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    • 8. 发明授权
    • Method and apparatus of solid wastes automatic collection ductwork evacuation and comprehensive utilization
    • 固体废物自动收集管道系统疏散综合利用方法与装置
    • US08801930B2
    • 2014-08-12
    • US12504657
    • 2009-07-16
    • Zeguo Qiu
    • Zeguo Qiu
    • C02F3/28C05F9/00C02F11/04
    • B09B3/00B03B9/06B65F5/005B65F2001/1489C05F7/00C10L3/08Y02A40/213Y02E50/343Y02W30/10Y02W30/20Y02W30/47Y02W30/521
    • The method and apparatus for the solid wastes automatic collection pipeline transportation and comprehensive utilization contemplated to reach a easily dropping, automatically collecting, discharging, transporting of all kinds of the solid wastes, getting the plastic package free renewable waste for recycle. The disclosed method and apparatus comprise going toward and near the multiple waste fluidizing collectors set indoor and outdoor, automatically opening the lid of the collector, putting the wastes into the specified containers according to the requirement of the waste recycle program, respectively fluidizing all kinds of the solid wastes into flowable particle and jam to satisfy the pipeline transportation, the multiple waste fluidizing collector in the invention is designed to receive, deposit the wastes and change the solid waste from solid into liquid, that leads to the solid waste automatic collection, transportation and getting the plastic package free, renewable uniform waste for recycle. It is expected to replace currently manual waste collection, waste disposal and management.
    • 固体废物自动采集管道运输和综合利用的方法和装置,可望实现容易掉落,自动收集,运输各种固体废物,使塑料包装再生废物可循环使用。 所公开的方法和装置包括:在室内和室外设置的多个废物流化收集器的附近,附近,自动打开收集器的盖子,根据废弃循环程序的要求将废物分类到指定的容器中,分别流化各种 固体废物流入可流动的颗粒和堵塞以满足管道输送,本发明的多废物流化收集器设计用于接收,沉积废物并将固体废物从固体转化为液体,导致固体废物自动收集,运输 并获得塑料包装,可再生的均匀废物进行回收利用。 预计将取代目前的手工废物收集,废物处理和管理。
    • 10. 发明授权
    • Method and equipment for conditioning scrap high in plastics
    • 塑料废料调理方法和设备
    • US08616378B2
    • 2013-12-31
    • US12937524
    • 2009-03-21
    • Heiner GuschallDaniel Goldmann
    • Heiner GuschallDaniel Goldmann
    • B07B9/00
    • B03B9/061B03B2009/068B29B17/0026B29B17/02B29B2017/0224B29B2017/0231B29B2017/0272B29B2017/0488B29B2017/0492B29K2105/065B29K2705/04C22B7/005Y02P10/212Y02P70/26Y02W30/20Y02W30/523Y02W30/526Y02W30/62Y02W30/622Y02W30/625Y02W30/824
    • In a method and to an arrangement for treating a light fraction produced during the treatment of plastic-rich waste that is low in metal, at least the following steps are carried out consecutively: the light fraction is stressed by percussion and/or bashing, the light fraction is classified into at least two light fraction classes, at least one light fraction class is separated into at least one dust fraction and at least one other fraction, the separation of the dust fraction taking place over a substantially controlled residence time of the light fraction class in at least one device involved in the separation. Due to the separation of at least one light fraction class into at least one dust fraction and at least one other fraction, the separation of the dust fraction takes place over a substantially controlled residence time of the light fraction class in at least one device involved in the separation, a very pure intermediate product (intermediate fraction) is produced, providing the processability of the intermediate product to be improved in subsequent method steps. Overall, clearly improved material recycling and also energy recovery is obtained.
    • 在处理在金属中的富含有机物的废物处理过程中产生的轻馏分的方法和方法中,至少连续执行以下步骤:轻馏分受到冲击和/或冲击的压力, 轻馏分被分为至少两个轻馏分等级,至少一个轻馏分等级被分离成至少一个灰尘部分和至少一个其它部分,灰尘部分在光的基本控制的停留时间上发生分离 至少有一个装置中的分级分类参与分离。 由于将至少一个轻馏分级别分离成至少一个灰尘部分和至少一个其它部分,灰尘部分的分离发生在轻馏分级别在至少一个涉及的部件中的基本控制的停留时间 分离,产生非常纯的中间产物(中间馏分),提供在随后的方法步骤中中间产物的加工性能得到改善。 总体来说,可以清楚地改善材料回收和能量回收。