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331.
ABSTRACT A water quality investigation on Utah Lake was conducted during the same time period that the Heat Capacity Mapping Mission (HCMM) satellite was collecting thermal infrared and reflectivity data. Relationships were established and evaluated among HCMM data and lake water quality parameters. Although remotely sensed reflective data have been previously utilized, this study was unique in that thermal emitted data were also correlated to algae concentrations and other indicators. Standard statistical evaluations were made along with utilization of color graphics techniques to identify and plot relationships. The emitted thermal energy was found to have high positive correlations with net algal concentrations and with the predominant species, Aphanizomenon flos-aquae, a blue-green alga. No continuous correlation was found for a less abundant red pigment phytoplankton, Ceratium hirundinella. Similar trends, though for negative correlations, were shown for reflectivity data and algal concentrations throughout the spring and summer. Coincidence of areas of warmer emitted energy and darker relfected energy on colorgraphics displays clearly indicate lake areas of high algal concentrations. Night thermal data displayed a strong negative correlation with algal concentration, opposite to day thermal data. Color graphics of warmer day emitted energy and cooler night emitted energy further verify areas of high algal concentrations.  相似文献   
332.
首先介绍了高效藻类塘的发展历史和特点,其次简述了高效藻类塘的生物特性和物理化学变化规律,并重点论述了高效藻类塘的氮磷去除机理及其影响因素,最后对高效藻类塘在控制非点源污染中的应用前景进行展望.  相似文献   
333.
雷国元  范唯  李媛  邓慧敏  李俊叶 《生态环境》2007,16(4):1166-1170
针对富营养化水体生物修复和污水深度处理氮磷的去除,将细颤藻、水绵、水网藻、栅裂藻固定在纤维填料上,形成固定化藻膜。用固定化藻膜处理模拟富营养化湖水、实际富营养化湖水、城市污水二级出水、低质量浓度生活污水,考察固定化藻膜去除氮磷的效果。实验结果表明,固定化藻膜具有良好的去除磷、氨氮能力,对水中有机物去除也有一定的促进作用。对TP质量浓度小于5.0mg·L-1,NH4 -N质量浓度小于34.0mg·L-1的污染水体,四种藻膜都有良好的去除氮磷能力,其中栅裂藻去除TP、NH4 -N的能力最强。综合除污能力和藻细胞的可固定性,水绵应是最佳的备选藻种。研究结果显示,固定化藻膜具有良好的除污性能,预示了悬浮载体将在水体生物修复、氧化塘污水处理方面具有重要的潜在应用价值。  相似文献   
334.
Since the early 1990's, large areas of mangrove forest along the nearshore waters of Cukai bay had been cleared to give way for the development of aquaculture activities, human settlement and setting up of new small scale fish processing industries. The Cukai bay, facing the South China Sea, has inflows from the Cukai river estuaries and other numerous small river tributaries. The water quality examined (April 1993 to March 1994) in the bay indicated that the ammonium, nitrate and phosphorus contents were high during the pre-wet monsoon (October 1993) with values of 28.2, 30.1 and 29.6 g L-1, respectively. The source of nutrients in the estuary were from the newly established fish processing cottage industries, nearby fish culture activities, agro-based effluents (mainly fertilisers from surrounding paddy plantations), untreated human (from nearby villages) and animal wastes (from domestic cattle and goat farms) and siltation due to erosion from land development. The main bulk of the microplankton were comprised of diatoms, dinoflagellates, ciliophora and blue green algae. The blue green algae encountered were species of Lyngbya, Oscillatoria, Phormodium and Trichodesmium while those of diatom were species of Asterionella, Chaetoceros, Coscinodiscus, Navicula and Nitzschia. Peak microplankton production in the water column occurred in October 1993, reaching a maximum value of 173 g C L-1 d-1. This comprised primarily of the blue green alga, Trichodesmium thiebautii.  相似文献   
335.
