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extinguishing mechanism
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  “extinguishing mechanism”译为未确定词的双语例句
    Studies on Growth of Alexandrium sp.LC3 and Extinguishing Mechanism by Cupric Glutamate
    赤潮藻亚历山大藻LC3培养及谷氨酸铜对其灭除机制研究
短句来源
    Study of the extinguishing mechanism of povidone-iodine and isothiozolone
    碘伏和异噻唑啉酮灭杀球形棕囊藻机理的初步研究
短句来源
    The effects of povidone-iodine and isothiozolone on the Phaeocystis globosa's chlorophyl α, protein and SOD enzyme were studied, and the modality of the algae cell was observed by SEM to understand the extinguishing mechanism of algaecide.
    通过研究碘伏和异噻唑啉酮对球形棕囊藻叶绿素α、蛋白质和超氧物歧化酶(SOD)的影响,并使用扫描电子显微镜观察棕囊藻的形态结构的破坏情况,初步探讨了这两种除藻剂单独作用和复配使用时灭杀球形棕囊藻的机理.
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  extinguishing mechanism
Fire-extinguishing mechanism and energy procedure by high velocity airflow
      
The reason for this is that the primary extinguishing mechanism is the evaporation of the droplets in the flame zone.
      
The extinguishing mechanism that dominates varies with the type of fuel involved and the ventilation conditions.
      
The extinguishing mechanism by which the halons extinguish fires is not yet fully understood.
      
The fire may also be extinguished by cooling the fuel, but as with class A fires, this is not the main extinguishing mechanism of water mist.
      
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The effects of povidone-iodine and isothiozolone on the Phaeocystis globosa's chlorophyl α, protein and SOD enzyme were studied, and the modality of the algae cell was observed by SEM to understand the extinguishing mechanism of algaecide. The result showed that povidone-iodine and isothiozolone can react with the Phaeocystis globosa's chlorophyl α, protein and SOD enzyme to destroy the metobolism of the cell and kill the cell.

 通过研究碘伏和异噻唑啉酮对球形棕囊藻叶绿素α、蛋白质和超氧物歧化酶(SOD)的影响,并使用扫描电子显微镜观察棕囊藻的形态结构的破坏情况,初步探讨了这两种除藻剂单独作用和复配使用时灭杀球形棕囊藻的机理.实验研究结果表明,碘伏和异噻唑啉酮通过与藻类的叶绿素、蛋白质和酶等反应,使细胞代谢异常,从而杀死藻体.

Cupric glutamate was studied as a novel algicide for marine harmful algae and hexadecyltrimethyleamine bromide(HDTMAB) as an accelerant.The studies on the extinguishment of Alexandrium sp.by cupric sulfate or cupric glutamate showed that cupric glutamate had a higher extinguishing rate than cupric sulfate.Cupric glutamate had an excellent ability to inhibit the growth of Alexandrium sp.,but the inhibition efficiency did not increase with higher cupric glutamate concentration.HDTMAB could stimulate the extinguishments...

Cupric glutamate was studied as a novel algicide for marine harmful algae and hexadecyltrimethyleamine bromide(HDTMAB) as an accelerant.The studies on the extinguishment of Alexandrium sp.by cupric sulfate or cupric glutamate showed that cupric glutamate had a higher extinguishing rate than cupric sulfate.Cupric glutamate had an excellent ability to inhibit the growth of Alexandrium sp.,but the inhibition efficiency did not increase with higher cupric glutamate concentration.HDTMAB could stimulate the extinguishments by cupric glutamate obviously.There was a positive correlation between concentration of HDTMAB and increasing effect.Study of the mechanism of the extinguishment of Alexandrium sp.showed that cupric glutamate stimulated the production of MDA and reduced the content of sulfhydryl group.The lipid peroxidation level in cells was higher under cupric glutamate-surfactant joint operation than cupric glutamate alone.In addition of the content of sulfhydryl group decreased significantly,plasma membrane permeability of leaked cell solution was increased.These indicated the extinguishing mechanism: the cell membrane was damaged followed by the inhibition of the cell growth.

对一种新的赤潮杀灭剂谷氨酸铜及促进剂阳离子表面活性剂十六烷基三甲基溴化铵(HDT-MAB)进行了初步研究.比较了硫酸铜及谷氨酸铜对亚历山大藻的去除效果;结果表明,谷氨酸铜对亚历山大藻的灭杀效率优于硫酸铜,谷氨酸铜可明显抑制亚历山大藻细胞的生长,但抑制作用并不随谷氨酸铜浓度加大而增强,HDTAMB可明显促进谷氨酸铜对亚历山大藻的去除,且促进作用基本随着HDTMAB浓度的提高而增强.对谷氨酸铜和HDTMAB杀灭赤潮的机制进行了初步探讨;研究发现,谷氨酸铜可促使藻细胞MDA含量升高,并使巯基含量下降,且在谷氨酸铜和HDT-MAB复合作用下,膜脂过氧化水平大大高于单纯谷氨酸铜作用下的水平,细胞中巯基含量显著降低,细胞膜透性增大,这表明谷氨酸铜和HDTMAB杀灭赤潮的机制是使藻细胞膜受到损伤,进而抑制藻细胞生长.

 
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