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61.
Oxidized reactive nitrogen in the atmosphere mainly consists of nitrogen oxides (NO X =NO+NO2, NO3) and nitric acid. The atmospheric cycling of NO X influences the formation of ozone and hydroxyl radicals that are important for atmospheric oxidation capacity. Nitric acid, the final product of NO X oxidation, not only is an important component of particulate pollutants, but also has a direct impact on the ecosystem through dry and wet deposition. The stable nitrogen isotope (δ15N) shows the potential to study reactive nitrogen cycle, and to trace the emission, transport and deposition of reactive nitrogen from local to global scales. Here, we reviewed previous studies using δ15N to investigate NO X emission and atmospheric reactive nitrogen cycle, and discuss the uncertainties of δ15N signatures of different NO X sources from two aspects: NO X generation mechanism and NO X collection methods. We also discussed the nitrogen isotope fractionation and the consequences during the conversions of NO y molecules. We ended up with discussions on the possibility of using δ15N to trace NO X emissions. Although there are still large uncertainties in quantifying and tracing NO X emissions using nitrogen stable isotopes, such isotope tool is efficient enough to trace reactive nitrogen cycles in the atmosphere. On the basis of this, we proposed that we can combine atmospheric chemistry transmission models with isotope tracers to improve our understanding of regional and global atmospheric reactive nitrogen cycle regarding the fluxes of different emission sources, their atmospheric transformation, etc.  相似文献   
62.
The bioavailability of nutrients is important in controlling ecological processes and nitrogen cycling in oligotrophic mangrove forests, yet the variation of diazotrophic community structure and activity with nutrient availability in sediments remains largely unexplored. To investigate for the first time how nutrients in sediments affect spatial and temporal patterns of diazotrophic community structure and activity, the sedimentary environment of Twin Cays, Belize, was examined with respect to the effects of long‐term fertilization [treatments: control (Ctrl), nitrogen (N), and phosphorus (P)] on N2 fixation rates and nifH gene community structure. We found that N2 fixation rates were significantly higher at the P‐treatment, intermediate at the Ctrl‐treatment and lower in the N‐treatment (P: 4.2 ± 0.5, Crtl: 0.8 ± 0.1, N: 0.4 ± 0.1 nmol·N·g?1·h?1; P < 0.001) with spatial (Ctrl‐ and P‐treatments) and temporal (only P‐treatment) variability positively correlated with live root abundance (r2 = 0.473, P < 0.001) and concentration (r2 = 0.458, P < 0.0001). The community structure of diazotrophs showed larger spatial and temporal variability in the fertilized treatments than in the Ctrl‐treatment, with the relative abundance of OTUs (nifH operational taxonomic units) at the fertilized treatments inversely related to live root abundance. Overall, long‐term fertilization (with either N or P) affects not only nutrient levels in mangrove sediments directly, but also spatial and temporal patterns of both community structure and activity and likely plant‐microbe interactions as well. Our findings suggest that the maintenance of natural nutrient conditions in mangrove sediments is important to ensure the stability of microbial functional groups like diazotrophs.  相似文献   
63.
氨氮胁迫对刺参几种免疫酶活性的影响   总被引:3,自引:0,他引:3  
以养殖刺参(Apostichopus japonicus)为研究对象,对不同浓度的氨氮处理及病菌感染条件下刺参体腔液免疫酶的变化进行了测定.结果表明:随着氨氮处理强度的增加,刺参体腔液中超氧化物歧化酶(SOD)、碱性磷酸酶(ALP)、谷胱甘肽过氧化物酶(GPx)及溶菌酶(LSZ)活性呈现先升高后降低的趋势,而同时感染病菌的情况下,较低质量浓度的氨氮胁迫可使SOD、GPx、ALP及LSZ活性上升,但在较高浓度氨氮处理时,酶活性的诱导则受到抑制.说明适宜浓度的氨氮处理可增强刺参的免疫力,从而减轻病菌感染对刺参造成的免疫功能损伤和提高刺参抗病力.刺参在感染病原菌假交替单胞菌(Pseudoalte-romonas sp)的条件下,3 mg/L、4 mg/L和6 mg/L浓度的氨氮处理第6天,刺参的累积发病死亡率分别为44.4%、55.6%和72.2%,高于对照组,表明较高浓度的氨氮胁迫能够显著降低刺参的免疫力,增加对病原菌的易感性.因此,在刺参养殖过程中,氨氮浓度的调控具有重要的意义.  相似文献   
64.
