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601.
舒长根 《生态与农村环境学报》1996,(4)
鄱阳湖区是江西省重要商品粮基地,但其生态环境也有较为脆弱的一面。某些违反生态规律的农业生产活动导致该区生态环境的恶化。本文从围湖造田、湖区传统耕作制度、乡镇企业发展及农民环境意识淡薄等方面分析了它们对湖区生态环境的影响,并提出几点治理意见。 相似文献
602.
日本琵琶湖流域的生活污水治理对策 总被引:3,自引:0,他引:3
介绍了日本滋贺县为了保护琵琶湖水环境而实施的生活污水综合治理对策。其基本思路是:将市区和人口稠密地区划为下水道整备规划区,积极实施下水道建设工程,推行污水处理;在下水道整备区外推广使用合并净化槽和地域粪便处理设施;在有条件的农村村落建设农村下水道;鼓励和资助各种处理设施实行除氮除磷的高级处理方式,以防止琵琶湖富营养化;积极实施多种多样的生活杂排水对策。 相似文献
603.
里杜湖富营养化综合评价及预测 总被引:2,自引:0,他引:2
根据里杜湖水库的水质监测及水文资料,选择评分法结合生物优势种评价法以及“源-效应”预测模型对里杜湖水库水质的营养状态进行综合评价及预测。结果表明:里杜湖水库水质已轻度富营养化,并有逐年加重的趋势。旨在正确评价和预测里杜湖水库营养状态,并为同类水库的营养状态评价及预测提供参考和借鉴,从而为水库水质管理及富营养化的控制提供科学依据。 相似文献
604.
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
605.
Mariusz O. Jedrysek 《Environmental Chemistry Letters》2005,3(3):100-112
Microbial oxidation of organic compounds (including methane), in freshwater sediments, may result in precipitation of carbonates,
which may become an important geochemical archive of paleoenvironmental variations. Most probably low δ13C value in calcite in eutrophic systems results from an advanced oxidation of organic compounds in turbulent or/and sulphate-rich
conditions. Likewise, high δ13C value in calcite from organic-rich sediments may evidence low redox potential of the freshwater system. Oxidation of methane
and organic matter results in significant isotope effects in sulphates dissolved in water. Therefore, to better understand
the origin of carbon isotope signal in carbonates, concentration and stable isotope measurements in dissolved sulphate (water
column), bubble methane and calcite (freshwater sediments) have been carried out in 24 lakes, 2 ponds and 4 rivers in Poland.
The highest concentration of sulphate has been detected in rivers (85.47 SO4
2− mg/l) and an artificial lake (70.30 SO4
2− mg/l) located in the extremely SO4
2−-polluted region called the “Black Triangle”. The lowest concentration of sulphate is found in dystrophic and mountain lakes
(from 0.5 SO4
2− to about 3 mg/l). The lowest δ34S(SO4
2−) and δ18O(SO4
2−) values occur in unpolluted lakes in eastern Poland (−0.94 and 1.38‰, respectively). The highest S and O isotopic ratios
are found in a polluted lake in western Poland (δ14S(SO4
2)=12.95‰) and in a dystrophic lake in eastern Poland (δ18O(SO4
2) = 16.15‰) respectively. It is proposed that δ34SO4
2− and (18O(SO4
2−) values in lakes represent a good tool to assess and quantify anthropogenic impact by acid precipitation and to monitor variations
in the trophic state and redox processes controlled by biodegradation of organic compounds in sediments and water column.
In general, increasing depth (up to 12 m) of the water column is associated with decreasing trend the δ13C(CH4) value from about –35 to about –78‰. However, δ13C value in sedimentary calcite (δ13C vary from –10 to 0.5‰) shows opposite trends as compared to the corresponding methane. This is probably due to redox processes
and distribution of heavy isotopes between methane and calcite. Likewise, turbulent water (river) show high δ13C value in methane and low δ13C value in calcite—this is probably due to an enhanced oxidation of methane producing 13C-depleted CO2. In contrast to clean lakes, it is observed that an increase of the δ13C(CH4) value occurs with increasing depth of the water column in a strongly SO4
2−-contaminated lake. This is probably due to a loss of biological buffering potential of the lake accompanied by an active
oxidation of methane precursors. 相似文献
606.
