5.
    发明专利
    未知

    公开(公告)号:DE69020963D1

    公开(公告)日:1995-08-24

    申请号:DE69020963

    申请日:1990-05-18

    Applicant: CLOROX CO

    Abstract: The present invention relates to a zeolite agglomeration process and product. Zeolite particles are blended with a filler and preferably a surfactant and then agglomerated in a rotary agglomerator with a zeolite binder to form an agglomerate with about 5-70 parts by wgt. zeolite and, after drying, excellent mechanical strength and flowability with good solubilization/dispersion in aqueous solution. The zeolite agglomerate is preferably combined into a granular detergent in a second agglomeration step where the zeolite agglomerate is combined with other detergent components and sprayed with a detergent binder, the granular detergent being characterized by uniform density and particle size with minimum segregation and dusting. Both the zeolite agglomeration and detergent agglomeration steps are characterized by energy efficiency.

    MITIGATION OF STRESS-CRACKING IN FRAGRANCED BLEACH CONTAINING BOTTLES

    公开(公告)号:CA1340038C

    公开(公告)日:1998-09-15

    申请号:CA574057

    申请日:1988-08-05

    Applicant: CLOROX CO

    Abstract: This invention relates to a storage and shipping system comprising corrugated containers which house plastic vessels or bottles used to hold fragranced liquid bleaches in which the shipping and storage containers are stacked on top of one another. In the stacks, in all of the shipping and storage containers except for the topmost one, the plastic vessels will share some of the vertical component of the compression load caused by the shipping and storage container directly located above a given shipping and storage container. In a further embodiment of the invention, the problem of surface wetting of blown polyethylene bottles by certain additives in liquid bleach is recognized and addressed. In another embodiment of the invention is provided a stable fragranced bleaching composition. In a still further embodiment of this invention is provided a homogeneous fragrance preblend and a method of making thereof.

    9.
    发明专利
    未知

    公开(公告)号:AT125290T

    公开(公告)日:1995-08-15

    申请号:AT90305404

    申请日:1990-05-18

    Applicant: CLOROX CO

    Abstract: The present invention relates to a zeolite agglomeration process and product. Zeolite particles are blended with a filler and preferably a surfactant and then agglomerated in a rotary agglomerator with a zeolite binder to form an agglomerate with about 5-70 parts by wgt. zeolite and, after drying, excellent mechanical strength and flowability with good solubilization/dispersion in aqueous solution. The zeolite agglomerate is preferably combined into a granular detergent in a second agglomeration step where the zeolite agglomerate is combined with other detergent components and sprayed with a detergent binder, the granular detergent being characterized by uniform density and particle size with minimum segregation and dusting. Both the zeolite agglomeration and detergent agglomeration steps are characterized by energy efficiency.

    ZEOLITE AGGLOMERATION PROCESS AND PRODUCT

    公开(公告)号:CA2014193C

    公开(公告)日:1995-01-10

    申请号:CA2014193

    申请日:1990-04-09

    Applicant: CLOROX CO

    Abstract: The present invention relates to a zeolite agglomeration process and product. Zeolite particles are blended with a filler and preferably a surfactant and then agglomerated in a rotary agglomerator with a zeolite binder to form an agglomerate with about 5-70 parts by wgt. zeolite and, after drying, excellent mechanical strength and flowability with good solubilization/dispersion in aqueous solution. The zeolite agglomerate is preferably combined into a granular detergent in a second agglomeration step where the zeolite agglomerate is combined with other detergent components and sprayed with a detergent binder, the granular detergent being characterized by uniform density and particle size with minimum segregation and dusting. Both the zeolite agglomeration and detergent agglomeration steps are characterized by energy efficiency.

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