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Peat moss-derived biochar for sonocatalytic applications

机译:泥炭苔藓衍生的生物炭,用于儿童催化应用

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摘要

Peat-moss derived biochar was used as a sonocatalyst for the degradation of rhodamine B (RhB) at different ultrasonic frequencies (40 kHz and 300 kHz). The biochar was prepared by pyrolysis of peat-moss at 300 degrees C under N-2-saturated conditions. High removal efficiency was achieved when biochar (1000 mg L-1) was used as a sonocatalyst in the 40 kHz system, and high removal could be achieved by pre-adsorption and radical oxidation reactions on the surface of the biochar. This was validated in experiments employing radical scavengers. Sonochemiluminescence images and real images of the systems with no biochar, 100 mg L-1 biochar, and 1000 mg L-1 biochar also supported this observation. On the other hand, the addition of the biochar was less effective than expected for the degradation of RhB at 300 kHz. This was due to low dispersion of the biochar in solution in the high frequency system, where relatively weaker sonophysical effects could be obtained.
机译:泥炭苔衍生的生物炭被用作不同超声波频率(40kHz和300 kHz)的罗丹明B(RHB)降解的儿童催化剂。 通过在N-2饱和条件下在300摄氏度下涂抹泥炭摩尔来制备生物炭。 当生物炭(1000mg L-1)用作40kHz系统中的单催化剂时,实现了高去除效率,并且通过在Biochar的表面上的预吸附和自由基氧化反应可以实现高除去。 这在采用激进清除剂的实验中验证。 SonoChemil发光图像和没有Biochar,100mg L-1 BioChar和1000mg L-1 BioChar的系统的真实图像也支持了这一观察。 另一方面,在300kHz的rhb降解rhb的预期,Biochar的添加效率低。 这是由于生物炭在高频系统中的溶液中的低分散,可以获得相对较弱的声学效应。

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