membrane conductivity

membrane conductivitymembrane conductivity
  1. Seabuckthorn relative membrane conductivity and osmotic adjustment under drought stress

    干旱胁迫下沙棘叶片细胞膜透性与渗透调节物质研究

  2. The plasticizer has obvious influence on the potential response and membrane conductivity of the electrode .

    增塑剂对电极的电位响应及膜电导有明显的影响。

  3. Photosynthetic rate , relative cell membrane conductivity , proline content and stomatal open state were determined in field plants than test-tube plantlets of almond ( Amygdalus communis ) .

    对扁桃砧木Hansen试管苗和大田苗的光合速率、细胞膜透性、脯氨酸含量、气孔的开张度进行了测定。

  4. The affecting factors of measuring the area resistance of ion-exchange membrane with conductivity method

    影响电导率法测定离子交换膜的面电阻的因素

  5. In case of no effects on the mechanical strength , the obtained composite membrane had higher conductivity than the PBI membrane with the same phosphoric acid doping level .

    在不影响机械性能的前提下,与相同磷酸掺杂水平的PBI膜相比,PBI/ABPBI复合膜的电导率有一定程度的提高。

  6. The results revealed that by in suit polymerization with a squeezed BC , the prepared BC / PANI membrane has high conductivity ( 0.19S / cm ) and excellent mechanical properties . 2 .

    结果表明,将BC进行压水处理并使用原位聚合法制备出的BC/PANI复合膜不仅具有较高的电导率(0.19S/cm),同时力学性能也十分优异。

  7. Under the treatment of the extracts of Xanthium sibiricum for a period , the conductivity showed a increasing trend , Which showed the extracts of Xanthium sibiricum could result in leakage of inclusion of mycelium and change of penetrability of cell membrane to make conductivity increase .

    将番茄灰霉菌加入苍耳提取物培养一定时间后,培养基的电导率明显增加,苍耳提取物能引起菌丝细胞膜透性发生变化,造成番茄灰霉菌菌丝体内含物的渗漏,从而导致液体培养基电导率增加。

  8. Fabrication of Single Proton Exchange Membrane Fuel Cell and Conductivity Measurement of the Membrane Electrolyte

    质子交换膜燃料电池单电池的组装及膜电解质电导率的测定

  9. Study on Oxygen Selective Permeation Membrane with Mixed Ionic-Electronic Conductivity

    混合导电体型氧透膜材料的研究

  10. It was found that crude toxin of 2 × 10 ~ 3 μ gg ~ ( - 1 ) or culture filtrate could damage leaf cell membrane according to electric conductivity assay .

    电导测定证明,2×10~3μgg1的粗毒素和培养液都可引起叶片细胞膜损伤。

  11. After gelled by adding liquid electrolytes , these pores were retained . When there are more pores in the polymer membrane , the ionic conductivity can be higher .

    在加入电解液形成凝胶聚合物电解质以后,孔道结构获得保留。孔越多,电导率越高。