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1.
为解决海水养殖环境中的无机氮污染问题,从河鲀(Takifugu rubripes)养殖池塘的水体和底泥中筛选出2株可有效去除氨态氮、亚硝态氮和硝态氮的菌株——盐单胞菌(Halomonas sp.DN3)和枯草芽孢杆菌(Bacillus subtilis HC),并初步探讨了2株菌在不同无机氮源中的氮去除特性。研究表明,2株细菌均具有较好的无机氮去除效果。在初始无机氮浓度为42 mg·L~(-1)的单一氮源基础降解液中,菌株DN3对氨态氮、亚硝态氮和硝态氮的去除率分别为84.1%、62.1%和98.8%;菌株HC对三者的去除率分别为81.2%、49.0%和90.3%。在氨态氮去除过程中,虽未检测到硝态氮和亚硝态氮的积累,但从系统的氮收支分析,总氮浓度均显著下降,推测可能存在硝化过程;在硝态氮和亚硝态氮去除过程中,菌株DN3还原硝态氮时具有亚硝态氮的积累,菌株HC氧化亚硝态氮时具有硝态氮的积累。而从总氮浓度均有下降推测,可能存在好氧反硝化过程。在初始无机氮浓度为42 mg·L~(-1)的混合氮源基础降解液中,2株菌均具有良好的同步去除无机氮能力。以氨态氮和亚硝态氮为氮源时,菌株DN3和HC的总无机氮去除率分别为75.4%和66.6%;以氨态氮和硝态氮为氮源时,菌株DN3和HC的总无机氮去除率为69.5%和75.6%,2株菌在2种混合氮源中的氨态氮去除率均在90.0%以上。综合分析,菌株DN3和HC对无机氮去除机制主要以菌体的同化作用为主,同时推测具有一定的硝化和反硝化作用。研究结果表明,菌株DN3和HC均可高效去除无机氮,其在海水养殖水环境调控中具有潜在的应用价值。  相似文献   

2.
芦苇湿地酶活性动态变化及其与净化功能相关性   总被引:1,自引:0,他引:1  
以黄河三角洲某湿地处理系统为例,测定了造纸废水灌溉芦苇湿地过程中酶活性动态变化及其与废水污染物去除率、基质微生物的相关性.结果表明:脱氢酶、纤维素酶和蔗糖酶活性与废水COD去除率、脲酶和碱性磷酸酶活性分别与废水TN,TP去除率呈显著正相关(r>0.8);湿地酶活性在土壤中的垂直分布为上层>中层>下层,其中磷酸酶和脱氢酶层间差异最大.湿地酶活性及微生物数量受季节影响明显,在8,9月最高;废水灌溉后湿地酶活性、MBC/TOC、基质呼吸强度等大幅提高,盐碱生态系统得到改良;经综合评价,确定恒定流运行模式(w1)为推荐造纸废水灌溉工艺.  相似文献   

3.
池塘循环水养殖与人工湿地相组合,是将养殖生产与净化养殖废水并举的新思路,研究该组合系统中氮、磷物质的源-汇作用,对系统工艺参数的设置具有指导意义。本文研究了在复合垂直潜流人工湿地-池塘循环水养殖系统中氮、磷生源要素的流向与收支,并通过氮、磷收支评价人工湿地对池塘尾水净化效果。研究表明:在5个月的试验周期内,饲料投入是该养殖系统氮、磷收入最主要的途径,分别占总收入的65.61%和81.44%,其次是水体中带入的氮、磷。在试验初期,由于养殖生物与湿地植物的生物量较小,因此其对系统的氮、磷收入部分贡献较小。沉积物蓄积是氮、磷最主要的支出途径,占总支出氮、磷的比例为28.60%和42.23%;其次为养殖生物的收获,占总支出氮、磷的26.05%和30.77%;人工湿地植物与基质蓄积的氮、磷占总支出的15.81%和16.11%;通过池塘底泥渗漏损失的氮、磷较少。人工湿地对氨氮、总氮、总磷的去除率分别为33.72%~66.32%、36.35%~72.40%、44.69%~57.32%,且氨氮与总氮的去除率受温度影响显著。研究结果表明:人工湿地对池塘尾水有显著的净化效果,可通过植物收割、基质移除等方式去除系统内未被有效利用的氮、磷,减少池塘内源性氮、磷的蓄积。人工湿地-池塘循环水养殖模式具有良好的生态效益,是一种绿色、可持续的养殖模式。  相似文献   

