PLANT FOR WASTE DISPOSAL AND ASSOCIATED METHOD
    1.
    发明申请
    PLANT FOR WASTE DISPOSAL AND ASSOCIATED METHOD 审中-公开
    废物处置和相关方法

    公开(公告)号:WO2016166650A1

    公开(公告)日:2016-10-20

    申请号:PCT/IB2016/052044

    申请日:2016-04-11

    Abstract: Described herein is a plant (1) for the disposal of wastes including: - a supercritical water oxidation reactor (SCWO), - a supercritical water gasification reactor (SCWG), - a feeding system configured for feeding at least two organic currents (W1_IN, W2_IN, W3_IN, Wn_IN) of wastes to said supercritical water oxidation reactor (SCWO) and supercritical water gasification reactor (SCWG) and configured for feeding at least one aqueous flow (PW, PLS) within said plant (1), wherein said feeding system is configured for feeding said at least one aqueous current (PW, PLS) with a series flow through said supercritical water oxidation reactor (SCWO) and supercritical water gasification reactor (SCWG) and wherein said feeding system is furthermore configured for feeding said at least two organic currents of wastes with a parallel flow through said supercritical water oxidation reactor (SCWO) and supercritical water gasification reactor (SCWG) and so as to selectively feed each of said organic currents of wastes to said supercritical water oxidation reactor (SCWO) or to said supercritical water gasification reactor (SCWG). Moreover described is a corresponding method for waste disposal. Finally, an extensive description is provided regarding the possibilities of thermal and energy integration in general between the two sections of the plant (gasification and oxidation).

    Abstract translation: 本文描述了一种用于处理废物的设备(1),包括: - 超临界水氧化反应器(SCWO) - 超临界水气化反应器(SCWG), - 馈送系统,其配置用于馈送至少两个有机电流(W1_IN, 所述超临界水氧化反应器(SCWO)和超临界水气化反应器(SCWG)中的至少一个水流(PW,PLS)被配置为供给所述设备(1)内的至少一个水流(PW,PLS) 构造成用于通过所述超临界水氧化反应器(SCWO)和超临界水气化反应器(SCWG)的串联流供给所述至少一种含水电流(PW,PLS),并且其中所述进料系统还构造成用于将所述至少两个 通过所述超临界水氧化反应器(SCWO)和超临界水气化反应器(SCWG)并联流动的废物的有机电流,并且选择性地将每个所述有机碳 所述超临界水氧化反应器(SCWO)或所述超临界水气化反应器(SCWG)的废物排放量。 另外还描述了废物处理的相应方法。 最后,对植物的两个部分(气化和氧化)之间的热能和能量整合的可能性进行了广泛的描述。

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