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公开(公告)号:KR1020170079195A
公开(公告)日:2017-07-10
申请号:KR1020150189496
申请日:2015-12-30
Applicant: 한국과학기술연구원
CPC classification number: B01J31/12 , C07C29/128 , C07C29/14 , C07C29/48 , C07C31/18 , C07C31/22 , C07C31/24
Abstract: 본발명은직쇄형폴리글리세롤의제조방법에관한것으로글리세롤을주촉매및 조촉매하에서반응시켜직쇄형폴리글리세롤을생성하는단계를포함함으로써, 용매를사용하지않는친환경적인방법으로반응을수행할수 있다. 또한, 주촉매의높은활성을조절할수 있는조촉매를사용하여부반응을억제시킴으로써높은수율및 높은선택도로직쇄형폴리글리세롤, 특히디글리세롤및 트리글리세롤을생성할수 있다.
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公开(公告)号:KR1020170073869A
公开(公告)日:2017-06-29
申请号:KR1020150182575
申请日:2015-12-21
Applicant: 한국과학기술연구원
CPC classification number: B01D53/8668 , B01D53/0407 , B01D53/8687 , B01D2251/104 , B01D2253/102 , B01D2253/104 , B01D2253/106 , B01D2253/108 , B01D2255/104 , B01D2255/20707 , B01D2255/20723 , B01D2255/2073 , B01D2255/20738 , B01D2255/20746 , B01D2255/20753 , B01D2257/708 , B01D2258/06 , B01D2259/4009 , B01D2259/4508 , Y02A50/235
Abstract: 본명세서는휘발성유기화합물을흡착하는흡착부; 흡착부에가열공기를공급하는공기가열부; 흡착부로부터탈착된휘발성유기화합물을분해하는산화분해촉매부; 및산화분해촉매부에오존을공급하는오존공급부;를포함하는저농도휘발성유기화합물의대유량처리장치에관한것이다. 이러한처리장치는저농도의 VOC를대유량조건에서흡착한뒤 VOC 발생이적은시간에 VOC를탈착시킴과동시에흡착필터를재생시킴으로써교체주기를반영구적으로최대화할 수있다. 또한본 발명의일측면에따른장치는저유량으로탈착된 VOC물질을산화분해촉매필터에의하여산화분해효율이가장뛰어난조건에서분해처리하여이산화탄소화물로효과적으로분해할수 있다.
Abstract translation: 吸附剂用吸附剂技术领域本发明涉及吸附挥发性有机化合物的吸附剂。 一个用于将热空气供应到吸附部件的空气加热部件; 氧化分解催化剂单元,用于分解从吸附单元解吸的挥发性有机化合物; 以及用于向氧化分解催化剂部分供应臭氧的臭氧供应部分。 通过从VOC reuldae流动条件吸收后再现这种治疗价值,同时作为脱附锡金在更短的时间所产生的VOC的VOC的低浓度吸收滤光器可通过永久更换周期被最大化。 此外,根据本发明的一个方面可被处理以分解在氧化分解效率低流速解吸的VOC材料是通过有效地分解成二氧化碳储存氧化分解催化剂过滤器的最佳状态。
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公开(公告)号:KR101659419B1
公开(公告)日:2016-09-26
申请号:KR1020140074786
申请日:2014-06-19
Applicant: 한국과학기술연구원
Abstract: 본발명은 i) 티탄전구체를기화시키는기화단계; 상기기화된티탄전구체기화물을산소와반응시켜티타니아입자를합성하는반응단계; 상기합성된티타니아입자를응축시켜포집하는회수단계; 및상기회수된티타니아입자에하나이상의금속산화물을담지시키는담지단계를포함하는나노입자촉매의제조단계; ii) 상기촉매에벤토나이트및 물을첨가하는촉매슬러리의제조단계; 및 iii) 상기촉매슬러리에허니컴형태의코디어라이트지지체를담갔다꺼내어건조및 소성하는나노입자담지촉매의제조단계를포함하는나노입자담지촉매의제조방법을제공한다.
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公开(公告)号:KR1020140096181A
公开(公告)日:2014-08-04
申请号:KR1020130008150
申请日:2013-01-24
Applicant: 한국과학기술연구원
CPC classification number: B01J19/2415 , B01J19/088 , B01J21/063 , B01J21/08 , B01J35/002 , B01J35/004 , B01J35/023 , B01J35/1014 , B01J37/0018 , B01J37/08 , B01J2219/00135 , B01J2219/00159 , C01G23/07 , C01G23/075 , C01P2002/72 , C01P2002/85 , C01P2004/04 , C01P2004/82
Abstract: The present invention relates to a manufacturing apparatus of a silica-titania catalyst and to a manufacturing method thereof. The present invention provides a manufacturing apparatus of a silica-titania catalyst and a manufacturing method of a silica-titania catalyst using the apparatus, the apparatus comprising: a precursor supplying part for vaporizing a silica precursor and a titania precursor and supplying the silica precursor and the titania precursor which have been vaporized to a reaction part; an oxygen supplying line for supplying an oxygen source to the reaction part; the reaction part for synthesizing vaporized products of the silica precursor and the titania precursor supplied from the precursor supplying part in order to generate the silica-titania catalyst; and a recovery part for cooling and condensing the silica-titania catalyst generated in the reaction part in order to recover the silica-titania catalyst. The recovery part includes a cooler for cooling the silica-titania catalyst flowing in from the reaction part, wherein the cooler has a swirl formation portion formed in a flow passage through which the silica-titania catalyst passes. According to the present invention, the silica-titania catalyst which has a high specific surface area, a uniform nanoparticle size and excellent thermal stability can be easily manufactured through a simple process using a chemical vapor condensation method.