4.
以新型间歇增氧垂直流人工湿地系统为研究对象,采用中心复合设计响应曲面法优化垂直流人工湿地脱氮处理过程中曝气工艺参数并预测其脱氮效能。以曝气量、曝停比、曝停周期为间歇曝气影响因素,分别以人工湿地氨氮去除率和总氮去除率为响应值建立垂直流人工湿地氨氮去除率和总氮去除率的二次回归模型,通过假设检验(F-test),模型均非常显著且具有较好的相关性。间歇增氧垂直流人工湿地脱氮处理中曝气量、曝停比为对氨氮去除影响极显著的曝气参数,通过影响因子主次分析,曝气量、曝停比、曝停周期对氨氮去除率的影响顺序是:曝停比>曝气量>曝停周期;曝停周期为对总氮去除具有极显著影响的曝气参数,通过影响因子主次分析,曝气量、曝停比、曝停周期对TN去除率的影响顺序是:曝停周期>曝气量>曝停比。模型预测氨氮与总氮去除率的最佳曝气参数分别为:曝气量2 m3/h、曝停比0.25、曝停周期12 h、曝气量2 m3/h、曝停比0.25、曝停周期6 h;氨氮、总氮去除率预测值分别为98.4%、83.2%,预测值与实测值吻合。响应曲面法用于优化曝气参数对人工湿地脱氮效能影响具有可行性,可实现间歇增氧人工湿地脱氮效能的准确预测。  相似文献   

5.
利用新型间歇增氧垂直流人工湿地,揭示了不同进水N H4+-N浓度下盐度提升对湿地脱氮性能及微生物群落的影响.试验结果表明:间歇增氧垂直流人工湿地在盐胁迫下的脱氮性能明显优于传统垂直流人工湿地,高盐(2.0% 盐度)对TN去除性能影响较大,对COD去除性能影响相对较小.进水NH4+-N浓度为40 mg/L时,当盐度由0%...  相似文献   

6.
本文研究了以硫酸铵、亚硝酸钠和硝酸钾为氮源时异养硝化-好氧反硝化菌Alteromonas macleodii 8D的脱氮特性。研究表明,当分别以硫酸铵、亚硝酸钠和硝酸钾为唯一氮源时,培养48h,菌株对氨氮(NH_4~+-N)、亚硝态氮(NO_2~--N)和硝态氮(NO_3~--N)的去除率分别为58.64%、67.41%和50.28%。NH_4~+-N去除过程中并未检测到明显的NO_2~--N和NO_3~--N的积累,然而在NO_2~--N和NO_3~--N去除过程中却明显检测到了NH_4~+-N的积累。NH_4~+-N和NO_2~--N共存时,NO_2~--N抑制了菌株对NH_4~+-N的去除,而NH_4~+-N则将NO_2~--N去除效率提高了22.95%。NH_4~+-N和NO_3~--N共存时,NO_3~--N将NH_4~+-N去除效率提高了12.46%,而NH_4~+-N对NO_3~--N去除无显著影响。NO_2~--N和NO_3~--N共存时,将NO_2~--N和NO_3~--N的去除效率提高了29.19%和15.48%。NH_4~+-N、NO_2~--N和NO_3~--N共存时,将3种无机氮的去除效率提高了38.57%、27.17%和42.56%。研究结果显示,3种无机氮共存时菌株Alteromonas macleodii 8D有最好的除氮表现,作为除氮的理想菌株,该菌株可用于实际养殖水体无机氮的去除。  相似文献   

7.
利用4个连续进水的垂直流人工湿地,比较分析水位对污染物去除效果的影响,研究湿地中植物对氮磷去除的贡献,阐析湿地中脱氮功能菌数量的演变规律。3个湿地栽种黄花鸢尾,水位分别控制在19、51和84cm,另一个湿地不栽种植物,水位为51cm。结果表明,水位对氮和有机物的去除有显著影响(p0.05),栽种植物的湿地中,51cm水位时总氮去除率(67.4%~79.2%)最高,19cm水位时氨氮(85.3%~93.0%)和COD(81.8%~92.9%)去除效果最好。试验中黄花鸢尾均生长良好,植物吸收对总氮(Total nitrogen,简称TN)和总磷(Total phosphorus,简称TP)去除的贡献分别为19.2%~27.3%和14.7%~19.2%;植物地上部分发挥更重要作用,其TN和TP含量及对TN和TP的吸收量均高于地下部分。湿地表层基质中3种脱氮功能菌数量均随运行时间的增加而显著提高,亚硝化细菌和硝化细菌数量分别为10~4~10~6和10~5~10~7 MPN/g,随水位升高而减少;反硝化细菌数量为10~3~10~6 MPN/g,随水位升高而增加。  相似文献   

