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991.
2016~2017年长荡湖流域河湖系统营养盐时空分布机制分析   总被引:2,自引:2,他引:0  
以江苏省常州市长荡湖流域河湖系统为研究对象,基于野外监测与室内分析,探讨了水体氮、磷等营养盐的时空分布特征及其影响因素.结果表明,2016~2017年长荡湖流域河湖系统氮、磷污染突出,河流TN、NO3--N、NH4+-N、TP和Chla平均质量浓度和高锰酸盐指数分别为(3.70±0.76)mg ·L-1、(1.81±0.42)mg ·L-1、(1.03±0.61)mg ·L-1、(0.38±0.31)mg ·L-1、(25.74±37.00)μg ·L-1和(6.35±0.81)mg ·L-1.河流总氮污染季节差异明显,表现为冬、春季劣于夏、秋季,河流总磷污染表现为秋、冬季劣于春、夏季,空间差异表现为北 > 西北 > 南 > 东部,河流处于中~高度富营养化状态.湖区TN、NO3--N、NH4+-N、TP和Chla平均质量浓度和高锰酸盐指数分别为(2.25±0.94)mg ·L-1、(0.98±0.47)mg ·L-1、(0.19±0.14)mg ·L-1、(0.11±0.03)mg ·L-1、(18.71±8.76)μg ·L-1和(4.59±1.09)mg ·L-1,氮、磷质量浓度均超过Ⅲ类水标准,在空间上表现为从西部向东、南部降低的趋势,湖区处于轻~中度富营养状态.丹金溧漕河、通济河与薛埠河等河流是长荡湖流域河湖水系的主要污染物输送通道,丹金溧漕河干流输送氮、磷年通量最大,约为通济河和薛埠河年通量总和的10~12倍.长荡湖流域河流氮、磷污染同时受到农业面源污染物流失与城镇污水排放的影响.土地利用方式转变和大气沉降是导致长荡湖流域河湖系统氮、磷污染加剧的重要驱动因素.  相似文献   
992.
通过盐酸、碳酸钠、高温焙烧及复合改性等多种改性方法对膨润土进行改性,并借助扫描电子显微镜、傅里叶红外光谱仪及X射线衍射仪等仪器对其进行表征,探讨最佳的改性方法.结果表明,10%碳酸钠+450℃高温焙烧复合改性膨润土(Modified bentonite,MB)为最佳改性用土.对比改性前后膨润土颗粒对沉积物各形态磷吸附性能,发现MB颗粒对沉积物磷吸附性能优于膨润土原土(raw bentonite,RB)颗粒.在最佳动态吸附条件下,RB对沉积物TP、OP、IP、Fe/Al-P和Ca-P的吸附率分别为32.5%、25.4%、52.6%、34.6%和12.4%;MB对沉积物TP、OP、IP、Fe/Al-P和Ca-P的吸附率分别为35.5%、29.1%、54.5%、44.6%和10.7%.静态吸附实验结果表明:RB颗粒和MB颗粒在静态吸附时间为28 d时,对沉积物TP的吸附量分别为828.2 mg·kg~(-1)和977.2 mg·kg~(-1),相应的吸附率分别为58.2%和68.6%.MB对沉积物磷的吸附性能较好,可进一步用于富营养化湖泊沉积物磷控制.  相似文献   
993.
于2011~2016年间,从嘉陵江重庆主城段水域的"磷营养状态-总碱性磷酸酶活性变化-藻华"之间的相关关系入手,通过原位实验总结TAPA与ALGAE及SRP变化规律,结合碱性磷酸酶反应动力学实验确定酶活参数,探讨酶活变化在"藻华"中的生态学意义.结果表明:消落期时,SRP为藻类生长活动主要的磷源."藻华"敏感期SRP含量全年最低,为0.012~0.021mg/L;TAPA全年最高,为10.503~11.587nmol/(L·min).特征参数Vm和米氏常数Km值的变化规律验证了"藻华"敏感期各样点碱性磷酸酶对底物的亲合力增高,酶的水解速率有了显著提升;碱性磷酸酶在其他形态的磷转化为SRP的过程中有很大的促进作用,为藻类等微生物生长提供充足的SRP,以利于其在适宜的生境中迅速增殖.  相似文献   
994.
