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鼠李糖脂对东海典型甲藻赤潮生物生长抑制作用的影响   总被引:1,自引:0,他引:1  
探讨了铜绿假单胞菌产鼠李糖脂类生物表面活性剂对东海典型甲藻赤潮生物锥状斯式藻(Scrippsiella trochoidea)、塔玛亚历山大藻(Alexandrium tamarense)、海洋原甲藻(Prococentrum marinum)和微小原甲藻(P.minium)生长的抑制作用,并对其不同抑制作用的机理进行了初步探讨.结果表明,鼠李糖脂在一定浓度范围内对几种甲藻的生长表现出明显的抑制作用,对几种甲藻生长抑制作用的强弱顺序为:锥状斯式藻>微小原甲藻>塔玛亚历山大藻>海洋原甲藻.对不同属的甲藻,这种抑制作用可能与藻细胞本身表面的附属物、内部物质组成及个体大小有关;而对于同一属的甲藻则与各甲藻的生物膜脂肪酸组成尤其是其多不饱和脂肪酸的含量有关,即甲藻的多不饱和脂肪酸含量越低,鼠李糖脂对藻细胞生长的抑制作用越明显,反之亦然.图1表2参18  相似文献   
2.
Gu  Jiyi  Shan  Yuqi  Liu  Chao  Liu  Xingnian 《Environmental Fluid Mechanics》2019,19(2):475-493
Environmental Fluid Mechanics - Laboratory experiments were performed to investigate how flow patterns and bed morphology are affected around a submerged vegetation patch in the condition without...  相似文献   
3.
Li  Fujian  Shan  Yuqi  Huang  Sheng  Liu  Chao  Liu  Xingnian 《Environmental Fluid Mechanics》2021,21(2):483-501
Environmental Fluid Mechanics - Experiments were conducted in a straight channel that widens from a single channel to a compound channel based on a real navigation channel with a similar shape in a...  相似文献   
4.
Yan  Chunhao  Shan  Yuqi  Sun  Wei  Liu  Chao  Liu  Xingnian 《Environmental Fluid Mechanics》2020,20(6):1441-1462

This paper proposes a model for predicting the longitudinal profiles of streamwise velocities in an open channel with a model patch of vegetation. The governing equation was derived from the momentum equation and flow continuity equation. The model can estimate the longitudinal profiles of velocities both inside and outside a vegetation patch. Laboratory experiments indicate that the longitudinal profiles of velocities inside a patch and in the adjacent bare channel have the same adjustment distance in the longitudinal direction, but the profiles have different trends because the vegetation drag drives the flow from the patch to the adjacent bare channel. The model considers different dimensionless parameters in two flow adjustment regions upstream of and inside the patch. Sixteen sets of experimental data from different sources are used to verify the model. The model is capable of modeling the longitudinal profiles of velocities inside and outside patches of cylinders or cylinder-like plants. Compared to a previous model, the current model improves the modeling accuracy of longitudinal profiles of velocities.

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