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1.
从珠江口海域分离、鉴定出3种重要有害藻类小普林藻JX12(Prymnesium parvum)、剧毒卡尔藻JX24(Karlodinium veneficum)、红色赤潮藻JX14(Akashiwo sanguinea),在实验室条件下研究了不同反应温度和pH值对小普林藻溶血活性的影响,在此基础上对海洋微藻溶血活性的测定方法进行了优化,并进一步分析比较了不同藻株以及不同生长时期溶血毒性的变化特征。研究结果显示,在实验温度范围内(4~50°C),小普林藻的溶血活性随温度的升高而增大,37℃为其最佳反应温度,pH 8和50 min为其最佳反应条件。不同生长时期的小普林藻溶血毒性具有显著差异,对数期溶血活性(5.67×10~(-7)HU·cell~(-1))显著高于稳定期(2.32×10~(-7)HU·cell~(-1))和衰亡期(3.40×10~(-7)HU·cell~(-1))。分离自珠江口海域的3种微藻均检测出溶血毒性,单个细胞溶血活性由强到弱分别为红色赤潮藻(976.20×10~(-7)HU·cell~(-1))、小普林藻(5.67×10~(-7)HU·cell~(-1))、剧毒卡尔藻(2.58×10~(-7)HU·cell~(-1))。值得注意的是,红色赤潮藻中国株JX14的单位细胞溶血活性显著高于美国株AS2,是后者的2倍以上。本研究首次确认珠江口海域红色赤潮藻、小普林藻和剧毒卡尔藻均具有较强的溶血毒性,这些有害藻类一旦形成赤潮可能对河口生态系统安全以及水产养殖业造成严重危害。  相似文献   
2.
1 IntroductionParticlesinnaturalwatersareoftentoosmalltobeeffectivelyremovedbytheseseparationtechniques.Theprocessofcoagulation/flocculationcausesfineparticlestoaggregateintolargerunits(flocs)whichcanbemoreeasilyseparated.Inwatertreatmentsaltsofalumi…  相似文献   
3.
介绍了小隐孢子虫卵囊的特点及其对人体的危害,分析了pH、混凝剂种类与投加量、电导率和天然有机物含量等对小隐孢子虫卵囊的Zeta电位的影响,总结了混凝-沉淀-过滤和直接过滤对小隐孢子虫卵囊的去除效果,探讨了水温、水质、混凝剂种类与投加量、滤料层组成和滤速等对去除效果的影响。  相似文献   
4.
水体中隐孢子虫卵囊的检出及其活力分析   总被引:2,自引:0,他引:2  
从水中检测隐孢子虫卵囊是评价水源传播人类隐孢子虫病风险的第一步,从水中检出的卵囊的活力需要进行测定才能估计水源爆发的真正风险,应用聚丙烯盒式过滤器和美国环保局(USEPA)1622过滤方法的囊式过滤器(Gelman,Michigan,USA),分别过滤了当地(法国鲁昂)的环境水和供给水,并用免疫磁分离技术(IMS)进行分离。用免疫荧光检测法(IFA)从浓缩的水样中检测到了隐孢子虫卵囊。环境水中的卵囊浓度是每升水中0.12-2.7个卵囊;供给水中的卵囊浓度是每升水中0.03-0.06个卵囊,用新生小鼠模型初步评价了检出卵囊的感染力。结果证明了隐孢子虫卵囊在环境中尤其是水中的广泛分布;同时表明,评估水源传播的隐孢子虫病的风险时,不仅要从水中检出卵囊,而且要测定检出的卵囊的活力。表1参22。  相似文献   
5.
