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1.
沉积物中的异化硝酸盐还原过程是海洋中活性氮转化的关键过程之一.不同于反硝化和厌氧铵氧化,异化硝酸盐还原为铵(DNRA)是将硝酸盐直接还原为铵,而不是以氮气的形态移除,这有可能会加重水体富营养化和缺氧.目前测定沉积物中异化硝酸盐还原过程的主要手段是15N标记培养技术.为了准确评估DNRA的潜在速率,首先要准确测定加富样品...  相似文献   

2.
反硝化与厌氧氨氧化作用是海洋结合态氮迁出的主要途径,15N示踪法是定量反硝化和厌氧氨氧化作用的新方法,它具有灵敏度高、可同步测量反硝化与厌氧氨氧化速率的优点.本研究开展了一系列方法学实验,以确定高纯氦气驱赶水样所含气体的时间、超声赶气时间、同位素比值质谱仪测量N2含量的精度、N2含量及其同位素组成测定的工作曲线以及示踪剂的最佳添加量等,从而确立起15N示踪同步测定海水反硝化和厌氧氨氧化速率的方法.所建立方法测量N2含量的相对标准偏差小于8%,可满足海洋反硝化与厌氧氨氧化速率测定的需要.应用该方法实测了厦门筼筜湖富氧与缺氧水体的反硝化与厌氧氨氧化速率,结果表明,缺氧底层水的反硝化速率[4.10~5.47μmol/(dm3·d)]比富氧表层水[0.43~0.46μmol/(dm3·d)]明显来得高,但缺氧底层水的厌氧氨氧化速率[0.00~0.12μmol/(dm3·d)]则比富氧表层水的速率[0.52~0.67μmol/(dm3·d)]低得多.  相似文献   

3.
本研究在长江口附近海域采集表层沉积物,采用实验室模拟培养与分子生物学手段相结合的方法,通过测定纳米氧化锌(ZnO NPs)和菲(Phe)胁迫下沉积物中NO-3-N和NO-2-N浓度和反硝化还原酶活性及反硝化细菌基因丰度和群落多样性变化,目的是比较研究ZnO NPs和Phe对河口区沉积物反硝化作用及功能菌群落结构的影响,并探讨其作用过程和可能的作用机制。结果表明:ZnO NPs和Phe对沉积物硝酸盐还原能力和亚硝酸还原能力均产生抑制作用,浓度越高,抑制作用越强,其中亚硝酸盐还原过程受到2种污染物抑制更强烈,加重了沉积物亚硝酸盐的累积。ZnO NPs对沉积物硝酸盐还原能力、硝酸还原酶活性、narG基因丰度的抑制程度大于Phe,Phe对沉积物亚硝酸盐还原能力、亚硝酸还原酶和nirS基因丰度的抑制程度大于ZnO NPs,表明对反硝化还原酶和反硝化功能基因的抑制是外源污染物胁迫影响反硝化过程的主要机制。ZnO NPs和Phe降低了沉积物反硝化菌群落多样性水平,增加沉积物中Halomonas的优势度,降低了Bacillus的优势度,但Phe对沉积物群落多样性和组成的影响更加明显,说明Phe对长江口海区的生态影响大于ZnO-NPs。  相似文献   

4.
大亚湾海域沉积物中的硝化与反硝化作用   总被引:3,自引:0,他引:3       下载免费PDF全文
2004年1、4、8、10月在大亚湾海域的4个站点采用自行设计和制作的无扰动沉积物采样器采集沉积物样品,通过使用AIT技术(乙炔同时抑制硝化与反硝化作用),进行实验室同步恒温受控模拟培养实验,并同时测定沉积物上覆水的温度、盐度、DO和pH值,沉积物的Eh值和有机质含量,间隙水的NO3-、NO2-和NH4 浓度,研究沉积物中的硝化与反硝化速率及其影响因素。结果显示大亚湾沉积物的硝化速率范围为[(0.00—4.68)±0.87]μmol/(m2·h);反硝化速率范围[(0.00—2.88)±0.41]μmol/(m2·h);硝化与反硝化作用之间存在耦合,比例范围为0%—100%。沉积物的硝化、反硝化速率和耦合比例与上覆水的温度、DO含量,及沉积物中的有机质含量和Eh值密切相关,人类活动对沉积物的硝化与反硝化作用有明显的影响。  相似文献   