8.
蒋鹏  赵春贵  杨素萍 《海洋与湖沼》2014,45(6):1218-1224
采用高浓度无机三态氮(铵氮4NH?-N、亚硝氮2NO?-N和硝氮3NO?-N)共存的模拟海水体系,在最适生长条件下,研究了小分子有机物(糖类、有机酸、醇、有机氮)和p H对海洋着色菌(Marichromatium gracile)YL28去除水体无机三态氮的影响。结果表明:以葡萄糖、乙酸钠和乙醇为唯一碳源时,水体中的高浓度2NO?-N和3NO?-N均能被完全去除,4NH?-N的去除率分别为93.40%、84.55%和66.63%;碳源为乙酸钠时菌体生长最好,体系中添加蛋白胨或尿素,仅4NH?-N的去除效果明显降低。p H值在6.0—9.0时,该菌株对4NH?-N、2NO?-N和3NO?-N均具有去除能力。由此可知:YL28菌株对模拟海水养殖水体中高浓度无机三态氮具有良好的去除能力,高浓度有机氮化物(蛋白胨和尿素)对4NH?-N的去除能力有明显影响,但对2NO?-N和3NO?-N仍保持高效的去除能力。本研究为不产氧光合细菌制剂在水产养殖中的合理应用提供参考。  相似文献   

9.
本文研究了长期暴露条件下镀镍多壁碳纳米管(MWCNTs-Ni)对序批式反应器(SBR)性能、微生物酶活性和微生物群落的影响。研究结果表明,10 mg/L MWCNTs-Ni的长期暴露未对SBR去除有机物产生影响,而NH_4~+-N的去除率由(99.10±0.60)%明显降至(39.04±1.61)%。与进水中未加入MWCNTs-Ni时的第32天相比,活性污泥比耗氧速率(SOUR)和脱氢酶(DHA)活性在第148天时分别降低了17.43%和24.32%;而脱氮速率和与脱氮相关的微生物酶活性均降低了60%以上,从而导致SBR对氮的去除效果明显降低。MWCNTs-Ni的长期暴露导致活性污泥活性氧(ROS)产生量和乳酸脱氢酶(LDH)释放量在第148天时分别增加了67.23%和65.33%,表明MWCNTs-Ni的长期暴露能够诱导活性污泥中微生物产生氧化应激和细胞膜损伤。高通量测序结果表明,长期暴露于10 mg/L的MWCNTs-Ni条件下,活性污泥中与硝化过程相关菌属(Nitrosomonas、Nitrosospir、Nitrospira)和与反硝化过程相关菌属(Dokdonella、Dechloromonas、Steroidobacter、Devosia、Thermomonas)的相对丰度明显降低,进而影响到SBR对氮的去除。该研究结果可为评价MWCNTsNi对污水生物处理系统的潜在影响提供一定的理论基础和技术依据。  相似文献   

10.
菹草和螺蛳对养殖池塘水体及底泥氮、磷等净化效果研究   总被引:1,自引:0,他引:1  
通过将螺蛳与3个不同覆盖面积的菹草(10%、20%、30%)组合,研究了沉水植物菹草和底栖动物螺蛳构建的净化体系对养殖池塘水体及底泥间隙水氮、磷等污染物的净化效果。结果表明:螺蛳对养殖池塘水体及底泥具有一定的净化效果,菹草和螺蛳协同作用对养殖池塘水体及底泥氮磷等污染物的去除效果优于螺蛳单独作用;不同覆盖面积的菹草和螺蛳组合作用对养殖池塘水体及底泥总氮(TN)、总磷(TP)、化学耗氧量(COD)、铵态氮(NH_4~+-N)、硝态氮(NO_3~--N)、亚硝态氮(NO_2~--N)等的去除效果不同,覆盖面积30%的菹草和螺蛳组合对可大幅降低养殖池塘水体中TN、TP、NH_4~+-N以及NO_2~--N浓度。  相似文献   