Barkoh, Aaron, Dennis G. Smith, and Gregory M. Southard, 2010. Prymnesium parvum Control Treatments for Fish Hatcheries. Journal of the American Water Resources Association (JAWRA) 46(1):161-169. DOI: 10.1111/j.1752-1688.2009.00400.x Abstract: In 2001, the ichthyotoxic microalga Prymnesium parvum caused massive fish kills and adversely affected fish production at the Texas Parks and Wildlife Department (TPWD) Dundee State Fish Hatchery. Since then, we have investigated several P. parvum bloom and ichthyotoxicity control treatments to develop management strategies that allow fish production and prevent the spread of the alga into unaffected hatcheries and impoundments. Current control successes include treatments for ponds, water supply, and a hazard analysis and critical control point program. For pond treatment, ammonium sulfate (as 0.14-0.25 mg/l un-ionized ammonia nitrogen for temperatures above 15°C), copper sulfate (2 mg/l), Cutrine®-Plus (0.2-0.4 mg/l as copper), or potassium permanganate (3 mg/l above the potassium permanganate demand) controls P. parvum blooms. Copper sulfate at 1 mg/l controls P. parvum but is unable to eliminate ichthyotoxicity whereas potassium permanganate at 2 mg/l above the potassium permanganate demand controls ichthyotoxicity. For water treatment, ultraviolet (UV) light at 193-220 mJ/cm2 doses or ozone at 0.4-1.2 mg/l for 6 min destroy P. parvum cells and reduce or eliminate ichthyotoxicity. A combination UV and ozone treatment appears to provide the best results; however, successful treatments depend on dosage relative to cell density and toxin concentration. To prevent the spread of the alga, hatchery fish delivery units and equipment are cleaned with household bleach (10% solution for 15 minutes) or hydrogen peroxide (62.5-12,500 mg/l for 0.25-24 hours). These treatments are tailored to water quality conditions and the fish species cultured at affected TPWD hatcheries. We recommend that other users test these treatments before applying them to ponds or other impoundments containing fish or other aquatic life.  相似文献   
6.
Hagström, Johannes A., Mario R. Sengco, and Tracy A. Villareal, 2010. Potential Methods for Managing Prymnesium parvum Blooms and Toxicity, With Emphasis on Clay and Barley Straw: A Review. Journal of the American Water Resources Association (JAWRA) 46(1):187-198. DOI: 10.1111/j.1752-1688.2009.00402.x Abstract: Harmful algal bloom (HAB) control and mitigation is a complex problem in ecosystem management. Phytoplankton play an important role in aquatic ecosystems as primary producers and food sources for many commercially important shellfish and there are limited options for targeting just a single species within the community. Chemical treatments (e.g., algaecides), rotting barley straw, nitrogen and phosphorus manipulation, and clay and/or flocculants are but a few techniques tested or used to reduce fish kills or shellfish contamination during a HAB event. Prymnesium parvum control has focused on the use of chemicals, nutrient manipulation, and clay flocculation. However, many HAB control methods have been rejected due to their effects on ecosystems, high costs, or limited effects on target organisms. For example, rotting barley straw (Hordeum vulgare) is considered to be an environmentally friendly alternative, but has been found to have very different results on the phytoplankton community depending on the dominating taxa and is ineffective against P. parvum and dinoflagellate blooms. Clay flocculation is a useful control/mitigation technique during fish kills in marine aquaculture sites in South Korea and can be effective in freshwater if the correct combination of clay and flocculent is used. Toxins produced by P. parvum and Karenia brevis also bind to phosphatic clay, thereby removing and/or neutralizing the toxins, but there is concern that the clay will have a negative effect on sessile organisms. Some shellfish suffer high mortalities and significant impacts on somatic and reproductive tissue growth at high clay loads; however, benthic communities appear to be unchanged after five years of clay treatment in South Korea. There are likely site-specific and ecosystem-specific characteristics that make generalizations about control options difficult and require careful assessment of options at each location.  相似文献   
7.
