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1.
随着船舶压载水的转运,我国面临严重的外来入侵生物风险,其中部分赤潮藻形成的孢囊可成为赤潮的"种源",严重危害近岸海洋环境,因而快速有效地杀灭赤潮藻孢囊至关重要。本文利用大气压强电离放电高效生成的羟基自由基(·OH),对典型赤潮藻锥状斯氏藻孢囊进行杀灭研究。采用萌发实验、SYTOX Green荧光染色法确定·OH杀灭锥状斯氏藻孢囊的阈值和时间,扫描电子显微镜观察孢囊的形态变化。结果表明,·OH杀灭孢囊的CT阈值为0.49 mg·min/L,时间为10 s,·OH氧化降解孢囊体内叶绿素,破坏DNA,抑制萌发,具有其他方法无法比拟的优势。因此,·OH快速杀灭赤潮藻孢囊的新方法,对防控外来入侵生物引发的海洋赤潮灾害具有重要的作用。  相似文献   

2.
针对化学药剂和粘土絮凝法治理赤潮存在的问题,2002年8月在胶州湾近岸进行了海上围隔杀灭赤潮生物的试验。采用强电离放电的物理方法,将空气中O2和海水中H2O电离离解成OH等自由基,溶解到一部分海水中形成高浓度的羟基溶液,喷洒在围隔内水面上,其比值浓度为4.2mg/L。当海水中羟基浓度达到0.68mg/L时,赤潮生物叶绿素α含量低于检测的最低值。24h后检测杀死灰甲多甲藻、光甲多甲藻、多纹膝沟藻等33种赤潮生物,其致死率达99.8%,其中藻类孢子的致死率达100%,海水水质亦有明显的改善。试验结果表明,羟基溶液是目前治理赤潮可行的、有效的新方法。  相似文献   

3.
本研究采用大气压下强电离放电协同气液混溶技术,高效制备羟基自由基(·OH)杀灭3个门的典型有害赤潮物种,使用荧光染色、测定光合作用潜能等生物学检测方法确定·OH致死阈值。结果表明,5.05×104 cells/mL的赤潮异弯藻(Heterosigma akashiwo)、5.28×104 cells/mL的亚历山大藻(Alexandrium tamarense)和5.02×104 cells/mL的中肋骨条藻(Skeletonema costatum),其致死阈值分别为1.24 mg/L、2.01 mg/L、1.12 mg/L,此时其叶绿素a分解率分别为77%、85%和74%。利用光学显微镜观察,处理前后藻细胞结构有明显的改变。因此,·OH致死方法可有效地杀灭压载水中的有害赤潮藻。  相似文献   

4.
锥状斯氏藻休眠孢囊萌发调控因子的实验室研究   总被引:1,自引:0,他引:1       下载免费PDF全文
锥状斯氏藻Scrippsiella trochoidea是一种常见赤潮种类, 为了了解影响锥状斯氏藻孢囊萌发的内外在调控因子, 在实验室条件下研究了不同温度(15、20和25℃)、储存温度(4、15、20和25℃)、储存时间(30和60d)、营养盐含量(N: 500μg·L-1, P: 74―1.5μg·L-1;P: 74μg·L-1, N: 100―10μg·L-1)以及缺氧对锥状斯氏藻休眠孢囊萌发的影响.锥状斯氏藻孢囊的强制性休眠期在15-25d, 不同温度下孢囊最终萌发率差别不大, 为75%―82%, 但低温可减缓孢囊的萌发速度.高温(25℃)和长时间保存(30d以上), 可导致萌发率明显降低.N、P营养盐对孢囊萌发影响不明显, 缺氧和黑暗能完全抑制锥状斯氏藻的孢囊萌发.结果表明: 锥状斯氏藻孢囊较短的强制性休眠期和高萌发率, 使其孢囊在广东沿海全年各季节均具有一定的萌发能力, 并造成该藻赤潮的循环发生;同时, 当孢囊悬浮至溶氧丰富、光线合适的上层水体, 才能促进孢囊大量萌发, 从而引发赤潮.  相似文献   

