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181.
- DOI: http://dx.doi.org/10.1065/espr2006.01.010 Background, Aims and Scope Although pp'DDT usage was strongly limited or banned in most parts of the world during the last three or four decades, the parent compound, its homologues and their metabolites still occur at levels which might pose a risk for many ecosystem components. A case of DDT pollution of industrial origin was discovered in 1996 in Lake Maggiore, the second largest (212 km2) and deepest (370 m) lake in Italy, causing concern for wildlife and human health. The extensive monitoring of many biotic and abiotic compartments which followed from 1998 in order to assess the pollution level and its trend in time, provided a great availability of data referring to DDT contamination of the different fish species of the lake. In this study, the recent contamination levels in selected fish species were compared to those measured in 1998 to evaluate the temporal pollution trend of the lake and its natural recovery, given that no remediation measures were carried out on the contaminated soils and sediments in this time span. Moreover, a modelling approach to test the equilibrium condition between water and pelagic fish species was used. Analytical results of pp'DDT and pp'DDE concentrations in lake water were used as input data in the bioenergetic model by Connolly & Pedersen (1988) to calculate concentrations in two fish species and to compare the predicted and the measured contamination. Methods Sampling and analytical determination of DDT homologues in lake water: Five water sampling campaigns were carried out from May 2002 to February 2004 in three sampling sites of Lake Maggiore. Suspended and dissolved pollutants were determined separately. Quantitative DDT homologue analyses were performed by HRGC coupled with ECD detection by the external standard method. Single water extracts were put together in correspondence with the stratification zones of the water column inferred on the basis of the temperature profile to improve analytical sensitivity. Selection of fish data: Concentrations of DDT and DDE in fishes were selected from recent literature (CIPAIS 2003, 2004). Bioaccumulation model: The bioenergetic model proposed by Connolly & Pedersen (1988) was used to assess the bioaccumulation of pp'DDT and pp'DDE of Alosa fallax (landlocked shad) and Coregonus spp. (whitefish), selected among the different species as representative of a secondary consumer level. Results and Discussion The average concentrations of pp'DDT and pp'DDE in water to be used as input data in the bioenergetic model were obtained considering all the concentrations measured at the three sampling stations in the epylimnion where the fish species considered in this study spend most of their life. The resulting values were 0.05 and 0.16 ng/L for pp'DDT and pp'DDE, respectively. Average measured pp'DDT and pp'DDE concentrations in landlocked shad were 0.81 +/- 0.39 and 1.69 +/- 0.71 mg/kg lipids, respectively, and were 0.29 +/- 0.12 and 1.06 +/- 0.41 mg/kg lipids for the whitefish. Calculated and measured values turned out to be in quite good agreement for pp'DDT, while measured pp'DDE concentrations were higher than expected on the basis of the bioenergetic model in both species. Probably metabolic transformations of pp'DDT accumulated in fish tissues in the past are responsible for the observed differences between calculated and expected pp'DDE concentrations in fish. Conclusions Pelagic fishes of Lake Maggiore seem to maintain the DDT accumulated during their life time and the most efficient mechanism responsible for the fish population recoveries is probably their generation changes; for this reason, equilibrium models cannot be used until negligible pp'DDT concentrations are reached in fish tissues. Recommendations and Outlook The limit proposed for pp'DDT in water by the EU Directive 2000/60, which will come in force in 2008, is 0.2 ng/L, four times higher than the average concentration measured in Lake Maggiore waters. Nevertheless, concentrations measured in Lake Maggiore fish were very close and sometimes exceeded the Maximum residue limits (MRLs) settled by the Italian legislation for foods (0.1 mg/kg w.w. for fish containing 5–20% lipid). It seems, therefore, that the 'environmental quality standard' of 0.2 ng/L cannot guarantee the suitability of fish for human consumption.  相似文献   
182.
本文分别于2012年4月(春季)、8月(夏季)、10月(秋季)和2013年1月(冬季)在鄱阳湖进行了4次野外调查和样品采集,采用超高效液相色谱-串联质谱仪(UPLC-MS/MS)对鄱阳湖水柱中常见的3种微囊藻毒素(MC-RR、MC-YR和MCLR)的质量浓度进行定量分析,探寻了微囊藻毒素(microcystins,MCs)质量浓度的时空变化规律及其与湖泊环境理化因子和生物因子之间的关系.结果表明,MC-RR是鄱阳湖MCs的主要毒素种类.胞内微囊藻毒素(intracellular MCs,IMCs)与微囊藻生物量(r=0.47,P0.01)、颤藻生物量(r=0.68,P0.01)、蓝藻生物量(r=0.56,P0.01)、Chl-a(r=0.28,P0.01)之间均具有显著的正相关关系,但与鱼腥藻生物量之间没有明显的相关关系(P0.05),这说明微囊藻和颤藻是鄱阳湖微囊藻毒素的主要产毒藻类.IMCs与水温(r=0.51,P0.01)、透明度(r=0.69,P0.01)、Fe(r=0.43,P0.01)和Zn(r=0.43,P0.01)之间均呈现显著的正相关关系,与TN(r=-0.44,P0.01)、TP(r=-0.29,P0.01)、NO-2-N(r=-0.28,P0.05)、NH+4-N(r=-0.33,P0.05)、Ca(r=-0.34,P0.01)和Mg(r=-0.35,P0.05)均呈现显著的负相关关系,但与pH、PO3-4-P、NO-3-N、电导率、高锰酸盐指数、Cu离子之间的相关关系不显著(P0.05),这说明光照强度(透明度反映)、氮、磷、水温是控制鄱阳湖微囊藻毒素产生的重要因子,金属离子Ca、Mg、Fe、Zn在一定程度上能影响微囊藻毒素的产生.鄱阳湖IMCs和胞外微囊藻毒素(extracellular MCs,EMCs)呈现相似的季节变化趋势,即夏季最高,其次为秋季,冬季和春季较低.鄱阳湖IMCs的空间分布整体上呈现东部湖汊群、松门山周围以及蚌湖和蚌湖进入鄱阳湖的入湖口较高,其它区域较低的趋势,而EMCs的高值区位于松门山周围和蚌湖及其入湖口.  相似文献   
183.
