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    • 31. 发明授权
    • Method for producing 1,4-butanediol
    • 生产1,4-丁二醇的方法
    • US06350924B1
    • 2002-02-26
    • US09673134
    • 2000-10-11
    • Rolf FischerGerd KaibelRolf PinkosRalf-Thomas Rahn
    • Rolf FischerGerd KaibelRolf PinkosRalf-Thomas Rahn
    • C07C2700
    • C07D315/00C07C29/177C07D307/08C07C31/207
    • A process for preparing 1,4-butanediol and, if desired, &ggr;-butyrolactone and THF by oxidizing butane or benzene to form a product stream including maleic anhydride, absorbing maleic anhydride from the product stream with a high-boiling inert solvent in an absorption stage to give a liquid absorption product, esterifying the liquid absorption product with a C1-C5 esterifying alcohol in an esterification stage to form an esterification product comprising the corresponding diester and high-boiling inert solvent, then hydrogenating the esterification product to give a hydrogenation product which comprises the products of value, 1,4-butanediol and, if desired, &ggr;-butyrolactone and tetrahydrofuran and the esterifying alcohol and which is separated by distillation into the products of value and the esterifying alcohol, and recycling the esterifying alcohol to the esterification zone, which comprises separating the esterification product into the diester and the inert solvent by distillation under reduced pressure prior to the hydrogenation, recycling the inert solvent to the absorption stage, and hydrogenating the diester in the liquid phase over a fixed-bed catalyst.
    • 通过氧化丁烷或苯来制备1,4-丁二醇和(如果需要的话)γ-丁内酯和THF以形成包含马来酸酐的产物流的方法,在吸收中用高沸点惰性溶剂从产物流中吸收马来酸酐 阶段以得到液体吸收产物,在酯化阶段用C1-C5酯化醇酯化液体吸收产物以形成包含相应的二酯和高沸点惰性溶剂的酯化产物,然后氢化酯化产物得到氢化产物 其包括价值的产物,1,4-丁二醇,如果需要的话,γ-丁内酯和四氢呋喃和酯化醇,并通过蒸馏分离成产物和酯化醇,并将酯化醇再循环到酯化反应 其包括通过蒸馏分离酯化产物成二酯和惰性溶剂 在氢化之前在减压下进行反应,将惰性溶剂循环到吸收阶段,并在固定床催化剂中使液相中的二酯氢化。
    • 32. 发明授权
    • Preparation of citral
    • 柠檬醛的制备
    • US06175044B1
    • 2001-01-16
    • US09404548
    • 1999-09-24
    • Jörg TherreGerd KaibelWerner AquilaG{umlaut over (u)}nter WegnerHartwig Fuchs
    • Jörg TherreGerd KaibelWerner AquilaG{umlaut over (u)}nter WegnerHartwig Fuchs
    • C07C4551
    • C07C45/515C07C45/513C07C45/67C07C47/21
    • 3,7-Dimethyl-2,6-octadien-1-al of formula I is prepared continuously by: thermally cleaving, in the presence or absence of an acid catalyst, 3-methyl-2-buten-1-al diprenyl acetal of formula II: thereby eliminating 3-methyl-2-buten-1-ol of formula III and yielding cis/trans-prenyl 3-methylbutadienyl ether of formula IV: thermally rearranging the resultant butadienyl ether of formula IV thereby yielding 2,4,4-trimethyl-3-formyl-1,5-hexadiene of formula V: subsequently rearranging intermediate (V) thereby yielding citral product of formula I, which comprises: as the reaction proceeds, continuously distilling the reaction mixture thereby continuously removing prenol, which is formed by degradation of acetal II, and the intermediates of formula IV and V and any citral product which is formed during the reaction; and thermally rearranging said intermediates of formula IV and V at a temperature of 100-200° C. in the absence or presence of said prenol to form citral product.
