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纳米氧化镁改性蓖麻木生物炭对萘普生的吸附去除:通过顺序 Fenton-吸附工艺处理制药废水。

Adsorptive removal of naproxen onto nano magnesium oxide-modified castor wood biochar: Treatment of pharmaceutical wastewater via sequential Fenton's-adsorption process.

机构信息

Centre of Environmental Studies, Institute of Inter-Disciplinary Studies, University of Allahabad, Prayagraj, India.

Department of Chemistry, Faculty of Science, University of Allahabad, Prayagraj, India.

出版信息

IUBMB Life. 2024 Dec;76(12):1106-1124. doi: 10.1002/iub.2912. Epub 2024 Sep 16.

DOI:10.1002/iub.2912
PMID:39283051
Abstract

This current investigation explored the thermal conversion process of castor wood into biochar, which was subsequently harnessed for removing naproxen from pharmaceutical industrial effluent via adsorption. Surface composition analyses conducted through scanning electron microscopy-energy dispersive X-ray, laser-induced breakdown spectroscopy, and Fourier-transform infrared studies unveiled the presence of nano MgO particles within the adsorbent material. Employing optimization techniques such as response surface methodology facilitated a refined approach to batch study. The optimized conditions for batch naproxen sodium (NPX) adsorption on nano-MgO-modified biochar were identified as pH 4, 1.5 g/L adsorbent dosage, and a 120-min contact time maintaining a constant NPX concentration of 10 mg/L. The adsorption capacity was calculated to be 123.34 mg/g for a nano-magnesium oxide-modified castor wood biochar (modified biochar) and 99.874 mg/g for pristine castor wood biochar (pristine biochar). Fenton's reagents comprising 15 mM of FeSO (7HO) and 25 mM of HO have been scrutinized under conditions of pH 3.0, a reaction time of 30 min, a temperature of 30°C, and stirring at 120 rpm, followed by batch adsorption treatment. The COD, NH-N, NO , PO , and NPX removal percentages was found to be 90%, 87%, 79%, 80%, and 90%, respectively. Thus nano MgO-modified biochar holds promise of treatment of pharmaceutical effluent.

摘要

本研究探讨了蓖麻木材热转化为生物炭的过程,然后利用生物炭通过吸附去除制药工业废水中的萘普生。通过扫描电子显微镜-能量色散 X 射线、激光诱导击穿光谱和傅里叶变换红外研究进行的表面成分分析揭示了吸附剂材料中存在纳米 MgO 颗粒。采用响应面法等优化技术,对批量研究进行了精细化处理。在 pH 4、1.5 g/L 吸附剂用量和 120 min 接触时间的优化条件下,纳米-MgO 修饰生物炭对萘普生钠 (NPX) 的吸附容量为 123.34 mg/g,对原始生物炭的吸附容量为 99.874 mg/g。研究了在 pH 3.0、反应时间 30 min、温度 30°C 和 120 rpm 搅拌条件下的 Fenton 试剂(15 mM 的 FeSO4·7H2O 和 25 mM 的 H2O2),随后进行批量吸附处理。发现 COD、NH3-N、NO3-、PO43-和 NPX 的去除率分别为 90%、87%、79%、80%和 90%。因此,纳米 MgO 修饰生物炭有望用于处理制药废水。

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