序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
61 Fluorin compound and method of making same. US1897662716 1897-12-20 US676548A 1901-06-18 REICH JULIUS A
62 US55308D 1866-06-05 USX55308I1 1866-06-05
63 METHOD FOR MAKING BROMIDES EP14815502.1 2014-11-20 EP3080043B1 2018-07-18 RAY, Thomas G.; BARTLEY, David W.; BROADHURST, Hugh; GOODWIN, Nate
Bromine containing compounds, such as calcium bromide, sodium bromide and the like, are prepared in high purity and more quickly with less waste by using a process with two bromination stages and often a third step wherein the crude product mixture can be adjusted to meet specific product requirements. In the first bromination stage, the majority, but not all, of a substrate is brominated usiung a reductive bromination reaction, the remaining unreacted substrate is converted to product in the second stage through another a reductive bromination reaction, although the specific reagents may be different, wherein the addition of bromine and a reducing agent are carefully monitored.
64 METHODS OF MAKING CESIUM SALTS EP02719401.8 2002-03-29 EP1373141B1 2018-06-27 BAKKE, Bart, F.
A method of making a cesium salt is described and involves reacting a cesium sulfate containing solution with lime to form 1) a solution containing at least cesium hydroxide and 2) a residue comprising calcium sulfate. The method further involves removing the residue from the solution and converting the cesium hydroxide that is present in the solution to at least one type of cesium salt. The present invention further relates to uses of the cesium salt as well as methods of making cesium hydroxide using lime. Also, methods of making alkali metal salts and alkali metal hydroxides are also described.
65 METHOD FOR MAKING BROMIDES EP14815502.1 2014-11-20 EP3080043A1 2016-10-19 RAY, Thomas G.; BARTLEY, David W.; BROADHURST, Hugh; GOODWIN, Nate
Bromine containing compounds, such as calcium bromide, sodium bromide and the like, are prepared in high purity and more quickly with less waste by using a process with two bromination stages and often a third step wherein the crude product mixture can be adjusted to meet specific product requirements. In the first bromination stage, the majority, but not all, of a substrate is brominated usiung a reductive bromination reaction, the remaining unreacted substrate is converted to product in the second stage through another a reductive bromination reaction, although the specific reagents may be different, wherein the addition of bromine and a reducing agent are carefully monitored.
66 LIQUID PREPARATIONS OF AMINES AND ORGANIC ACIDS STABILIZED BY SALTS EP13737879.0 2013-06-26 EP2866788A1 2015-05-06 IKEDA, Megumi; HORIUCHI, Shohei; SATO, Tomomi; NAKAI, Shinichiro; KIYOSHIMA, Kenichiro
Provided are a liquid preparation wherein the pharmaceutically active ingredient is stabilized, and a stabilizing method therefor. A liquid preparation comprising a pharmaceutically active ingredient having a primary or secondary amino group (wherein the amino group does not constitute a part of the amide structure), an organic acid and a salt, which is substantially free of a reaction product of the pharmaceutically active ingredient and the organic acid.
67 STABILIZED BROMINE SOLUTIONS, METHOD OF MAKING AND USES THEREOF FOR BIOFOULING CONTROL EP02756441 2002-07-10 EP1411995A4 2006-01-04 YANG SHUNONG; JOHNSON DONALD A; WETEGROVE ROBERT L; COLLIAS GEORGE J
Stabilized bromine solutions are prepared by combining a bromine source and a stabilizer to form a mixture, and then adding an oxidizer to the mixture.
68 IMPROVEMENTS IN ELECTROCHEMISTRY EP03723761 2003-03-11 EP1487766A4 2005-07-06 BROOKS JULIANA H J; BLUM BENTLEY; MORTENSON MARK G
The invention relates to novel methods for affecting, controlling and/or directing various reactions and/or reaction pathways or systems by exposing one or more components in a holoreaction system to at least one spectral energy pattern. In a first aspect of the invention, at least one spectral energy pattern can be applied to a reaction system. In a second aspect of the invention, at least one spectral energy conditioning pattern can be applied to a conditioning reaction system. The spectral energy conditioning pattern can, for example, be applied at a separate location from the reaction vessel (e.g., in a conditioning reaction vessel) or can be applied in (or to) the reaction vessel, but prior to other reaction system participants being introduced into the reaction vessel.
