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51.
A new method for the characterization of chromophoric colloidal organic matter in seawater has been applied to samples from the Baltic Sea, Kattegatt and Skagerrak seas. Size fractionation of the sample by Flow Field-Flow Fractionation and measurement of the fluorescent and UV absorbing properties of the individual size fractions result in a relative molar mass distribution (RMM) of the optical properties. The RMM distributions have been used to estimate number and weight average relative molar masses, and polydispersity indices. At least two sources of coloured organic matter were identified from the ratio of fluorescence to UV: the Baltic surface water and the Skagerrak deep water. The dominating processes were mixing and dilution, but processes such as photo bleaching of fluorescence are also believed to be important. The RMM distribution derived from UV detection (1150–1300 Dalton) increased with increasing salinity while that derived for fluorescence (1500–1250 Dalton) decreased with increasing salinity. The specific UV absorbance taken as a proxy of the aromaticity of the chromophoric organic material showed decreasing trend with both increasing salinity and increasing UV derived weight average relative molar mass. Increasing polydispersity of the colloidal material was also observed as a function of salinity.  相似文献   
52.
海带中细胞激动素的纯化分离方法   总被引:1,自引:0,他引:1  
海带样品于 2 0 0 1年采自青岛太平角海湾 ,用三种不同方法处理样品 ,通过对实验方法及条件的筛选 ,确立了提取、纯化和分离海带中细胞激动素的方法步骤和流程。结果表明 ,最佳方法的基本步骤为 :( 1 )用甲醇∶水∶醋酸 ( 70∶ 30∶ 3,V/V/V)从海带组织中提取出细胞激动素 ,再用PVPP柱去除提取液中的酚类和其他杂质 ;( 2 )将提取液通过连在一起的PVPP柱、DEAE柱和C1 8柱 ,以纯化样品并同时从自由基、核苷、核苷酸和葡糖苷型细胞激动素混合物中分离出核苷酸型细胞激动素 ;( 3)用接有氨基柱的正相液相色谱进一步将葡糖苷型细胞激动素分离出来 ;( 4 )用C1 8液相色谱柱分离其他各种细胞激动素  相似文献   
53.
Abundance and distribution of phytoplankton in seawater at southwestern East/Japan Sea near Gampo were investigated by HPLC analysis of photosynthetic pigments during summer of 1999. Detected photosynthetic pigments were chlorophyll a, b, c1+2 (Chl a, Chl b, Chl c1+2), fucoxanthin (Fuco), prasinoxanthin (Pras), zeaxanthin (Zea), 19’-butanoyloxyfucoxanthin (But-fuco) and beta-carotene (β-Car). Major carotenoid was fucoxanthin (bacillariophyte) and minor carotenoids were Pras (prasinophyte), Zea (cyanophyte) and But-fuco (chrysophyte). Chl a concentrations were in the range of 0.16-8.3/land subsurface chlorophyll maxima were observed at 0-10m at inshore and 30–50 m at offshore. Thermocline and nutricline tilted to the offshore direction showed a mild upwelling condition. Results from size-fraction showed that contribution from nano+picoplankton at Chl a maximum layer was increased from 18% at inshore to 69% at offshore on average. The maximum contribution from nano+picoplankton was found as 87% at St. E4. It was noteworthy that contribution from nano+picoplanktonic crysophytes and green algae to total biomass of phytoplankton was significant at offshore. Satellite images of sea surface temperature indicated that an extensive area of the East/Japan Sea showed lower temperature (<18 °C) but the enhanced Chl a patch was confined to a narrow coastal region in summer, 1999. Exceptionally high flux of low saline water from the Korea/Tsushima Strait seemed to make upwelling weak in summer of 1999 in the study area. Results of comparisons among Chl a from SeaWIFs, HPLC and fluorometric analysis showed that presence of Chl b cause underestimation of Chl a about 30% by fluorometric analysis but overestimation by satellite data about 30-75% compared to HPLC data.  相似文献   
54.
本文采用PD、GPY、YES、SYE、GPM5种不同培养基培养海藻真菌菌株PT2,并对其在不同培养基中的生长情况、代谢产物的形成及抗肿瘤活性进行分析,旨在了解不同培养基对菌株生长和活性物质合成的影响.结果显示,PT2菌株在不同培养基上的培养特征及生长速率有所不同,液体培养基发酵液抽提物的抗肿瘤活性也有较大差别,其中SYE发酵液抽提物活性最强,对KB、Raji和Hela 3种肿瘤细胞的IC50分别为7.6μg/cm^3、2.4μg/cm^3和3.3μg/cm^3.采用HPLC法对不同抽提物进行分析,发现它们之间的组成成分有显著差异.本文的实验结果表明,不同培养基对该菌株的生长及活性代谢产物的合成具有显著的影响。  相似文献   
55.
