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超声辅助零价镁活化硝酸盐反硝化:反应副产物及途径的鉴定。

Ultrasound-assisted activation of zero-valent magnesium for nitrate denitrification: identification of reaction by-products and pathways.

机构信息

Çanakkale Onsekiz Mart University, Faculty of Engineering, Department of Environmental Engineering, Çanakkale, Turkey; Yildiz Technical University, Faculty of Civil, Department of Environmental Engineering, Istanbul, Turkey.

Çanakkale Onsekiz Mart University, Faculty of Engineering, Department of Environmental Engineering, Çanakkale, Turkey.

出版信息

J Hazard Mater. 2015 Jul 15;292:1-8. doi: 10.1016/j.jhazmat.2015.03.004. Epub 2015 Mar 5.

Abstract

Zero-valent magnesium (Mg(0)) was activated by ultrasound (US) in an aim to promote its potential use in water treatment without pH control. In this context, nitrate reduction was studied at batch conditions using various doses of magnesium powder and ultrasound power. While neither ultrasound nor zero-valent magnesium alone was effective for reducing nitrate in water, their combination removed up to 90% of 50 mg/L NO3-N within 60 min. The rate of nitrate reduction by US/Mg(0) enhanced with increasing ultrasonic power and magnesium dose. Nitrogen gas (N2) and nitrite (NO2(-)) were detected as the major reduction by-products, while magnesium hydroxide Mg(OH)2 and hydroxide ions (OH(-)) were identified as the main oxidation products. The results from SEM-EDS measurements revealed that the surface oxide level decreased significantly when the samples of Mg(0) particles were exposed to ultrasonic treatment. The surface passivation of magnesium particles was successfully minimized by mechanical forces of ultrasound, which in turn paved the way to sustain the catalyst activity toward nitrate reduction.

摘要

零价镁(Mg(0))经超声(US)激活,旨在促进其在无需 pH 控制的情况下在水处理中的潜在应用。在此背景下,使用不同剂量的镁粉和超声功率在分批条件下研究了硝酸盐还原。虽然单独的超声或零价镁都不能有效地还原水中的硝酸盐,但它们的组合在 60 分钟内可去除高达 50mg/L 的 NO3-N 达 90%。US/Mg(0) 对硝酸盐的还原速率随超声功率和镁剂量的增加而增强。氮气(N2)和亚硝酸盐(NO2(-))被检测为主要的还原副产物,而氢氧化镁 Mg(OH)2 和氢氧根离子(OH(-))被鉴定为主要的氧化产物。SEM-EDS 测量的结果表明,当 Mg(0)颗粒样品暴露于超声处理时,表面氧化物水平显著降低。镁颗粒的表面钝化通过超声的机械力得到了成功的抑制,从而为维持催化剂对硝酸盐还原的活性铺平了道路。

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