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    • 1. 发明申请
    • FLAME PROOF REACTOR AND SYSTEM FOR TREATING LIQUIDS
    • 火焰防止反应器和处理液体的系统
    • WO2012030294A1
    • 2012-03-08
    • PCT/SE2011/051059
    • 2011-09-02
    • ALFAWALL AKTIEBOLAGBERG, Magnus
    • BERG, Magnus
    • C02F1/32F21V31/00H01J61/50
    • C02F1/325C02F2103/008C02F2201/004C02F2201/3227C02F2201/326C02F2209/02C02F2209/42F21V25/12H01J61/50H01R33/9658
    • The present invention relates to a flame proof UV-reactor (16) for treating liquids, such as ballast water, comprising a reactor house with reactor walls, an inlet pipe (14) and an outlet pipe (18) for the liquid to be treated, a number of UV-treatment units attached inside said reactor house comprising UV- generators (22) for providing UV-radiation in the interior of said reactor house. The present invention relates also to a system for treating liquids comprising the flame proof UV-reactor (16). Said each UV-treatment unit comprise also at least one UV-generator connection mean, preferably two UV-generator connection means, to withstand internal explosion pressure, wherein the UV- generator connection means comprise sockets and caps, and has flame-proof gaps (46, 48) to cool down the explosion before it reaches the athmosphere surrounding the reactor (16). Or there may be at least one check valve (54) arranged on the inlet pipe (14) for liquids to secure that the reactor (16) is filled with liquids to be treated, which liquid functions as a flame arrestor if an explosion occurs inside the reactor (16).
    • 本发明涉及一种用于处理诸如压载水的液体的防火UV反应器(16),其包括具有反应器壁的反应室,用于待处理液体的入口管(14)和出口管(18) 附着在所述反应堆房屋内的许多UV处理单元包括用于在所述反应堆房屋的内部提供紫外线辐射的UV发生器(22)。 本发明还涉及包含防火UV反应器(16)的液体处理系统。 所述每个UV处理单元还包括至少一个UV发生器连接装置,优选两个UV发生器连接装置,以承受内部爆炸压力,其中UV发生器连接装置包括插座和盖子,并且具有阻燃间隙 46,48)在爆炸到达反应堆(16)周围的气氛之前冷却爆炸。 或者可以存在至少一个设置在入口管(14)上的止回阀(54),用于液体以确保反应器(16)充满待处理的液体,如果内部发生爆炸,该液体用作阻焰器 反应器(16)。
    • 4. 发明申请
    • APPARATUS, METHOD AND COMPUTER PROGRAM FOR DYNAMIC DISPENSATION
    • 用于动态分配的装置,方法和计算机程序
    • WO2005064518A2
    • 2005-07-14
    • PCT/EP2004/053625
    • 2004-12-21
    • BIOTAGE ABULFENDAHL, Per, JohanBERG, Magnus
    • ULFENDAHL, Per, JohanBERG, Magnus
    • G06F19/00
    • G06F19/22
    • The present invention relates to an apparatus, method and computer program for de­termining the identity of at least one nucleotide in a nucleic acid molecule, by way of sequentially detecting a measurable quantity of a reaction when the nucleotide is incorporated to form a base pair with a complementary base in the nucleic acid molecule. Means (15) is arranged for provision of nucleotides to the nucleic acid molecule, a detector (10) is adapted to determine whether or not a dispensated nu­cleotide is incorporated in the nucleic acid sequence of the molecule, registration means (20) is provided for storage of the detected nucleic acid sequence, a cata­logue (30) includes a retrievable plurality of possible sequences of the detected and registered nucleic acid sequence, the catalogue being accessible for a comparing means (40). The comparing means is adapted to retrieve and compare the detected registered nucleic acid sequence, which is stored in the registration means, with the possible sequences of the catalogue. Moreover the invention is characterised in that dispensation control means (50) is provided to adapt the order of following dispen­sations in response to the correspondence, which is established by the comparing means, between the nucleotides of the detected and registered sequence and the catalogue of possible sequences.
    • 本发明涉及一种用于在核酸分子中确定至少一个核苷酸的身份的装置,方法和计算机程序,其方式是当核苷酸被掺入以形成碱基对时,依次检测可测量的反应量 核酸分子中的互补碱基。 布置装置(15)用于向核酸分子提供核苷酸,检测器(10)适于确定分配的核苷酸是否并入分子的核酸序列中,登记装置(20)用于 存储检测到的核酸序列,目录(30)包括检测和登记的核酸序列的可检索的多个可能序列,所述目录可用于比较装置(40)。 比较装置适于检索并比较存储在登记装置中的检测到的登录核酸序列与目录的可能序列。 此外,本发明的特征在于,提供分配控制装置(50)以响应于由比较装置建立的对应关系,以便根据检测到的和登记的序列的核苷酸与可能的目录之间的顺序 序列。
    • 5. 发明申请
    • METHOD AND SYSTEM FOR GAS MEASUREMENTS IN A COMBUSTION CHAMBER
    • 燃烧室气体测量方法与系统
    • WO2012121654A1
    • 2012-09-13
    • PCT/SE2012/050254
    • 2012-03-07
    • VATTENFALL ABBADIEI, ShahriarBERG, Magnus
    • BADIEI, ShahriarBERG, Magnus
    • F23N5/08G01N21/65G01N21/35G01N21/39G01N21/63
    • G01N21/51F23N5/02F23N5/082G01K11/125G01K2011/322G01N21/53G01N21/65G01N2021/4709G01N2201/0697
    • The present invention relates to a method for determining at least one gas condition at a location in a combustion chamber of a power plant or a combined heat and power plant by means of a laser pulse. The method comprises emitting (S1) the laser pulse into the chamber, determining (S2) a first point of time at which the laser pulse is emitted into the chamber, detecting (S3) laser light backscattered by gas molecules at the location in the chamber, determining (S4) a second point of time at which the laser light backscattered by the gas molecules is detected, determining (S5) the location based on the first point of time, the second point of time, and a pulse length of the laser pulse, and determining (S5) the at least one gas condition at the location based on at least one characteristic of the backscattered laser light detected at the second point of time. A gas measurement system and a combustion system are also presented herein.
    • 本发明涉及一种用于通过激光脉冲在发电厂的燃烧室或组合的发电厂中确定至少一种气体状况的方法。 该方法包括:将激光脉冲发射(S1)到室中,确定(S2)激光脉冲发射到室中的第一时间点,检测(S3)在腔室中的位置处由气体分子反向散射的激光 确定(S4)检测由气体分子反向散射的激光的第二时间点,基于第一时间点,第二时间点和激光器的脉冲长度确定(S5)位置 并且基于在第二时间点检测到的反向散射激光的至少一个特性来确定(S5)该位置处的至少一个气体状况。 本文还介绍了气体测量系统和燃烧系统。