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51.
52.
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
53.
广东省1999—2013年雷电活动特征的分析 总被引:2,自引:0,他引:2
以1999—2013年广东省雷电定位资料作为数据来源,采用数理统计方法、Sql server数据库技术和GIS技术,统计分析雷电时空分布特征。研究表明,全省雷电活动频繁,规律性强,每年有数百万次雷电发生,具有明显的区域性特征。以广州为中心的珠三角区域和湛江局部地区雷电密度分布密集,粤东和粤西则分布相对稀疏,全省平均雷电密度为16.25次/(km2·年),其中广州最高,达30.96次/(km2·年),韶关最小,为9.52次/(km2·年);全省平均雷电流为25.29 k A,其中珠海最高,达33.7 k A,湛江最小,为22.3 k A;月分布主要集中在5—9月,占总数的89.5%,时段分布则在午后至傍晚13:00—19:00,占总数的62.0%。闪电以负闪为主,占93.01%,正闪占6.99%。 相似文献
54.
铅—试铁灵络合物吸附波及溴化十六烷基三甲基铵增敏效应的研究 总被引:1,自引:0,他引:1
在030mol/LHAc介质中,Pb(Ⅱ)与7_碘_8_羟基喹啉_5_磺酸(试铁灵,Feron)的络合物于-054V(vs.SCE)产生一尖锐的极谱波,加入溴化十六烷基三甲基铵(CTMAB)显著增敏,可使极谱波增高约4倍。峰电流与Pb(Ⅱ)浓度在96×10-9~48×10-6mol/L呈良好的线性关系,检出限为48×10-9mol/L。用多种电化学方法研究了该极谱波的性质及电极反应机理表明,络合物组成比为nPb(Ⅱ)∶nFeron=1∶1,极谱波为吸附波,峰电流由中心离子Pb(Ⅱ)还原产生,电子转移数为2。试验了多种离子对峰电流的影响,拟定的方法用于矿样分析,结果与原结果相符。 相似文献
55.
Stephanie de Villiers 《中国地球化学学报》2006,25(B08):146-146
Acidification is considered the most important one of the primary chemical stress factors that impact on freshwater ecosystems. In unpolluted freshwater systems, the primary controls on the degree of acidification are factors such as the geological substrate of the catchment area, the presence of organic acids secreted by vegetation in the river system, and equilibrium exchange of carbon dioxide with the atmosphere. Anthropogenic factors that can impact on the degree of acidification of freshwater systems include agricultural, mining and industrial activities, either through direct runoff into river systems or through deposition of atmospheric pollutants from these sources. The capacity factors alkalinity and acidity, which represent the acid- and base-neutralizing capacity (ANC and BCN) of an aqueous system, have been used as more reliable measures of the acidic character of freshwater systems than pH. Unlike pH, ANC and BNC are not affected by parameters such as temperature and pressure. Therefore, ANC has been employed as a predictor of biological status in critical load assessments. Freshwater systems with ANC's eq/L isμeq/L are considered sensitive to acidification, ANC=0 μbelow 150 commonly used as the predictor for fish species such as trout in lakes, and an eq/L as more realistic for streams. Acid-neutralizing capacity μANC value of 40 (ANC) can be determined by titration with a strong acid to a preselected equivalence point. Alternatively, it can be calculated as the difference between base cations ([BC]) and strong acid anions ([SAA]): ANC=[BC]- [SAA]=[Ca^2+]+[Mg^2+]+[Na^+]+[K^+]-[SO4^2-]-[NO3^-]-[Cl^-] To date, there has been no attempt to establish the ANC of South Africa's freshwater ecosystems or variability therein, despite the fact that long-term water quality monitoring data exist for all the parameters needed to calculate it according to the above equations. As a result, the relationship between the acid neutralizing capacity of freshwater ecosystems in South Africa and biodiversity factors, such as fish status, is unknown. Results of the first comprehensive (country-wide scale) evaluation of the acid neutralizing capacity of river systems in South Africa will be presented. Long-term monitoring data obtained from the Department of Water Affairs and Forestry (DWAF) from most of South Africa's river systems were used to establish geographic and temporal variabilities in ANC. The results show that the Berg and Breede River systems are most susceptible to acidification, and that geological substrate appears to explain most of the geographic variabilities observed. 相似文献
56.
T. D. Davies M. Tranter P. J. Wigington K. N. Eshleman N. E. Peters J. Van Sickle D. R. DeWalle P. S. Murdoch 《水文研究》1999,13(8):1181-1195
Observations from the US Environmental Protection Agency's Episodic Response Project (ERP) in the North‐eastern United States are used to develop an empirical/mechanistic scheme for prediction of the minimum values of acid neutralizing capacity (ANC) during episodes. An acidification episode is defined as a hydrological event during which ANC decreases. The pre‐episode ANC is used to index the antecedent condition, and the stream flow increase reflects how much the relative contributions of sources of waters change during the episode. As much as 92% of the total variation in the minimum ANC in individual catchments can be explained (with levels of explanation >70% for nine of the 13 streams) by a multiple linear regression model that includes pre‐episode ANC and change in discharge as independent variables. The predictive scheme is demonstrated to be regionally robust, with the regional variance explained ranging from 77 to 83%. The scheme is not successful for each ERP stream, and reasons are suggested for the individual failures. The potential for applying the predictive scheme to other watersheds is demonstrated by testing the model with data from the Panola Mountain Research Watershed in the South‐eastern United States, where the variance explained by the model was 74%. The model can also be utilized to assess ‘chemically new’ and ‘chemically old’ water sources during acidification episodes. Copyright © 1999 John Wiley & Sons, Ltd. 相似文献
57.
