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1)  low temperature gas separation
低温气体分离
2)  cryogenic air separation plant
低温空气分离厂
3)  low temperature separation (LTS)
低温分离
1.
To develop the south block efficiently and reasonably, eight supporting technologies were analyzed on the basis of summarizing the low temperature separation (LTS) technology used in the south block and its applicatio.
为了高效合理地进行开发生产,在总结榆林气田南区低温分离工艺技术和实际应用效果的基础上,结合气田采用的高压集气、集中注醇、多井加热、节流制冷等配套工艺技术,研究了榆林南区低温分离工艺的运行特征、运行效果,并进行了评价,为下步优化该区低温分离工艺提供了可靠的依据。
2.
To completely solve the problem, two set of heat exchange, throttling, low temperature separation (LTS) units are built on the general Yulin gas plant.
为彻底解决该问题,先后在榆总站建设了两套大面积换热、节流、低温分离工艺装置,并在现场进行了工业性试验。
4)  low-temperature separation
低温分离
1.
The Multiwell heating,throttling refrigeration and low-temperature separation process have been applied in the gas gathering station of the Yulin gas field.
长庆榆林气田集气站内采用多井加热、节流制冷、低温分离工艺流程,气井井口压力为18~22MPa,单井进站天然气直接节流制冷后温度将低于-20℃,这超过了集气站所采用设备普通20#钢适用温度范围,需要先经加热后再节流,才能达到低温分离工艺温度要求。
5)  low temperature separation
低温分离
1.
In this thesis, the author importantly clarified the process engineering of natural gas which used in the development of Sulige gas field, the process engineering is ammonia refrigeration and low temperature separation, dehydration and dealkylation, and analyzed the operation effect of the processing.
本文重点对苏里格气田开发过程中采用的氨制冷低温分离脱水脱烃天然气处理工艺的应运情况进行了阐述,运行效果进行了分析,为苏里格气田的大规模开发提供技术依据。
2.
The possible methods are discussed in this paper for the coal gas recovery with chemical technology, such as low temperature separation, production of ammonia, and of methanol etc.
本文对钢铁厂副产煤气的化工利用途径进行了探讨 ,包括低温分离、合成氨、合成甲醇等。
3.
The paper analyzes the power consumption of liquefaction technologies for low temperature separation of CMM under oxygen-containing condition and the de-xidation conditions.
文中分析了煤矿区煤层气含氧低温分离液化工艺及脱氧的低温分离液化工艺的功耗。
6)  cryogenic separation
低温分离
1.
A new separation and liquefaction of hydrogen at the same time by means of a new cryogenic separation method was presented.
提出采用新的低温分离法将焦炉气中的氢分离并同时液化,及分区液化和分段加压模型。
补充资料:低温气体分离
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性质:使气体混合物通过压缩、冷却、膨胀等操作在低温下液化将其组分分离的过程。根据气体混合物液化程度的不同,又可分为气体部分液化分离过程与气体全部液化分离过程。

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