69 METHOD FOR PRODUCING A HALIDE BRINE EP03716990.1 2003-04-04 EP1492728A1 2005-01-05 SYMENS, Raymond, D.; HOWARD, Lyle, H.; MISHRA, Surendra; POLKINGHORN, Thomas, William
A method for producing halide brine wherein an alkali and a reducing agent are added to an aqueous fluid having a density greater than 8.30 ib/gal., (0.996 Kg/L) water, waste water or sea water for example. The resulting fluid is then contacted with a halogen to form a halide brine. The reaction occurs in a conventional reactor such as a mixing tank.
70 STABILIZED BROMINE SOLUTIONS, METHOD OF MANUFACTURE AND USES THEREOF FOR BIOFOULING CONTROL EP00913427 2000-02-11 EP1171649A4 2004-05-06 YANG SHUNONG; MCCOY WILLIAM F; ALLAIN ERIC J; MYERS ERIC R; DALLMIER ANTHONY W
Stabilized bromine solutions are prepared by combining a bromine source and a stabilizer to form a mixture, adding an oxidizer to the mixture, and then adding an alkaline source to adjust the pH of the mixture to at least 13.
71 Optische Faser und Herstellungsverfahren für eine optische Faser EP00250447.0 2000-12-21 EP1184339A3 2002-09-04 Artiouchenko, Viatcheslav

Die Erfindung betrifft ein Verfahren zum Herstellen eines metallhalogenidhaltigen Ausgangsmaterials für eine optische Faser, wobei das Ausgangsmaterial einen vorbestimmten Brechungsindex aufweist, mit den Schritten:

  • Mischen halogenhaltiger Gase zu einem Gasgemisch mit einem Partialdruckverhältnis, das vom vorbestimmten Brechungsindex des Ausgangsmaterials abhängt,
  • Herbeiführen einer chemischen Reaktion des Gasgemisches mit einem Metall zu mindestens einem Reaktionsprodukt bei einer ersten Temperatur oberhalb der Schmelztemperatur des Reaktionsproduktes und
  • Abkühlen des Reaktionsproduktes auf eine zweite Temperatur unterhalb der Schmelztemperatur.

72 塩により安定化されたアミンおよび有機酸の液状製剤 JP2014561221 2013-06-26 JP2015521986A 2015-08-03 恵 池田; 昌平 堀内; 智美 佐藤; 愼一郎 中井; 健一郎 清島
【課題】医薬活性成分が安定化された液状製剤および安定化方法の提供。【解決手段】1級または2級アミノ基を有する医薬活性成分(但し、当該アミノ基がアミド構造の一部を構成しない)、有機酸および塩を含有し、1級または2級アミノ基を有する医薬活性成分と有機酸との反応生成物を実質的に含有しない液状製剤。【選択図】なし
73 Method for controlling crystal growth, crystallization, structure and phase in material and system JP2012001287 2012-01-06 JP2012136424A 2012-07-19 BLUM BENTLEY J; BROOKS JULIANA H J; MORTENSON MARK G
PROBLEM TO BE SOLVED: To relate to novel methods for affecting, controlling and/or directing various crystal formation, structure formation or phase formation/phase change reaction pathways or systems by exposing one or more components in a crystallization reaction system to at least one spectral energy pattern.SOLUTION: In a first aspect, at least one spectral energy pattern can be applied to a crystallization reaction system. In a second aspect, at lest one spectral energy conditioning pattern can be applied to a conditioning crystallization reaction system. The spectral energy conditioning pattern can, for example, be applied at a separate location from a reaction vessel (e.g., in a conditioning reaction vessel) or can be applied in (or to) the reaction vessel, but prior to other (or all) crystallization reaction system participants being introduced into the reaction vessel.
