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    • 21. 发明授权
    • Food waste management system
    • 食品废物管理系统
    • US09492854B2
    • 2016-11-15
    • US13438931
    • 2012-04-04
    • James Slanina
    • James Slanina
    • B09B5/00C05F17/00C05F17/02
    • B09B5/00C05F17/0018C05F17/0045C05F17/027Y02P20/145Y02W30/43
    • A food waste management system includes a tank having an internal chamber for containing food waste and sufficient water for fully submersing the food waste. The system further includes a water supply system for supplying water to the internal chamber, a gas supply system for supplying a gas to the internal chamber, a discharge system for discharging water and food waste from the internal chamber, a grinder system for grinding the food waste, the grinder system being disposed in the internal chamber to be fully submersed in the water, a circulation system disposed in the internal chamber for circulating water and food waste and a control system for controlling operation of the food waste management system in accordance with a desired control process. The system further includes a nutrient additive to be supplied to the internal chamber in predetermined amounts at predetermined intervals.
    • 食品废物管理系统包括具有用于容纳食物废物的内部室和用于充分浸没食物废物的足够水的罐。 该系统还包括用于向内部室供水的供水系统,用于向内部室供给气体的供气系统,用于从内部室排放水和食物废物的排出系统,用于研磨食物的研磨系统 废物,研磨机系统设置在内部室中以完全浸没在水中,循环系统设置在内部室中用于循环水和食物废物,以及控制系统,用于控制食物废物管理系统的操作,根据 期望的控制过程。 该系统还包括以预定间隔以预定量供应到内室的营养添加剂。
    • 23. 发明申请
    • Methods and Apparatus Utilizing Vacuum for Breaking Organic Cell Walls
    • 利用真空破坏有机细胞壁的方法和装置
    • US20160257923A1
    • 2016-09-08
    • US15028719
    • 2014-10-12
    • CORNERSTONE RESOURCES, LLC
    • Olaf Lee
    • C12M1/33B01D5/00C12M1/00
    • B01D5/006A01C3/00B09B3/00B09B5/00C12M45/02Y02A20/109
    • Moisturized organic material is treated by communicating with a vacuum pump (44) to selectively reduce pressure within a vessel (12) below atmospheric pressure and to a vaporization point, such as at 30 to 17.8 C, for a period of time sufficient to create an internal pressure to rupture cell walls. While being subjected to vacuum below atmospheric pressure, the vessel (12) is rotated to homogenize the moisturized organic material. The organic material can be moisturized by non-potable water including moisture collected by a moisture collector (44b) in the conduit (44a) between the vessel (12) and the vacuum pump (44) and by chilled feed water acting as the seal fluid in the vacuum pump and heated while flowing through a heat exchanger (48) of the moisture collector (44b). Heat can be added by a heater (46) to raise the temperature of low ambient temperature moisturized organic material.
    • 保湿有机材料通过与真空泵(44)连通来选择性地降低低于大气压的容器(12)内的压力和蒸发点(例如30至17.8℃)来处理足够长的时间以产生 内部压力破裂细胞壁。 在低于大气压下进行真空的同时,使容器(12)旋转以均化保湿的有机材料。 有机材料可以通过非饮用水(包括由容器12和真空泵44之间的导管44a中的湿气收集器44b收集的水分)以及作为密封流体的冷冻给水来保湿 并且在流过湿气收集器(44b)的热交换器48时加热。 可通过加热器(46)加热,以提高低温环境温度保湿有机材料的温度。