不同光照强度下香溪河浮游植物演替过程研究   总被引:1,自引:0,他引:1       下载免费PDF全文
为丰富三峡水库浮游植物演替机制,为三峡水库“潮汐式”调度提供理论依据和基础数据,基于前期香溪河水华易发区现场监测结果,其水下光照强度变化范围为1 800~17 000 lx,据此开展不同梯度恒定光照条件下香溪河源水混合浮游植物群落演替过程的室内控制试验.结果表明:①按照R*法则和关键光强假说,在其他环境条件适宜的情况下,光照为4 500 lx时,香溪河源水中混合浮游植物的生物量和多样性最高.②CSR理论(Competitor-Stress Tolerator-Ruderals Theory)中的浮游植物环境适应机制及生长策略不能准确解释不同梯度恒定光照控制条件下浮游植物的演替规律.光照条件是影响浮游植物群落演替方向的关键要素,而演替方向由群落发生演替时的光照条件与该群落中藻种关键光强的匹配程度决定.③香溪河源水中混合藻种的不同梯度恒定光照控制试验结果显示,小球藻(Chlorella sp.)、衣藻(Chlamydomonas sp.)、栅藻(Scenedesmus sp.)、肾形藻(Nephrocytium sp.)、微囊藻(Microcystis sp.)、色球藻(Chroococcus sp.)、隐藻(Cryptomonas sp.)和小环藻(Cyclotella sp.)的最适光强分别为3 000、8 000、13 000、6 000、6 000、13 000、13 000和6 000 lx.研究显示,将光照控制在合适的阈值范围,有助于维持浮游植物的多样性,对水华防治具有重要意义.   相似文献   
336.
为了解滨岸带植被、地形等地貌要素对蓝藻水华堆积及消散过程的影响,在太湖滨岸带设置不同形式的围格和植被实验区,通过逐日监测水体叶绿素a(Chl-a)的消长过程及同步营养盐变化,研究夏季蓝藻水华在湖泊滨岸带堆积与消散特征和营养盐效应.结果表明,滨岸带的地形地貌及植被状况对蓝藻水华的堆积程度及消散过程影响较大,软围隔营造的滨岸带静水环境,以及不同植被所形成的不同滞水区,显著加剧了蓝藻水华的局部堆积,从岸边挺水和浮叶植被区到开敞水域对照区,蓝藻水华的堆积程度依次递减;近岸挺水和浮叶植被区蓝藻水华堆积最严重,堆积时间最早,持续时间长;蓝藻水华堆积对营养盐等水质指标影响极大,堆积严重时该区域Chl-a含量达到了457.42μg/L,总氮(TN)达到11.04mg/L,总磷(TP)达到1.32mg/L;橡胶围格内浮叶植物区藻类堆积程度与近岸区类似,而浮叶植物与沉水植物混合区藻类堆积程度低于单一浮叶植物区;水体围隔能够加剧蓝藻水华的堆积,没有围隔的浮叶植物区藻类堆积程度最低.在蓝藻水华堆积过程中,蓝藻细胞仍在继续增殖,水体Chl-a仍会明显增加,而同期的水体营养盐的增幅小于Chl-a,甚至随着藻类生长消耗及生态系统的脱氮效应,溶解态氮磷下降明显.蓝藻水华消散过程中,TN、TP与Chl-a同步下降,但藻体中的氮磷释放到水中,导致堆积区的溶解态氮、磷有所增加,显示出明显的营养盐效应.本研究定量刻画了蓝藻水华局部堆积并快速致灾的地形地貌要素特点,揭示了蓝藻水华的水质与生态效应,为科学评估富营养化水体蓝藻水华的生态灾害风险提供科学依据.  相似文献   
337.