5.
利用15 N示踪法实测南海水体反硝化速率的研究发现,培养水样在长时间密闭放置过程中也会受到外界空气的污染,且其29N2/28N2比值恒定为0.007 35。根据空气背景中29N2/28N2比值恒定的特征,提出基于质量平衡关系校正空气N2污染的方法,通过将样品实测29N2浓度扣除由外界空气贡献的29N2浓度,可获得由生物反硝化作用所产生的29N2准确浓度,进而可计算出准确的反硝化速率。经空气29N2背景校正后,29N2浓度的偏差明显小于未经校正的结果,且29N2浓度与培养时间之间的线性相关性显著加强,凸显出空气29N2背景校正是获取准确反硝化速率的关键。鉴于15 N示踪法已被广泛应用于海洋水体与沉积物反硝化速率的测定中,所提出的空气29N2背景校正方法具有重要的意义。  相似文献   

6.
为了分离好氧反硝化细菌,探究其好氧反硝化过程。利用BTB培养基,从珍珠龙胆(♀Epinephelus fuscoguttatus×♂Epinephelus lanceolatu)循环水养殖系统的生物滤池中筛选出具有硝酸盐去除能力的细菌,并选择脱氮效果良好的菌株进行好氧反硝化反应器的构建,开展反硝化应用研究。本研究共分离出8株具有去除硝酸盐能力的菌株,经反硝化性能测定,都可大幅去除硝酸盐,同时也存在不同程度的氨氮和亚硝酸盐的积累;选择Z1、Z8两株脱氮效果较好的菌株进行好氧反硝化反应器的混合接种试验,结果显示反应器挂膜迅速、高效,接种2周后即达到相对稳定的水处理状态,硝酸盐去除率超过98.8%(约0.827g NO-3-N/(m2·d)),总氮去除率超过71.8%(约0.687g TN/(m2·d)),亚硝酸盐和氨氮的积累不明显,脱氮效果良好。  相似文献   

7.
在2011年7月利用35SO2-4培养示踪法测定九龙江河口两个站位(A站位位于咸淡混合区,盐度3~5;B站位位于海相区,盐度20~25)沉积柱中硫酸盐还原速率的垂直分布。结果显示A站位沉积柱中硫酸盐还原速率变化范围为54~2 345nmol/(cm3·d),从表层到底部先增大后减小,最大值出现在20cm深度附近;B站位硫酸盐还原速率在24~987nmol/(cm3·d)之间,分别在10cm和78cm深度附近出现两个峰值,分别为876nmol/(cm3·d)和987nmol/(cm3·d)。综合分析两个站位孔隙水中SO2-4、甲烷浓度和沉积物中总有机碳、温度和氧化还原电位的垂直变化趋势与其硫酸盐还原速率的分布规律,表明A站位沉积物中硫酸盐还原以有机矿化为主;B站位受到有机质矿化和甲烷厌氧氧化的共同作用;两个站位硫酸盐还原速率及垂直分布趋势受孔隙水中SO2-4浓度、有机质活性和温度的共同影响;根据各个层位硫酸盐还原速率估算两个站位硫酸盐还原通量(以硫计)分别为527.9mmol/(m2·d)和357.1mmol/(m2·d),表明硫酸盐还原是九龙江河口有机质厌氧矿化的重要路径。  相似文献   