5.
羟基游离基杀死压载水中微生物研究   总被引:9,自引:0,他引:9       下载免费PDF全文
利用介质阻挡强电离放电的方法,将空气中的O2和海水中H2O电离离解成OH等氧化自由基,溶于海水中形成高浓度羟基药剂。羟基致死压载水中入侵的细菌、微藻生物的反应属于游离基反应,具有广谱致死特性,在压载水外排(或输入)过程中就可致死入侵微生物,不存在药剂污染海洋环境等问题。实验室研究结果表明:致死微生物的羟基阚值为O.8mg/L。  相似文献   

6.
为阐明红色赤潮藻(Akashiwo sanguinea)对氮营养条件的适应机制,本研究在不同氮浓度条件下对红色赤潮藻进行一次性培养,系统研究了氮浓度对红色赤潮藻生长、休眠孢囊形成和细胞生源要素组成的影响。结果显示,红色赤潮藻生长率随着初始氮浓度的增加而增大, 200μmol/L氮添加组生长率最大,为0.79/d。不同氮处理组细胞形态存在差异,低氮条件下藻细胞个体变小。培养第6天,各氮处理组均观察到休眠孢囊,且随着培养时间的延长,孢囊数量逐渐增多;50μmol/L氮添加组孢囊形成率最高,为2.95%±0.16%。氮浓度对红色赤潮藻细胞生源要素组成有显著影响,红色赤潮藻胞内碳、氮含量随氮浓度的升高而增加,其C:N:P也随氮浓度的增加而增加。红色赤潮藻生长过程中,加氮处理组细胞在指数期碳、氮、磷含量较低,稳定期含量较高;相关性分析表明,红色赤潮藻胞内碳、氮、磷含量与藻生长率之间呈显著负相关关系(P 0.05)。不同氮浓度对红色赤潮藻的生长、休眠孢囊形成和藻细胞生源要素组成有显著影响,为揭示红色赤潮藻对氮营养条件的适应机制提供参考。  相似文献   

7.
硅藻病毒研究进展   总被引:1,自引:0,他引:1  
<正>硅藻不仅分布广,而且在水域中占很大优势,是海洋生态系统初级生产者浮游植物的主要成员,其生产率在贫营养化与富营养化水体中分别达到35%和75%[1],是主要的赤潮藻[2]和重要的海洋污损生物[3]。赤潮是公认的海洋环境灾害,对海洋渔业生产和海洋生态平衡表现出很强的破坏性。赤潮治理常用物理、化学方法,物理治理工程量大、运作周期长、一次性投入成本高,化学治理容易造成二次污染。海  相似文献   

8.
模拟压载水排放过程,以球等鞭金藻为实验对象,进行了羟基处理20t/h压载水的中试实验。在高气压强电场作用下,将O2,H2O电离离解成OH^*等强氧化自由基,在分子层次上加工高浓度羟基等自由基溶液,泵入压载水主管道进行在线治理。实验结果表明羟基溶液在比值浓度为0.55mg/L时,在很短的排放管道中,就可以有效地抑制和杀死球等鞭金藻,分解叶绿素、氨基酸等。  相似文献   

9.
对1998年4月15日采集于广东珠江口万山群岛桂山岛网箱养殖区的赤潮活体水样和福尔马林固定样品进行优势种的形态分类和生物学特征的研究.结果发现,三宅裸甲藻(Gymnodinium mikimotoi)是此次赤潮的最优势种,最高密度达到7.6×106cells/L.另两种优势种为斯氏多沟藻(Polykrikos schwartzii)和螺旋螺沟藻(Gyrodinium spirale),其最高密度分别达到1.1×105cells/L和104-105cells/ L.此次赤潮的原因生物都属于裸甲藻类,死后或用福尔马林固定后细胞要么立即裂解,要么变形缩小.有些种类如螺旋螺沟藻在固定样品中找不到其踪迹,因而无法精确计数.本文描述的3种赤潮藻在细胞、色素体、核、上锥沟和链状群体等形态构造及外观上与国外学者所描述的几乎完全一致,只是细胞比日本海域产的稍小.这可能与珠江口海域纬度较日本低有关.电镜照片显示三宅裸甲藻有一明显的上锥沟,斯氏多沟藻则营养细胞和孢囊同时存在.  相似文献   

