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41.
阿哈水库叶绿素a时空分布特征及其与藻类、环境因子的关系 总被引:7,自引:4,他引:3
为了解阿哈水库叶绿素a(Chl-a)时空分布特征及其与藻类、环境因子的关系,于2012年枯水期至2013年平水期、丰水期对藻类与理化指标进行分层采样.结果表明Chl-a季节变化明显,与藻类生物量季节变化较为一致,而与丰度差别较大,平水期发生甲藻水华,浓度最高(91μg·L~(-1)),枯水期与丰水期相对较低,分别为8μg·L~(-1)与16μg·L~(-1).枯水期与丰水期水体表层Chl-a浓度略高于中、底层,表层光照、溶解氧相对充足,利于藻类生长;平水期表层Chl-a浓度远高于中、底层,易在表层聚集的甲藻水华是主要原因.大坝Chl-a浓度高于库中,这可能是大坝位于金钟河入库口,营养盐高于库中的缘故.相关性分析得出Chl-a与甲藻门呈极显著正相关(R=0.798,P0.01);Chl-a与TP、DO、pH呈极显著正相关(R=0.762,P0.01;R=0.792,P0.01;R=0.658,P0.01),与TN显著正相关(R=0.388,P0.05)与N/P、NO_3~--N显著负相关(R=-0.37,P0.05;R=-0.435,P0.05).逐步回归分析得出DO、TP、N/P为影响阿哈水库Chl-a分布的主要因子.此外热分层以及水温对Chl-a的影响也不容忽视. 相似文献
42.
建立了全自动样品处理系统Vulcan 42-原子荧光光度法测定土壤和沉积物中砷和汞的方法。准确称取0.2500 g样品,经Vulcan42全自动消解系统消解后,采用原子荧光光度计测定砷和汞的含量。运用该方法砷的检出限为0.11 mg/kg,回收率在96%101%之间,相对标准偏差(n=6)在1.3%101%之间,相对标准偏差(n=6)在1.3%4.5%之间;汞的检出限为0.003 mg/kg,回收率在90%4.5%之间;汞的检出限为0.003 mg/kg,回收率在90%108%之间,相对标准偏差(n=6)在0.5%108%之间,相对标准偏差(n=6)在0.5%4.7%之间。 相似文献
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对滇池外海藻量较为集中的区域,用塑料薄膜围一封闭的水体,避免水量交换。在水面下分3层(0.5m、1.0m、1.5m)进行不同采样点和不同水深的水质监测,得出藻类在水中的纵向分布规律。通过进行滤除藻前、后水样的分析,发现藻类的存在会导致水样监测结果偏高。在此基础上对富营养化水体监测应注意的问题进行了分析与讨论。 相似文献
46.
Alga-lysing bacteria have been paid much attention to in recent years. In this study, the alga-lysing strain P05 which was isolated from an immobilizing biosystem was immobilized by coke and elastic filler, forming two biological reactors. The removal efficiencies of algae, NH4^+-N and organic matter using the two reactors were studied. The results showed that strain P05 was an ideal algal-lysing bacteria strain because it was easy to be immobilized by coke and elastic filler which are of cheap, low biodegradability and the simple immobilization procedure. After 7 d filming, the biological film could be formed and the reactors were used to treat the eutrophic water. These two reactors were of stability and high effect with low cost and easy operation. The optimal hydraulic retention time (HRT) of each reactor was 4 h. The algae removal rates were 80.38% and 82.1% (in term of Chl-α) of coke reactor and filler reactor, respectively. And that of NH4^+-N were 52.3% and 52.7%. The removal rates of CODMn were 39.03% and 39.64%. The strain P05 was identified as Bacillus sp. by PCR amplification of the 16S rRNA gene, BLAST analysis, and comparison with sequences in the GenBank nucleotide database. 相似文献
47.