8.
反硝化与厌氧氨氧化作用是海洋结合态氮迁出的主要途径,15N示踪法是定量反硝化和厌氧氨氧化作用的新方法,它具有灵敏度高、可同步测量反硝化与厌氧氨氧化速率的优点.本研究开展了一系列方法学实验,以确定高纯氦气驱赶水样所含气体的时间、超声赶气时间、同位素比值质谱仪测量N2含量的精度、N2含量及其同位素组成测定的工作曲线以及示踪剂的最佳添加量等,从而确立起15N示踪同步测定海水反硝化和厌氧氨氧化速率的方法.所建立方法测量N2含量的相对标准偏差小于8%,可满足海洋反硝化与厌氧氨氧化速率测定的需要.应用该方法实测了厦门筼筜湖富氧与缺氧水体的反硝化与厌氧氨氧化速率,结果表明,缺氧底层水的反硝化速率[4.10~5.47μmol/(dm3·d)]比富氧表层水[0.43~0.46μmol/(dm3·d)]明显来得高,但缺氧底层水的厌氧氨氧化速率[0.00~0.12μmol/(dm3·d)]则比富氧表层水的速率[0.52~0.67μmol/(dm3·d)]低得多.  相似文献   

9.
西北太平洋楚科奇海沉积物-水界面营养盐输送通量估算   总被引:2,自引:1,他引:1  
陆架区沉积物间隙水的营养盐再生是水体营养盐补充的重要途径之一。楚科奇海陆架区中部沉积物间隙水中的营养盐分布,是物理和生物扰动较弱状态下的沉积物-水界面的典型分布。本文对中国第4次北极科学考察采集的4个多管短柱沉积物样品及多管样站位的上层水样进行分析,得到沉积物间隙水、上覆水以及水柱中营养盐数据。结果表明,沉积物间隙水各营养盐浓度均先随沉积深度增加而呈指数快速升高,记为Ⅰ层;然后进入沉积物再矿化作用与营养盐移出速率相互抵消的稳定变化层,营养盐浓度在该阶段基本不变,记为Ⅱ层;最后是营养盐缓慢递减层,记为Ⅲ层,由于该层有机质降解作用耗尽氧气,NO-3和PO3-4被还原细菌利用而失去氧离子。通过双层模式和Fick第一扩散定律,计算得出楚科奇海沉积物-水界面硅酸盐、磷酸盐和硝酸盐的扩散通量分别为1.660mmol/(m2·d)(以Si计量)、0.008mmol/(m2·d)(以P计量)、0.117mmol/(m2·d)(以N计量)(以R06站为例)。四个调查站位沉积物中硅酸盐的扩散通量分别为3.101mmol/(m2·d)(以Si计量,CC1站)、1.660mmol/(m2·d)(以Si计量,R06站)、1.307mmol/(m2·d)(以Si计量,C07站)、0.243mmol/(m2·d)(以Si计量,S23站),含量呈现明显的纬度分布特征。沉积物间隙水N*的分布表明,楚科奇海沉积环境具有很强的反硝化过程,沉积物脱氮作用是硝酸盐一个重要的汇。  相似文献   

10.
辽河口沉积物反硝化过程研究   总被引:1,自引:0,他引:1  
近年来,辽河口沿岸人类活动频繁,工农业活动发达,大量的氮、磷等营养物质输入至感潮河段继而排放入海,导致辽河口水体富营养化程度加剧。沉积物区域是反硝化作用的重要发生地和微生物富集地。微生物能够将沉积物中的硝酸盐及亚硝酸盐还原为N2O和N2释放到大气中,进而减轻河口生态系统氮负荷。本文中的实验采用定量PCR技术测定辽河口表层沉积物反硝化过程功能基因narG、nirK、norB、nosZ的基因丰度,结果表明,主导硝酸盐还原的narG功能基因丰度最高。使用高通量测序技术对nirK型功能基因进行测序,结果显示,在辽河口反硝化细菌中Devosia、Phaeobacter、Alcaligenes、Pseudomonas菌属丰度较高。反硝化功能基因的丰度主要受到沉积物粒径的影响,norB基因丰度与多个环境因子显著相关。nirK型反硝化细菌的群落结构和多样性主要受盐度、pH、溶解氧以及NO2?的影响。研究分析了反硝化功能基因丰度和细菌群落结构及其主要影响因子,其结果为辽河口水体富营养化中氮元素归趋的认知提供理论依据。  相似文献   