11.
为探讨海马齿(Sesuvium portulacastrum)对水域环境修复作用,本文研究了水培海马齿对不同盐度水质的碳汇作用以及不同形态氮的利用情况。实验设计0、10、20、30、35盐度梯度,海马齿水培时间82 d,然后测定植株干重、营养元素含量以及积累速率,最后在抑菌与不抑菌条件下研究海马齿根际与铵态氮(NH4+-N)、硝态氮(NO3--N)、无机磷(PO43-)以及色氨酸(Trp)吸收转化关系。研究结果表明,盐度10条件下海马齿植株干重、有机元素含量以及积累速率最高,有机碳、有机氮与有机磷积累速率分别为(5.572±1.611)、(0.313±0.058)、(0.057±0.013)mg/(d·ind.),而高盐环境35盐度条件下对海马齿生长造成一定胁迫。盐度0~35范围,海马齿均未出现死亡现象。不同盐度抑菌培养条件下,色氨酸与无机氮共存时均能被能被海马齿利用,色氨酸利用量远高于硝态氮、铵态氮;不抑菌条件下铵态氮则表现出增加的结果。海马齿作用在盐度...  相似文献   

12.
为了高效进行水体脱氮,本实验从形成于凡纳滨对虾(Litopenaeus vannamei)养殖水体的生物絮团中分离到一株具产絮能力的脱氮菌xt1,经16S r RNA基因测序与生理生化分析确定菌株xt1为短小芽孢杆菌(Bacillus pumilus)。在此基础上,本文研究了该菌的脱氮特性。结果表明:菌株xt1最佳碳源为葡萄糖,以其为底物对氨氮、硝态氮去除率分别达95.56%和57.40%。以蔗糖为碳源亦具较高脱氮率,对氨氮、硝态氮去除率分别达69.95%和49.50%;该菌能利用有机氮加速生长,添加0.25%、0.5%、1%和2%的蛋白胨能促进OD600,分别达到0.925、1.034、1.103和1.314,均高于未加蛋白胨下的生长,且氨氮去除率均超过90%,硝态氮去除率均超过88%;该菌能适应20—200mg/L无机氮浓度;该菌能以NH4+-N、NO2–-N或NO3–-N为唯一氮源进行异养硝化-好氧反硝化,反应84h去除率分别达到94.16%、47.60%和91.17%。其中,该菌的硝化形式是将氨氮转化为气态氮脱除,其硝态氮反硝化形式是先将硝态氮转化为亚硝氮,再以气态氮脱除。在进行异养硝化-好氧反硝化同时,菌株xt1体现絮凝特性,絮凝率最高分别达到82.28%、73.15%和75.60%;此外,添加该菌于养殖水体中能加速生物絮团形成,同时提高脱氮率。各项结果表明,菌株xt1可作为水产养殖水体脱氮的备选菌株。  相似文献   

13.
为获得反硝化脱氮效率较好的菌株,实验从海水螺旋藻培养体系中分离获得一株嗜碱兼性好氧反硝化菌, 通过观察细菌形态以及16S rRNA基因序列的同源性分析, 鉴定该菌株为海杆菌属, 命名为Marinobacter sp. B3。为明确该海杆菌的反硝化性能及氮转化途径, 研究开展了溶解氧(DO), 碳氮摩尔比(C/N), pH和温度等不同单因素对反硝化性能影响实验和氮平衡实验。单因素影响实验结果表明, 当硝酸钾(KNO3)作为唯一氮源, NO3--N的初始浓度为100 mg/L, 盐度32, 振荡速度为150 r/min (初始DO质量浓度是5.6 mg/L), C/N=10, pH=8.0±0.2, 温度为35 °C时, 可获得最大脱氮效果。氮平衡实验结果得出, 在好氧环境下, 有20.11%的NO3--N转化为胞内氮, 5.58 mg/L的NO3--N转化为其他形态(NO2--N、NO4+-N和有机氮), 74.72%转化为N2释放; 厌氧环境下, 有26.65%的NO3--N转化为胞内氮, 72.86%的NO3--N转化为气态产物释放。最终实验结果表明, Marinobactersp. B3在好氧和厌氧条件下, 48 h对NO3--N的去除率分别为99.89%和93.80%, 具有较好的反硝化脱氮能力, 且在好氧条件下NO3--N去除效率更高, 在海水工厂化循环水养殖尾水处理方面具有良好的应用前景。  相似文献   