F.J. Díaz M. TejedorC. Jiménez R.A. Dahlgren 《Agriculture, ecosystems & environment》2011,144(1):253-261
In the extremely arid (∼150 mm yr−1) eastern Canary Islands of Lanzarote, Fuerteventura and La Graciosa, agriculture has been sustained for decades by a traditional runoff-capture (RC) farming system known as “gavias”. Although the main goal of these systems is to increase water supply for crops, making unnecessary conventional irrigation, a secondary and equally important factor is that this system allows for sustainable agricultural production without addition of chemical or organic fertilizers. A field study was conducted to assess the impact of long-term agriculture (>50 yr) on soil fertility and to evaluate key factors affecting the nutrient sustainability of RC agricultural production. Soil fertility and nutrient dynamics were studied through chemical characterization of the arable layer (0-25 cm) of RC agricultural plots, adjacent natural soils (control) not affected by runoff and cultivation, and sediments contributed by a series of RC events. Results showed that RC soils have enhanced fertility status, particularly because they are less affected by salinity and sodicity (mean electrical conductivity = 1.8 dS m−1 vs. 51.0 dS m−1 in control soils; mean exchangeable sodium percentage = 11.1% vs. 30.6% in control soils), and have higher water and nutrient holding capacities (mean clay plus silt contents ≈87% vs. 69% in control soils). In general, sediments transported with the runoff and deposited in RC plots (average sediment yield ≈ 46 ton ha−1 yr−1), contain sufficient nutrients to prevent a progressive reduction of essential plant nutrients below natural levels in spite of nutrient uptake and removal by the harvested crop. Average additions of nitrogen, phosphorus and potassium with the runoff sediments were 33.6, 35.3 and 48.8 kg ha−1 yr−1, respectively. Results of this study show how a crop production system can be sustained in the long term by natural hydrological and biogeochemical catchment processes. This system maintains a nutrient balance that is not based on energy-intensive inputs of fertilizers, but is integrated in natural nutrient cycling processes, unlike other tropical farming agroecosystems. 相似文献
48.
The coupled SWAP-WOFOST model was used to study the effects of increasing salinity of groundwater, drought and water excess on grass production in The Netherlands. WOFOST simulates crop growth and SWAP simulates transport of water, solutes and heat in the vadose zone. The model was tested using several datasets from field experiments. We applied the models at regional scale where we quantified the impact of various groundwater salinity levels on grass growth and production using historical weather data (1971-2000). The salt concentrations in the subsoil were derived from the National Hydrological Instrument. The results show that salinity effects on grass production are limited. In wet years the excess rainfall will infiltrate the soil and reduce salt water seepage. In a next step we used future weather data for the year 2050, derived from 3 Global Circulation Models. From each model we used data from two CO2 emission scenarios. As expected higher temperatures increased drought stress, however, the production reduction as a result of salt water in the root zone is limited. Salt stress mainly occurred when irrigation was applied with saline water. The increased CO2 concentration in combination with the limited drought stress resulted in increasing simulated actual and potential yields. Overall conclusion for grassland in The Netherlands: drought stress is stronger than stress caused by water excess which on its turn is stronger than salinity stress. Future water demand for irrigation may increase by 11-19% and result in water scarcity if water supply is insufficient. 相似文献
49.
针对目前我国农业生产中的资源环境问题,指出粮食生产成本核算的不完整性,粮食生产造成的资源耗减和环境降级得不到补偿。运用环境经济学原理和可持续发展理论对粮食生产的完全成本进行分析,提出粮食生产的完全成本除包括直接生产成本外,还应包括粮食生产的资源环境成本。论文以南方红壤丘陵区的湖南省祁阳县为研究对象进行案例分析,研究表明,2008年该区域粮食生产的资源环境成本相当于当年农业总产值的36.55%;早、中、晚稻的完全成本分别达到4.27、3.84和4.40元·kg-1,其中资源环境成本分别为1.38、 1.65和1.64元·kg-1,直接生产成本分别为2.89、 2.19和2.76元·kg-1,而实际市场价格分别仅有1.76、 1.90和1.84元·kg-1。研究结果对有关部门制定相关农业政策、调整粮食生产布局、促进区域粮食生产和可持续发展具有一定的参考价值。 相似文献
50.
2008年黄河丰水期和2009年黄河枯水期,对研究区6处标志性区域进行随机采样,采用活体观察和固定染色法鉴定藻类种类,直接计数法统计藻类数量,共鉴定到藻类114种(包括22个未定名物种),隶属于9门11纲17目34科55属。其中,硅藻门47种,占41.22%,以无壳缝目为优势类群;绿藻门24种,占21.05%,为次优势类群;蓝藻门,金藻门,裸藻门为常见类群;隐藻门、甲藻门和黄藻门均为罕见类群。利用藻类群落结构特征、优势种类、藻类污染指数和污生指数等指标对刘家峡水库水质进行评价,结果表明:刘家峡水库水质在1#、2#样区较清洁,3#、4#样区为轻-中度污染,5#、6#样区为重度污染,与采用粪大肠肝菌、DO指标评价结果具有良好一致性。 相似文献