10.
庞勇  聂瑞  吕颂辉 《海洋科学》2016,40(4):59-64
为了解米氏凯伦藻(Karenia mikimotoi)赤潮形成的磷营养机理,作者研究了不同磷源[三磷酸腺苷二钠盐(Adenosine disodium triphosphate,ATP)、甘油磷酸钠(sodium glycerophosphate,G-P)、卵磷脂(lecthin,LEC)和Na H2PO4·2H2O]对其生长和藻细胞碱性磷酸酶活性(alkaline phosphatase activity,APA)的影响。结果表明:(1)米氏凯伦藻可以有效利用无机磷(Na H2PO4·2H2O),对有机磷源如三磷酸腺苷二钠盐(ATP)、甘油磷酸钠(G-P)也能有效利用,但不能有效利用卵磷脂(LEC);(2)米氏凯伦藻碱性磷酸酶的检测中,在起始阶段,不同磷源(ATP,G-P,LEC和Na H2PO4·2H2O)的米氏凯伦藻APA达到最大值,米氏凯伦藻的APA分别为6.0,10.5,8.0和0.4 pmol/(个·h)。随培养时间的持续,各有机磷培养基中米氏凯伦藻的APA均表现出先逐渐减小,而后增强,最后在最大值维持的趋势,而以Na H2PO4·2H2O为磷源的米氏凯伦藻的APA没有明显的增加;(3)单个细胞的米氏凯伦藻的APA位点分布明显,大致位于细胞表面。通过研究发现,米氏凯伦藻在外界环境无机磷限制的条件下,能够较好地吸收利用有机磷维持生长,印证了近年来米氏凯伦藻赤潮频繁地发生在磷限制海域的事实。  相似文献   

11.
近年来应用微型围隔生态实验探讨了浮游植物多样性与表观增氧量(AOI)的关系及其在赤潮预警与评价中的应用。结果显示,在赤潮发生过程中,浮游植物多样性与生物量(以AOI计)存在显著的相关关系。多样性指数H'与AOI呈密切的负相关关系,优势度D2呈密切的指数正相关关系。该研究以赤潮预警与评价的AOI参考指标为依据,利用H'和D2与AOI的相关模式,提出了赤潮预警与评价的H'和D2的指标值,赤潮预警的H'和D2指标分别为0.72和0.36,赤潮判别的H'和D2指标分别为0.66和0.51。  相似文献   

12.
The biomass and productivity of phytoplankton populations inshore on the west coast of South Africa were investigated towards the end of the upwelling season, a period when high-biomass dinoflagellate blooms are common. Productivity was estimated from natural fluorescence measurements (PNF ), using photosynthesis (P) v. irradiance (E) relationships (PE ) and by means of the in situ 14C-method (PC ) A linear regression of PNF productivity against PC and PE productivities yielded a slope of 0.911 and an r 2 of 0.83 (n = 41). Physical and biological variability was high inshore, reflecting alternating periods of upwelling and quiescence. Mean chlorophyll inshore (within a 12 m water column) ranged from 0.7 to 57.8 (mean = 8.9) mg·m&minus3, mean PNF productivity ranged from 8.4 to 51.0 (mean = 24.6) mgC·m?3·h?1 and daily integral PNF productivity from 0.8 to 4.8 (mean = 2.3) gC·m?2·day?l. Transects sampled during active and relaxation phases of upwelling had different chlorophyll distributions. High chlorophyll concentrations (sometimes >50 mg·m?3) were associated with surface blooms within the region of the upwelling front. Estimates of daily water-column PNF productivity within these frontal blooms ranged from 4.0 to 5.6 gC·m?2·day?1. With relaxation of wind stress, blooms dominated by dinoflagellates flooded shorewards and often formed red tides. Chlorophyll concentrations of > 175 mg·m?3 and productivity rates > 500 mgC·m?3·h?1 and 12 gC·m?2·day?1 were measured during a particularly intense red tide. Offshore, the water column was highly stratified with a well-defined subsurface chlorophyll maximum layer within the pycnocline region. Estimates of daily water-column PNF productivity ranged from 2.4 to 4.0 gC·m?2·day?1 offshore. The high productivity of shelf waters on the West Coast in late summer can be ascribed largely to dinoflagellate populations and their success in both upwelling systems and stratified conditions.  相似文献   