14.
养殖废水的综合利用与无公害化处理排放是实现水产养殖业健康可持续发展的重要保障。作者采用太平洋牡蛎(Crassostrea gigas)及龙须菜(Gracilaria lemaneiformis)混养和单养的方式处理大西洋鲑工业化循环水养殖系统排放的废水,设置贝类组、藻类组、贝藻组3组处理,探讨了贝藻混养方式和贝类、藻类单养对废水中主要水质因子(N、P营养盐、化学需氧量(COD)和总悬浮颗粒物(TSS))的处理效率,实验周期为30 d。结果表明,牡蛎和龙须菜混养的方式处理养殖废水效果较好,其对氮、磷营养盐、COD及TSS的去除效率分别为:总氨态氮41.67%±8.82%、硝酸盐氮33.96%±0.34%、总磷7.18%±0.03%、COD 78.87%±1.82%和TSS 70.50%±1.65%,而亚硝酸盐氮出现一定的积累。综合分析,牡蛎和龙须菜混养的方式处理养殖废水的效率优于牡蛎和龙须菜的单独处理。  相似文献   

15.
In marine wetlands, nitrogen fixation is a potentially important nutrient source for nitrogen‐limited primary producers, but interactions between nitrogen fixers and different vascular plant species are not fully understood. Nitrogen fixation activity was compared in sediments vegetated by three plant species, Spartina foliosa, Salicornia virginica, and Salicornia bigelovii in the Kendall Frost Reserve salt marsh in Mission Bay (CA). This study addressed the effects of plant type, day and night conditions, and sediment depths on nitrogen fixation. Higher rates of nitrogen fixation were associated with S. foliosa than with either of the two Salicornia spp., which are known to compete more effectively than Spartina for exogenous nitrogen in the salt marsh environment. Rates of nitrogen fixation, determined by acetylene reduction, in sediments vegetated by S. virginica were low during the day (7.7 ± 1.2 μmol C2H4 m−2 h−1) but averaged 13 ± 6.6 μmol C2H4 m−2 h−1 at night, with particularly high rates in samples from locations with visible cyanobacterial mats. The opposite diel pattern was found for sediments containing S. foliosa plants, in which average daytime and nighttime rates of nitrogen fixation were 62 ± 23 and 21 ± 15 μmol C2H4 m−2 h−1, respectively. For S. foliosa, nitrogenase activity of rinsed roots and different sediment sections (0–1, or 4–5 cm depths) were measured. Although nitrogen fixation rates in vegetated sediment samples were substantial, all but one of rinsed S. foliosa root samples (n = 12) and subsurface sediments at 4–5 cm depths failed to show nitrogen fixation activity after 2 h, suggesting that the most active nitrogen fixers in these systems likely reside in surface sediments. Further, nitrogenase activity in shaded and unshaded S. foliosa samples did not differ, suggesting that nitrogen fixers may not rapidly respond to changes in plant photosynthetic activity. Average nitrogen fixation rates in S. foliosa‐vegetated samples from the Mission Bay salt marsh were on the same order as those of highly productive Atlantic coast marshes, and this microbially‐mediated nitrogen source may be similarly substantial in other Mediterranean wetlands. Sediment abiotic variables seem to exert greater control upon nitrogen fixation activity than the effects of particular plant species. Nonetheless, dominant plant species may differ substantially in their reliance on nitrogen fixation as a nutrient source, with potentially important consequences for wetland conservation and restoration.  相似文献   

16.
The preferential inorganic nitrogen source for the seagrass Zostera noltii was investigated in plants from Ria Formosa, South Portugal. Rates of ammonium and nitrate uptake were determined at different concentrations of these nutrients (5, 25 and 50 μm ), supplied simultaneously (NH4NO3) or separately (KNO3 and NH4Cl). The activity of the enzymes nitrate reductase (NR) and glutamine synthetase (GS) was also assessed. The results showed that ammonium is the preferential inorganic nitrogen source for Z. noltii, but, in the absence of ammonium, the species also has a high nitrate uptake capacity. The simultaneous availability of both inorganic nitrogen forms enhanced the uptake rate of ammonium and decreased the uptake rate of nitrate compared to when only one of the nitrogen forms was supplied. The activity of both enzymes was much higher in the leaves than in the roots, highlighting the importance of the leaves as primary reducing sites in the nitrogen assimilation process.  相似文献   

