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Colored ceramic foams with tailored pore size and surface functionalization used as spawning plates for fish breeding

机译:具有定制孔径和表面功能化的彩色陶瓷泡沫用作鱼类繁殖的产卵板

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The growing demand for reliable porous substrate materials for aquaculture of marine ornamental fishes (i.e. substrate spawners) requires a controllable processing in combination with a straightforward functionalization to adjust both, the material properties and the surface physico-chemical characteristics. In this study, highly porous ceramic foams made of alumina obtained by direct foaming are presented, which are conditioned for controlled aeration of egg clutches laid by clownfishes serving as model organisms for marine substrate spawners. Increasing stirring velocities during preparation of high alkane phase emulsified suspensions (HAPES) lead to decreased urn-scaled foam pore sizes, while similar high open porosities of around 80% are achieved. Wet-chemical silanization using hexadecyltrimethoxysilane (HDTMS) followed by subsequent oxygen plasma treatment of the foam surface is applied to generate bifunctionalized foams with hydrophobic matrix and hydrophilic surface properties. Under marine aquarium conditions, external aeration through the hydrophobic matrix of the foam is applied marginally below bubble point pressures resulting in a significant increase of the dissolved oxygen concentration of the surrounding water close to the foam surface without formation of undesired air bubbles. In accordance with increased foam pore sizes oxygen saturation rates of 0.26, 0.49 and 0.85%/min are obtained ensuring high oxygen concentrations at the spawning plate within a few hours. Assemblies of five bifunctionalized spawning plates to a ceramic housing are accepted by clownfish pairs, laying their eggs directly on the aerated ceramic substrate. The presented spawning plates are highly promising for sustainable aquaculture of marine ornamental fishes aiming to improve the survival rate of early life stages.
机译:对用于海洋观赏鱼的水产养殖的可靠的多孔基质材料(即基质产卵器)的需求不断增长,需要可控的加工过程以及直接的功能化来调节材料特性和表面物理化学特性。在这项研究中,提出了通过直接发泡制得的由氧化铝制成的高度多孔的陶瓷泡沫,其条件是受控地控制小丑鱼产下的卵离合器的通气,其中小丑鱼是海洋底物产卵器的模型生物。在高烷烃相乳化悬浮液(HAPES)的制备过程中,增加搅拌速度会导致水垢成比例的泡沫孔尺寸减小,同时实现约80%的相似高开孔率。使用十六烷基三甲氧基硅烷(HDTMS)进行湿化学硅烷化,然后对泡沫表面进行氧等离子处理,以生成具有疏水性基质和亲水性表面特性的双功能泡沫。在海洋水族馆条件下,通过泡沫的疏水性基质的外部通气在气泡点压力以下略微施加,导致靠近泡沫表面的周围水的溶解氧浓度显着增加,而不会形成不希望的气泡。根据增加的泡沫孔径,获得0.26、0.49和0.85%/ min的氧饱和度,从而确保在数小时内产卵板上的高氧浓度。小丑鱼对接受将五个双功能生成板组装到陶瓷外壳上,将它们的卵直接放在充气的陶瓷基板上。提出的产卵板对海洋观赏鱼的可持续水产养殖有很大的希望,目的是提高早期生命的成活率。

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