13.
Extensive bloom of red tide, accompanying mass mortality of fish and the other animals, occurred in Bingo-Nada, the Seto Inland Sea, in August, 1970. Two species of microorganisms,Eutreptiella sp. andExuviaella sp., were isolated from the water and were obtained in axenic culture by micropipette washings.These organisms are stimulated by trace metals. The highest growth resulted from the addition of chelated Fe (<3 mg/l) or/and Mn (<2 mg/l) to enriched sea water. The organisms prefer low salinity. The optimal salinities are Cl 8.0–17.0 forEutreptiella sp., Cl >11.0 forExuviaella sp. respectively. These organisms can tolerate a wide range of pH.Exuviaella sp. needs vitamin B12 for growth. The pattern of specificity toward B12 analogues2) is similar to that ofEuglena gracilis. On the other hand,Eutreptiella sp. requires B12, biotin, and thiamine. The B12 specificity fits toEscherichia coli. Both organisms prefer NH4-N in lower concentrations than 1 mg/l (optimal 0.3 mg/l) as nitrogen sources.Exuviaella sp. also likes urea. Inorganic and organic phosphates are utilized by the organisms:Eutreptiella sp. utilizes Na2-glycerophosphate, guanylic acid,Exuviaella sp. utilizes Na2-glycerophosphate, adenylic acid. KH2PO4 is the most favorable to the growth of both organisms. All the purines, pyrimidines, plant hormones tested increase the growth ofExuviaella sp. Especially, guanine, xanthine, thymine, indoleacetic acid, and gibberellic acid promote the growth remarkably.These organisms do not grow to high densities without Fe or/and Mn in high concentrations even under the conditions provided by optimal temperature, salinities, pH, and essential nutrients. On the other hand, the coastal area of Fukuyama where the red tide first occurred has been fertilized with the nutrients essential to the organisms, and also polluted with trace metals such as Fe (Iwasaki, Inoue unpublished data). From these results, it can be considered that the great increase of the organisms is caused principally by the high concentration of iron in the sea water.  相似文献   

14.
大鹏湾赤潮多发区的叶绿素a分布与环境关系初探   总被引:19,自引:2,他引:19  
根据1990-1991年大鹏湾盐海田域4个测站的观测资料分析结果表明,大鹏湾赤潮我发区海水中叶绿素α含量的测值范围为0.06-8.28mg/m^3,平均为1.33mg/m^3。季切平均值以春,秋季较高,夏,冬季较低;表层的叶绿素α含量稍高于底层。采用多元逐步回归分析得知,影响叶绿素α含量变化的主要因子是Fe,COD,s,其次是DO,t,Tb;此,Mn,Si(OH)4,PO4,NO2与叶绿素α的分布  相似文献   

