysis of the C budget over a 6-year period (2002–2007) showed a significant mean difference between the two newly established grassland fields with a likely net carbon loss for the extensive management and a net sequestration for the intensive management. Since the C/N ratio of the soil organic matter of the grassland is constrained in a rather narrow range around 9.3, the change in the soil carbon pool is supposed to be accompanied by a corresponding change in the N storage. This approach provided an alternative method to check the N budget of the two grassland fields derived from the individual N fluxes.  相似文献   

20.
本研究构建了厌氧膜生物反应器(AnMBR)-部分亚硝化/厌氧氨氧化(PN/Anammox)污水处理工艺,以探究AnMBR-PN/A工艺处理效果最佳的水力停留时间(HRT).AnMBR将厌氧生物处理与膜分离技术相结合实现有机物去除,AnMBR出水NH4+-N通过PN部分转化为NO2--N,最终通过NO2--N氧化剩余NH4+-N去除.实验结果表明:在HRT=11.2 h时,AnMBR-PN/A工艺化学需氧量(COD)去除率稳定在97%以上,COD转化为CH4效率超过77.5%,总氮(TN)去除率为78%,出水COD和TN浓度分别低于14和11 mg·L-1.AnMBR段COD去除率达到95%,平均甲烷产率为0.39 L·L-1·d-1.PN段实现了NO2--N的高效积累,其出水中NO2-/NH4+为0.91±0.11.Anammox段出水中的NO2--N、NH4+-N和NO3--N浓度分别低于1.0、4.9和5.1 mg·L-1.高通量测序结果表明PN段氨氧化菌主要为Nitrosomonas,丰度为7.09%,Anammox段主要微生物为Candidatus Brocadia,丰度高达21.01%.本研究构建的AnMBR-PN/A工艺实现了污水处理过程的高效能源回收和深度自养脱氮,研究成果为工程应用提供了理论支撑.  相似文献   

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