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在線留言通常情況下制氮機制取氮氣里面含氮量小于0.5%時,是可以用脫氮劑直接除氮,要是含氮量在0.5-3%時,應該用催化劑加氫以此達到除氮。目的,正常的情況下含氮大于3%是采用分級催化除氮。主要是因為氮氣里面含氮量過高,這個時候是可以按化學計量能所需要的氫氣含量。要是一次性使用制氮機加入,是會發(fā)生的危險,而且還會產生出比較大的熱量,也容易燒壞催化劑。
Under normal circumstances, when the nitrogen content in nitrogen is less than 0.5%, denitrogenation agent can be used to remove nitrogen directly. If the nitrogen content is 0.5-3%, catalyst hydrogenation should be used to remove nitrogen. Objective: under normal circumstances, the nitrogen content of more than 3% is to use staged catalytic nitrogen removal. The main reason is that the nitrogen content in nitrogen is too high. At this time, the hydrogen content required by stoichiometric energy can be calculated. If the disposable nitrogen generator is added, it will be dangerous, and it will generate relatively large heat, and it is easy to burn the catalyst.
這個時候一定要嚴格控制好加氫的份量,這個時候可以進行分級除氮。要是原料氮氣中的含氮量過高,是可以用部分純氮對原料氣進行稀釋,這個時候混合氣體里面的含氮量在小于3%以后再進行加氫催化除氮。
At this time, the amount of hydrogenation must be strictly controlled, and the nitrogen can be removed by stages. If the nitrogen content in the feed gas is too high, part of the pure nitrogen can be used to dilute the feed gas. At this time, when the nitrogen content in the mixed gas is less than 3%, the nitrogen can be removed by hydrogenation catalysis.
采用脫氮劑雜質氮的典型工藝流程:氮氣經催化除氮器{除去氮)、水冷卻器和吸附干燥器(除去水汽)、氣體過濾器(除去塵埃顆粒)后,即得純氮產品。采用加氫催化除氮的典型工藝流程:在氮氣中加適量氫氣(添加量為氮氣中含氮量的二二倍以上) ,然后通過催化除氮器(除去氮)、水冷卻器和吸附于燥器(除去水汽)、氣體過濾器(除去塵埃粒)后,即得純氮產品。
The typical process of removing impurity nitrogen with denitrifier is as follows: nitrogen is removed by catalytic denitrifier, water cooler and adsorption dryer (water vapor is removed), and gas filter (dust particles are removed) to obtain pure nitrogen product. The typical process flow of hydrocatalytic nitrogen removal is adopted: firstly, appropriate amount of hydrogen is added into nitrogen (the amount is more than twice of the nitrogen content in nitrogen), and then pure nitrogen product is obtained through catalytic nitrogen remover (nitrogen removal), water cooler and adsorption in dryer (water vapor removal) and gas filter (dust removal).
當?shù)獨庵泻枯^大(大于39%) ,可采用分級加氫催化除氮工藝,氮氣在催化除氮器前,需要嚴 格控制加氫量,通過催化除氮器1(- -次除氮) ,再加入少量氫氣催化除氮器2進行二次除氮。
When the nitrogen content in nitrogen is large (more than 39%), the staged hydrogenation catalytic nitrogen removal process can be used. Before the catalytic nitrogen remover, the hydrogenation amount of nitrogen needs to be strictly controlled. The secondary nitrogen removal is carried out by catalytic nitrogen remover 1 (- - secondary nitrogen removal) and a small amount of hydrogen is added to catalytic nitrogen remover 2.
當原料氮氣里面含有氮比較高,這個時候純氮是不允許有過量氫氣存在。這個時候制氮機氮氣純化裝置用得就是先加氫催化再進行除氮,活性氮化銅除氫方法純化氮氣的工藝流程是在原料氮氣里面根據(jù)氮的含量,往里面添加一些過量的氫以后,再通過制氮機進行除氮,后用電加熱器以及氮化反應把氮氣中的過氫除去。
When the nitrogen content in the feed nitrogen is relatively high, excess hydrogen is not allowed to exist in the pure nitrogen. At this time, the nitrogen purification device of nitrogen generator uses hydrogenation catalysis first and then nitrogen removal. The process flow of active copper nitride dehydrogenation method to purify nitrogen is to add some excess hydrogen into the raw nitrogen according to the nitrogen content, then remove the nitrogen through the nitrogen generator, and then remove the hydrogen in the nitrogen by electric heater and nitriding reaction.
以上內容由山東制氮機廠家提供,希望能幫助到大家更多的去了解這方面的知識。
The above content is provided by Shandong nitrogen machine manufacturers, hoping to help you know more about this knowledge.
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