首页> 外国专利> PREPARATION METHOD OF TITANIUM DIOXIDE PHOTOCATALYST HYBRID COMPOSITE BY ROTATING PLASMA REACTOR AND THE HYBRID COMPOSITE THEREOF FOR REMOVING NITRIC OXIDE AND SULFUR DIOXIDE BY DIELECTRIC BARRIER-PHOTOCATALYST HYBRID PROCESS

PREPARATION METHOD OF TITANIUM DIOXIDE PHOTOCATALYST HYBRID COMPOSITE BY ROTATING PLASMA REACTOR AND THE HYBRID COMPOSITE THEREOF FOR REMOVING NITRIC OXIDE AND SULFUR DIOXIDE BY DIELECTRIC BARRIER-PHOTOCATALYST HYBRID PROCESS

机译:旋转等离子体反应器制备二氧化钛光催化复合材料的方法及其介电阻挡层-光催化混合工艺去除一氧化氮和二氧化硫的复合材料

摘要

PURPOSE: An optical catalyst composite bead for eliminating NOx or SOx with a dielectric barrier-photocatalyst hybrid process and a manufacturing method thereof are provided to simultaneously eliminate various contaminants with excellent removal efficiency and the process available under normal temperature and pressure conditions. CONSTITUTION: A manufacturing method of an optical catalyst composite bead comprises the steps of: supplying oxygen and nitrogen to a rotary plasma reactor and feeding TTIP (Ti(OC3H7)4), a precursor of titanium dioxide to the reactor; rotating the reactor for the reaction of TTIP (Ti(OC3H7)4) and oxygen to produce titanium dioxide and coating the produced titanium dioxide on the dielectric; controlling the process time of the rotary plasma reactor to adjust the thickness of the titanium dioxide coated on the dielectric.
机译:目的:提供一种通过介电阻挡层-光催化剂混合工艺消除NOx或SOx的光学催化剂复合珠及其制造方法,以优异的去除效率同时消除各种污染物,并且提供了在常温常压条件下可用的工艺。组成:光学催化剂复合珠的制造方法包括以下步骤:向旋转等离子体反应器中供应氧气和氮气,并将二氧化钛的前体TTIP(Ti(OC3H7)4)进料到反应器中;旋转反应器以使TTIP(Ti(OC3H7)4)与氧气反应生成二氧化钛,并将生成的二氧化钛涂覆在电介质上;控制旋转等离子体反应器的处理时间以调节涂覆在电介质上的二氧化钛的厚度。

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