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    • 114. 发明申请
    • PROCESS FOR PREPARING ALKYL ETHERS AND MIXTURES THEREOF
    • 制备烷基醚及其混合物的方法
    • WO1997030960A1
    • 1997-08-28
    • PCT/FI1997000120
    • 1997-02-21
    • NESTE OYKOSKINEN, MattiLINDQVIST, PetriJÄRVELIN, HarriAITTAMAA, Juhani
    • NESTE OY
    • C07C41/06
    • C07C41/42C07C41/06C07C43/046
    • The invention concerns a process for preparing a tertiary alkyl ether product. The process comprises reacting the isoolefins of an olefinic hydrocarbon feedstock in a reaction zone (1 - 3) with an alkanol to form a reaction mixture, which is subjected to distillation in a first distillation zone (4). The bottoms product of the first distillation contains the ether(s), whereas the overhead stream contains unreacted alkanol and a mixture of light hydrocarbons. The overhead stream is subjected to a second distillation in a second distillation zone (15). The overhead product of the second distillation mainly contains the lightest hydrocarbons and a small amount of alkanol, and the bottoms product contains an essentially oxygenate-free hydrocarbon stream which can be used as such for alkylation. In order to increase the conversion of the process, a side drawoff is withdrawn from the second distillation zone (15) and recirculated to the reaction zone (1 - 3).
    • 本发明涉及一种制备叔烷基醚产物的方法。 该方法包括使反应区(1-3)中的烯烃原料的异烯烃与烷醇反应以形成反应混合物,其在第一蒸馏区(4)中进行蒸馏。 第一次蒸馏的塔底产物含有醚,而顶部物流含有未反应的链烷醇和轻烃的混合物。 塔顶流在第二蒸馏区(15)中进行第二次蒸馏。 第二次蒸馏的塔顶产物主要含有最轻的烃和少量的链烷醇,底部产物含有基本上不含氧的烃流,可用于烷基化。 为了增加该方法的转化率,从第二蒸馏区(15)中取出侧抽出物并再循环至反应区(1-3)。
    • 115. 发明申请
    • PROCESS FOR PREPARING ALKYL ETHERS AND MIXTURES THEREOF
    • 制备烷基醚及其混合物的方法
    • WO1997023438A1
    • 1997-07-03
    • PCT/FI1996000678
    • 1996-12-19
    • NESTE OYTAMMINEN, EsaLINDQVIST, Petri
    • NESTE OY
    • C07C43/04
    • C07C41/42B01D3/009C07C41/06C10L1/023Y02P20/127C07C43/046
    • The invention relates to a process for preparing tertiary alkyl ethers, in particular MTBE, ETBE or mixtures of these ethers with heavier ethers. According to the process the feedstock containing hydrocarbons is fed to a catalytic distillation reactor system, in which the isoolefines, in particular the C4 to C7 isoolefines, of the feed are reacted with an alkanol in the presence of a cation exchange resin in order to produce tertiary alkyl ether products. The reaction product containing the ethers is removed from the distillation system as the bottoms product and, if necessary, it is subjected to an additional treatment for producing a gasoline component. The unreacted alkanol is removed as the overhead product of the distillation. According to the invention, the distillate withdrawn mainly contains an azeotrope of C3 hydrocarbons and alkanol, the C3 amount of which at least approximately corresponds to the C3 hydrocarbon concentration of the hydrocarbon feed, a substantial amount of the unreacted alkanol being removed in the form of said azeotrope. By means of the invention the need for a separate alkanol washing unit is eliminated in the apparatus which considerably reduces apparatus investment costs.
    • 本发明涉及一种制备叔烷基醚,特别是MTBE,ETBE或这些醚与较重醚的混合物的方法。 根据该方法,将含有烃的原料进料到催化蒸馏反应器系统中,其中进料的异烯烃,特别是C4至C7异烯烃在阳离子交换树脂的存在下与烷醇反应,以产生 叔烷基醚产物。 含有醚的反应产物作为塔底产物从蒸馏系统中除去,如果需要,将其进行额外处理以生产汽油组分。 将未反应的链烷醇作为蒸馏塔顶产物除去。 根据本发明,取出的馏出物主要含有C 3烃和链烷醇的共沸物,其C3量至少大约对应于烃进料的C 3烃浓度,大量未反应的链烷醇以 说共沸物。 通过本发明,在装置中消除了对单独的烷醇洗涤单元的需求,这大大降低了设备的投资成本。
    • 116. 发明申请
    • PROCESS FOR PREPARING TERTIARY ALKYL ETHERS
    • 制备仲胺醇的方法
    • WO1997023437A1
    • 1997-07-03
    • PCT/FI1996000677
    • 1996-12-19
    • NESTE OYLINDQVIST, Petri
    • NESTE OY
    • C07C43/04
    • C07C41/06C07C41/42C07C43/046
    • A process for preparing tertiary alkyl ethers comprises the steps of reacting C4-7 isoolefins of an olefinic hydrocarbon feedstock with an alkanol in the presence of a first catalyst in a reaction zone to form a reaction mixture containing a tertiary alkyl ether or a mixture of tertiary alkyl ethers, feeding the reaction mixture to a distillation column, distilling the reaction mixture and recovering the alkyl ether(s) with the bottoms product of the distillation. An azeotrope formed by unreacted C4 hydrocarbons and the alkanol is withdrawn as an overhead product of the distillation. According to the invention, a part of the liquid flow of the column is withdrawn to form a side drawoff, and the side drawoff is recirculated to the reaction zone. As a result, the conversion of the reactive C6 hydrocarbons is increased and the operating cost of the ethers process is reduced.
