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1)  methanolysis efficiency
醇解效率
1.
It was found that when the temperature at(80 ℃) and pH=9-12,the methanolysis efficiency decreased as the time increased,and higher the pH value,faster decreased the methanolysis.
研究表明:在80℃,pH值为9~12之间,醇解效率随时间延长逐渐降低,且pH值越高,醇解效率减少得越快,pH值的升高不利于醇解反应进行,即染料的醇解反应优先性下降;在50~70℃,甲醇化反应占相对优势,其速率为水解速率的2~3倍;80~95℃,甲醇化反应速率常数和水解速率常数基本相等。
2)  methanol efficiency
甲醇效率
1.
Water loss and methanol efficiency were quantitatively calculated.
考察了阴极扩散层碳粉载量对纯甲醇进料被动式直接甲醇燃料电池稳定性和被动式水管理的影响,并定量计算了水损失和甲醇效率。
3)  degradation efficiency
降解效率
1.
The process and mechanism of LAS natural degradation in environment including water and soil were elaborated,and the major influential factors of LAS degradation efficiency including LAS molecular structure,its initial concentration,microorganism quantity,temperature,oxygen content and pH value were analyzed.
阐述了LAS在环境(水体、土壤)中的自然降解过程及降解机理,分析了LAS的分子结构、初始浓度及环境中微生物数量、温度、供养量、pH值等主要因素对LAS降解效率的影响,以期为LAS的扩大应用及其污染治理提供参考和依据。
4)  electrolysis efficiency
电解效率
1.
In this paper, factors of electrolysis hydrogen bromide and sulfur dioxide oxidized by bromide are studied, and ninety percent of electrolysis efficiency and ninety to ninetyfive percent of desulfuration efficiency are also achieved.
运用电化学方法脱除二氧化硫是一种较为清洁的脱硫方式,本文主要研究了电化学脱硫过程中,电解溴化氢以及溴氧化二氧化硫的各种影响因素,并通过优化获得了较高的电解效率90%和脱硫效率90%~95
2.
It has been found that improving the conditions ofconcoct between p&rticles in a biPOlar electrolyser isa key to promoting its electrolysis efficiency.
改善粒子的接触状态是提高复极性电解槽电解效率的关键。
5)  Desorptive efficieney
解吸效率
6)  dissolved efficiency
溶解效率
补充资料:醇解
分子式:
CAS号:

性质:用醇去分解一个分子成为几个部分(通常是两个部分)的反应。例如酸酐、酰氯的醇解:

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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