74 Controlling chemical reactions by spectral chemistry and spectral conditioning JP2010266072 2010-11-30 JP2011062698A 2011-03-31 BROOKS JULIANA H J; BLUM BENTLEY J; MORTENSON MARK G
<P>PROBLEM TO BE SOLVED: To provide a novel method for affecting, controlling and/or directing various reactions and/or reaction pathways or systems by exposing one or more components in the whole reaction system to at least one spectral energy pattern. <P>SOLUTION: At least one spectral energy pattern can be applied to a conditioning reaction system. At least one spectral energy conditioning pattern can be applied to a conditioning reaction system. The spectral energy control pattern can, for example, be applied at a separate location from the reaction vessel (e.g., in a conditioning reaction vessel) or can be applied in (or to) the reaction vessel, but prior to other reaction system participants being introduced into the reaction vessel. <P>COPYRIGHT: (C)2011,JPO&INPIT
75 Stabilized bromine solution, method of making the same, and use thereof for biofouling control JP2010119125 2010-05-25 JP2010222249A 2010-10-07 YANG SHUNONG; JOHNSON DONALD A; WETEGROVE ROBERT L; COLLIAS GEORGE J
PROBLEM TO BE SOLVED: To provide a method of making a stabilized bromine solution which can be carried out as a batch or continuous process right at the site of the commercial application, thereby eliminating the need to store and transport the stabilized bromine solutions. SOLUTION: The stabilized bromine solution is prepared by combining a bromine source and a stabilizer to form a mixture, and then adding an oxidizer to the mixture. COPYRIGHT: (C)2011,JPO&INPIT
76 Method of making an alkali and / or alkaline earth metal net halide salt by hydrolysis of the halogen organic waste JP2008506927 2006-04-11 JP2008536787A 2008-09-11 プロシダ イアン
例えばPVCのようなハロゲン有機廃棄物を、アルカリ及び/又はアルカリ土類金属ハロゲン化物の存在下で加分解し(1)、その後に加水分化物(2)を加水分解物の固体画分(4)及び加水分解物の液体画分(3)に分離することによって、アルカリ金属及び/又はアルカリ土類金属又はこれらの混合物の純粋なハロゲン塩を製造する方法。 加水分解物の液体画分を例えばHClのようなハロゲン化水素酸で中和し(6)、個々にフロキュラントを加え(7)、固体を含む画分及び水性画分に分離し(9)、前記水性画分をナノろ過する(11)ことによる、アルカリ金属及び/又はアルカリ土類金属或いはそれらの混合物の純粋なハロゲン塩を製造する方法。 ナノフィルターによる透過物は、真空塩に対する要求を満たすのと同程度の、従来法の蒸発(14)によって驚くべきほど純度の高い結晶が得られるような純度である。
77 It stabilized bromine solution, the manufacturing methods and uses for biofouling control JP2000608809 2000-02-11 JP4148649B2 2008-09-10 アレイン,エリック,ジェイ.; ダルミア,アンソニー,ダブリュー.; マイヤース,エリック,アール.; マッコイ,ウィリアム,エフ.; ヤン,シュノング
78 Improvements in electrochemical JP2003576371 2003-03-11 JP2005520297A 2005-07-07 ジェイ. ブラム,ベントレー; エイチ.ジェイ. ブルックス,ジュリアナ; ジー. モーテンソン,マーク
本発明は、全反応系中の1または2以上の成分を少なくとも1つのスペクトラムエネルギーパターンに暴露していろいろな反応および/または反応経路または系に影響を与え、制御し、および/または方向付けをする新規な方法に関する。 本発明の第1の側面では、少なくとも1つのスペクトラムエネルギーパターンをコンディショニングする反応系に適用することができる。 本発明の第2の側面では、少なくとも1つのスペクトラムエネルギーコンディショニングパターンを制御する反応系に適用することができる。 スペクトラムエネルギーコンディショニングパターンは、例えば、反応容器(例えば、コンディショニング用反応容器)から別の位置に適用することができ、あるいは反応容器あるいはその中に適用するが、他の反応系関与物が反応容器に導入される前であることができる。
79 Production of harmless brominated reagent JP2003562031 2002-01-25 JP2005515145A 2005-05-26 キショールクマール、マンモハンダス、マジェーシア; コーシック、ハルダー; ソーハン、ラル、ダガ; ハシーナ、ハジバイ、デライヤ; バダッケ、プソール、モハンダス; ヒマンシュ、ラブシャンカー、ジョシ; プッシュピト、クマール、ゴーシュ; マーヘッシュクマール、ラムンクラル、ガンジー; ラーフル、ジャスバントライ、サンガビ; ラジンダー、ナート、ボーラ; ローイット、ハーシャドレイ、デイブ
本発明は臭素回収プラントから得られる、臭化物対臭素酸塩の化学量論比が5:1〜5.1:1または2:1〜2.1:1の範囲であり、pHが8〜12の間の範囲にある、臭化アルカリおよび臭素酸アルカリ混合物を含む石灰または酸化ナトリウム水溶液に溶けた25〜35%の臭素を含有するアルカリ性臭素副産物水溶液からの無害な臭素化試薬に関する。 本発明はまた、前記臭素化剤を用いて芳香族化合物を臭素化する方法に関する。
80 Stabilized bromine solution, manufacturing methods, and use of these for biofouling control JP2003516577 2002-07-10 JP2004536760A 2004-12-09 ウェテグローヴ,ロバート,エル.; コリアス,ジョージ,ジェイ.; ジョンソン,ドナルド,エイ.; ヤング,シュノング
臭素源と安定剤とを組み合わせて混合物を形成し、ついでこの混合物に酸化剤を添加することによって、安定化臭素溶液が調製される。
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