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    • 29. 发明申请
    • APPARATUS AND PROCESS FOR THE MANUFACTURE OF A FROZEN PRODUCT
    • 用于制造冷冻产品的装置和方法
    • WO2018050687A1
    • 2018-03-22
    • PCT/EP2017/073007
    • 2017-09-13
    • UNILEVER PLCUNILEVER N.V.CONOPCO, INC., D/B/A UNILEVER
    • BURGESS, Geoffrey, AlecWILLMOTT, Mark
    • A23G9/28A23G9/50
    • An apparatus (1) for coating multiple edible receptacles simultaneously, the apparatus comprising: - a conveyer (2) containing a plurality of edible receptacle holders (3) arranged perpendicular to the direction of movement of the conveyer (2) - a plurality of nozzles (4) for applying a fat-based coating material to the internal surface of edible receptacles, said nozzles (4) being arranged to index with the plurality of edible receptacle holders (3) - a gas-dosing element (5) for spraying the internal surface of coated edible receptacles with a gas, said gas-dosing element (5) comprising a manifold (6) with at least one gas inlet (7) and a plurality of gas outlets (8), said gas outlets (8) also being arranged to index with the plurality of edible receptacle holders (3) characterised in that - the gas-dosing element (5) comprises a vacuum jacket (9) around the manifold (6) and further characterised in that - the manifold (6) comprises at least one expansion and contraction buffering zone (10) between the gas outlets (8) is provided.
    • 一种用于同时涂覆多个可食用容器的设备(1),所述设备包括: - 传送器(2),其包含多个可食用容器保持器(3),所述多个可食用容器保持器(3)垂直于所述传送器 (2) - 用于将脂肪基涂料涂覆到可食用容器的内表面上的多个喷嘴(4),所述喷嘴(4)被布置成与多个可食用容器保持器(3)一起转位 - 气体 - 所述气体定量元件(5)包括具有至少一个气体入口(7)和多个气体出口(8)的歧管(6),所述气体定量元件(5)用于以气体喷射涂覆的可食用容器的内表面, ,所述气体出口(8)还布置成与所述多个可食用容器保持器(3)一起转位,其特征在于 - 所述气体定量供给元件(5)包括围绕所述歧管(6)的真空夹套(9) 其中 - 歧管(6)包括至少一个膨胀和收缩 在气体出口(8)之间提供缓冲区(10)。
    • 30. 发明申请
    • ADSORBENT COMPRISING LAYERED DOUBLE HYDROXIDE AND ACTIVATED CARBON
    • 包含分层的双氢氧化物和活性炭的吸附剂
    • WO2018046286A1
    • 2018-03-15
    • PCT/EP2017/071010
    • 2017-08-21
    • UNILEVER N.V.UNILEVER PLCCONOPCO, INC., D/B/A UNILEVER
    • PRAMANIK, AmitavaDAS, SomnathSARKAR, PriyankaAPPAVOO, Shanthi
    • B01J20/06B01J20/08B01J20/04B01J20/20B01J20/28B01J20/32B01J20/30
    • B01J20/06B01D2253/25B01D2257/306B01J20/041B01J20/08B01J20/20B01J20/28004B01J20/28064B01J20/3071B01J20/3204B01J20/3236
    • The present invention relates to a material that absorbs volatile compounds, in particular sulphurous compounds. It is found that an absorbent of high surface area suitable for highly volatile compounds can be obtained by growing nanoparticles of a layered double hydroxide (LDH) on the surface of powder activated carbon (PAC). Disclosed is a composite adsorbent comprising nanoparticles of a layered double hydroxide (LDH) and a powder activated carbon (PAC) of the general formula [M 2+ 1-x M 3+ x (OH) 2 ] q+ (X n- ) q/n .yH 2 O, in which, M 2+ = Ca 2+ , Mg 2+ , Mn 2+ , Fe 2+ , CO 2+ , Ni 2+ , Cu 2+ or Zn 2+ ; M 3+ = Al 3+ or Fe 3+ ; x = [M 3+ ]/ [M 3+ + M 2+ ]; q = x n = 1 to 4; and, y = number of water molecules present on the LDH; X = anions selected from halides, sulphates, nitrates, carbonates or anionic moiety from organic sources wherein said composite is obtainable by a hydrothermal process comprising, in sequence, the steps of: (a) contacting, and mixing, powder activated carbon with a water soluble salt of M 2+ and a water soluble salt of M 3+ ; (b) adding an alkali to the dispersion of step (a); (c) aging the dispersion of step (b) by heating it to 80 to 100 °C; (d) separating, by any means, the aqueous phase of the dispersion from the dispersed phase; and (e) washing said dispersed phase with water to remove excess alkali, to get the composite adsorbent, wherein amount of nanoparticles of said layered double hydroxide (LDH) is 10 to 30% by weight and wherein particle size of said powder activated carbon is 50 μm to 500 μm.
    • 本发明涉及吸收挥发性化合物,特别是含硫化合物的材料。 发现通过在粉末活性炭(PAC)的表面上生长层状双氢氧化物(LDH)的纳米颗粒可以获得适用于高挥发性化合物的高表面积吸收剂。 本发明公开了一种复合吸附剂,其包含层状双氢氧化物(LDH)和粉末活性炭(PAC)的通式为[M + 2 + 1-x M] (OH)2] q +(X n - 其中,M 2 + 2 = Ca 2 + 2,Mg 2→2, Mn + 2 +,Fe +2 +,CO + 2 +,Ni + 2 +, Cu 2 +或Zn + 2 +; M + 3 + = Al 3 +或Fe 3+ +; x = [M + 3 +] / [M + 3 + M + 2 +]; q = x n = 1至4; y = LDH上存在的水分子的数量; X =选自来自有机来源的卤化物,硫酸盐,硝酸盐,碳酸盐或阴离子部分的阴离子,其中所述组合物可通过水热法获得,所述水热法依次包括以下步骤:(a)使粉末活性炭与水接触并混合 M 2 +的水溶性盐和M 3 +的水溶性盐; (b)向步骤(a)的分散体中加入碱; (c)通过将步骤(b)的分散体加热至80至100℃使其老化; (d)通过任何方式将分散体的水相从分散相中分离出来; (e)用水洗涤所述分散相以除去多余的碱,得到所述复合吸附剂,其中所述层状双氢氧化物(LDH)的纳米颗粒的量为10-30重量%,并且其中所述粉末状活性炭的粒径为 50微米至500微米。