为研究UV/US(Ultraviolet/Ultrasonic,紫外/超声)协同对水中隐孢子虫的灭活机制,采用UV灯(功率为14 W)与US发生器(频率为20 kHz,功率为150 W)组合装置协同灭活隐孢子虫,考察pH、温度、浊度和HA(腐殖酸)对UV/US协同灭活隐孢子虫的影响,并通过SEM(扫描电镜)、蛋白质试验和琼脂糖凝胶电泳检测对灭活机制进行了探讨.结果表明:pH对UV/US杀灭隐孢子虫的影响不大,碱性条件下灭活率略高于中性和酸性条件;温度对灭活率有一定影响,5℃下灭活率较低,随温度的上升,灭活率逐渐提高,25℃下10 min灭活率可达99%以上;悬浮物抑制隐孢子虫的灭活,浊度为40 NTU时,UV/US作用25 min的灭活率仅为93.88%;HA对灭活的影响表现为低浓度促进,高浓度抑制;ρ(HA)高于10 mg/L时,继续增大ρ(HA)对隐孢子虫灭活率影响不大.研究显示:UV/US协同作用对隐孢子虫的灭活机制主要是使其卵囊破裂,同时损伤了隐孢子虫胞内的DNA.   相似文献   
8.
为研究超声对饮用水中隐孢子虫(Cryptosporidium parvum)的灭活情况,考察了超声频率、功率、pH值和温度对灭活率的影响,通过形态学观察初步探讨了超声灭活隐孢子虫的机制,并进行了灭活动力学分析.结果表明,低频有利于隐孢子虫灭活,19.8kHz, pH7.2,温度(20±1)℃条件下超声15min灭活率可达92.5%,频率升高灭活率反而下降.在本实验条件下,超声功率103W对隐孢子虫的灭活效果与151W的相近,pH值对超声灭活隐孢子虫的影响不大,36℃超声灭活15min灭活率为95.6%,而在9℃下超声15min灭活率为88.3%,水温升高有利于灭活.灭活前后的形态学变化表明超声空化作用导致细胞膜破坏,细胞质流出从而起到灭活孢囊的效果.超声灭活隐孢子虫遵循假一级反应动力学,灭活隐孢子虫以低频率高功率的效果最好,可认为隐孢子虫的灭活以超声空化的强度为主.  相似文献   
9.
The fluorescence staining method and scanning electron microscopy (SEM) were used to study the effect of ozone (O3) inactivating Cryptosporidium in water and cell ultrastructures variation to shed light on the mechanism of inactivation preliminarily.Results indicated that O3 had a stronger inactivating capability.When the concentration of O3 was above 3.0 mg/L and the contact time was up to 7 min,a significant inactivating effect could be achieved.The turbidity on inactivation effects was also found to be statistically significant in artificial water.With increases in turbidity,the inactivating effect decreased.Inactivation rate improved with a temperature increase from 5 to 25°C,but decreased beyond this.The inactivating capability of O3 was found to be stronger under acidic than that under alkalic conditions.When the concentration of organic matter in the reaction system was increased,the competition between Cryptosporidium and organics with O3 probably took place,thereby reducing the inactivation rate.In addition,the cellular morphology of Cryptosporidium varied with different contact times.At zero contact time,cells were rotundity and sphericity,at 60 sec they became folded,underwent emboly,and burst at 480 sec,the cell membrane of Cryptosporidium shrinked and collapsed completely.  相似文献   
10.
 采用荧光微球模拟隐孢子虫和贾第鞭毛虫(简称两虫),考察了有机物和颗粒物的浓度、组成等水质特性对污水再生处理絮凝工艺中两虫去除特性的影响.结果表明,腐殖酸浓度增加可提高水样中胶体浓度,从而提高对两虫的去除率;而酪氨酸虽然能改变胶体表面性质,但不参与絮凝过程,故对两虫的去除率无明显影响.水样初始浊度对两虫去除率影响较小;但水样中颗粒物的粒径分布,特别是1nm~100μm粒子的比例与对两虫去除效果间存在较好的相关关系.  相似文献   
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