11.
N2 fixation rates (NFR, in terms of N) in the northern South China Sea (nSCS) and the East China Sea (ECS) were measured using the acetylene reduction assay in summer and winter, 2009. NFR of the surface water ranged from 1.14 nmol/(L·d) to 10.40 nmol/(L·d) (average at (4.89±3.46) nmol/(L·d), n=11) in summer and 0.74 nmol/(L·d) to 29.45 nmol/(L·d) (average at (7.81±8.50) nmol/(L·d), n=15) in winter. Significant spatio-temporal heterogeneity emerged in our study: the anticyclonic eddies (AE) (P<0.01) and the Kuroshio Current (KC) (P<0.05) performed significantly higher NFR than that in the cyclonic eddies or no-eddy area (CEONE), indicating NFR was profoundly influenced by the physical process of the Kuroshio and mesoscale eddies. The depth-integrated N2 fixation rates (INF, in terms of N) ranged from 52.4 μmol/(m2·d) to 905.2 μmol/(m2·d) (average at (428.9±305.5) μmol/(m2·d), n=15) in the winter. The contribution of surface NFR to primary production (PP) ranged from 1.7% to 18.5% in the summer, and the mean contribution of INF to new primary production (NPP) in the nSCS and ECS were estimated to be 11.0% and 36.7% in the winter. The contribution of INF to NPP (3.0%–93.9%) also decreased from oligotrophic sea toward the eutrophic waters affected by runoffs or the CEONE. Furthermore, we observed higher contributions compared to previous studies, revealing the vital roles of nitrogen fixation in sustaining the carbon pump of the nSCS and ECS.  相似文献   

12.
In the present study, we report N_2 fixation rate(~(15)N isotope tracer assay) and the diazotroph community structure(using the molecular method) in the western tropical North Pacific Ocean(WTNP)(13°–20°N, 120°–160°E). Our independent evidence on the basis of both in situ N_2 fixation activity and diazotroph community structure showed the dominance of unicellular N_2 fixation over majority of the WTNP surface waters during the sampling periods.Moreover, a shift in the diazotrophic composition from unicellular cyanobacteria group B-dominated to Trichodesmium spp.-dominated toward the western boundary current(Kuroshio) was also observed in 2013. We hypothesize that nutrient availability may have played a major role in regulating the biogeography of N_2 fixation.In surface waters, volumetric N_2 fixation rate(calculated by nitrogen) ranged between 0.6 and 2.6 nmol/(L·d) and averaged(1.2±0.5) nmol/(L·d), with 10 μm size fraction contributed predominantly(88%±6%) to the total rate between 135°E and 160°E. Depth-integrated N_2 fixation rate over the upper 200 m ranged between 150 μmol/(m~2·d)and 480 μmol/(m~2·d)(average(225±105) μmol/(m~2·d). N_2 fixation can account for 6.2%±3.7% of the depthintegrated primary production, suggesting that N_2 fixation is a significant N source sustaining new and export production in the WTNP. The role of N_2 fixation in biogeochemical cycling in this climate change-vulnerable region calls for further investigations.  相似文献   

