WASTEWATER TREATMENT BY HIGH EFFICIENCY HETEROGENEOUS PHOTO-FENTON PROCESS
    6.
    发明公开
    WASTEWATER TREATMENT BY HIGH EFFICIENCY HETEROGENEOUS PHOTO-FENTON PROCESS 有权
    污水处理效果的一种高效异构光助Fenton程序的方式

    公开(公告)号:EP2158164A1

    公开(公告)日:2010-03-03

    申请号:EP08763878.9

    申请日:2008-05-23

    IPC分类号: C02F1/72 C02F1/32

    摘要: This invention presents the set-up of a heterogeneous photo-Fenton system for the abatement of organic pollutants in liquid wastewater by means of heterogeneous perovskite-based catalysts, both in powder and in structured form. The proposed method employs, preferably, structured honeycomb monoliths consisting of a perovskite-based material (unsupported catalyst), or structured honeycomb monoliths made of a refractory carrier or a foam im pregnated with a solution of salts corresponding to the desired perovskite (supported catalyst). The removal of organic substances is carried out at room temperature and atmospheric pressure, through an oxidation to gaseous CO2. The perovskite-based catalyst, in structured form, is more efficient in the degradation of organic pollutants than a homogeneous photo-Fenton cata lyst. It allows to enlarge the operative range of pH in comparison to the limited operative range of pH of the homogeneous system, without the formation of sludge. The effect of the concentration and dosage of H2O2 in the proposed method has been evaluated, thereby showing that a further increase of the removal is obtained by proper dosage of H2O2.

    WASTEWATER TREATMENT BY HIGH EFFICIENCY HETEROGENEOUS PHOTO-FENTON PROCESS
    8.
    发明授权
    WASTEWATER TREATMENT BY HIGH EFFICIENCY HETEROGENEOUS PHOTO-FENTON PROCESS 有权
    污水处理效果的一种高效异构光助Fenton程序的方式

    公开(公告)号:EP2158164B1

    公开(公告)日:2011-10-12

    申请号:EP08763878.9

    申请日:2008-05-23

    IPC分类号: C02F1/72 C02F1/32

    摘要: This invention presents the set-up of a heterogeneous photo-Fenton system for the abatement of organic pollutants in liquid wastewater by means of heterogeneous perovskite-based catalysts, both in powder and in structured form. The proposed method employs, preferably, structured honeycomb monoliths consisting of a perovskite-based material (unsupported catalyst), or structured honeycomb monoliths made of a refractory carrier or a foam im pregnated with a solution of salts corresponding to the desired perovskite (supported catalyst). The removal of organic substances is carried out at room temperature and atmospheric pressure, through an oxidation to gaseous CO2. The perovskite-based catalyst, in structured form, is more efficient in the degradation of organic pollutants than a homogeneous photo-Fenton cata lyst. It allows to enlarge the operative range of pH in comparison to the limited operative range of pH of the homogeneous system, without the formation of sludge. The effect of the concentration and dosage of H2O2 in the proposed method has been evaluated, thereby showing that a further increase of the removal is obtained by proper dosage of H2O2.