Abstract translation: 本发明涉及二氧化硅 - 二氧化钛催化剂的制造装置及其制造方法。 本发明提供一种二氧化硅 - 二氧化钛催化剂的制造装置和使用该装置的二氧化硅 - 二氧化钛催化剂的制造方法,该装置包括:用于使二氧化硅前体和二氧化钛前体蒸发并供给二氧化硅前体的前体供给部, 已经蒸发到反应部分的二氧化钛前体; 用于向反应部供给氧源的氧供给管线; 用于合成二氧化硅前体的蒸发产物的反应部分和从前体供应部分供应的二氧化钛前体以产生二氧化硅 - 二氧化钛催化剂; 以及用于冷却和冷凝在反应部分中产生的二氧化硅 - 二氧化钛催化剂以回收二氧化硅 - 二氧化钛催化剂的回收部分。 回收部分包括用于冷却从反应部分流入的二氧化硅 - 二氧化钛催化剂的冷却器,其中冷却器具有形成在二氧化硅 - 二氧化钛催化剂通过的流动通道中的涡流形成部分。 根据本发明,通过使用化学气相冷凝法的简单方法,可以容易地制造具有高比表面积,均匀的纳米颗粒尺寸和优异的热稳定性的二氧化硅 - 二氧化钛催化剂。
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公开(公告)号:KR101282142B1
公开(公告)日:2013-07-04
申请号:KR1020120015199
申请日:2012-02-15
Applicant: 한국과학기술연구원
CPC classification number: B01J12/02 , B01J4/008 , B01J19/243 , B01J2219/00094 , B01J2219/00135 , B82Y40/00 , Y10S977/773 , Y10S977/896
Abstract: PURPOSE: A manufacturing apparatus of a composite nanoparticle is provided to prevent coagulation between particles by synthesizing a first precursor vaporized product and a second precursor vaporized product in a gas phase in an order through a U-shaped reaction chamber. CONSTITUTION: A manufacturing apparatus of a composite nanoparticle comprises a first precursor feeding unit (100), a second precursor feeding unit (200), a reaction unit (300), an oxygen supplying line (400) and a collecting unit (500). The first precursor feeding unit supplies the first precursor to the reaction unit after vaporizing. The second precursor feeding unit supplies the second precursor to the reaction unit after vaporizing. The reaction unit generates a composite nanoparticle synthesizing the first precursor vaporized product and the second precursor vaporized product. The oxygen supplying line supplies an oxygen source to the reaction unit. The collecting unit collects the composite nanoparticles generated from the reaction unit. The reaction unit comprises a U-shaped reaction chamber (310), a second precursor inlet liquid path (320) and a heat supplying means (330). The U-shaped reaction chamber has a first straight liquid path (312), a curbed liquid path (314), and a second straight liquid path (316).
Abstract translation: 目的:提供复合纳米颗粒的制造装置,以通过U形反应室按顺序合成第一前体汽化产物和第二前体蒸发产物,以防止颗粒之间的凝结。 构成:复合纳米颗粒的制造装置包括第一前体进料单元(100),第二前体进料单元(200),反应单元(300),氧气供应管线(400)和收集单元(500)。 第一前体进料单元在蒸发之后将第一前体供应到反应单元。 第二前体进料单元在蒸发之后将第二前体供应到反应单元。 反应单元产生合成第一前体蒸发产物和第二前体蒸发产物的复合纳米颗粒。 供氧管线向反应单元供应氧源。 收集单元收集由反应单元生成的复合纳米颗粒。 反应单元包括U形反应室(310),第二前体入口液体路径(320)和供热装置(330)。 U形反应室具有第一直的液体路径(312),弯曲的液体路径(314)和第二直线液体路径(316)。
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公开(公告)号:KR101211600B1
公开(公告)日:2012-12-12
申请号:KR1020100115540
申请日:2010-11-19
Applicant: 한국과학기술연구원
CPC classification number: B01J35/0013 , B01J21/063 , B01J23/34 , B01J35/008 , B01J35/06 , B01J37/14 , B01J37/349 , B01J2208/00203
Abstract: 본발명은산화망간-티타니아촉매의제조장치및 제조방법에관한것이다. 본발명은망간전구체및 티탄전구체를기화시키는기화부; 상기기화부에서기화된전구체기화물을반응부로이송시키는캐리어가스를상기기화부에공급하는캐리어가스공급라인; 상기반응부에산소공급원을공급하는산소공급라인; 상기전구체기화물과산소공급원을반응시켜산화망간-티타니아촉매를합성하는반응부; 및상기반응부에서합성된산화망간-티타니아촉매를응축, 회수하는포집부를포함하는산화망간-티타니아촉매의제조장치를제공한다. 또한, 본발명은, 1) 망간전구체및 티탄전구체를기화시키는기화단계; 2) 상기전구체기화물(망간전구체및 티탄전구체의기화물)과산소공급원을반응부로이송시키는반응물이송단계; 3) 상기반응부로이송된전구체기화물과산소공급원을반응시켜산화망간-티타니아촉매를합성하는반응단계; 및 4) 상기합성된산화망간-티타니아촉매를응축시켜회수하는포집단계를포함하는산화망간-티타니아촉매의제조방법을제공한다. 본발명에따르면, 공정단계가적고각 공정들이연속적으로진행되어촉매의대량생산이가능하며, 유기화합물등의분해효율이높은다산화망간-티타니아촉매를제조할수 있다.
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