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    • 1. 发明授权
    • Process and device for cleaning combustion flue gases
    • 用于清洁燃烧烟气的工艺和装置
    • US07776298B2
    • 2010-08-17
    • US10190644
    • 2002-07-08
    • Hansjörg HerdenBarbara RothRobert MerglerBerthold StegemannHarald Sauer
    • Hansjörg HerdenBarbara RothRobert MerglerBerthold StegemannHarald Sauer
    • B01D53/52
    • B01D53/64B01D53/12B01D53/508B01D53/68B01D2253/102B01D2253/108B01D2257/2045B01D2257/2047B01D2257/206B01D2257/302B01D2257/60B01D2257/602F23J15/006F23J2219/30F23J2219/50
    • The invention relates to a process and a device for the removal of dust, HF, HCl, SO2, SO3, heavy metals, heavy-metal compounds, polyhalogenated hydrocarbons and polycyclic hydrocarbons from combustion flue gases by treating the pollutant-containing combustion flue gases with a sorbent in a circulating fluidized bed. The process is characterized in that the sorbent used is a mixture of Ca(OH)2, at least one naturally occurring zeolite and a carbon-containing substance, in that the treatment of the pollutant-containing combustion flue gases with the sorbent is carried out at from 120 to 180° C. in the presence of water/steam, in that the reactor (3) of the circulating fluidized bed is operated at a gas velocity of from 2 to 10 m/s, a mean residence time of the solids particles in the case of a single pass of from 1 to 10 seconds, and a solids circulation rate of from 10 to 100, where the gas/solid suspension present in the reactor (3) has a mean suspension density of from 1 to 10 kg of solid/Nm3 of flue gas, and in that the removal of the loaded sorbent is carried out by filtration.
    • 本发明涉及一种从燃烧烟气中去除灰尘,HF,HCl,SO2,SO3,重金属,重金属化合物,多卤代烃和多环烃的方法和装置,通过处理含污染物的燃烧烟道气 循环流化床中的吸附剂。 该方法的特征在于所用的吸附剂是Ca(OH)2,至少一种天然存在的沸石和含碳物质的混合物,因为用吸附剂处理含污染物的燃烧烟道气 在水/蒸汽存在下为120-180℃,循环流化床的反应器(3)以2至10m / s的气体速度运行,固体的平均停留时间 在单次通过的情况下为1至10秒的颗粒,以及10至100的固体循环速率,其中存在于反应器(3)中的气体/固体悬浮液具有1至10kg的平均悬浮密度 的固体/ Nm 3的烟道气,并且通过过滤进行负载的吸附剂的去除。
    • 4. 发明申请
    • FUSION PACING INTERVAL DETERMINATION
    • FUSION PACING INTERVAL确定
    • US20100198291A1
    • 2010-08-05
    • US12363025
    • 2009-01-30
    • Aleksandre T. SambelashviliThomas J. MullenBerthold Stegemann
    • Aleksandre T. SambelashviliThomas J. MullenBerthold Stegemann
    • A61N1/365
    • A61N1/3627A61N1/36514A61N1/3684A61N1/3688
    • Delivery of fusion pacing therapy to a later depolarizing ventricle (V2) of a heart of a patient may be timed based on the depolarization of the V2 during at least one prior cardiac cycle. In some examples, a V2 pacing pulse is delivered upon the expiration of a pacing interval that begins at detection of an atrial sense or pace event (AP/S). The pacing interval may be substantially equal to the duration of time between an AP/S and a V2 sensing event of at least one prior cardiac cycle decremented by an adjusted pre-excitation interval (PEI). In another example, the V2 pacing pulse is delivered at the expiration of a pacing interval that begins upon detection of a V2 sensing event of a prior cardiac cycle. The pacing interval may be substantially equal to a duration of time at least two subsequent V2 sensing events decremented by the adjusted PEI.
    • 将融合起搏治疗递送到患者心脏的后期去极化心室(V2)可以基于在至少一个在先的心动周期期间的V2的去极化来计时。 在一些示例中,在起搏间隔期满后,在起搏时间间隔期间,起搏脉搏是在心房感觉或步速事件(AP / S)的检测开始时发送的。 所述起搏间隔可以基本上等于在调整的预激励间隔(PEI)减小的至少一个先前心动周期的AP / S和V2感测事件之间的持续时间。 在另一示例中,V2起搏脉冲在起搏间隔的期满时被递送,起搏间隔开始于检测到先前的心动周期的V2感测事件。 起搏间隔可以基本上等于由调整后的PEI递减的至少两个后续V2感测事件的持续时间。
    • 5. 发明申请
    • Measurement of coronary sinus parameters to optimize left ventricular performance
    • 测量冠状窦参数以优化左心室的表现
    • US20060247702A1
    • 2006-11-02
    • US11116876
    • 2005-04-28
    • Berthold StegemannRogier Receveur
    • Berthold StegemannRogier Receveur
    • A61N1/365
    • A61N1/36585A61B5/14532A61N1/3627A61N1/3655A61N1/36557A61N1/36571
    • In some embodiments, an implantable medical device (IMD) system may include one or more of the following elements: (a) an oxygen sensor for measuring oxygen extraction from blood flowing through a coronary sinus of a patient's heart, (b) an oxygen signal generated by the oxygen sensor, (c) an IMD coupled to the oxygen sensor, wherein the IMD is configured to output pacing pulses as a function of the oxygen signal, and (d) an atrial and a ventricular pacing lead coupled to the IMD to deliver the pacing pulses to the patient's heart, wherein the IMD generates the pacing pulses as a function of the oxygen signal, wherein the pacing pulses are adjusted by the IMD as a function of the oxygen signal, wherein the IMD is configured to adjust the pacing pulses to increase oxygen in the blood flow through the coronary sinus.
    • 在一些实施例中,可植入医疗装置(IMD)系统可以包括以下元件中的一个或多个:(a)氧传感器,用于测量从流过患者心脏的冠状窦的血液中提取氧气,(b)氧信号 由氧传感器产生的,(c)耦合到所述氧传感器的IMD,其中所述IMD被配置为输出作为所述氧信号的函数的起搏脉冲,以及(d)心房和心室起搏线,其耦合到所述IMD至 将起搏脉冲递送到患者的心脏,其中IMD根据氧信号产生起搏脉冲,其中起搏脉冲作为氧信号的函数由IMD调节,其中IMD被配置为调整起搏 脉冲以增加通过冠状窦的血液中的氧气。