通过泥柱静态培养实验,对比探究大冶湖冬夏两季沉积物-上覆水界面氮磷交换通量的变化规律,估算界面交换对水体氮磷的潜在贡献率并探讨沉积物的“源”与“汇”作用,最后通过单因素控制法开展扰动、温度、溶解氧及水体pH等环境因子对氮磷释放的影响研究。结果表明,冬夏两季不同点位的交换通量和“源”、“汇”角色不同。冬季入湖处1#点位氮磷交换通量最大,TN、NH4+-N、TP、PO43−-P的平均交换通量分别为202.94、41.62、0.55、0.36 mg·(m2·d)−1;夏季出湖处3#点位氮磷交换通量最大,TN、NH4+-N、TP、PO43−-P平均交换通量分别为389.27、89.54、1.79、1.18 mg·(m2·d)−1。冬季沉积物对上覆水中TN和NH4+-N整体上起“源”的作用,而对TP和PO43−-P表现为“汇”;夏季沉积物对上覆水中TN、NH4+-N、TP、PO43−-P均起“源”的作用。环境因子实验结果表明,水体扰动速率越大,沉积物氮磷的再悬浮通量越大;升温及厌氧条件均会促进沉积物氮磷的释放;水体pH对氮磷释放的影响规律不同,氮营养盐释放随着pH的升高而减少,而磷营养盐中性条件下释放强度最弱,偏酸或偏碱环境有助于磷的释放。本研究有助于厘清长江中下游城市浅水湖泊富营养化内源污染贡献,对设计湖泊内源负荷控制方案以及湖泊富营养化防控具有重要指导意义。  相似文献   
184.
针对博斯腾湖日益严重的盐污染问题,以博斯腾湖西岸表面流人工湿地为研究对象,引当地排渠水进入人工湿地,对人工湿地的进水和出水进行连续7个月的水质监测,对比分析进水和出水中8种离子(Ca~(2+)、Na~+、K~+、Mg~(2+)、Cl~-、SO_4~(2-)、CO_3~(2-)、HCO_3~-)和矿化度的变化,结果表明:人工湿地进水含盐量较高,8种离子的浓度和矿化度波动较大,4月和10月进水为微咸水,5—9月进水为咸水,而出水含盐量相对较低,8种离子的浓度和矿化度波动较小,各月出水均为微咸水。经计算分析可知,人工湿地对水体总盐的平均去除率为51%,水体盐分的去除率与温度呈正相关,且随季节性温度变化而发生变化。  相似文献   
185.
东湖沉积物中色素的环境意义研究   总被引:2,自引:0,他引:2  
介绍了用紫外可见分光光度法测定东湖沉积物中几种指示色素含量的方法及各色素所代表的环境意义,探讨了近百年来东湖地区的环境演化历程。结果表明,近二十多年来,随着该地区工业的发展和人口的大量聚集,东湖已呈现严重的富营养化态势。  相似文献   
186.
为探究滆湖水华初期浮游植物群落特征及与水环境因子的相关性,于2018年5—7月在全湖布设22个点,调查研究滆湖水华初期浮游植物群落时空分布特征,并对引起水华主导环境因子进行分析.结果表明:①共获得7门119属,优势属为绿藻门的小球藻与球团藻、蓝藻门的鞘丝藻与微囊藻,其中湖心区域浮游植物丰度与多样性小,均匀性低,属于中偏重污染区域;湖北区以北属于中污染区域,蓝藻堆积严重;西部沿岸及南端区域属于中偏轻污染区域.②冗余分析得出,湖心藻类与水温(T)有强相关性,与叶绿素a(Chl-a)、溶解性总磷(DTP)、pH、溶解氧(DO)呈一定正相关性;湖北区以北藻类与底泥有机质(OM)、水体悬浮物(SS)、Chl-a及DTP呈强相关性,与T呈一定相关性.T与多项环境因子相关,均值从26.1℃上升到32.4℃;OM与有机磷(OP)呈高度相关性(p<0.05,r=0.892).水华发生的主导环境因子为T、DTP与pH,底泥OM及OP有一定影响.  相似文献   
187.