13.
We determined patterns of benthic metabolism and examined the relative importance of denitrification (DNF) and dissimilatory nitrate reduction to ammonium (DNRA) as sinks for nitrate (NO3) in intertidal sediments in the presence and absence of benthic microalgal (BMA) activity. By influencing the activity of BMA, light regulated the metabolic status of the sediments, and, in turn, exerted strong control on sediment nitrogen dynamics and the fate of inorganic nitrogen. A pulsed addition of 15N-labeled NO3 tracked the effect and fate of dissolved inorganic nitrogen (DIN) in the system. Under illuminated conditions, BMA communities influenced benthic fluxes directly, via DIN uptake, and indirectly, by altering the oxygen penetration depth. Under dark hypoxic and anoxic conditions, the fate of water column NO3 was determined largely by three competing dissimilatory reductive processes; DNF, DNRA, and, on one occasion, anaerobic ammonium oxidation (anammox). Mass balance of the added 15N tracer illustrated that DNF accounted for a maximum of 48.2% of the 15NO3 reduced while DNRA (a minimum of 11.4%) and anammox (a minimum of 2.2%) accounted for much less. A slurry experiment was employed to further examine the partitioning between DNF and DNRA. High sulfide concentrations negatively impacted rates of both processes, while high DOC:NO3 ratios favored DNRA over DNF.  相似文献   

14.
Quantifying the gross and net production is an essential component of carbon cycling and marine ecosystem studies.Triple oxygen isotope measurements and the O_2/Ar ratio are powerful indices in quantifying the gross primary production and net community production of the mixed layer zone,respectively.Although there is a substantial advantage in refining the gas exchange term and water column vertical mixing calibration,application of mixed layer depth history to the gas exchange term and its contribution to reducing indices error are unclear.Therefore,two cruises were conducted in the slope regions of the northern South China Sea in October 2014(autumn) and June 2015(spring).Discrete water samples at Station L07 in the upper 150 m depth were collected for the determination of δ~(17)0,δ~(18)O,and the O_2/Ar ratio of dissolved gases.Gross oxygen production(GOP) was estimated using the triple oxygen isotopes of the dissolved O_2,and net oxygen production(NOP) was calculated using O_2/Ar ratio and O_2 concentration.The vertical mixing effect in NOP was calibrated via a N_2O based approach.GOP for autumn and spring was(169±23) mmol/(m~2·d)(by O_2) and(189±26) mmol/(m~2·d)(by O_2),respectively.While NOP was 1.5 mmol/(m~2·d)(by O_2) in autumn and 8.2 mmol/(m~2·d)(by O_2) in spring.Application of mixed layer depth history in the gas flux parametrization reduced up to 9.5% error in the GOP and NOP estimations.A comparison with an independent O_2 budget calculation in the diel observation indicated a26% overestimation in the current GOP,likely due to the vertical mixing effect.Both GOP and NOP in June were higher than those in October.Potential explanations for this include the occurrence of an eddy process in June,which may have exerted a submesoscale upwelling at the sampling station,and also the markedly higher terrestrial impact in June.  相似文献   

15.
Nitrogen fixation is one of the most important sources of new nitrogen in the ocean and thus profoundly affects the nitrogen and carbon biogeochemical processes. The distribution, controlling factors, and flux of N2 fixation in the global ocean remain uncertain, partly because of the lack of methodological uniformity. The 15N2 tracer assay (the original bubble method → the 15N2-enriched seawater method → the modified bubble method) is the mainstream method for field measurements of N2 fixation rates (NFRs), among which the original bubble method is the most frequently used. However, accumulating evidence has suggested an underestimation of NFRs when using this method. To improve the availability of previous data, we compared NFRs measured by three 15N2 tracer assays in the South China Sea. Our results indicate that the relationship between NFRs measured by the original bubble method and the 15N2-enriched seawater method varies obviously with area and season, which may be influenced by incubation time, diazotrophic composition, and environmental factors. In comparison, the relationship between NFRs measured by the original bubble method and the modified bubble method is more stable, indicating that the N2 fixation rates based on the original bubble methods may be underestimated by approximately 50%. Based on this result, we revised the flux of N2 fixation in the South China Sea to 40 mmol/(m2·a). Our results improve the availability and comparability of literature NFR data in the South China Sea. The comparison of the 15N2 tracer assay for NFRs measurements on a larger scale is urgently necessary over the global ocean for a more robust understanding of the role of N2 fixation in the marine nitrogen cycle.  相似文献   

