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    • 1. 发明授权
    • Cross flow air separation system
    • 横流空气分离系统
    • US07942273B2
    • 2011-05-17
    • US12247196
    • 2008-10-07
    • Dane CampbellRoy MillerSteve Miller
    • Dane CampbellRoy MillerSteve Miller
    • B07C5/38
    • B07C5/366
    • A cross-flow air separation system comprises a conveyor configured to project material out over an end of the conveyor generally along a trajectory path into a far receiving bin. An optical sensing system is configured to identify particular objects in the projected material. A first air ejection system is configured to generate a first airstream that ejects the identified objects from the trajectory path into a second near receiving bin. A second cross air current system is configured to generate a second airstream that reduces air resistance for the materials projected along the trajectory path. The second airstream reduces certain aeronautic phenomena that would cause some of the projected materials to unintentionally fall into the wrong receiving bin, thus creating a higher purity/less contaminated materiel stream into the near bin.
    • 交叉流动空气分离系统包括传送器,其被配置为将材料的一端沿着轨迹路径突出到输送机的一端,进入远的接收箱。 光学感测系统被配置为识别投影材料中的特定对象。 第一空气喷射系统被配置为产生将所识别的物体从轨迹路径喷射到第二接近箱中的第一气流。 第二交叉气流系统被配置为产生第二气流,其减小沿着轨迹路径投射的材料的空气阻力。 第二种气流减少了一些航空现象,这些现象会导致一些预计的材料无意中掉入错误的接收箱,从而产生更高的纯度/更少的被污染的物料流进入附近的垃圾箱。
    • 2. 发明申请
    • ELECTROSTATIC MATERIAL SEPARATOR
    • 静电材料分离器
    • US20100282647A1
    • 2010-11-11
    • US12818339
    • 2010-06-18
    • Steve MillerRoy MillerDane Campbell
    • Steve MillerRoy MillerDane Campbell
    • B03C7/02
    • B03C7/10B03B9/06B03C7/06B03C7/08B07B1/155B07B4/02B07B9/02B07B11/06B07B13/11B65B69/0008Y02W30/523Y02W30/525Y02W30/527
    • A separation system includes an air separator that, in one embodiment, primarily receives Municipal Solid Waste (MSW) containing a mixture of relatively light MSW recyclable materials such as plastic, paper, cardboard, plastic containers, and/or metal containers and relatively heavy MSW such as textiles, food waste, yard debris, etc. The air separator blows the relatively light MSW recyclable materials up though a chamber and onto a first conveyor while the other relatively heavy MSW material drops down a chute onto a second conveyor. A separation screen receives the relatively light MSW recyclable materials from the air separator and separates the relatively flat fiber and plastic film materials from the other paper, plastic and metal containers. In another separation stage, an electrostatic emitter is positioned adjacent to a conveyor for applying an electrostatic charge to faciliate separation of the MSW recyclable materials. An optical identification system is configured to distinguish different types of recyclable materials.
    • 分离系统包括空气分离器,在一个实施方案中,空气分离器主要接收含有相对较轻的MSW可再循环材料(例如塑料,纸张,纸板,塑料容器和/或金属容器)和相对较重的MSW的混合物的城市固体废物(MSW) 例如纺织品,食物垃圾,院子碎片等。空气分离器将相对较轻的MSW可回收材料通过一个室和第一个输送机吹出,而另一个相对较重的MSW材料将滑槽下落到第二个输送机上。 分离屏幕从空气分离器接收相对较轻的MSW可回收材料,并将相对平坦的纤维和塑料薄膜材料与其他纸张,塑料和金属容器分离。 在另一个分离阶段,静电发射器邻近传送带定位,用于施加静电电荷以促进MSW可回收材料的分离。 光学识别系统被配置为区分不同类型的可回收材料。
    • 3. 发明申请
    • CROSS FLOW AIR SEPARATION SYSTEM
    • 交叉流空气分离系统
    • US20100084323A1
    • 2010-04-08
    • US12247196
    • 2008-10-07
    • Dane CampbellRoy MillerSteve Miller
    • Dane CampbellRoy MillerSteve Miller
    • B07C5/00
    • B07C5/366
    • A cross-flow air separation system comprises a conveyor configured to project material out over an end of the conveyor generally along a trajectory path into a far receiving bin. An optical sensing system is configured to identify particular objects in the projected material. A first air ejection system is configured to generate a first airstream that ejects the identified objects from the trajectory path into a second near receiving bin. A second cross air current system is configured to generate a second airstream that reduces air resistance for the materials projected along the trajectory path. The second airstream reduces certain aeronautic phenomena that would cause some of the projected materials to unintentionally fall into the wrong receiving bin, thus creating a higher purity/less contaminated materiel stream into the near bin.