17.
2019年夏季在广西北海市金海湾红树林湿地,设置7个断面,分别采集红树林和光滩小型底栖动物沉积物样品,进行海洋线虫群落结构的研究。分析结果共鉴定出7个小型底栖动物类群,分别为自由生活海洋线虫、桡足类、多毛类、寡毛类、双壳类、有孔虫以及少许未鉴定类群,其中海洋线虫是优势类群,占总丰度的91.79%。小型底栖动物的丰度介于(6.07±1.23)—(200.25±31.75)ind./10cm2之间,海洋线虫的丰度介于(4.16±1.7)—(195.23±30.80)ind./10cm2之间。各个断面,红树林区小型底栖动物的数量都大于相同断面光滩上的。共鉴定出6个海洋线虫优势属,分别为Terschellingia、 Promonhystera、 Paralongicyatholaimus、 Dorylaimopsis、 Halichoanolaimus和Metachromadora,其中Terschellingia为最优势属,优势度为19.35%,在各个断面广泛分布。文中比较分析了该属出现的3个相近种的尾长、化感器直径和化感器距体前端的距离等形态学特征。  相似文献   

18.
微藻固碳是一种新型节能减排技术,具有长期可持续发展的潜力。本文对两株富油微藻(球等鞭金藻和微拟球藻)进行了富碳培养下生长特性及中性脂积累特性的研究。两株富油微藻的最佳培养条件为10%CO2浓度和f培养基。本研究对两株富油微藻的最大生物量产率、总脂含量、最大油脂产率、微藻的C含量和CO2固定率进行了测定。球等鞭金藻的各参数指标分别为:142.42±4.58g/(m2·d),39.95%±0.77%,84.47±1.56g/(m2·d),45.98%±1.75%和33.74±1.65g/(m2·d)。微拟球藻的各参数指标分别为:149.92±1.80g/(m2·d),37.91%±0.58%,89.90±1.98g/(m2·d),46.88%±2.01%和34.08±1.32g/(m2·d)。实验结果显示,两株海洋微藻均属于高固碳优良藻株,适合应用于微藻烟气减排技术开发,具备用于海洋生物质能耦合CO2减排开发的潜力。  相似文献   

19.
To understand the processes transporting nitrate to the surface layer of the western and central equatorial Pacific, we measured the nitrogen isotopic ratio of nitrate (δ 15NO 3 ), which is a very useful tracer of the source of nitrate, above 200 m depth in this region in December 1999. δ 15NO 3 is higher (about 13.0‰) in the surface water than in the subsurface water (where it is about 6.5‰) due to isotopic fractionation during nitrate uptake by phytoplankton. The δ 15NO 3 value has a roughly linear relationship with the natural logarithm of nitrate concentration (ln[NO 3 ]). However, for values above 150 m depth, the intercept of this linear relationship varies with position from east to west. On the other hand, the data at 200 m depth at all observation stations are concentrated around a single point (ln[NO 3 ] = 2.5 and δ 15NO 3 = 6.5‰) and do not fit the linear relationships for the shallower values. To examine the meaning of the observed distributions of δ 15NO 3 and nitrate concentration we developed a box model including nitrogen and nitrogen isotopic cycles. By reproducing the observed relationship between δ 15NO 3 and nitrate concentration using this model we found that most nitrate is transported horizontally from the eastern equatorial Pacific. We also conducted case studies and investigated the effects of differences in pathways of nitrate transport on the distributions of δ 15NO 3 and nitrate concentration. From these studies we concluded that the observed linear relationships between δ 15NO 3 and ln[NO 3 ], having a common slope around 6‰ but different intercepts at each station, are evidence of the significant horizontal transport of nitrate to the surface water in this area.  相似文献   

20.
A method has been developed for determination of15N isotope ratio in nitrate nitrogen, which is a major analytical step in tracer experiments for studies of nitrate metabolism in the marine environment. The method is based on diazotization of nitrite with sulfanilic acid following reduction of nitrate to nitrite by a cadmium-copper column. The diazonium compound is then subject to the azo coupling reaction with 2-naphthol, and the azo dye formed is extracted by a solid phase extraction column. The dye eluted from the column is collected, and total nitrogen and15N content of the dye are determined by mass spectrometry. Sulfanilic acid can also remove preexisting nitrite by heating the sample under acidic conditions before passing through the cadmium-copper reduction column. The average recovery of nitrate nitrogen was 86%. A procedure for reducing the background nitrogen that derives from the analytical operations has been developed; background nitrogen was limited to about 0.25 μg-atomN. The variation in the background nitrogen levels reflects the range of error in15N determination of nitrate nitrogen by this method. Application of the present method to a15NO3 isotope dilution experiment for determination of nitrification rate in sea water is demonstrated.  相似文献   

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