Performs a cryogenic distillation process at temperatures reaching -200 °C to separate atmospheric air into its primary components - oxygen and nitrogen.
short description of a machine
May 23, 2023
在-200 °C將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。
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Suggestion from jerryc130 was replaced as the approved translation - June 20, 2023

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。

Suggestion from MirroNight was approved by daniel92414 - June 20, 2023

在-200 °C將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。

Suggestion from MirroNight submitted for review - May 23, 2023

在-200 °C將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。

Suggestion from kanielov was replaced as the approved translation - December 28, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣

Suggestion from jerryc130 was approved by redsign147 - December 28, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。

Suggestion from jerryc130 submitted for review - July 29, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。

Suggestion from TassoleHoff was replaced as the approved translation - July 29, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。

Suggestion from kanielov was approved by jerryc130 - July 29, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣

Suggestion from kanielov submitted for review - July 29, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣

Suggestion from kanielov was replaced as the approved translation - May 22, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣

Suggestion from TassoleHoff was approved by BlackCat - May 22, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。

Suggestion from TassoleHoff submitted for review - March 29, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣。

Suggestion from kanielov submitted for review - March 13, 2022

當溫度到達 -200 °C時將大氣進行低溫蒸餾分離出其主要成分:氮氣與氧氣