    • 制备叔烷基醚的方法包括以下步骤:在反应区中,在第一催化剂存在下使烯烃原料的C 4-7异烯烃与链烷醇反应,形成含有叔烷基醚或叔烷基醚的混合物的反应混合物 将反应混合物进料到蒸馏塔中,蒸馏反应混合物并用蒸馏塔底产物回收烷基醚。 由未反应的C 4烃和链烷醇形成的共沸物作为蒸馏塔顶馏出物排出。 根据本发明,塔的液体流的一部分被抽出以形成侧抽屉,并且侧抽屉被再循环到反应区。 结果,反应性C6烃的转化率增加,并且醚过程的操作成本降低。
    • 117. 发明申请
    • PROCESS FOR OLIGOMERIZATION OF AROMATIC AND ALICYCLIC HYDROCARBONS HAVING OLEFINIC SIDE GROUP
    • 具有烯烃基团的芳族和碱性烃的低聚方法
    • WO1996033147A1
    • 1996-10-24
    • PCT/FI1995000105
    • 1995-02-27
    • NESTE OYKAPANEN, MikaHALME, ErkkiKOSKIMIES, SalmeKEINÄNEN, Kari
    • NESTE OY
    • C07C02/04
    • C10M143/10C07C2/04C07C2527/1213C08F12/04C08L63/10C08L67/06C10L1/1608C10L1/1641C10L1/165C10L1/1691C10L1/18C10L1/1817C10L1/1955C10L1/1963C10M143/00C10M2205/04C10M2205/10C08L2666/04
    • The application relates to a process for the oligomerization of aromatic or alicyclic hydrocarbons by means of a complex made up of BF3 and a cocatalyst. The aromatic hydrocarbon may preferably be styrene, alpha-methyl styrene, or a mixture thereof, and the alicyclic hydrocarbon may be vinyl cyclohexane, vinyl cyclohexene, allyl cyclohexane, allyl cyclohexene, or a mixture thereof. The cocatalyst is an aliphatic alcohol, carboxylic acid, or inorganic acid. The oligomerization may be performed with or without a medium, at a temperature above 0 DEG C, the pressure being adjusted by means of BF3 to 1 - 10 bar. An oligomer prepared by the process can be used as a solvent or an additive in fuels or lubricants, in surfactants, in white oils and cosmetic oils requiring extra purity, and in PVC and polyolefin plastics. In polyester and vinyl ester resins this oligomer can be used to replace in part a monomer (e.g. styrene), thus reducing the evaporation of monomer, and to inhibit shrinkage at the hardening stage, and it also improves the optical properties of the said resins.
    • 本申请涉及通过由BF 3和助催化剂组成的络合物使芳族或脂环族烃低聚的方法。 芳族烃可以优选为苯乙烯,α-甲基苯乙烯或其混合物,脂环族烃可以是乙烯基环己烷,乙烯基环己烯,烯丙基环己烷,烯丙基环己烯或其混合物。 助催化剂是脂族醇,羧酸或无机酸。 低聚反应可在有或没有介质的情况下,在高于0℃的温度下进行,压力通过BF 3调节至1-10巴。 通过该方法制备的低聚物可用作燃料或润滑剂,表面活性剂,需要额外纯度的白油和化妆油中的溶剂或添加剂,以及PVC和聚烯烃塑料中。 在聚酯和乙烯基酯树脂中,这种低聚物可以部分地替代单体(例如苯乙烯),从而减少单体的蒸发,并且抑制在硬化阶段的收缩,并且还改善了所述树脂的光学性能。
    • 118. 发明申请
    • WALL ELEMENT ARRANGEMENT
    • 墙元素安排
    • WO1995034721A1
    • 1995-12-21
    • PCT/FI1995000336
    • 1995-06-09
    • NESTE OYKARIMÄKI, Seppo
    • NESTE OY
    • E04B01/88
    • E04B1/10E04C2/205
    • Wall element for a wall structure containing thermal insulations (10) and additional insulations (40) in the form of boards as well as carriers consisting of vertical load-bearing studs (20) which can be at least partly embedded into grooves (11) in thermal insulation board (10). The thermal insulation comprises a board (10) of cellular plastic where at least on its one side are formed vertically oriented laterally spaced grooves (11), into which vertical load-bearing studs (20) of the wall element can be mounted by nailing or in some other such way to vertically oriented mounting ribs (30) located at the same point on the opposite side of thermal insulation board (10). The depth of grooves (11) in the surface of thermal insulation board (10) is chosen so that when embedded against bottom (12) of groove (11), the vertical load-bearing stud (20) will protrude from the surface level of thermal insulation board (10) by a distance equal to the thickness of additional insulation layer (40). The vertical sides of thermal insulation board (10) have grooves (14) and corresponding protrusions (15) to join the thermal insulation boards (10) of adjacent elements with a tongue-and-groove joint.
    • 用于壁结构的壁元件,其包含板状形式的热绝缘(10)和附加绝缘体(40),以及由垂直承载柱(20)组成的载体,所述承载柱可以至少部分地嵌入槽(11)中 保温板(10)。 隔热层包括多孔塑料的板(10),其中至少在其一侧上形成垂直定向的侧向间隔开的沟槽(11),墙壁元件的垂直承载柱(20)可以通过打钉或 以其它一些方式,位于位于隔热板(10)相对侧上相同点处的垂直取向的安装肋(30)。 选择绝热板(10)表面中的凹槽(11)的深度,使得当嵌入凹槽(11)的底部(12)时,垂直承载螺柱(20)将从 绝热板(10)的距离等于附加绝缘层(40)的厚度。 绝热板(10)的垂直侧面具有凹槽(14)和相应的突起(15),以使相邻元件的隔热板(10)与榫槽接头相接合。