1) low gas liquid rate
低气液比
2) Low steam/gas ratio
低汽气比
1.
The structure characterization of ICI71-4 and LB type low steam/gas ratio high temperature shift catalyst is determined by a side- line test unit.
通过对ICI71- 4和LB型低汽气比高温变换催化剂在侧线试验装置上使用前后的结构进行测定 ,探讨适用于低汽气比合成氨工艺流程的催化剂的表征特
3) low steam/gas operation
低汽/气比
4) gas-liquid ratio
气液比
1.
The gas-liquid ratio is 1.
7×104m3,累计气液比1。
2.
During drilling process,relevant parameters were: gas-liquid ratio 180-240,foam liquid concentration 4-8%.
在钻进过程中,调整参数为:气液比180~240,泡沫液浓度4%~8%。
3.
The influence of temperature, gas-liquid ratio, gas-liquid rate, residual oil saturation and permeability on steam foam sealing ability is studied on the basis of microscopic percolation study.
在蒸汽泡沫微观渗流研究的基础上 ,研究了温度、气液比、气液速率、残余油饱和度以及渗透率对蒸汽泡沫封堵能力的影响。
5) liquid to gas ratio
液气比
1.
Experimental studies of the influence,of liquid to gas ratio,on limeston-gypsum wet flue gas desulfuization processes have been carried out in an orderly dropping film absorber testing installation,built for the purpose.
石灰石-石膏湿法烟气脱硫系统中,液气比是影响系统脱硫性能及经济性的重要参数。
2.
As shown in practical operation,this technology has some advantages such as high efficiency of gas to liquid mass transfer,low liquid to gas ratio,no fouling and good adaptation of load etc.
实际运行也证明:文丘里吸收塔烟气脱硫的气液传质高,液气比低,无结垢,负荷适应强。
6) liquid gas ratio
液气比
1.
A lot of experiments were done to study the influence on the efficiency of FGD by the factors such as liquid gas ratio(L/G),inlet flue gas concentration of SO2,the reaction contact time,the temperature of the waste water which dust discharge and so on.
在对湿法脱硫机理分析研究的基础上,设计并建立了喷淋塔脱硫试验装置,通过大量的试验研究确定了喷淋塔脱硫试验的液气比(L/G)、入口SO2浓度、反应接触时间、除尘废水温度等因素对脱硫效率的影响,分析了影响脱硫效果和系统稳定运行的因素,得出了使用转炉除尘水脱除烧结烟气中SO2的最佳条件。
2.
The practice of reconstruction showed that the theoretic resistance and efficiency were in accord with practical application, when the gas speed of a throat section was 40m/s and its liquid gas ratio was 0.
改造工程应用表明 ,该方案的阻力和除尘效率在理论上的分析与实际应用相一致 ,在文丘里喉管气速 40m/s,液气比 0 。
补充资料:低气
dīqì
[lowly] 指身份、地位卑微、低下
不要嫌卖烧饼低气
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条