为从一种组成未知的商用复合菌中分离并筛选出优势发酵菌株,本实验采用稀释平板培养法,对菌种进行分离纯化,同时参照《真菌鉴定手册》和《常见细菌鉴定手册》,根据其形态学特征、生理生化特性,并分别结合16S r DNA和18S r DNA序列的比对分析对菌种进行鉴定。另外,本研究通过生长曲线测定,单菌种发酵试验以及多菌种混合发酵发酵试验,以游离氨基酸态氮为指标,以期筛选出发酵低值水产品制备菌肥的最佳菌株组合。结果显示,共分离得到4株菌,分别为a热带假丝酵母、b罗伦隐球菌、c枯草芽孢杆菌、d蜡样芽胞杆菌。且菌种组合acd发酵后游离氨基酸态氮的含量较对照组上升最显著,为8.276g/L。故可确定最佳发酵菌株配方为acd(热带假丝酵母+枯草芽孢杆菌+蜡样芽胞杆菌)。 相似文献
58.
59.
高硫煤矿闭坑后成为埋藏在地表以下深部的产酸污染场,对相邻含水层和周边环境造成了潜在危害,且因采动效应影响和矿井空间分布复杂导致相邻含水层的污染过程与污染程度评价困难。以某闭坑矿区为研究对象,选取SO4 2−作为特征污染物,考虑多煤层采动裂隙对含水层结构的破坏影响,运用数值模拟技术对闭坑矿区酸性矿井水中SO4 2−污染迁移特征进行研究,并分析流体扩散系数对含水层污染物运移的影响。结果表明:SO4 2−在二叠系童子岩组砂岩含水层中水平迁移面积随时间增大而增大,增大速率逐渐减小,垂向渗透系数扩大10倍,空间变异性增强;闭坑5、10、15 a后,最大水平迁移距离分别为215、414、612 m,最大垂向迁移距离分别达到50、65、70 m;而扩散系数越大,产酸时间越长,SO4 2−迁移距离和污染范围将随之增大,相较于水平方向,垂向上SO4 2−浓度变化对扩散系数的敏感度更高。基于模拟结果,结合闭坑矿区实际条件,针对性提出了“源头减量−过程阻断−末端治理”的综合防控与治理方案。研究结果将为该闭坑煤矿酸性矿井水污染治理与防控提供理论基础,也为其他同类矿井提供科学借鉴。
相似文献60.
盐度对六株硅藻生长及脂肪酸组成的影响 总被引:2,自引:0,他引:2
在温度为22±1℃,盐度为18‰、28‰和38‰的条件下,用F/2培养基对青岛海洋大学微藻种质库保存的6株硅藻(纤细角毛藻Chaetoceros gracilis B13; 筒柱藻Cylindrotheca fusiformis B211;三角褐指藻 Phaeodactylum tricomutum B114, B118,B221;新月菱形藻 Nitzschia closterium B222) 进行培养,在指数生长期末期进行收获,测定了6株硅藻的生长及脂肪酸组成.实验结果表明: 盐度对六株硅藻的生长及脂肪酸组成均有影响,但作用结果因种而异.B13的相对生长率随着盐度的增加而增加;B114和B222的相对生长率随着盐度的增加而降低.B13的干重随着盐度的增加而增加,在盐度为38‰时达到最大值(0.21);B118、B114、B221 和B222的干重均在盐度为28‰时达到最大值;盐度对B211的干重影响不明显(0.35~0.36).六株硅藻的主要脂肪酸为16:0、16:1(n-7)和20:5(n-3),B211还含有较多的20:4n-6(5.6~7.4‰),B13含有较多的14:0 (20.O~30.9%).B211、B221和B222的饱和脂肪酸总合随着盐度的增加而降低,在盐度为18‰时达到最大值(占总脂肪酸的百分比分别为41.7%、37.6%和31.7%).而B13、B118和B114的饱和脂肪酸总合在盐度为28‰时含量最高(分别为48.1%、31.0%和33.0%).B118、B114、B221和B222的单不饱和脂肪酸总合随着盐度的增加而增加,而B13和B211单不饱和脂肪酸总合随着盐度的增加而降低.B13、B118、B114和B222的多不饱和脂肪酸总合在18‰时含量最高(分别为31.3%、23.4%、19.6%和18.6%).B211和B221的多不饱和脂肪酸总合在28‰时含量最高(分别为25.1%和16.3%). 相似文献