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    • 2. 发明申请
    • METHOD AND SYSTEM FOR AUTOMATIC INFLATION OF TIRES
    • 轮胎自动充气的方法和系统
    • WO2009047765A2
    • 2009-04-16
    • PCT/IL2008/001344
    • 2008-10-12
    • GEWERTZ, Moshe
    • GEWERTZ, Moshe
    • G06F19/00
    • B60C23/0408B60S5/046
    • A method for implementing a tire inflation facility (101) having a compressed air supply (117) for providing an automatic tire air treatment system including checking and adjusting of tire air pressure in a tire (25) of each wheel (W) mounted on an appropriately configured vehicle (V) driven by a driver (D) into and stopped in the tire inflation facility. The method steps first acquire data such as recommended tire air pressure, position data of a tire valve (29) of a tire, and actual tire air pressure within the tire. Then, a computer program calculates correct tire air pressure, compares that with acquired data, and if necessary, adjusts the tire air pressure. The automatic tire air treatment is exempt of manual touch with air filling equipment, a tire or a wheel.
    • 一种用于实施轮胎充气设备(101)的方法,该设备具有用于提供自动轮胎空气处理系统的压缩空气供应装置(117),所述自动轮胎空气处理系统包括检查和调整安装在所述轮胎上的每个车轮(W)的轮胎(25)中的轮胎气压 适当配置的车辆(V)由驾驶员(D)驱动并停止在轮胎充气设施中。 该方法步骤首先获取诸如推荐的轮胎气压,轮胎的轮胎气门(29)的位置数据和轮胎内的实际轮胎气压之类的数据。 然后,计算机程序计算正确的轮胎空气压力,将其与获取的数据进行比较,并且如果需要,调整轮胎空气压力。 自动轮胎空气处理可以免除手动接触充气设备,轮胎或车轮。
    • 3. 发明申请
    • METHOD AND SYSTEM FOR AUTOMATIC INFLATION OF TIRES
    • 轮胎自动充气的方法和系统
    • WO2009047765A3
    • 2010-01-07
    • PCT/IL2008001344
    • 2008-10-12
    • GEWERTZ MOSHE
    • GEWERTZ MOSHE
    • B60C23/00
    • B60C23/0408B60S5/046
    • A method for implementing a tire inflation facility (101) having a compressed air supply (117) for providing an automatic tire air treatment system including checking and adjusting of tire air pressure in a tire (25) of each wheel (W) mounted on an appropriately configured vehicle (V) driven by a driver (D) into and stopped in the tire inflation facility. The method steps first acquire data such as recommended tire air pressure, position data of a tire valve (29) of a tire, and actual tire air pressure within the tire. Then, a computer program calculates correct tire air pressure, compares that with acquired data, and if necessary, adjusts the tire air pressure. The automatic tire air treatment is exempt of manual touch with air filling equipment, a tire or a wheel.
    • 一种用于实施轮胎充气设备(101)的方法,该设备具有用于提供自动轮胎空气处理系统的压缩空气供应装置(117),所述自动轮胎空气处理系统包括检查和调整安装在所述轮胎上的每个车轮(W)的轮胎(25)中的轮胎空气压力 适当配置的车辆(V)由驾驶员(D)驱动并停止在轮胎充气设施中。 该方法步骤首先获取诸如推荐的轮胎气压,轮胎的轮胎气门(29)的位置数据和轮胎内的实际轮胎气压之类的数据。 然后,计算机程序计算正确的轮胎空气压力,将其与获取的数据进行比较,并且如果需要,调整轮胎空气压力。 自动轮胎空气处理可以免除手动接触充气设备,轮胎或车轮。
    • 4. 发明申请
    • ENERGY EFFICIENT PROCESSES FOR CONVERTING REFINERY AND PETROLEUM-BASED WASTE TO STANDARD FUELS
    • 将炼油和石油基废物转化为标准燃料的能源有效工艺
    • WO2002102930A2
    • 2002-12-27
    • PCT/US2002/014089
    • 2002-05-02
    • IPSON LTD.KARMALI, Rashida, A.BROHNSHTEIN, Alexander, P.GEWERTZ, MosheROZHANSKY, Vladimir, M.
    • BROHNSHTEIN, Alexander, P.GEWERTZ, MosheROZHANSKY, Vladimir, M.
    • C10G
    • B09C1/06C10G11/00C10G33/04C10G33/06
    • The present invention is an energy efficient method for processing petroleum-based and other organic waste including sludge or bottoms, by utilizing of heat energy of oil shale ash or of other suitable ashes obtained from burning the solid fuel. The process produces no wasteful by-products like polluted sewage, heavy asphaltenics and tar by-products. Instead, the process eliminates water through selective adsorption by the ashes used as dewatering additives and the process is followed by drying at high temperatures. After skimming the dewatered matter, the remainder is processed by thermo-catalytic cracking by using hot oil shale ash or other ashes as a catalytic active material and as a heat carrier. The process uses equipment that is cost-effective and that is routinely produced. The process and apparatus of the present invention provide a solution for processing refinery and petroleum-based wastes and producing useful and standard liquid fuels.
    • 本发明是一种通过利用油页岩灰或其它从燃烧固体燃料得到的其它合适的灰分的热能来处理含石油和其它有机废物(包括污泥或底部物质)的能量效率方法。 该过程不产生浪费的副产品,如污水,重质沥青质和焦油副产品。 相反,该方法通过用作脱水添加剂的灰分的选择性吸附来消除水,并且该过程随后在高温下干燥。 在清除脱水物质后,其余部分通过使用热油页岩灰或其它灰分作为催化活性物质和热载体进行热催化裂化处理。 该过程使用具有成本效益且经常生产的设备。 本发明的方法和装置提供了一种用于加工炼油和石油基废物并生产有用和标准液体燃料的解决方案。