应用GIS分析太湖水质的污染现状   总被引:4,自引:0,他引:4  
随着空间技术和计算机技术的日益发展,地理信息系统(GIS)作为一门技术,不但在地学方面有了较为广泛的应用,而且在环境部门也越来越显出其优势性。以水质采样监测的大量第一手资料为基础,应用GIS工具,对太湖水质的污染现状进行了分析,并对此进行解释提出了可能的解决办法。  相似文献   
188.
Studies on the distribution and isotope compositions of fallout Pu are important for source characterization of possible future non-fallout Pu contamination in aquatic environments, and useful for dating of recent sediments to understand the pollution history of environmental contaminants. We present the historical record of atmospheric Pu fallout reconstructed from a sediment core from Lake Hongfeng, China. The Pu activity profile was in agreement with the 137Cs profile. Inventories were 50.7 Bq m(-2) for 239+240Pu and 1586 Bq m(-2) for 137Cs. The average 240Pu/239Pu atom ratio was 0.185+/-0.009, indicating that Pu originated from global stratospheric fallout rather than from direct tropospheric or close-in fallout from the Chinese nuclear testing conducted in the 1970s. Our data suggested that Lake Hongfeng would be an ideal setting for monitoring atmospheric fallout and environmental changes in this region.  相似文献   
189.
BACKGROUND: The Yangtze Delta is one of the most developed regions in China and includes Shanghai, eight cities in Jiangsu province and eight cities in Zhejiang province. Meat consumption in this region has increased with economic growth, and most of the consumed meat is produced locally. The water quality of surface waters has deteriorated in recent years. An example was the huge blue-green algae bloom in Tai Lake in late May 2007, which affected millions of people's daily drinking water. However, animal husbandry is considered to be one of the main pollution sources. METHODS: Pollutants (NH3-N, total phosphorus (TP), and total nitrogen (TN)) excreted by livestock and poultry, and the resultant COD (chemical oxygen demand) and BOD (biochemical oxygen demand), were estimated using two different methods based on different data sets. RESULTS: The number of livestock and poultry has remained stable in the Yangtze Delta over the four years from 1999 to 2002, with the average number of pigs, cattle, sheep and poultry being 21.1 M, 0.4 M, 7.7 M and 597.6 M, respectively. Pollutants in livestock and poultry excreta estimated by Method I were: 0.12 Mt NH3-N, 0.11 Mt TP and 0.29 Mt TN, resulting in COD and BOD of 1.34 Mt and 1.30 Mt, respectively, while the estimations based on Method II were: 0.18 Mt NH3-N, 0.15 Mt TP and 0.40 Mt TN, resulting in COD and BOD of 1.95 Mt and 1.80 Mt, respectively. DISCUSSION: Pollutants excreted annually by livestock and poultry in the Yangtze Delta are estimated to be: 0.17 Mt NH3-N, 0.16 Mt TP and 0.42 Mt TN, giving rise to a COD of 1.86 Mt and a BOD of 1.72 Mt. Approximately 25% of this pollution was estimated to enter water bodies, which means that the annual pollutant load is 43,700 t NH3-N, 39,400 tTP, 104,600t TN with a COD of 465,000 tand a BOD of 430,100 t. Pollutants from animal husbandry were similar in magnitude to those from industrial wastewater. Pigs produced the most pollution, followed by poultry, cattle and sheep. The pollution load from animal husbandry in the Yangtze Delta is about twice the average level of the whole of China. CONCLUSIONS: Domestic wastewater was the main pollution source in the Yangtze Delta, followed by pollution from raising livestock and poultry and from industrial wastewater. The pollution load in Shanghai and Jiaxing were the greatest, followed by 7 cities of Jiangsu province (except Suzhou) and other cities of Zhejiang province and Suzhou. Pigs and poultry produced about 90% of the total pollutants from animal husbandry. RECOMMENDATIONS AND PERSPECTIVES: The local governments, especially in Shanghai and Jiaxing, should focus their attention on the pollution produced by livestock and poulrry. Controlling pollution from pigs and poultry will have the greatest impact in this region. Control of pollution will be facilitated by the development of large-scale livestock and poultry farming units and a shift away from small scale husbandry.  相似文献   
190.
用大型底栖动物对武汉南湖水质的生物学评价   总被引:5,自引:0,他引:5  
2003年6月至2004年5月季度性调查武汉南湖大型底栖动物的种类组成,并对水质理化指标进行测定.结果表明,大型底栖动物由寡毛类和水生昆虫组成,密度为4 437个/m2,优势种为霍甫水丝蚓和刺铗长足摇蚊;大型底栖动物的Shannon-Wiener多样性指数和Margelef多样性指数表明南湖水质为中等污染状态;历年夏季水体中主要营养元素含量的变化,进一步描述了近年来南湖富营养化的加剧进程.  相似文献   
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