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1)  EOW
高氧化还原电位酸性水
1.
OBJECTIVE: To observe the effects of EOW in the treatment of RAU.
目的:观察高氧化还原电位酸性水(EOW)应用于复发性口腔溃疡(RAU)的疗效。
2)  electrolyzed oxidizing water
高电位氧化还原水
1.
Through time control in producing EOW(electrolyzed oxidizing water) and rinsing,ideal effect could be achieved for endoscopic disinfection.
选用高电位氧化还原水作为消毒剂,设计特殊的超声清洗槽。
2.
The influence of ultrasound on germicidal effect of electrolyzed oxidizing water(EOW) was observed adopting suspension method to test the germicidal effect of EOW,ultrasound,and the coordination of both respectively.
观察超声波对高电位氧化还原水的微生物杀灭作用的影响。
3)  alkaline redox potential water(ARPW)
碱性氧化还原电位水(ARPW)
1.
This study investigates Compressive strength,pore structure and carbonation properties of concrete mixed with alkaline redox potential water(ARPW) were investigated.
研究了用碱性氧化还原电位水(ARPW)拌和混凝土的抗压强度、孔结构和碳化性能。
4)  Oxidation-reduction potential water
氧化还原电位水
5)  Electrolyzed oxidizing water
酸性氧化电位水
1.
Progress in preparation and sterilizing mechanism of electrolyzed oxidizing water;
酸性氧化电位水制备和杀菌机理的研究进展
2.
A new way to prepare electrolyzed oxidizing water;
酸性氧化电位水制备新工艺
3.
The application of electrolyzed oxidizing water in the treatment of hand-foot-mouth disease;
酸性氧化电位水用于手足口病辅助治疗的初步偿试
6)  Redox potential
氧化还原电位
1.
Effect of redox potential regulation on the succinic acid production by anaerobic fermentation of Actinobacillus succinogenes;
氧化还原电位调控对Actinobacillus succinogenes厌氧发酵产丁二酸的影响
2.
Effect of redox potential regulation on metabolic flux distribution of succinate production by Actinobacillus succinogenes
氧化还原电位调控对产琥珀酸放线杆菌代谢通量分布的影响
3.
Under the 800 mm/d of hydraulic loading,the redox potential characteristics,the numbers of aerobic microorganisms,oxygen consumption rates,the distribution of oxidoreductase activities of different layers in the medium scale plot system of the integrated vertical-flow constructed wetland(IVCW) were studied.
结果表明:各功能层面的氧化还原电位、好氧微生物数量、耗氧速率表层最高,并且随着基质深度的增加逐渐降低。
补充资料:氧化还原电位检测器
分子式:
CAS号:

性质:测量池内盛有碘和碘化钾的乙醇溶液,当具有还原性(或氧化性)试样进入时,则被定量吸收,而使碘离子和碘之比例发生变化,再由铂电极将此溶液中组分变化转化为电位变化而输出信号。

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