首页> 外文期刊>Chemical engineering journal >Aminoclay-conjugated TiO2 synthesis for simultaneous harvesting and wet-disruption of oleaginous Chlorella sp.
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Aminoclay-conjugated TiO2 synthesis for simultaneous harvesting and wet-disruption of oleaginous Chlorella sp.

机译:含氨粘土共轭的TiO2合成,用于同时收获和湿破碎油质小球藻。

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摘要

In microalgae-based biorefinement, the integration of harvesting and lipid extraction steps could reduce the costs of downstream processes. One potential of integrated methods, microalgae harvesting by aminoclay-conjugated TiO2 has been considered. Therein, aminoclay plays an efficient role in microalgae flocculation and direct cell disruption by TiO2 photocatalytic performance under UV-light irradiation. In the present study, two TiO2 photocatalysts, a commercial anatase/rutile bicrystalline (of ~5 nm diameter) and anatase/brookite bicrystalline (of ~3.5 nm diameter) by sol-gel reaction at room temperature, were distributed uniformly onto an aminoclay matrix by ultrasound-irradiated TiO2 particles, resulting in aminoclay-conjugated TiO2 composites. Within 10 min, the injection of aminoclay-conjugated TiO2 into the prepared 1.5 g/L-concentration microalgal feedstocks produced an ~85% harvesting efficiency for oleaginous Chlorella sp. KR-1. Subsequently, the harvested wet-microalgae biomass was UV-irradiated at 365 nm for 3 h, thereby effecting the disruption of ~95% of cells.
机译:在基于微藻的生物精制中,收获和脂质提取步骤的整合可以降低下游工艺的成本。已经考虑了一种综合方法的潜力,即通过氨基粘土共轭TiO2收获微藻。其中,氨基粘土在微藻絮凝和通过TiO2在紫外线照射下的光催化性能直接破坏细胞中起着有效的作用。在本研究中,在室温下通过溶胶-凝胶反应将两种TiO2光催化剂,一种商用锐钛矿/金红石双晶(直径约5 nm)和锐钛矿/板钛矿双晶(直径约3.5 nm)均匀地分布在氨基粘土基质上通过超声辐照的TiO2颗粒,得到氨基粘土共轭的TiO2复合材料。在10分钟内,将氨基粘土结合的TiO2注入制备的1.5 g / L浓度的微藻原料中,对油性小球藻的收获效率约为85%。 KR-1。随后,将收获的湿微藻生物质在365 nm处进行紫外线照射3 h,从而破坏约95%的细胞。

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