1)  densification
氧浓
2)  oxygen concentration
氧浓度
1.
The effect of temperature and oxygen concentration on p-xylene oxidation;
温度和氧浓度对PX氧化的影响
2.
Influence of environmental oxygen concentration on cellulose decomposing ability by composite microbial system MC1;
氧浓度对复合菌系MC1纤维素降解能力的影响
3.
Influence of Oxygen Concentration on the Flammability Characteristics of Fire-Retardant Cellulose;
氧浓度对阻燃纤维素燃烧特性的影响
3)  Ozone concentration
臭氧浓度
1.
Rapid determination of the Ozone concentration in water by indigo blue reagent;
靛蓝三磺酸法测定水中臭氧浓度的应用
2.
On-line test in Ozone concentration in intelligence for instruments;
智能臭氧浓度在线测试仪
3.
Influences of the meteorological factorson the ozone concentration near the ground;
气象因子对近地面层臭氧浓度的影响
4)  dissolved oxygen
溶氧浓度
1.
The effect of different dissolved oxygen concentration on the biomass and other fermentation parameters was investigated in the process of ethanol fermentation using stirred tank fermentor.
结果表明,溶氧浓度和通气时间是影响菌体生长和乙醇发酵强度的重要因素。
2.
By this module, a fuzzy PID control system realized to perform the control of dissolved oxygen in industrial fermentation process through CIMPLICTY, a process control software of GE company.
构建了DDE模块 ,通过其实现了将自编的模糊PID控制程序与GE公司的过程控制组态软件CIM PLICITY进行动态数据交换 ,从而实现工业发酵过程溶氧浓度的优化控
5)  concentration of ozone
臭氧浓度
1.
According to measuring precision,continuity,concentration of ozone and economy,the characteristics and befitting situation of the different methods are analyzed.
目前检测水中臭氧浓度的方法很多,为使检测方法的选择有章可循,详细论述了应用碘量法、比色法、紫外分光光度法、电位法和电量法检测水中臭氧浓度的原理和方法。
2.
The real time monitoring of the concentration of ozone in water is important to ensure the quality of water.
水中臭氧浓度的实时监测是保证水处理质量的关键,也是水处理工业自动化的重要环节。
6)  different oxygen concentration
变氧浓度
1.
The combustion performances of two kinds of coal chars were studied by using thermal gravitmetry in different oxygen concentrations (100%,30%,20% and 7% O_2 respectively,the rest is argon).
该模型能够较好地对煤焦的燃烧过程进行模拟,而且采用变氧浓度的实验方法是一种研究煤焦燃烧动力学参数的有效途径。
参考词条
补充资料:氧浓差电池腐蚀
分子式:
CAS号:

性质:同一金属的不同部位与含氧量不同的溶液相接触,形成氧浓差电池(又称充气不均匀电池)而导致的腐蚀。这是局部腐蚀的重要因素之一。例如,盛放中性介质的容器的水线腐蚀就是典型例子。由于水线(液面)处与空气接触,氧易到达,氧浓度高成为阴极区,而紧靠水线(液面)的下方部位,由于氧的浓度相对低而成为阳极区,最终导致容器中紧靠液面的周壁处发生严重的腐蚀。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。