    • 通过以下方式连续制备式I的3,7-二甲基-2,6-辛二烯-1-醇:在存在或不存在酸催化剂的情况下,热裂解3-甲基-2-丁烯-1-al阮内烯 式II:由此除去式III的3-甲基-2-丁烯-1-醇,得到式IV的顺/反 - 异戊烯基3-甲基丁二烯基醚:热重新排列所得的式IV的丁二烯基醚,由此得到2,4,4 式V的 - 三甲基-3-甲酰基-1,5-己二烯:随后重新排列中间体(V),从而产生式I的柠檬醛产物,其包括:随着反应的进行,连续蒸馏反应混合物,从而连续除去前醇, 由缩醛II的降解形成,以及式IV和V的中间体以及在反应期间形成的任何柠檬醛产物; 在不存在或存在所述prenol的情况下,在100-200℃的温度下热处理所述式IV和V的中间体,以形成柠檬醛产物。
    • 34. 发明授权
    • Production of anhydrous or substantially anhydrous formic acid
    • 生产无水或基本无水的甲酸
    • US4326073A
    • 1982-04-20
    • US131501
    • 1980-03-18
    • Dieter WolfRudolf SchmidtUlrich BlockHartmut SchoenmakersKaspar BottGerd Kaibel
    • Dieter WolfRudolf SchmidtUlrich BlockHartmut SchoenmakersKaspar BottGerd Kaibel
    • C07C53/02C07C27/02C07C51/00C07C51/09C07C51/44C07C51/48C07C67/00
    • C07C51/09C07C51/48
    • Anhydrous or substantially anhydrous formic acid is obtained by hydrolysis of methyl formate, in a process wherein(a) methyl formate is hydrolyzed,(b) the methanol and excess methyl formate are distilled from the hydrolysis mixture obtained,(c) the bottom product of distillation (b), consisting of formic acid and water, is extracted, in a liquid-liquid extraction, with an extractant which in the main takes up the formic acid,(d) the resulting extract phase, consisting of formic acid, the extractant and a part of the water, is subjected to distillation,(e) the top product obtained from this distillation and consisting of all or part of the water introduced into the distillation, and part of the formic acid, is recycled, as vapor, into the lower part of the distillation column of stage (b),(f) the bottom product of distillation stage (d), consisting of the extractant, with or without part of the water, and the greater part of the formic acid, is separated by distillation into anhydrous or substantially anhydrous formic acid and the extractant, and(g) the extractant leaving stage (f) is recycled to the process.
    • 在(a)甲酸甲酯水解的过程中,(甲)甲醇和过量的甲酸甲酯从得到的水解混合物中蒸馏得到,(c)甲酸叔丁酯的底部产物 蒸馏(b)由甲酸和水组成,在液 - 液萃取中用主要萃取甲酸的萃取剂萃取,(d)所得提取相由甲酸,萃取剂 和一部分水进行蒸馏,(e)由该蒸馏获得的顶部产物,并且由引入蒸馏的全部或部分水和部分甲酸作为蒸气循环进入 阶段(b)的蒸馏塔的下部,(f)蒸馏阶段(d)的底部产物,由萃取剂组成,有或没有部分水和大部分甲酸分离 通过蒸馏成无水 粗粉或基本上无水的甲酸和萃取剂,和(g)离开阶段(f)的萃取剂再循环到该方法中。
    • 39. 发明申请
    • PROCESS FOR DISTILLATIVE WORKUP OF A METHANOL/WATER MIXTURE AND PROCESS FOR PREPARING ALKALI METAL METHOXIDES
    • 甲醇/水混合物的分解工艺及制备碱金属甲醇的方法
    • US20110313207A1
    • 2011-12-22
    • US13203504
    • 2010-02-17
    • Gerd KaibelTilman SirchRaimund FelderJosef Guth
    • Gerd KaibelTilman SirchRaimund FelderJosef Guth
    • B01D3/00C07C29/00
    • B01D3/009B01D1/2856B01D3/14C07C29/70Y02P20/127C07C31/30
    • The invention relates to a process for distillative workup of a methanol/water mixture, in which a methanol/water mixture is added to a distillation column (1), an essentially methanol-comprising vapor stream is withdrawn at the top of the distillation column (1) and an essentially water-comprising bottom stream at the bottom of the distillation column (1), at least a portion of the essentially methanol-comprising vapor stream is compressed and the compressed vapor stream is added as heating vapor to an evaporator (11) in which at least a portion of the methanol/water mixture to be separated is evaporated. The invention further relates to a process for preparing alkali metal methoxides in a reaction column (31) by adding methanol and alkali metal hydroxide solution to the reaction column (31), withdrawing alkali metal methoxide dissolved in methanol at the lower end of the reaction column (31) and withdrawing a methanol/water mixture at the upper end of the reaction column (31), and working up the methanol/water mixture by the process for distillative workup.