洞庭湖的江湖关系受自然因素及人为因素影响,其江湖关系的变化影响洞庭湖水文、水质、水环境容量和营养状态.近年来洞庭湖的富营养化指数不断升高,但水环境变化及富营养化风险变化的原因错综复杂,如何区分三峡工程运行等人类活动和气候变化等自然因素对洞庭湖水环境、富营养化风险的影响是洞庭湖江湖关系研究的难点.根据近年来洞庭湖江湖关系、水环境或富营养化水平的相关研究,对洞庭湖由于三峡工程运行导致的江湖关系变化,以及该变化对洞庭湖水环境、富营养化风险的影响的研究进展进行系统梳理、分析、总结和评述.现阶段研究得出,三峡工程运行导致的江湖关系变化影响洞庭湖不同时段的水环境容量,在一定程度上改善了枯水期和泄水期洞庭湖水质;三峡工程运行后洞庭湖水体中的ρ(TP)有所降低,但洞庭湖湖体ρ(TN)、ρ(TP)仍相对较高,已能够满足藻类生长的需求,水华发生的制约条件是水体透明度和水流流速;江湖关系变化后洞庭湖富营养化风险增大的时段是蓄水期,其他时段富营养化风险减小;流速较低的东洞庭湖湖滩区、蓄水期流速降低明显的南洞庭湖滩区水华发生的风险增大,为水华发生的敏感区域.大型枢纽工程对通江湖泊污染物迁移转化影响的机理分析、对通江湖泊水环境影响的模拟及相关参数研究、对湖泊水环境及富营养化风险的长期影响等方面的研究还有待进一步完善.   相似文献   
995.
Water regulation of the Xiaolangdi Reservoir of the Yellow River was chosen as a case to investigate variations in concentrations and bioavailability of heavy metals caused by water conservancy projects in rivers. Water and suspended sediment (SPS) samples were collected at downstream sampling sites along the river during this period. Concentrations and speciation of Zn, Cr, Cu, Ni, and Pb in water and SPS samples were analyzed, and their bioaccumulation was studied with Daphnia magna. This study indicated that the exchangeable and carbonate-bound fractions of heavy metals in SPS decreased along the studied stretch, and the dissolved heavy metal concentrations increased along the river with 1.6–15 folds. This is because sediment resuspension increased along the river during water regulation, giving rise to the increase of heavy metal release from SPS. The dissolved Zn, Cu, Ni, and Pb concentrations were significantly positively correlated with SPS concentrations, and their increase along the river was greater than Cr. The body burdens of heavy metals in D. magna exposed into samples collected from the reservoir outlet were 1.3–3.0 times lower than those from downstream stations, suggesting that the heavy metal bioavailability increased during water regulation. This should be considered in the reservoir operation.  相似文献   
996.
This study provides the presence of carbonic anhydrase(CA) activity in waters of the Yangtze River basin, China, as well as the correlation of CA activity with HCO-3 concentration and CO_2 sink flux. Different degrees of CA activity could be detected in almost all of the water samples from different geological eco-environments in all four seasons. The CA activity of water samples from karst areas was significantly higher than from non-karst areas(PP3-concentration(r = 0.672, P2 sink flux(r = 0.602, P = 0.076) in karst areas. This suggests that CA in waters might have a promoting effect on carbon sinks for atmospheric CO_2 in karst river basins. In conditions of similar geological type, higher CA activity was generally detected in water samples taken from areas that exhibited better eco-environments, implying that the CA activity index of waters could be used as an indicator for monitoring ecological environments and protection of river basins. These findings suggest that the role of CA in waters in the karst carbon sink potential of river basins is worthy of further in-depth studies.  相似文献   
997.
We have developed a new nanofilter using a carbon nanotube-silver composite material that is capable of efficiently removing waterborne viruses and bacteria.The nanofilter was subjected to plasma surface treatment to enhance its flow rate,which was improved by approximately 62%.Nanoscale pores were obtained by fabricating a carbon nanotube network and using nanoparticle fixation technology for the removal of viruses.The pore size of the nanofilter was approximately 38 nm and the measured flow rate ranged from 21.0 to 97.2 L/(min·m~2)under a pressure of 1–6 kgf/cm~2 when the amount of loaded carbon nanotube-silver composite was 1.0 mg/cm~2.The nanofilter was tested against Polio-,Noro-,and Coxsackie viruses using a sensitive real-time polymerase chain reaction assay to detect the presence of viral particles within the outflow.No trace of viruses was found to flow through the nanofilter with carbon nanotube-silver composite loaded above 0.8 mg/cm~2.Moreover,the surface of the filter has antibacterial properties to prevent bacterial clogging due to the presence of 20-nm silver nanoparticles,which were synthesized on the carbon nanotube surface.  相似文献   
998.
