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131.
微波消解/ICP-AES法测定土壤中的环境有效态金属元素 总被引:10,自引:0,他引:10
传统的土壤样品消解技术手续繁琐、费时,成为整个分析过程的薄弱环节;微波消解很好地解决了这一问题。采用微波消解技术处理土壤样品,以ICP-AES法测定Ag、As、Ba.Be、Cu、Mn、Mo、Ni、Pb、Sr、V、Zn,Al、Co 14种环境有效态金属元素。选择了HNO_3-HCL-H_20_2消解体系,确定了最佳微波消解功率和时间。方法精密度以相对标准偏差表示为1.20%~6.13%,准确度以回收率表示为79.6%~97.4%,与传统的酸解法处理样品相比较,相对误差在±120%以下,结果基本一致。微波消解处理土壤样品比传统的酸解法节省了约10倍的时间,具有快速、高效、清洁、用量少、背景值小等优点。 相似文献
132.
Rakocevic-Nedovic J Hollert H 《Environmental science and pollution research international》2005,12(3):146-152
Background, Aims and Scope Phytoplankton, as a first step in trophic cascades of lakes, can be a good indicator of trophic states, considering that every environmental change affects this community and many species of this community are sensitive to changes, and that they response very quickly. In this study, we tried to assess and predict the trophic state of Lake Skadar according to phytoplankton data.Methods Water samples were collected using Ruttner sampling bottle. Temperature, dissolved oxygen, ph, conductivity and transparence were measured in situ using portable equipment. Nutrients and chlorophyll a were measured using standard spectrophotometric methods. A determination of phytoplankton species was performed using relevant keys and the counting of cells was performed using sedimentation methods.Results and Discussion The species composition of Lake Skadar revealed 95 taxa, with Chlorophyceae and Bacillariophyceae being represented best. According to an average chlorophyll a concentration of 5.9 µg/l, Lake Skadar belongs to the mesotrophic level of the trophic scale. Developed prediction equation for chlorophyll a revealed a good prediction (R2=0.71) and the parameter Secchi depth was primarily correlated with chlorophyll a concentration. Trophic state indices derived from chlorophyll a and transparency, were close together, but both were below the phosphorous index. Values of trophic state indices rank the Lake Skadar as being mesotrophic. This study also showed that indices of diversity based on phytoplankton are weak indicators of trophic status and that they can well characterize only differences between assemblages and associations. According to calculated saprobic indices (ranging from 1.5 to 2.15), Lake Skadar is on betamesosaprobic level of saprobity, which means that it is moderately polluted with organic compounds. Conclusions Total phosphorus is not the main limiting factor for the phytoplankton community in Lake Skadar. Disagreements between chlorophyll and the transparency index, on the one hand, and the total phosphorus index, on the other, suggest that the phytoplankton in Lake Skadar is probably limited by other factors than phosphorus, such as nitrogen, toxic substances or intense zooplankton grazing. According to the majority of investigated parameters and indices derived from phytoplankton data, Lake Skadar is mesotrophic, with tendencies toward eutrophic levels during the summer period. Recommendations and Outlook Long-term monitoring is required for a better estimation of state and the conditions of Lake Skadar. Further studies on factors influencing the phytoplankton community, especially zooplankton grazing and toxic substances, which were not included in this study, should be continued in the future to improve the efficiency of phytoplankton usage in estimating the ecological and trophic conditions of Lake Skadar. 相似文献
133.
A methodology for simulating climate change impacts on tree growth was introduced into a statistical growth and yield model in relation to variations in site fertility and location implemented with current temperature sum. This was based on a procedure in which the relative enhancement in stem volume growth was calculated from short-term runs of a physiological simulation model for Scots pine (Pinus sylvestris L.), Norway spruce (Picea abies (L.) Karst.) and silver birch (Betula pendula Roth.) stands. These simulations were made for a set of stands with species-specific variations in stand characteristics, location and fertility type first in current climatic conditions and then in different combinations of CO2 and temperature elevations. Based on these simulations, the relative enhancement of volume growth induced by the climate change (relative scenario effect, RSEv) was calculated and modelled in relation to: (i) CO2 and temperature elevation, stand density and the competition status of the tree in its stand, and (ii) variations in site fertility type and current temperature sum of a stand. Finally, these transfer functions for RSEv were applied to adapt the stem volume growth in the statistical growth and yield model to reflect the response to climate change. 相似文献
134.