高效液相色谱法测量海洋浮游植物色素浓度   总被引:2,自引:1,他引:2  
JGOFS计算和SeaWiFS计划推荐高效液相色谱(HPLC)作为海洋浮游植物色色浓度的测量方法。文章参考SeaWiFS计划制定的HPLC分析规范,叙述采用反相C18ODS色谱柱、996PDA、自动进样器(未配柱温箱)和三元梯度的色谱法测量海洋浮游植物色素浓度的具体实践。  相似文献   
56.
At the circular Babi Island in the Flores tsunami (1992) and pear shaped island in the Okushiri event (1993), unexpectedly large tsunami run‐up heights in the lee of conic islands were observed. The flume and basin physical model studies were conducted in the Coastal Hydraulic Laboratory, Engineering Research and Development Center, U.S. Army Corps of Engineers to provide a better understanding of the physical phenomena and verify numerical models used in predicting tsunami wave run‐up on beaches, islands, and vertical walls. Reasonably accurate comparison of run‐up height of solitary waves on a circular island has been obtained between laboratory experimental results and two‐dimensional computation model results. In this study we apply three‐dimensional RANS model to simulate wave run‐up on conical island. In the run‐up computation we obtain that 3D calculations are in very good comparison with laboratory and 2D numerical results. A close examination of the three‐dimensional velocity distribution around conical island to compare with depth‐integrated model is performed. It is shown that the velocity distribution along the vertical coordinate is not uniform: and velocity field is weaker in the bottom layer and higher on the sea surface. The maximum difference (about 40%) appears at the time when solitary wave reached the circular island.  相似文献   
57.
2003年8月,我们利用高效液相色谱法(HPLC)对浮游植物色素进行分类定量分析。结果表明青海湖的叶绿素类以叶绿素a和b为主,叶绿素a浓度最高;光合作用类胡萝卜素种类极少,浓度很低;光保护色素种类较多,浓度较高,其中以Zea,Diadino,β.β-Car和Viola为主。  相似文献   
58.
大亚湾水域两种拟菱形藻的形态学鉴定及毒素分析   总被引:2,自引:0,他引:2  
对2005年分离自广东大亚湾的两种潜在产毒拟菱形藻进行了形态学观察和毒性分析.通过透射电子显微镜(TEM)观察确认藻种为细弱拟菱形藻(Pseudo-nitzschia cuspidata)和多纹拟菱形藻(P.multistriata).采用高效液相色谱法(HPLC)对这两种藻的常规培养样进行软骨藻酸毒素检测,结果均未检测到软骨藻酸.鉴于以上两种拟菱形藻存在着潜在产毒特性,不同培养条件的诱导实验尚需继续.  相似文献   
59.
在紫外线老化前后,利用光电子能谱(XPS)研究了分别添加金红石型和锐钛型纳米TiO2的氯醚树脂。研究发现,氯醚树脂中氯、氧元素具有表面富积现象——趋肤效应,而钛和碳元素在内层聚集;添加颜料粒子越小,在表面含量越大;金红石型纳米二氧化钛紫外屏蔽性好,减缓树脂老化;而锐钛型纳米二氧化钛具有显著的光催化活性,加速树脂老化。因此,金红石型纳米二氧化钛将是一种有前途的紫外线吸收剂。  相似文献   
60.
硫酸皮肤素寡糖的分离与制备   总被引:2,自引:0,他引:2  
利用软骨素酶 ABC (Chondroitinase ABC,EC4 .2 .2 .4 )对硫酸皮肤素 (Dermatan Sul-fate,DS)进行控制降解。对得到的混合寡糖首先采用低压凝胶渗透色谱 (L PGPC)进行分级 ,然后对每一组分再利用强阴离子交换高压液相色谱 (SAX- HPL C)进行分离 ,最终制备出聚合度为 2 ,4 ,6 ,8,10 ,12的寡糖纯品。寡糖纯度采用 SAX- HPL C,毛细管电泳 (CE)以及聚丙烯酰胺凝胶电泳(PAGE)进行检验 ,结构采用电喷雾离子化质谱 (ESI- MS)以及核磁共振波谱 (NMR)技术确定  相似文献   
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