15.
收集了1990年—2019年长江口及其邻近海域(120°30'E~123°30'E,29°00'N~32°30'N)记载的赤潮事件,基于GIS软件对所有赤潮事件进行整理,分析了赤潮的时空分布规律,并绘制长江口及邻近海域赤潮分布图.结果表明:近30年来,长江口及其邻近海域赤潮经历了先升高后下降的过程,赤潮次数共计144次,赤潮面积>1000 km2有28次.赤潮发生核心区集中在长江口外、花鸟山-嵊泗列岛、岱山岛-中街山列岛、舟山岛-朱家尖岛海域;长江口及邻近海域赤潮多发期为5—8月,5、6、7、8月发生的赤潮次数分别占总数的28.37%、34.75%、17.78和9.29%;东海原甲藻(Prorocenrum donghaiense)、中肋骨条藻(Skeletonema costatum)是长江口及其邻近海域最常见赤潮肇事种,发生次数分别为55次和40次,占统计总次数的38.19%和27.78%,2000年以来,东海原甲藻赤潮发生频率呈上升态势.  相似文献   

16.
 Hydrothermal vent fields south of the Garret Fracture zone were sampled for the isotope composition of helium and oxygen ([18O]H2O/[16OH2O). The helium isotopes end-member (3He / 4He=8.3×R a and [4He]≈1.2–2.4×10-5 cm3 STP g-1) is quite similar to other known hydrothermal sites pointing to the homogeneous helium composition of the upper mantle. The δ18O end-member value (δ18O≈0.5–0.6‰) confirms previous suggestions from other sites and from isotope modeling, that hydrothermal fluids are slightly enriched in 18O relative to the ocean as a result of water–rock interactions at high temperature. Received: 11 December 1995/Revision received: 20 December 1996  相似文献   

17.
有害赤潮对海洋生态环境和沿海经济危害巨大,如何安全、有效地治理有害赤潮非常重要。文章考察了几种常见芽孢杆菌对近海典型赤潮生物——东海原甲藻(Prorocentrum donghaiense)的去除作用,发现解淀粉芽孢杆菌(Bacillus amyloliquefaciens)对其去除作用最强。进一步考察解淀粉芽孢杆菌对不同赤潮生物的去除作用,发现该芽孢杆菌对米氏凯伦藻(Karenia mikimotoi)和赤潮异弯藻(Heterosigma akashiwo)的去除作用高于东海原甲藻。在此基础上,将解淀粉芽孢杆菌与高岭土复合,研究了微生物复合粘土对典型赤潮生物的去除效果。结果表明,解淀粉芽孢杆菌与高岭土复合后,能够有效促进该菌的生长,进而提升了其对赤潮生物的去除能力。文章对芽孢杆菌及其复合粘土去除赤潮生物的机制进行了分析和探讨,为进一步发展和优化改性粘土治理赤潮技术体系提供了重要参考。  相似文献   

18.
Abstract. The biomass of the endolithic algae Ostreobium quekettii Phyllosiphoniaceae living within skeletons of the scleractinans Mycedium elephantotus and Leptoseris fragilis averages 300 μg protein. cm-2. This represents approximately 7% of the protein of the zooxanthekie-containing tissue of M. elephantotus and approximately 38% of that of L. fragilis. Oxygen production Pmaxnet of 0. querkettii in bare skeletons of M. elephantotus averaged 0.7 μg O2.cm-2· h-1 measured in large skeletal fragments. This amount is approximately 6% of the productivity of the zooxanthellae Symbiodinium microadriaticum living in the same scleractinian species at the same depth Pmaxnet 11 μg O2· Cm-2· h-1. Light compensation of O. quekettii - within skeletons - was reached at approximately 10 and saturation at 35 40 μE·m-2· s-1. Algae within the M. elephantotus skeletons receive a maximum of 4–6% of the ambient irradiance, which is approximately 0.9 μE · m-2· s-1 approximately 0.04% surface irradiance at a depth of 88 m. In L. fragilis at a depth of 145 m, the photon flux decreases to 0.3 μE·m-2· s-1, which is less than 0.004% of surface intensity. With increasing depth, the ratio of Chl b to Chl a increased in endolithic algae colonizing L. fragilis, indicating improvement of light harvesting under low light conditions. In free-living O. quekettii cultured at irradiance levels from 0.5–60 μE·m-2· s-1, the concentrations of chlorophylls increased and that of siphonein and β-carotene decreased with decreasing photon flux.  相似文献   

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