Doucha J, Lívanský K
Division of Autotrophic Microorganisms, Institute of Microbiology, Academy of Sciences of the Czech Republic, 379 81, Trebon, Czech Republic.
Appl Microbiol Biotechnol. 2008 Dec;81(3):431-40. doi: 10.1007/s00253-008-1660-6. Epub 2008 Aug 29.
The following bead mills used for disruption of the microalga Chlorella cells were tested: (1) Dyno-Mill ECM-Pilot, grinding chamber volume 1.5 L; KDL-Pilot A, chamber volume 1.4 L; KD 20 S, chamber volume 18.3 L; KD 25 S, chamber volume 26 L of Willy A. Bachofen, Basel, Switzerland, (2) LabStar LS 1, chamber volume 0.6 L of Netzsch, Selb, Germany, (3) MS 18, chamber volume 1.1 L of FrymaKoruma, Neuenburg, Germany. Amount of disrupted cells decreased with increasing Chlorella suspension feed rate and increased up to about 85% of the beads volume in the grinding chamber of the homogenizers. It also increased with agitator speed and number of passes of the algae suspension through the chamber. The optimum beads diameter was 0.3-0.5 mm in the homogenizers Dyno-Mill and LabStar LS 1 and 0.5-0.7 mm in the homogenizer MS 18. While the degree of the cell disruption decreased with increasing cell density in Dyno-Mill and LabStar, the cell disruption in the MS 18 increased. Depending on processing parameters, more than 90% of algae cells were disrupted by passing through the bead mills and bacteria count in algae suspension was reduced to about two orders.
(1)Dyno-Mill ECM-Pilot,研磨腔体积1.5升;KDL-Pilot A,腔体积1.4升;KD 20 S,腔体积18.3升;KD 25 S,腔体积26升,瑞士巴塞尔的威利·A·巴赫ofen公司生产;(2)德国塞尔布的耐驰公司生产的LabStar LS 1,腔体积0.6升;(3)德国新堡的弗莱马科鲁马公司生产的MS 18,腔体积1.1升。破碎细胞的数量随小球藻悬浮液进料速率的增加而减少,在均质机的研磨腔中,破碎细胞数量增加至珠子体积的约85%。它还随搅拌器速度以及藻类悬浮液通过腔室的次数增加而增加。在Dyno-Mill和LabStar LS 1均质机中,最佳珠子直径为0.3 - 0.5毫米,在MS 18均质机中为0.5 - 0.7毫米。虽然在Dyno-Mill和LabStar中细胞破碎程度随细胞密度增加而降低,但MS 18中的细胞破碎程度增加。根据加工参数,超过90%的藻类细胞通过珠磨机后被破碎,藻类悬浮液中的细菌数量减少了约两个数量级。