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    • 72. 发明申请
    • PORTABLE PREPARATION, ANALYSIS, AND DETECTION APPARATUS FOR NUCLEIC ACID PROCESSING
    • 便携式制备,分析和检测装置用于核酸加工
    • WO2007061943A8
    • 2008-09-12
    • PCT/US2006044878
    • 2006-11-20
    • APPLERA CORPVANN CHARLES SGREENSTEIN MICHAELCHIANG YUH-MIN
    • VANN CHARLES SGREENSTEIN MICHAELCHIANG YUH-MIN
    • C12M3/00G01N27/26
    • G01N27/447C12M47/06C12Q1/6806C12Q1/686
    • The present teachings comprise a device and method for lysing and/or purifying biological sample. The device can comprise a cartridge having a chamber containing a biological sample receiving region, a plurality of electrodes, and one or more sieving matrices. The electrodes can be configured to lyse the biological sample through the production of a pulsed electrical field. The electrodes can also be configured to heat lyse the biological sample. The electrodes can also be configured to electrophoretically move the biological sample through one or more sieving matrices. A portion of the sample can be isolated on a membrane. The portion of the sample isolated on the membrane can be amplified and detected. A portion of the sample can be isolated in a collection area present in the cartridge. The portion of the sample isolated in the collection area can be removed from the cartridge.
    • 本教导包括用于裂解和/或纯化生物样品的装置和方法。 该装置可以包括具有包含生物样品接收区域,多个电极和一个或多个筛分基质的腔室的药筒。 电极可以被配置成通过产生脉冲电场来裂解生物样品。 电极也可以被配置为热裂解生物样品。 电极还可以被配置成通过一个或多个筛分基质电泳移动生物样品。 样品的一部分可以在膜上分离。 可以扩增和检测在膜上分离的样品的部分。 样品的一部分可以在存在于盒中的收集区域中分离。 分离在收集区域中的样品的部分可以从盒中取出。
    • 74. 发明申请
    • DISPERSION DEVICES FOR AGGREGATES
    • 聚合物分散装置
    • WO2008067044A2
    • 2008-06-05
    • PCT/US2007/080958
    • 2007-10-10
    • MERIAL LIMITEDRIGAUT, Guillaume
    • RIGAUT, Guillaume
    • C12M1/00C12N5/06
    • C12M43/02C12M47/06C12N5/0603C12N2531/00
    • The present invention encompasses a flow-through dispersion device for the dispersion of cell aggregates, the device comprising a first or upstream inlet obstacle and a second or downstream outlet obstacle, each obstacle having at least one traversing hole wherein no two holes align. Between the two obstacles is a turbulence chamber, such that when a cell suspension is passed through the inlet holes, into the chamber and then exits the second obstacle, the turbulence within the chamber disrupts and disperses cell aggregates. The device optionally may have more than two obstacles and turbulence chambers and multiple units may be placed in series to increase the amount of turbulence and time applied to a volume of cells. The invention further encompasses methods of using the device to disperse cell aggregates, and methods of culturing cells that involve seeding cultures and maintaining dispersed individual cells.
    • 本发明包括用于细胞团聚体分散的流通式分散装置,该装置包括第一或上游进口障碍物和第二或下游出口障碍物,每个障碍物具有至少一个横向孔 其中没有两个孔对齐。 在两个障碍物之间是湍流室,使得当细胞悬液通过入口孔进入室并随后离开第二障碍物时,室内的湍流扰乱并分散细胞聚集体。 该设备可选地可以具有多于两个的障碍物,并且湍流室和多个单元可以串联放置以增加施加到一定体积的细胞的湍流量和时间量。 本发明还包括使用该装置分散细胞聚集体的方法,以及培养包括接种培养物和维持分散的单个细胞的细胞的方法。
    • 77. 发明申请
    • A BIOGAS PRODUCING FACILITY WITH ANAEROBIC HYDROLYSIS
    • 一个生物技术生产设备与厌氧水解
    • WO2006042551A1
    • 2006-04-27
    • PCT/DK2005/000677
    • 2005-10-19
    • BIO-CIRCUIT APSJENSEN, JanJENSEN, Preben
    • JENSEN, JanJENSEN, Preben
    • C02F11/04
    • C02F11/04C12M21/04C12M23/36C12M23/58C12M47/06Y02E50/343Y02W10/23
    • The present invention relates to a method and a facility for conversion of organic waste into biogas, i.e. a methane containing gas, with an improved efficiency and economy. The method comprises three consecutive steps of: i) digestion of the organic waste in a first reactor; ii) hydrolysis of the digested organic waste in an anaerobic hydrolysis tank; and iii) digestion of the hydrolyzed organic waste in a second reactor; wherein evolved gases are removed from the anaerobic hydrolysis tank. The biogas producing facility comprises a first reactor for holding organic waste for production of biogas by digestion and having an output for digested waste, and an anaerobic tank that is connected to the reactor output for anaerobic hydrolysis of the digested waste and having an output for hydrolysed material that is connected to an input of a second reactor for adding hydrolysed material to the content of the reactor and wherein a gas is passed through the headspace of the anaerobic hydrolysis tank for removal of gases from the digested waste. The anaerobic hydrolysis process and the evaporation and wash out of gases from the hydrolysis tank makes the energy content of material that has not been digested in the reactor easier and immediate available for bacterial digestion and the evaporation and wash out of gases in the hydrolysis tank further reduce inhibition of the bacteria and enhance the biogas production velocity and thus, the hydrolysed material is fed back into a reactor for further bacterial conversion into biogas. Furthermore, the gas that has been passed through the headspace of the anaerobic hydrolysis tank may be cooled in a heat exchanger so that the condensable gases of the gases removed from the anaerobic hydrolysis tank content condense, the condensed water containing the removed gases.
    • 本发明涉及将有机废物转化为沼气的方法和设备,即具有提高的效率和经济性的含甲烷气体。 该方法包括以下三个步骤:i)在第一反应器中消化有机废物; ii)在厌氧水解槽中水解消化的有机废物; 和iii)在第二反应器中消化水解的有机废物; 其中放出的气体从厌氧水解槽中除去。 沼气生产设施包括:第一反应器,用于通过消化保持用于生产沼气的有机废物,并具有用于消化废物的输出;以及厌氧池,其连接到反应器输出端,用于消化废物的厌氧水解并具有水解产物 连接到第二反应器的输入的材料,用于将水解的材料加入到反应器的内容物中,并且其中气体通过厌氧水解槽的顶部空间,以从消化的废物中除去气体。 厌氧水解过程以及水解槽中气体的蒸发和洗脱使得反应器中未被消化的材料的能量含量更容易,立即可用于细菌消化,并进一步蒸发和洗出水解罐中的气体 减少细菌的抑制并提高生物气的生产速度,从而将水解的物质反馈回反应器进一步细菌转化成沼气。 此外,已经通过厌氧水解槽的顶部空间的气体可以在热交换器中冷却,使得从厌氧水解槽内容物中除去的气体的可冷凝气体冷凝,含有除去的气体的冷凝水。