提高钢铁污泥中重金属的去除效率:超声波-生物浸出耦合处理的应用

Mateen Hosseinzadeh, Roya Mafigholami, E. R. Ghatromi
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引用次数: 0

摘要

本研究评估了利用硫氧硫杆菌和超声波耦合生物浸出法去除钢铁污泥中铁、铝、镍和硒的效率。利用表面响应法对生长条件进行了优化。该细菌先后适应了 100、200 和 300 mg/ml 三种不同浓度的含重金属溶液。样品暴露于频率为 30、60 和 90 kHz,持续时间为 20、30 和 40 分钟的超声波中,持续两周。使用硫代氧化铁,波频为 30 kHz,持续时间为 40 分钟,纸浆密度为 100 mg/ml,铁的去除率最高,达到 98.45%。在波峰频率为 90 kHz、持续时间为 20 分钟、纸浆密度为 300 毫克/毫升的条件下,Al 的最高去除率为 99.74%;在波峰频率为 30 kHz、持续时间为 20 分钟、纸浆密度为 300 毫克/毫升的条件下,Ni 的去除率约为 100%;在波峰频率为 90 kHz、持续时间为 20 分钟、纸浆密度为 300 毫克/毫升的条件下,Sr 的去除率为 98.45%。结果表明,在使用超声波和不使用超声波的情况下,镍和铝的生物浸出去除率都有显著提高(P 0.05)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving heavy metal removal efficiency from steel sludge: Application of the coupled ultrasonic-bioleaching treatment
This study assessed the efficiency of Fe, Al, Ni and Sr removal from the steel sludge using the coupled bioleaching with Thiobacillus thiooxidans and ultrasonic waves. Growth conditions were optimized using the surface response method. The bacterium was adapted successively to three heavy metal-containing solutions with different concentrations of 100, 200, and 300 mg/ml. Samples were exposed to ultrasonic waves at frequencies of 30, 60 and 90 kHz and durations of 20, 30 and 40 min for two weeks. The highest Fe removal efficiency of 98.45% was obtained using the T. thiooxidation, wave frequency of 30 kHz for 40 min, and pulp density of 100 mg/ml. The maximum removal efficiency was found to be 99.74% for Al under a wave frequency of 90 kHz for 20 min and a pulp density of 300 mg/ml, approximately 100% for Ni under a wave frequency of 30 kHz for 20 min and a pulp density of 300 mg/ml, and 98.45% for Sr under a wave frequency of 90 kHz for 20 min and a pulp density of 300 mg/mL. Results showed that the removal efficiency of Ni and Al bioleaching improved significantly (P <0.05) under the ultrasonic irradiation while the removal efficiency of Fe and Sr remained statistically unchanged (P> 0.05) with and without the application of ultrasonic waves.
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