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    • 4. 发明申请
    • SINGLE LOOP MULTISTAGE FUEL PRODUCTION
    • 单环多元燃料生产
    • US20120116137A1
    • 2012-05-10
    • US12942680
    • 2010-11-09
    • Howard L. FangMoshe BEN-REUVENRichard E. BOYLERobert M. KOROS
    • Howard L. FangMoshe BEN-REUVENRichard E. BOYLERobert M. KOROS
    • C07C1/02B01J8/00
    • C07C1/041B01J8/0449B01J2219/0004C07C29/151C07C41/09C10G2/32C10G2/33C10G2/331C10G2/332C10G3/42C10G3/46C10G3/48C10G3/49C10G45/58C10G45/60C10G2300/1022C10G2300/304C10G2300/4025C10G2300/4081C10G2400/02C10G2400/04C10G2400/08C10G2400/30Y02P20/52Y02P30/20C07C31/04C07C43/043
    • Synthetic fuels are produced from synthesis gas in a four-stage reactor system with a single recycle loop providing the requisite thermal capacity to moderate the high heat release of the reactions and to provide the reactants and reaction environments for the efficient operation of the process. The first stage converts a portion of the synthesis gas to methanol, the second stage converts the methanol to dimethylether, the third stage converts the methanol and dimethylether to fuel and the fourth stage converts the high melting point component, durene, and other low volatility aromatic components such as tri- andtetra-methylbenzenes to high octane branched paraffins. The four-stage catalyst used for hydrotreating is resistant to CO poisoning. The reactions i produce water as a side product that is carried through to a high pressure separator after the fourth stage. The streams from the separator are a liquid fuel stream, a water stream and a gaseous stream that contains light hydrocarbon gases and the unreacted synthesis gas. The larger part of this gas stream is recycled to the inlet of the first stage and mixed with the fresh synthesis gas stream. Alternatively, the fresh synthetic gas stream is mixed with the product of the second stage. The smaller part of the gas stream from the separator is sent to hydrocarbon recovery and to fuel gas used for providing preheat of various streams. The liquid fuel is sent for blending into fuel products, such as gasoline, jet fuel, or diesel, and the water stream can be sent, for example, to the synthesis gas producing plant for steam generation.
    • 合成燃料由具有单循环回路的四级反应器系统中的合成气生产,提供了必要的热容量,以缓和反应的高热释放,并提供反应物和反应环境以有效地操作该方法。 第一阶段将一部分合成气转化为甲醇,第二阶段将甲醇转化为二甲醚,第三阶段将甲醇和二甲醚转化为燃料,第四阶段将高熔点组分,杜烯和其他低挥发性芳香族 组分如三 - 和四甲基苯与高辛烷支链烷烃。 用于加氢处理的四级催化剂耐CO中毒。 在第四阶段之后,反应我产生作为副产物的水,其被运送到高压分离器。 来自分离器的物流是液体燃料流,水流和含有轻烃气体和未反应的合成气的气流。 该气流的较大部分被再循环到第一阶段的入口并与新鲜合成气流混合。 或者,将新鲜的合成气流与第二阶段的产物混合。 来自分离器的气流的较小部分被送到烃回收和用于提供各种流的预热的燃料气体。 液体燃料被输送到燃料产品如汽油,喷气燃料或柴油中,并且水流可以例如送到用于蒸汽发生的合成气生产设备。
    • 7. 发明申请
    • JOINT WITH HEAT-SHIELDING ELEMENT
    • 连接热屏元件
    • US20120280496A1
    • 2012-11-08
    • US13102370
    • 2011-05-06
    • Moshe Ben-ReuvenBruno E. Araujo
    • Moshe Ben-ReuvenBruno E. Araujo
    • F16L23/00
    • F16L59/184F16L23/02
    • A joint for connecting pipe sections is provided in which a portion of the joint includes a first pipe section, a first reducer fitting section, a first flange attached to the first pipe section and having holes for receiving fasteners, and a fluid conduit (such as a pipe sleeve) positioned inside at least a portion of the first pipe section and the first reducer fitting, wherein the fluid conduit forms an annular space defined by the outside surface of the fluid conduit wall and the inner walls of the first pipe section and the first reducer fitting. The annular space separates the heat-sensitive flange, a flange gasket, and the flange fasteners from high-temperature fluids flowing in the fluid conduit, thereby allowing for the use of lower rated and less expensive components than would otherwise be required in a direct heat contacting arrangement.
    • 提供一种用于连接管段的接头,其中一部分接头包括第一管段,第一减速器配合部分,附接到第一管段的第一法兰和用于接收紧固件的孔,以及流体导管 管套),其定位在第一管段和第一减速器配件的至少一部分内,其中流体导管形成由流体导管壁的外表面和第一管段的内壁限定的环形空间, 第一减速机配件。 环形空间将热敏凸缘,法兰垫片和法兰紧固件与在流体导管中流动的高温流体分开,从而允许使用比直接加热时要求的更低等级和更便宜的部件 接触安排