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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Characterization of pigment-leached antifouling coatings using BET surface area measurements and mercury porosimetry
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Characterization of pigment-leached antifouling coatings using BET surface area measurements and mercury porosimetry

机译:使用BET表面积测量和汞孔隙率法表征颜料浸出的防污涂料

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In this work BET surface area measurements and mercury porosimetry are used to characterize leached layers formed when seawater-soluble pigments(Cu2O and ZnO) dissolve during accelerated leaching of simple antifouling coatings. Measurements on single-pigment coatings show that an increasing fraction of Cu2O or ZnO pigment particles becomes unavailable for dissolution when the concentration of the pigment decreases in the coating and the interparticle distance in the binder matrix becomes larger. Experimental data for a coating initially containing a mixture of Cu2O and TiO2 pigments suggest that a substantial fraction of the smaller and inert TiO2 particles may be lost from the coating upon dissolution of the larger Cu2O particles. This inert particle translocation effect is important to take into account when interpreting polishing and leaching data and when developing mathematical models of antifouling coating behaviour because the active binder surface area and porosity of the leached layer are substantially increased. A similar effect was not observed for a coating with a mixture of ZnO and TiO2 pigments. The two experimental methods are expected to be useful for practical analysis of leaching of seawater-soluble components from commercial antifouling coatings. (c) 2007 Elsevier B.V. All rights reserved.
机译:在这项工作中,BET表面积测量和汞孔隙率法用于表征在简单防污涂料的加速浸出过程中,当水溶性颜料(Cu2O和ZnO)溶解时形成的浸出层。对单颜料涂层的测量表明,当涂层中颜料的浓度降低且粘合剂基质中的颗粒间距离变大时,增加比例的Cu2O或ZnO颜料颗粒将无法溶解。最初包含Cu2O和TiO2颜料混合物的涂层的实验数据表明,较大的Cu2O颗粒溶解后,大部分较小的惰性TiO2颗粒可能会从涂层中流失。当解释抛光和浸出数据以及开发防污涂层行为的数学模型时,要考虑到这种惰性粒子的转移作用,因为活性粘合剂的表面积和浸出层的孔隙率大大增加,因此必须加以考虑。对于具有ZnO和TiO2颜料混合物的涂层,未观察到类似的效果。预期这两种实验方法可用于实际分析从商业防污涂料中浸出的水溶性成分。 (c)2007 Elsevier B.V.保留所有权利。

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