To reveal the basic characteristics and controlling factors of water quality change in the project Wenyu to Chaobai reclaimed water diversion, the water quality in the study area was monitored for one year at seven monitoring sites. Inverse geochemical models of the statistical groups were developed using PHREEQC to elucidate the hydrochemistry characteristics of reclaimed water and the factors. The monitoring results indicated that nitrogen and phosphorus contents were significantly reduced along the river mainly caused by seasonal and location variation. The pH ranged from 7.44 to 9.81. Photosynthesis of algae and denitrification in anaerobic microenvironment ultimately led to a sudden p H increase after the Jian River and the Chaobai River confluence. Mg~(2+)and SO_4~(2-) levels dropped obviously in the summer and increased in winter seasons after intersection. Na+and Cl-are relatively stable, and marked drop in the concentration only after the two rivers meet. And there is a decrease of Ca~(2+) and HCO~(3-) and increase in CO_3~(2-) during monitoring period. As a whole, the primary ions and nutrient components, including nitrogen and phosphorus, had high levels in winter. Algae's photosynthesis and respiration were observed to have an impact on the river water quality; there was precipitation–dissolution of minerals and denitrification from upstream to downstream. Inverse geochemical PHREEQC modeling confirmed that there was precipitation of aragonite or calcite, and gypsum or anhydrite in summer, and dissolution in winter; as well as precipitation of dolomite in winter, and cationic exchange and denitrification along the river.  相似文献   
999.
太湖水体溶解性有机质荧光特征及其来源解析   总被引:11,自引:0,他引:11  
利用三维荧光光谱(3DEEM)-平行因子分析(PARAFAC)技术,通过野外现场调查和室内模拟实验,分析富营养化湖泊(太湖)水体溶解性有机质(DOM)组成结构、分布规律及其来源,进一步研究藻类和水生植物残骸腐烂分解以及沉积物释放对水体DOM荧光组成特征的影响.结果表明:1太湖水体各个湖区DOM主要以类色氨酸物质(T1、T2峰)为主,竺山湾还存在类腐殖质和类富里酸物质,其荧光指数(f450/500)为1.53±0.06,接近陆源f450/500值(1.4),DOC浓度全湖最高((7.13±2.45)mg·L-1),兼具陆源与生物来源的双重特性.2太湖藻类DOM组成丰富,出现了7种荧光组分,主要为类腐殖质、类富里酸和类蛋白物质(包括类色氨酸和类酪氨酸),藻类腐烂分解后,紫外区类色氨酸T2峰和类酪氨酸B2峰消失,其他类蛋白物质和部分易降解的类富里酸物质向水体中释放,其中A峰和C峰所代表的类富里酸物质降解率较高,分别降解了70.3%和41.0%.3水生植物DOM以类腐殖酸物质为主,其残骸腐烂分解后DOM由陆源类腐殖质向类腐殖酸物质转化.4沉积物DOM出现了5类荧光峰,兼具外源污染的类富里酸荧光C峰和A峰,同时含有生物来源的B1、B2、T2类蛋白荧光峰,随其降解时间的增长,T2荧光峰消失,B1、B2荧光物质降解率分别高达86.5%和82.5%,而C峰和A峰分别上升25.1%和1.5%,沉积物降解过程中大量类蛋白物质向上覆水体中释放,同时部分类蛋白物质向着更稳定的类富里酸物质转化.因此,外源输入和内源负荷(藻类和水生植物残骸腐烂分解以及沉积物释放等)对湖泊水体DOM组成结构以及富营养化过程具有重要影响.  相似文献   
1000.
The necessity to understand the relationship between cyanobacterial species abundance and water quality variations in coastal lagoons is crucial to develop strategies to prevent further cyanobacterial proliferation. This paper evaluates the relationship between water quality variations on the distribution of cyanobacteria during a 12-month period in Batticaloa Lagoon (Sri Lanka) using Redundancy analysis and Pearson correlations. Drastic variations in pH, temperature, salinity, dissolved oxygen (DO) and total phosphorus (TP) levels were reported, but not turbidity and NO3. This brackish waterbody is hypereutrophic (TP levels > 0.1 mg/L). The cyanobacterial community contained 13 genera and 22 species. NO3, TP and turbidity levels positively influenced cyanobacterial abundance during all seasons indicating that nutrient (largely phosphorus) and sediment entry control is highly crucial along with periodic monitoring of cyanobacterial growth.  相似文献   
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