Sundarban mangrove ecosystem in India is one of the largest detritus based ecosystem of the world and it supplies the detritus and nutrients to the adjacent Hooghly-Matla estuarine complex. In this estuary a group of fish completely detritivorous in nature, belonging to the genus Mugil spp. is present. This group of fish is expected to have important effects on the trophic dynamics of ecosystems, but exact nature of these effects is not known. In order to study the impact that detritivory by fish may have on the estuarine food chain, we developed mathematical formulations. We run two models, one with phytoplankton, zooplankton, carnivorous fish, detritus and nutrient and without this group of fish and a second one after including this fish in the system. In our model this group of fish has no major impact on primary productions of the estuarine system but has extensive role in total fish production. Coexistence of detritivorous fish and carnivorous fish occurs within reasonable parameter range. We have tested different growth rates of phytoplankton, grazing rates and predation rates of zooplankton, detritivorous fish and carnivorous fish for total system equilibrium. Carnivorous fish predation rate on detritivorous fish and detritivorous fish grazing rate on detritus are very important. Different foraging ratios are also tested in this study. Foraging preference of carnivorous fish on detritivorous fish appears significant for the system equilibrium. 相似文献
135.
高分辨双晶X射线荧光光谱测定某些环境样品中硫的化学状态 总被引:2,自引:0,他引:2
本文用高分辨双晶X射线荧光光谱仪分析了煤、植物叶、土壤等环境样品中硫的化学状态。同时参照有关方法,设计了较为适用的非线性最小二乘法谱线分离程序。部分样品测定结果与其它方法做了对照比较,其结果基本相近。证明本法是一种样品预处理简便、测定快速而又可靠的化学状态分析方法。 相似文献
136.
洗毛废水的原水浓度对絮凝效果的影响 总被引:14,自引:0,他引:14
对PAC、PAM复合使用于洗毛废水时原水浓度与投药量关系进行了小试和中试。实验表明,PAC与废水形成20~30μm的小絮粒,PAM连接小絮粒形成矾花。以原水COD10000mg/L为界,呈自由絮凝和拥挤絮凝两种状态。在自由絮凝时,原水COD:PAC:PAM呈75:1:0013,COD、SS去除率分别达85%,95%以上。拥挤絮凝时PAC、PAM的投量激剧增加。建议洗毛废水在自由絮凝状态下处理。 相似文献
137.
138.
天津环境空气SO2的年均浓度始终超过国家二级标准.年均浓度超标主要因为采暖期SO2浓度过高所至,采暖期SO2平均浓度是非采暖期浓度的3倍左右;在2002-2005年的三个采暖期里,SO2污染逐年加重,导致了年均SO2浓度的逐年升高.天津SO2污染与采暖期增多的低烟囱排放、不利的气象条件有关,也与流动源的隐性排放、能源利用效率低下有关.结合天津经济发展速度、每年煤耗增量、现有环境治理手段来做预测,空气SO2浓度要在未来几年内达到国家二级标准仍是不可能的. 相似文献
139.
为探究湖泊水体生态修复工程中草型清水态维持与长效运行的营养盐响应机制,利用滇池草海建立的大型原位试验围隔,采用非参数突变点分析法(nCPA)及临界指示物种分析法(TITAN),探究了叶绿素a、浊度、透明度和浮游植物的营养盐阈值.结果表明,草型清水态维持与长效运行较为成功的围隔,其藻类的叶绿素a含量虽然明显较低,但在夏季时蓝藻门仍占绝对优势.原位生态围隔叶绿素a响应TN的阈值为1.423mg/L,响应TP的阈值为0.103mg/L.水体透明度响应TN的阈值为1.684mg/L,响应TP的阈值为0.103mg/L.各围隔总磷含量的平均值均大于或等于0.226mg/L,B1、B3、B8围隔后期处于清水态,其TN平均值都低于或等于1.42mg/L,B5、A1、A2、A3、A4围隔后期处于浊水态,其TN平均值都高于或等于1.78mg/L.这表明在滇池水华重灾区实施水体生态修复工程时,应首要考虑TN的影响,在TP含量严重超出阈值的情况下,如果TN处于一个较低水平,也能维持湖泊水体草型清水态的长效运行,并实现湖泊水体由藻型浊水态向草型清水态的转换. 相似文献
140.
目的 研究两种氟橡胶O型圈在总压为25 MPa,CO2体积分数为5%,温度为120 ℃,液相介质Cl?质量浓度为7000 mg/L的高温高压高含CO2工况下的密封可靠性。方法 通过高温高压釜模拟井下实际工况,采用自研橡胶O型圈密封装置实现试样的承压状态,以物理性能、腐蚀形貌和抗渗透性能为考察指标,对两种氟橡胶O型圈的耐蚀性能和密封性能进行测试评价。结果 氟硅橡胶O型圈在承压状态下腐蚀后,拉伸强度由18.1 MPa下降为13.4 MPa,拉断伸长率由172.8%下降为151.9%。AFLAS橡胶O型圈在承压状态下腐蚀后,拉伸强度由21 MPa下降为14.6 MPa,拉断伸长率由277%下降为212.3%,硬度从84HA下降为75.5HA,表面破损严重。两种橡胶O型圈抗渗透性能随压差增大、温度上升而减弱。结论 承压状态下,两种橡胶O型圈性能衰减程度低于自由状态,氟硅橡胶O型圈在承压状态下表现出更好的密封可靠性。 相似文献