太湖典型河网区地表水与沉积物氮、磷和重金属含量空间分异 总被引:2,自引:0,他引:2
将无锡城乡交错区河网分为城镇生活区水巷、工业区主河道、农业区主河道、农业区支流和鱼塘5种类型区.通过秋季(旱季)和夏季(雨季)2次采样,研究氮、磷和Cu、Zn、Pb、Cr、Cd在地表水和沉积物中的含量及其空间变化.结果表明:(1)城乡交错区地表水氮、磷来源于生活污染和工业污染的比例大于农田,同时具有来源分散、污染面广的特征.(2)由于城镇地表径流和工业活动影响,各类型区地表水重金属含量均有不同程度提高.但地表水重金属主要沿主河道迁移,旱季和雨季主河道重金属含量均大于农业区支流,而且随着与城镇距离增加,主河道沉积物重金属含量迅速降低,重金属污染影响范围较小.(3)与重金属相比,地表水氮、磷污染仍是太湖水网区主要的环境问题.但城镇及其周围河流沉积物中富集的重金属含量很高,其潜在环境风险不容忽视. 相似文献
607.
长江中下游湖泊富营养化过程的湖泊沉积记录 总被引:5,自引:1,他引:5
长江中下游湖群区,历来是人类最活跃的场所,但由于近年来社会经济的迅速发展,湖泊富营养化问题日趋严重,对湖泊湿地变化与湖泊营养盐状况关系的分析是制定湖泊环境整治和生态修复的重要科学依据。长江中游湖泊——龙感湖的湖中心钻孔沉积物中硅藻组合和总磷变化记录了近百年来龙感湖富营养化过程。沉积物中湿地花粉与人湖营养盐关系以及磁化率的分析表明,流域内人类活动对湖周滩地的改造,破坏了湿地植被,助长了人湖物质的增加,湖泊营养相对富集,而流域农业化肥的使用导致了水质的进一步恶化。 相似文献
608.
为了研究高效氯化偶合絮凝剂对有机物含量较高原水的应用效果.进行了氧化偶合絮凝法强化处理受污染湖水的试验研究.并对其作用机理进行了初步探讨。结果表明.高效氧化偶合絮凝法对COD,SS,NH3^-N和TP均有良好的去除效果.在最佳条件下,去除率分别高达85%、95%、87%和96%.出水COD,SS,NH3^-N和TP的平均浓度分别为5.8、1.4、1.6和0.9mg/L。作用机理分析表明.氯化偶合絮凝剂在处理过程中充分利用氧化絮凝协同作用.对胶体性物质和溶解性物质均有较好去除效果。 相似文献
609.
湖泊富营养化的灰色层次决策法综合评价 总被引:11,自引:0,他引:11
应用灰色统计决策、灰色局势效益和灰色聚类分析等多层次决策,对湖泊富营养化进行综合评价。研究表明,本法应用于18个湖泊富营养化的评价结果,与Fuzzy-Grey法评价结果一致。 相似文献
610.
采用“压力-响应”模式,按3个阶段评价了洞庭湖1991~2015年生态风险状况,并识别了不同阶段的主要压力源、胁迫因子及受影响较大的生态系统指标与生态系统服务.结果表明:(1)1991~2015年,洞庭湖生态风险总体呈不断增加趋势,期间造成洞庭湖生态风险增加的主要压力源发生了较大变化;主要胁迫因子和受影响大的生态系统指标也变化明显,而受影响较大的生态系统服务功能无明显变化.(2)不同阶段,洞庭湖生态风险影响因素不同,其中1991~2002年,受自然源和人为源共同影响;2003~2010年,自然源影响明显减弱,而人为源影响逐步增加;2011~2015年,自然源影响继续降低,而人为源的影响则进一步增加;(3)近年来洞庭湖生态风险增速虽有所减缓,但生态风险增加趋势尚未根本性改变,仍需加强洞庭湖保护治理,重点是进一步加强流域人为源的污染控制,同时密切关注自然源影响,尤其是水文情势变化所引起的生态风险增加问题. 相似文献