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    • 92. 发明授权
    • Modification of rheological properties of coal for slurry feed gasification
    • 用于泥浆进料气化的煤的流变特性的改进
    • US08197562B2
    • 2012-06-12
    • US12586831
    • 2009-09-29
    • Ramesh VaradarajMichael Siskin
    • Ramesh VaradarajMichael Siskin
    • C10L1/04C10J3/46
    • C10G1/00C10G2300/206C10L1/322
    • The feeding of coal slurries into a gasifier for the production of synthesis gas is improved by modifying the rheological properties of the coal particles so that conventional liquid transfer equipment can be used in the feed transfer process to the gasifier. The coal particle surface modification is accomplished by adsorbing asphaltenes derived from petroleum onto the surfaces of coal particles prior to and/or during contact with the slurry liquid. The coal particles with their surfaces thus modified exhibit lower particle-particle interaction in the liquid slurries to form a shear independent Newtonian fluid or a weakly shear thickening pseudoplastic fluid. The rheological properties of the slurries permit them to be transported reliably into a pressurized, entrained feed gasifier vessel using convention slurry pumps with a low potential expenditure of energy.
    • 通过改变煤粒子的流变性能,可以将煤浆料送入用于生产合成气体的气化器中,从而可以将传统的液体输送设备用于进料到气化器的进料转移过程。 煤颗粒表面改性是通过在与浆料液体接触之前和/或与其接触期间将来自石油的沥青质吸附在煤颗粒表面上来实现的。 具有如此改性的其表面的煤颗粒在液体浆料中表现出较低的颗粒 - 颗粒相互作用,以形成剪切无关的牛顿流体或弱剪切增稠假塑性流体。 浆料的流变性使其能够使用具有低潜在能量消耗的常规浆料泵将其可靠地运输到加压夹带的进料气化器容器中。
    • 98. 发明申请
    • CYCLIC PETROLEUM REFINING
    • 循环石油炼制
    • US20100314297A1
    • 2010-12-16
    • US12760614
    • 2010-04-15
    • Ramesh VaradarajMichael Siskin
    • Ramesh VaradarajMichael Siskin
    • C10G25/00
    • C10G50/02B01D53/10B01D2251/402B01D2251/404B01D2251/606B01D2257/304B01D2257/306B01D2257/308B01J20/0222B01J20/0277B01J20/043B01J20/06B01J20/3433B01J20/3483C10B55/10G21D9/00
    • Heat from solar or nuclear heat sources is applied to provide at least a portion of the heat used in a cyclic petroleum refining process in which a hydrocarbon feedstream is contacted with a solid particulate contact material in a first step to treat the feedstream after which the solid contact material is separated or disengaged from the treated feedstream and regenerated in a separate regeneration zone before being returned to the first step for contact with additional feedstream. The entire cycle may be characterized as including an endothermic step, generally a reduction, and an exothermic step, generally an oxidation, with heat from the exothermic step being transferred from the exothermic step to the endothermic step by means of the circulating contact material. The application of the nuclear or solar heat may be applied to whichever step of the process requires heat from external sources. This technique may be applied to a method of regenerating catalysts and sorbents used in gas refining processes for removing contaminants from hydrocarbons and other gases including natural gas and syngas as well as to the FCC process.
    • 施加来自太阳能或核热源的热量以提供在循环石油精炼方法中使用的热量的至少一部分,其中烃进料流在固体颗粒接触材料中与第一步骤接触以处理进料流,之后固体 接触材料与经处理的原料流分离或分离,并在再次与另外的进料流接触的第一步骤之前在单独的再生区中再生。 整个循环可以被表征为包括吸热步骤(通常为还原)和放热步骤(通常是氧化),其中放热步骤的热量通过循环接触材料从放热步骤转移到吸热步骤。 核或太阳热的应用可以应用于过程需要外部来源的热量的任何步骤。 该技术可以应用于再生用于气体精炼过程中用于从碳氢化合物和其它气体(包括天然气和合成气以及FCC方法)除去污染物的催化剂和吸附剂的方法。