Nitrogen (N) and phosphorus (P) are significant pollutants that can stimulate nuisance blooms of algae. Water quality models (e.g., Water Quality Simulation Program, CE‐QUAL‐R1, CE‐QUAL‐ICM, QUAL2k) are valuable and widely used management tools for algal accrual due to excess nutrients in the presence of other limiting factors. These models utilize the Monod and Droop equations to associate algal growth rate with dissolved nutrient concentration and intracellular nutrient content. Having accurate parameter values is essential to model performance; however, published values for model parameterization are limited, particularly for benthic (periphyton) algae. We conducted a 10‐day mesocosm experiment and measured diatom‐dominated periphyton biomass accrual through time as chlorophyll a (chl a) and ash‐free dry mass (AFDM) in response to additions of N (range 5–11,995 µg nitrate as nitrogen [NO3‐N]/L) and P (range 0.89–59.51 µg soluble reactive phosphorus/L). Resulting half‐saturation coefficients and growth rates are similar to other published values, but minimum nutrient quotas are higher than those previously reported. Saturation concentration for N ranged from 150 to 2,450 µg NO3‐N/L based on chl a and from 8.5 to 60 µg NO3‐N/L when based on AFDM. Similarly, the saturation concentration for P ranged from 12 to 29 µg‐P/L based on chl a, and from 2.5 to 6.1 µg‐P/L based on AFDM. These saturation concentrations provide an upper limit for streams where diatom growth can be expected to respond to nutrient levels and a benchmark for reducing nutrient concentrations to a point where benthic algal growth will be limited.  相似文献   
338.
To explore eutrophication and algal bloom mechanisms in channel type reservoirs, a novel enclosure experiment was conducted by changing light intensity (LI) in the Daning River of the Three Gorges Reservoir (TGR). Square enclosures (side 5.0 m) were covered on the surface with shading materials of different thickness, and with their bases open to the river. Changes and characteristics of the main eutrophication factors under the same water quality and hydrodynamic conditions but different LI were evaluated. All experimental water samples were neutral and alkalescent, with high nitrogen and phosphate concentrations, low potassium permanganate index, stable water quality, and different LI. At the same water depth, LI decreased with increasing shade material, while dissolved oxygen and water temperature were both stable. The growth peak of phytoplankton was with light of 345-4390 lux underwater or 558-7450 lux above the water surface, and water temperature of 25.6-26.5℃. Algae were observed in all water samples, accounting for 6 phylum and 57 species, with algal density changing frequently. The results showed that significantly strong or weak light was unfavorable for phytoplankton growth and the function together with suitable temperature and LI and ample sunshine encouraged algal blooms under the same water quality and hydrodynamic conditions. Correlation analysis indicated that algae reduced gradually lengthwise along water depth in the same enclosure while pH became high. The power exponent relationship between chlorophyll a (Chl-a) and LI was found by curve fitting, that is Chl-a = K(LI)n.  相似文献   
339.
由于淀山湖上游污染负荷以及周边污水的排放,淀山湖已经严重富营养化。通过建立淀山湖生态系统模型,基于大量现场实测数据,对生态系统模型进行率定和验证,并利用生态系统模型对淀山湖N,P营养盐时间变化规律和藻类生长演替进行了系统研究,对各污染负荷削减的富营养化控制方案的效果进行模拟。模拟结果显示:该生态模型较好地模拟了常规水质和藻类的动态变化;淀山湖污染负荷主要来自于上游负荷,削减上游负荷对水质改善效果明显好于其他污染源削减方案;削减上游负荷95%以上,才能有效抑制蓝藻水华;P对蓝藻生长的控制效果好于控制氮。  相似文献   
340.
为探索化感物质在蓝藻水华治理方面的应用潜力,选取在凤眼莲根系分泌物中发现的5种化感物质(亚油酸、亚油酸甘油酯、丙酰胺、N-苯基—2-萘胺和壬酸),研究了3种剂量下(0.1、1.0、10.0mg.L-1)其对单一、混合培养铜绿微囊藻和斜生栅藻生长的影响.结果发现,化感物质成分、剂量和藻类培养方式对铜绿微囊藻和斜生栅藻生长...  相似文献   
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