    • 交叉流动空气分离系统包括传送器,其被配置为将材料的一端沿着轨迹路径突出到输送机的一端,进入远的接收箱。 光学感测系统被配置为识别投影材料中的特定对象。 第一空气喷射系统被配置为产生将所识别的物体从轨迹路径喷射到第二接近箱中的第一气流。 第二交叉气流系统被配置为产生第二气流,其减小沿着轨迹路径投射的材料的空气阻力。 第二种气流减少了一些航空现象,这些现象会导致一些预计的材料无意中掉入错误的接收箱,从而产生更高的纯度/更少的被污染的物质流进入附近的垃圾箱。
    • 4. 发明授权
    • Electrostatic material separator
    • 静电分离器
    • US08307987B2
    • 2012-11-13
    • US12818339
    • 2010-06-18
    • Steve MillerRoy MillerDane Campbell
    • Steve MillerRoy MillerDane Campbell
    • B07B4/00
    • B03C7/10B03B9/06B03C7/06B03C7/08B07B1/155B07B4/02B07B9/02B07B11/06B07B13/11B65B69/0008Y02W30/523Y02W30/525Y02W30/527
    • A separation system includes an air separator that, in one embodiment, primarily receives Municipal Solid Waste (MSW) containing a mixture of relatively light MSW recyclable materials such as plastic, paper, cardboard, plastic containers, and/or metal containers and relatively heavy MSW such as textiles, food waste, yard debris, etc. The air separator blows the relatively light MSW recyclable materials up though a chamber and onto a first conveyor while the other relatively heavy MSW material drops down a chute onto a second conveyor. A separation screen receives the relatively light MSW recyclable materials from the air separator and separates the relatively flat fiber and plastic film materials from the other paper, plastic and metal containers. In another separation stage, an electrostatic emitter is positioned adjacent to a conveyor for applying an electrostatic charge to faciliate separation of the MSW recyclable materials. An optical identification system is configured to distinguish different types of recyclable materials.
    • 分离系统包括空气分离器,在一个实施方案中,空气分离器主要接收含有相对较轻的MSW可再循环材料(例如塑料,纸张,纸板,塑料容器和/或金属容器)和相对较重的MSW的混合物的城市固体废物(MSW) 例如纺织品,食物垃圾,院子碎片等。空气分离器将相对较轻的MSW可回收材料通过一个室和第一个输送机吹出,而另一个相对较重的MSW材料将滑槽下落到第二个输送机上。 分离屏幕从空气分离器接收相对较轻的MSW可回收材料,并将相对平坦的纤维和塑料薄膜材料与其他纸张,塑料和金属容器分离。 在另一个分离阶段,静电发射器邻近传送带定位,用于施加静电电荷以促进MSW可回收材料的分离。 光学识别系统被配置为区分不同类型的可回收材料。
    • 7. 发明授权
    • Heating system for material processing screen
    • 材料加工屏加热系统
    • US08336714B2
    • 2012-12-25
    • US12466322
    • 2009-05-14
    • Dane CampbellSteve Miller
    • Dane CampbellSteve Miller
    • B07B13/00
    • B07B1/15B07B1/58B07B4/08
    • A separation screen has multiple discs configured to receive a material stream at an in-feed end and move a first group of materials from the material stream up an inclined angle and over a top out-feed end of the separation screen while a second group of materials from the material steam either fall through openings between the discs while being carried up the separation screen or roll off the in-feed end of the separation screen. A heating system heats an outside surface of the discs so that the discs can separate the first group of materials from the material stream during cold environmental temperatures.
    • 分离屏具有多个盘,其配置成在进给端处接收材料流,并且将第一组材料从材料流向上倾斜并且在分离屏幕的顶部向外进给端上移动,而第二组 来自材料蒸汽的材料通过在分离筛中携带或者从分离筛的进料端卷起而在盘之间通过开口落下。 加热系统加热盘的外表面,使得盘在冷环境温度下可以将第一组材料与材料流分离。