The physical stresses associated with emersion have long been considered major factors determining the vertical zonation of intertidal seaweeds.We examined Porphyra umbilicalis(Linnaeus) Kützing thalli from the vertical extremes in elevation of an intertidal population(i.e.upper and lower intertidal zones) to determine whether Porphyra thalli acclimate to different vertical elevations on the shore with different patterns of nitrate uptake and nitrate reductase(NR) and glutamine synthetase(GS) activities in response to different degrees of emersion stress.We found that the nitrate uptake and NR recovery in the emersed tissues took longer in lower intertidal sub-population than in upper intertidal sub-population;and GS activity was also significantly affected by emersion and,interestingly,such an activity was enhanced by emersion of thalli from both upper and lower intertidal zones.These results suggested that intra-population variability in post-emersion recovery of physiological functions such as nutrient uptake and NR activity enables local adaptation and contributes to the wide vertical distribution of P.umbilicalis.The high GS activity during periodic emersion stress may be a protective mechanism enabling P.umbilicalis to assimilate nitrogen quickly when it again becomes available,and may also be an evidence of photorespiration during emersion.  相似文献   
65.
依据多目标区域地球化学调查成果,按照中国地质调查局下发的《全国土壤碳储量及各类元素(氧化物)储量实测计算暂行要求》,以表层土壤样品分析单元(4 km2)为计算单位,对哈尔滨-绥化地区表层土壤(0~20 cm)氮储量进行计算.研究了不同生态系统和不同土壤类型土壤氮储量、氮密度的差异,研究了20年来土壤氮储量的变化特征及成因.结果表明研究区土壤氮储量略微增加,这主要是由于湿地生态系统和森林生态系统对土壤的固氮效果显著造成的.  相似文献   
66.
广东流沙湾5种贝类的δ~(13)C值和δ~(15)N值研究   总被引:1,自引:0,他引:1  
广东流沙湾海水养殖业发达,尤其是贝类增养殖已成为当地的支柱产业.但近年来其养殖环境的恶化对贝类产品的安全输出造成了越来越严重的影响,利用稳定同位素技术研究贝类的新陈代谢过程可为贝类增养殖提供较先进的基础数据.本研究选取流沙湾的5种重要养殖贝类,对其肌肉组织、鳃、外套膜和内脏囊分别进行稳定碳、氮同位素测定分析.结果表明,贝类δ13C值的范围是-19.14‰~-15.11‰,δ15N值的范围是6.10‰~10.57‰.从大小、组织、种类三方面比较5种贝类的稳定碳氮同位素比值,可得出如下结论:同种贝类,大小不同,其δ13C、δ15N值大都随壳长、壳重的增大而减小,但翡翠贻贝(Pernaviridis)的δ13C值和墨西哥湾扇贝(Argopecten irradians concentricus)的δ15N值则相反,无论大、小组之间δ13C、δ15N值的变化是增大还是减小,幅度均不超过1.00‰;同种贝类,组织不同,其δ13C、δ15N的最小值均为内脏囊,δ13C的最大值不定,δ15N的最大值也是内脏囊;相同组织,不同贝类,其δ13C、δ15N值的大小排列顺序各不相同,无统一规律,但华贵栉孔扇贝(Chlamys nobilis)的δ13C值均小于墨西哥湾扇贝,而马氏珠母贝(Pinctada martensii)的δ15N值均小于企鹅珍珠贝(Pteria penguin).由研究数据可推知流沙湾双壳贝类的物质与能量流动途径基本是由内脏囊到外套膜和鳃,最后到肌肉.  相似文献   
67.
