发明公开
EP3180298A1 VERFAHREN ZUR HERSTELLUNG VON 1,3-BUTADIEN AUS N-BUTENEN DURCH OXIDATIVE DEHYDRIERUNG
审中-公开
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基本信息:
- 专利标题: VERFAHREN ZUR HERSTELLUNG VON 1,3-BUTADIEN AUS N-BUTENEN DURCH OXIDATIVE DEHYDRIERUNG
- 专利标题(英):Process for preparing 1,3-butadiene from n-butenes by oxidative dehydrogenation
- 申请号:EP15748049.2 申请日:2015-08-11
- 公开(公告)号:EP3180298A1 公开(公告)日:2017-06-21
- 发明人: GRÜNE, Philipp , HAMMEN, Oliver , ECKRICH, Rainer , JOSCH, Jan, Pablo , WALSDORFF, Christian , BIEGNER, Andre , BLOCH, Gregor , BOELT, Heinz , REYNEKE, Hendrik , TOEGEL, Christine , WENNING, Ulrike
- 申请人: BASF SE , Linde AG
- 申请人地址: Carl-Bosch-Strasse 38 67056 Ludwigshafen am Rhein DE
- 专利权人: BASF SE,Linde AG
- 当前专利权人: BASF SE,Linde AG
- 当前专利权人地址: Carl-Bosch-Strasse 38 67056 Ludwigshafen am Rhein DE
- 代理机构: Schuck, Alexander
- 优先权: EP14180700 20140812
- 国际公布: WO2016023892 20160218
- 主分类号: C07C5/48
- IPC分类号: C07C5/48 ; C07C7/08 ; C07C7/11 ; C07C7/04 ; C07C11/167 ; B01J15/00
摘要:
The invention relates to a process for preparing butadiene from n-butenes, comprising the steps of: A) providing an input gas stream a comprising n-butenes, B) feeding the input gas stream a comprising n-butenes and a gas containing at least oxygen into at least one oxidative dehydrogenation zone and oxidatively dehydrogenating n-butenes to butadiene, giving a product gas stream b comprising butadiene, unconverted n-butenes, water vapor, oxygen, low-boiling hydrocarbons and high-boiling secondary components, with or without carbon oxides and with or without inert gases; Ca) cooling the product gas stream b by contacting with a cooling medium in at least one cooling zone, the cooling medium being at least partly recycled and having an aqueous phase and an organic phase composed of an organic solvent, the organic solvent being selected from the group consisting of toluene, o-, m- and p-xylene, mesitylene, mono-, di- and triethylbenzene, mono-, di- and triisopropylbenzene and mixtures thereof, and the mass ratio of the aqueous phase to the organic phase in the cooling medium when it is fed into the cooling zones prior to the contacting with the product gas stream being from 0.15:1 to 10:1; Cb) compressing the cooled product gas stream b which may have been depleted of high-boiling secondary components in at least one compression stage, giving at least one aqueous condensate stream c1 and one gas stream c2 comprising butadiene, n-butenes, water vapor, oxygen and low-boiling hydrocarbons, with or without carbon oxides and with or without inert gases; D) removing uncondensable and low-boiling gas constituents comprising oxygen and low-boiling hydrocarbons, with or without carbon oxides and with or without inert gases, as gas stream d2 from the gas stream c2 by absorbing the C
4 hydrocarbons comprising butadiene and n-butenes in an absorbent, giving an absorbent stream laden with C
4 hydrocarbons and the gas stream d2, and then desorbing the C
4 hydrocarbons from the laden absorbent stream, giving a C
4 product gas stream d1, E) separating the C
4 product stream d1 by extractive distillation with a butadiene-selective solvent into a stream e1 comprising butadiene and the selective solvent and a stream e2 comprising n-butenes; F) distilling the stream e1 comprising butadiene and the selective solvent into a stream f1 consisting essentially of the selective solvent and a stream f2 comprising butadiene.
摘要(中):
4 hydrocarbons comprising butadiene and n-butenes in an absorbent, giving an absorbent stream laden with C
4 hydrocarbons and the gas stream d2, and then desorbing the C
4 hydrocarbons from the laden absorbent stream, giving a C
4 product gas stream d1, E) separating the C
4 product stream d1 by extractive distillation with a butadiene-selective solvent into a stream e1 comprising butadiene and the selective solvent and a stream e2 comprising n-butenes; F) distilling the stream e1 comprising butadiene and the selective solvent into a stream f1 consisting essentially of the selective solvent and a stream f2 comprising butadiene.
本发明涉及由正丁烯制备丁二烯的方法,其包括以下步骤:A)提供包含正丁烯的输入气流a,B)将包含正丁烯的输入气流a和至少含有 氧进入至少一个氧化脱氢区并将正丁烯氧化脱氢为丁二烯,得到包含丁二烯,未转化的正丁烯,水蒸气,氧,低沸点烃和高沸点次要组分的产物气流b,其中有或没有 碳氧化物和有或没有惰性气体; Ca)通过在至少一个冷却区中与冷却介质接触来冷却产物气流b,冷却介质至少部分地再循环并具有水相和由有机溶剂组成的有机相,有机溶剂选自 由甲苯,邻,间和对二甲苯,均三甲苯,单,二和三乙基苯,一,二和三异丙基苯及其混合物组成的组,以及水相与有机相的 当冷却介质在与产品气流接触之前进入冷却区时,冷却介质为0.15:1至10:1; Cb)将在至少一个压缩阶段中可能已经耗尽高沸点次要组分的冷却产物气流b压缩,得到至少一种含水冷凝物流c1和一种气体料流c2,所述气体料流包含丁二烯,正丁烯,水蒸气, 氧和低沸点烃,有或没有碳氧化物,有或没有惰性气体; D)通过吸收包含丁二烯和正丁烯的C 4烃,从气体物流c 2中除去不可冷凝和低沸点的含有氧和低沸点烃的气体成分,含或不含碳氧化物和含或不含惰性气体作为气流d 2 在吸收剂中产生负载有C4烃和气流d2的吸收剂流,然后从负载吸收剂流解吸C4烃,得到C4产物气流d1,E)通过萃取蒸馏将C4产物流d1与 丁二烯选择性溶剂转化成包含丁二烯和选择性溶剂的物流e1和包含正丁烯的物流e2; F)将包含丁二烯和选择性溶剂的物流e1蒸馏成基本上由选择性溶剂组成的物流f1和包含丁二烯的物流f2。