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Flow rate and duty cycle effects in lysis of Chlamydomonas reinhardtii using high-energy pulsed focused ultrasound

机译:高能脉冲聚焦超声在莱茵衣藻裂解中的流速和占空比影响

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摘要

To consider microalgae lipid biofuel as a viable energy source, it is a necessity to maximize algal cell lysis, lipid harvest, and thus biofuel production versus the energy used to lyse the cells. Previous techniques have been to use energy consumptive ultrasound waves in the 10-40 kHz range in a stationary exposure environment. This study evaluated the potential of using 1.1 MHz ultrasound pulses in a new flow through type chamber on Chlamydomonas reinhardtii as a model organism for cell breakage. The ultrasound was generated using a spherically focused transducer with a focal length of 6.34 cm and an active diameter of 6.36 cm driven by 20 cycle sine-wave tone bursts at varied pulse repetition frequencies. First, variations in flow rate were examined at a constant duty cycle of 3.6%. After assessing flow rates, the duty cycle was varied to further explore the dependence on the tone burst parameters. Cell lysis was assessed by quantifying protein and chlorophyll release into the supernatant as well as by lipid extractability. Appropriate flow rates with higher duty cycles led to statistically significant increases in cell lysis relative to controls and other exposure conditions.
机译:为了将微藻类脂质生物燃料视为可行的能源,有必要最大化藻类细胞的裂解,脂质的收获,从而使生物燃料的生产与裂解细胞所消耗的能量最大化。先前的技术已经在固定的曝光环境中使用10-40 kHz范围的能量消耗超声波。这项研究评估了在莱茵衣藻(Chlamydomonas reinhardtii)上通过类型室的新流中使用1.1 MHz超声脉冲作为模型破坏细胞的可能性。超声是使用球形聚焦换能器产生的,其焦距为6.34 cm,有效直径为6.36 cm,由20个周期的正弦波音调脉冲以不同的脉冲重复频率驱动。首先,以3.6%的恒定占空比检查流量变化。在评估流速之后,改变占空比以进一步探索对音调突发参数的依赖性。通过定量蛋白质和叶绿素释放到上清液中以及脂溶性来评估细胞裂解。具有较高占空比的适当流速导致细胞裂解相对于对照和其他暴露条件在统计学上显着增加。

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