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    • 1. 发明申请
    • SYSTEM AND METHOD FOR CAPTURING CLEANER INTAKE AIR FOR USE WITHIN AN AIR INTAKE SYSTEM OF A WORK VEHICLE
    • 用于在工作车辆的空气摄取系统中使用清洁器进入空气的系统和方法
    • US20160010604A1
    • 2016-01-14
    • US14325587
    • 2014-07-08
    • CNH Industrial America, LLC
    • CHAD ZEILENGATHOMAS CHLYSTEK
    • F02M35/16B01D46/44F02M35/04
    • F02M35/164B01D46/442F02M35/0209F02M35/048F02M35/10013Y02A50/2352
    • A system for capturing cleaner intake air for use within an air intake system of a work vehicle may generally include an intake duct defining an inlet for receiving air and at least one actuator associated with the intake duct. The actuator(s) may be configured to move at least a portion of the intake duct so as to adjust a position of the inlet relative to a fixed reference location on the work vehicle. In addition, the system may include at least one sensor configured to monitor an air-related parameter associated with the work vehicle and a controller communicatively coupled to the actuator(s) and the sensor(s). The controller may be configured to actively control the operation of the actuator(s) such that the position of the inlet is adjusted based on the air-related parameter so as to reduce an amount of particulates received within the intake duct.
    • 用于捕获在作业车辆的进气系统内使用的更清洁的进气的系统通常可以包括限定用于接收空气的入口和与进气管相关联的至少一个致动器的进气管。 致动器可以被配置为移动进气管道的至少一部分,以便调节入口相对于作业车辆上的固定参考位置的位置。 另外,该系统可以包括至少一个被配置为监测与工作车辆相关联的与空气有关的参数的传感器以及通信地耦合到致动器和传感器的控制器。 控制器可以被配置为主动地控制致动器的操作,使得基于空气相关参数来调节入口的位置,以便减少在进气管道内容纳的微粒的量。
    • 6. 发明申请
    • Vehicular air cleaner
    • 车用空气净化器
    • US20020139251A1
    • 2002-10-03
    • US09823562
    • 2001-03-29
    • Brenda Joyce Simmons
    • B01D053/02
    • B01D46/0036B01D46/10B01D53/02B60H1/34B60H3/0608Y02A50/2352
    • An air filtration system for vehicles, aircraft and spacecraft includes a filter element for filtering air passing through an air vent thereby cleaning the air of toxic substances such as smog, exhaust fumes, noxious gases, diesel fumes, asphalt odors and many other combustion odors., in addition to emitting an aroma scent of fragrance providing a pleasant smell which will not interefere with the cleaning process of the air. The filter having a size and shape such that the filter element fits across the path of the air passing through the air vent and the structure for removably mounting the filter element on the vehicle in the path of air passing through the air vent so that its cleans the air in the enclosed enivronment of the cabin of the vehicles.
    • 用于车辆,飞机和航天器的空气过滤系统包括用于过滤通过排气口的空气的过滤元件,从而清除诸如烟雾,废气,有害气体,柴油,沥青气味和许多其它燃烧气味的有毒物质的空气。 ,除了发出香味的香味,提供令人愉悦的气味,不会干扰空气的清洁过程。 过滤器具有尺寸和形状,使得过滤元件穿过通过通气孔的空气的路径,以及用于在通过排气口的空气的路径中可移除地将过滤元件安装在车辆上的结构,使得其清洁 车内空气封闭的空气。
    • 9. 发明申请
    • METHOD AND DEVICE FOR CLEANING AIR
    • 用于清洁空气的方法和装置
    • US20110171090A1
    • 2011-07-14
    • US12992708
    • 2009-05-14
    • Matthew Stanley JohnsonJan Arlemark
    • Matthew Stanley JohnsonJan Arlemark
    • B01D53/38A62B7/08B01J19/00
    • A61L9/015A61L9/20A61L9/22B03C3/013B03C3/016B03C3/08B03C3/12B03C3/155F24F3/166F24F2003/1667F24F2003/1671F24F2003/1675F24F2003/1682F24F2110/60Y02A50/2352Y02A50/246
    • A method and device for cleaning air. The air to be cleaned is directed as a continuous flow in succession through a) a first zone wherein the air is treated with ozone and possibly also water, ammonia or other aerosol growth promoters; b) a second zone wherein the air is subjected to ultraviolet light; c) a third zone wherein the air is maintained for a sufficient time to allow aerosol growth; d) a fourth zone where particles in the air are given an electrical charge; e) a fifth zone wherein the air is passed through an electrostatic filter; and f) a sixth zone wherein the air flows over a catalyst to break down residual ozone. The air in confined spaces including indoor rooms, public vehicles with limited access to fresh air is subjected to a low energy consuming universal broad-spectrum removal of the various types of indoor air pollution including toxic gases, organic compounds, microorganisms and liquid and solid particles being hazardous to health and detrimental to quality of life.
    • 一种清洁空气的方法和装置。 待清洁的空气被连续流动通过a)第一区域,其中空气用臭氧以及可能的水,氨或其它气溶胶生长促进剂处理; b)第二区域,其中空气经受紫外光; c)第三区,其中空气保持足够的时间以允许气溶胶生长; d)空气中的颗粒被给予电荷的第四区域; e)第五区,其中空气通过静电过滤器; 和f)第六区,其中空气流过催化剂以分解残留的臭氧。 密闭空间内的空气,包括室内空气,新鲜空气有限的公共车辆,经受低能耗普遍广泛的清除各种类型的室内空气污染,包括有毒气体,有机化合物,微生物和液体和固体颗粒 对健康有害,对生活质量有害。
    • 10. 发明授权
    • Space efficient hybrid air purifier
    • US07582144B2
    • 2009-09-01
    • US12009374
    • 2008-01-19
    • Henry Krigmont
    • Henry Krigmont
    • B03C3/016
    • B03C3/025B03C3/09B03C3/47B03C3/64B03C2201/10B03C2201/26Y02A50/2352Y10S55/38
    • A compact, hybrid particulate and gas collector that can be used in an ultra-clean air purification, vehicle emissions control system, gas turbine, or in any other application where space and lower cost is important or in applications where sub-micron and nano-particulate filtering is needed such as in clean rooms and surgical suites. A gas flow enters the device in a first chamber and can be immediately exposed to a high-tension corona discharge electric field which typically results in a strong ionic flow by charging and collecting the incoming effluent (oil mist, soot particles, etc.). Subsequently, the charged flow enters a second zone of high-tension uniform electric field that causes the remaining charged particles to migrate to one of the charged electrodes. One of the electrodes can be made of porous filter material that allows the cleaned gas to flow into an exit zone also containing a high-tension uniform electric field where the remaining effluent can be collected prior to the ultra-clean gas exiting either to ambient air or being re-circulated to be used again by the engine. In some embodiments a dielectric barrier discharge surface can be provided to convert harmful compounds to more desirable substances. Alternate embodiments can include a third zone containing a second substantially uniform electric field as well as coating the porous surface with a catalyst to convert undesirable compounds. Any cross-section of the device may be used. Further treatment of the dust free flow with ultraviolet light, an x-ray or a radiation can be used to kill micro-organisms.