16.
西北冰洋中太平洋入流水营养盐的变化特征   总被引:11,自引:5,他引:6       下载免费PDF全文
利用1999,2003和2008年夏季(7-9月)三次中国北极科学考察数据资料,分析和讨论太平洋入流水营养盐的分布和楚科奇海关键生物地球化学过程对太平洋水化学性质的改造.结果表明,2003和2008年在白令海峡南部64.3°N纬向断面(BS断面)由于水团性质差异显著,营养盐呈西高、东低的分布趋势.2003年BS断面水柱...  相似文献   

17.
1 Introduction Estuaries have been subject to intense anthro- pogenic influences over recent decades by inputs of ni- trogen as a consequence of fertilizer usage and sewage/waste input (Howarth et al., 1996). Thus, the capacity of an estuary to buffer or alleviate additional nutrients is of importance in modifying the load of ni- trogen in the marine ecosystem. The role of microor- ganisms in regulating fluxes of nitrogen from land to sea through estuaries has received increased attention (Ni…  相似文献   

18.
倪洁  刘珊珊  陈妍  杨桂朋  何真 《海洋学报》2020,42(12):119-128
海洋中产生的挥发性卤代烃(Volatile Halocarbons,VHCs)是氯、溴和碘进入大气的重要载体。海洋藻类能够产生损耗大气中臭氧的VHCs,尤其是海洋微藻已被证明是大气中一些VHCs的主要贡献者。环境因素对海洋微藻产生VHCs的影响研究较少,本文主要研究了光照和硝酸盐浓度对微藻释放VHCs的影响。将海洋微藻东海原甲藻(Prorocentrum donghaiense)和三角褐指藻(Phaeodactylum tricornutum)置于密封的玻璃容器中,并在不同光照条件(20 μmol/(m2·s)、70 μmol/(m2·s)和140 μmol/(m2·s))及不同硝酸盐浓度(1 mg/L、5 mg/L、10 mg/L和50 mg/L)下进行无菌单种培养,分析碘甲烷(CH3I)、二溴甲烷(CH2Br2)、一氯二溴甲烷(CHBr2Cl)和三氯乙烯(C2HCl3)4种VHCs的生产。采用吹扫?捕集气相色谱技术对其中的VHCs进行提取和分析。结果表明,光照强度和硝酸盐浓度会影响两种微藻对VHCs的释放,但是对不同VHCs的影响效果不同,其中CH3I的释放受光照强度和硝酸盐浓度变化的影响比较显著。一定范围内,光照强度越大,两种微藻对CH3I的释放量越大。适当的硝酸盐浓度(> 5 mg/L)在一定程度上促进了两种微藻对CH3I的释放。  相似文献   

19.
采用船载海?气CO2连续观测系统于2011年和2014年夏季在琼州海峡开展了现场观测,分析研究了表层海水二氧化碳分压(pCO2)时空变化及其影响因子。2011年和2014年夏季pCO2分别为(516±29) μatm和(533±15) μatm,海?气CO2交换通量分别为(8.4±1.7) mmol/(m2·d)和(4.5±0.4) mmol/(m2·d),均是大气CO2的强源,高于相邻及相似海域,主要受控于东口海域上升流和海峡中部狭管效应。2011年夏季东口上升流增大pCO2的同时也促进了浮游植物繁殖,光合作用吸收水体CO2,降低了pCO2,而且受其影响,西口口门附近叶绿素a和溶解氧含量陡增,pCO2突降。2014年夏季东口海域上升流较弱,且观测海域垂直混合作用显著,pCO2和溶解氧分布特征与2001年夏季明显不同。海峡中部狭管效应造成水体输运速率大、混合作用强,浮游植物“来不及”生长,pCO2较高。  相似文献   

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