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首页> 外文期刊>Applied Microbiology and Biotechnology >Biosilica structures obtained from Nitzschia, Ditylum, Skeletonema, and Coscinodiscus diatom by a filtration-aided acid cleaning method
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Biosilica structures obtained from Nitzschia, Ditylum, Skeletonema, and Coscinodiscus diatom by a filtration-aided acid cleaning method

机译:通过过滤辅助酸清洗法从尼兹菌属,Ditylum,骨骼肌和球藻硅藻获得的生物二氧化硅结构

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摘要

A filtration-aided acid cleaning method was used to collect biosilica structures from a diatom culture medium, natural seawater, or water bloom. Cell extraction, acid cleaning, and acid removal were all performed on a polytetrafluoroethylene (PTFE) filter cloth, significantly improving the treatment capacity and efficiency of the traditional acid wash method. Five typical diatoms were cultivated in the laboratory for acid cleaning. Different growth speeds were introduced, and different process parameters for acid cleaning were utilized. After the acid cleaning, biosilica structures were collected from the frustules of diatoms using different methods. Girdle bands and valves of Coscinodiscus sp. were separated by floating of the valves. Central spines of Ditylum brightwellü and valves of Skeletonema costatum were separately collected by settling or filtration. Rod-like frustules, such as those of Bacillaris paradoxa, are not suitable for large quantities of acid wash. The silica structures were observed and tested using an AFM-calibrated glass needle to determine their elasticity. Elasticity tests showed that ringent girdle bands are more flexible than complete ones (Coscinodiscus sp.) and that both long-chain clusters of Nitzschia palea and central spines of D. brightwellü have certain elasticities. The required pressure for deforming or breaking the biosilica structures of diatoms was also determined.
机译:过滤辅助酸清洗方法用于从硅藻培养基,天然海水或水华中收集生物二氧化硅结构。细胞提取,酸清洗和除酸都在聚四氟乙烯(PTFE)滤布上进行,大大提高了传统酸洗方法的处理能力和效率。在实验室中种植了五种典型的硅藻进行酸清洗。介绍了不同的生长速度,并使用了不同的酸清洗工艺参数。酸清洗后,使用不同方法从硅藻壳中收集生物二氧化硅结构。 Coscinodiscus sp。的腰带和瓣膜。通过阀门的浮动分开。通过沉降或过滤分别收集Ditylumbrightwellü的中央棘和肋骨骨架的瓣。杆状壳,例如Bacillaris paradoxa的壳,不适用于大量酸洗。使用AFM校准的玻璃针观察并测试了二氧化硅结构,以确定其弹性。弹性测试表明,环形腰带比完整的腰带(Coscinodiscus sp。)更具柔韧性,并且尼兹菌的长链簇和D.Brightwellü的中央棘都具有一定的弹性。还确定了使硅藻的生物二氧化硅结构变形或破坏所需的压力。

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