    • 本发明涉及一种用于甲醇/水混合物的蒸馏处理方法,其中将甲醇/水混合物加入到蒸馏塔(1)中,基本上含甲醇的蒸气流在蒸馏塔的顶部排出( 1)和在蒸馏塔(1)底部的基本上含水的底部流,至少部分基本上含甲醇的蒸气流被压缩,并将压缩的蒸气流作为加热蒸气加入到蒸发器(11 ),其中要分离的至少一部分甲醇/水混合物蒸发。 本发明还涉及通过向反应塔(31)中加入甲醇和碱金属氢氧化物溶液,在反应塔(31)的下端除去溶解在甲醇中的碱金属甲醇盐,在反应塔(31)中制备碱金属甲醇盐的方法 (31),并在反应塔(31)的上端取出甲醇/水混合物,并通过蒸馏处理方法处理甲醇/水混合物。
    • 40. 发明申请
    • Dividing wall column for fractionation of a multicomponent mixture
    • 分隔壁柱用于多组分混合物的分馏
    • US20110139604A1
    • 2011-06-16
    • US09782305
    • 2001-02-14
    • Wolfram BurstHorst HartmannGerd KaibelGuido Harms
    • Wolfram BurstHorst HartmannGerd KaibelGuido Harms
    • B01D3/16
    • B01D3/141B01D3/14Y10S159/906Y10S203/20
    • A dividing wall column comprises the following segments:a) an upper column region (1),b) an enrichment section (2) of the feed section,c) a stripping section (4) of the feed section,d) an upper part (3) of the offtake section,e) a lower part (5) of the offtake section,f) an intermediate region (9) of the feed section,g) an intermediate region (10) of the offtake section andh) a lower column region (6).For the purposes of the present invention, it is essential that the dividing wall (7) is located vertically between the segments b) (2) and d) (3) and between the segments c) (4) and e) (5), the segments b) (2), d) (3), c) (4) and e) (5) have separation-active internals and the cross-sectional area Ab of the segment b) (2) is at least 10% smaller than the cross-sectional area Ad of segment d) (3), and the cross-sectional area Ac of the segment c) (4) is at least 10% greater than the cross-sectional area Ae of segment e) (5).
    • 分隔壁柱包括以下部分:a)上部柱区域(1),b)进料部分的富集部分(2),c)进料部分的汽提部分(4),d)上部部分 (3),e)出料部分的下部(5),f)进料部分的中间区域(9),g)出料部分的中间区域(10)和h)a 下列区域(6)。 为了本发明的目的,重要的是分隔壁(7)垂直位于段b)(2)和d)(3)之间以及段c)(4)和e)(5)之间。 ,分段b)(2),d)(3),c)(4)和e)(5)具有分离活性的内部,并且段b)(2)的横截面积Ab至少为10 (3)段的横截面面积Ad的百分比小于段c)(4)的横截面积Ac比段e)的横截面积Ae至少大10%( 5)。