为研究包气带非均质结构对氮素迁移转化的影响,采用室内砂箱实验模拟了1.72 mm/h降雨强度下NH4-N污染非均质包气带的过程。通过观测出水及土壤溶液中NH4-N、NO2-N和NO3-N质量浓度变化,分析探讨了NH4-N在含有两个亚粘土透镜体的非均质包气带介质中的迁移转化和累积时空分布特征。结果表明:经过89 d物理吸附和微生物作用,出水NH4-N首先迅速增加然后逐渐减小,而出水NO3-N含量持续增加,其间NO2-N出现累积峰,系统最终达到平衡稳定状态;土壤溶液中NH4-N在两亚粘土透镜体上表面累积较多,NO3-N和NO2-N在上透镜体中的累积含量大于下透镜体;而砂槽上部土壤中出现明显的NO3-N累积,NH4-N和NO2-N则在下部土壤和亚粘土透镜体中累积较多。包气带介质质地、粗 细交互结构及降雨淋溶、水分运移对“三氮”的迁移转化和富集有重要影响。  相似文献   
68.
选取贵州百花湖入湖支流麦西河为对象,研究了上覆水—孔隙水—沉积物体系氮的形态差异,结果表明:麦西河上覆水中,以硝态氮(NO-3-N)为主,氨态氮(NH+4-N)次之,亚硝态氮(NO-2-N)最低;孔隙水中,溶解无机氮中以NH+4-N为主, NO-3-N次之, NO-2-N最低;沉积物中,总氮(TN)的含量为1110.67~4413.16mg/kg;固定态铵含量为34.56~170.05mg/kg,占TN的1.47%~6.25%;可交换态氮以NH+4-N为主, NO-3-N次之, NO-2-N最低。孔隙水NH+4-N是上覆水NH+4-N的2.65~19.51倍,上覆水NO-3-N是孔隙水NO-3-N的7.14~20.43倍。沉积物TN与孔隙溶解水无机氮(DIN)、孔隙水NH+4-N、沉积物可交换态氮和沉积物可交换性NH+4-N呈显著正相关;在沉积物中,可交换性NO-3-N与可交换性NH+4-N及可交换态氮呈显著正相关,可交换性NH+4-N与可交换态氮呈极显著正相关;孔隙水溶解无机氮与孔隙水NH+4-N呈极显著正相关。麦西河不同介质中氮的迁移关系则表现为:由于浓度梯度,上覆水中的NO-3-N扩散到孔隙水中,进而累积到沉积物中;沉积物的可交换性NH+4-N,进入孔隙水,最终扩散到上覆水中。   相似文献   
69.
This paper describes a time series experiment examining the nitrogen and phosphorus intake of natural phytoplankton communities by a microcosms approach.Seawater samples containing natural phytoplankton communities were collected from waters around Baozhu Islet in inner Xiamen Bay and around Qingyu Islet in the outer bay.The goal was to elucidate the relationship between phytoplankton population enhancement,the biological removal of nitrogen and phosphorus from the seawater,and the phytoplankton nitrogen an...  相似文献   
70.
Individual participation of pollutants in the pollution load should be estimated even if roughly for the appropriate environmental management of a river basin. It is difficult to identify the sources and to quantify the load, especially in modeling nonpoint source. In this study a revised model was established by integrating point and nonpoint sources into one-dimensional Streeter-Phelps (S-P) model on the basis of real-time hydrologic data and surface water quality monitoring data in the Jilin Reach of the Songhua River Basin. Chemical oxygen demand (COD) and ammonia nitrogen (NH_3-N) loads were estimated. Results showed that COD loads of point source and nonpoint source were 134 958 t/yr and 86 209 t/yr, accounting for 61.02% and 38.98% of total loads, respectively. NH_3-N loads of point source and nonpoint source were 16 739 t/yr and 14 272 t/yr, accounting for 53.98% and 46.02%, respectively. Point source pollution was stronger than nonpoint source pollution in the study area at present. The water quality of upstream was better than that of downstream of the rivers and cities. It is indispensable to treat industrial wastewater and municipal sewage out of point sources, to adopt the best management practices to control diffuse pollutants from agricultural land and urban surface runoff in improving water quality of the Songhua River Basin. The revised S-P model can be successfully used to identify pollution source and quantify point source and nonpoint source loads by calibrating and validating.  相似文献   
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