The effect of nanomaterials in the treatment of medical waste in hospitals

IF 0.7 4区 材料科学 Q3 Materials Science
Xuefeng Su, Mengni Zhu, Hui Li, Yilin Li, Cheng Sun
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Abstract

In recent years, there has been a significant increase in the amount of medical waste produced, which poses a serious threat to the environment. Within such waste, the presence of antibiotics, which are now widely used, poses a potential threat to human health. This paper investigates the ability of Fe–Mn-NAM adsorbent material made from water hyacinth extract, iron chloride, and manganese sulfate, to adsorb the antibiotics norfloxacin (NOR) and ofloxacin (OFLX) in medical solid waste. Experimental results indicated that the specific surface area of the Fe–Mn-NAM nanosorbent material was 32.56 m 2 /g, with an average pore volume of 0.083 cm 3 /g and an average pore size of 3.21 nm. The amount of antibiotics adsorbed by Fe–Mn-NAM peaked under weakly alkaline conditions, and the capacity of the material to adsorb NOR significantly exceeded that for OFLX. There was a negative correlation between the amount of Fe–Mn-NAM adsorbent material added and the adsorption of NOR and OFLX, and a positive correlation with the antibiotic removal rate. At the same adsorbent dosage, the amount of adsorption and the removal rate of NOR by the Fe–Mn-NAM adsorbent material were significantly higher than for OFLX. Through electrostatic attraction, hydrogen bonding, surface complexation, and surface hydrophobicity, the Fe–Mn-NAM adsorbent material demonstrated a certain capacity to treat and eliminate NOR and OFLX in medical solid waste.
纳米材料在医院医疗废物处理中的效果
近年来,医疗废物的产生量显著增加,对环境构成严重威胁。在这些废物中,目前广泛使用的抗生素对人类健康构成潜在威胁。研究了以水葫芦提取物、氯化铁、硫酸锰为原料制备的Fe-Mn-NAM吸附剂对医疗固体废物中抗生素诺氟沙星(NOR)和氧氟沙星(OFLX)的吸附性能。实验结果表明,Fe-Mn-NAM纳米吸附材料的比表面积为32.56 m2 /g,平均孔体积为0.083 cm 3 /g,平均孔径为3.21 nm。Fe-Mn-NAM对抗生素的吸附量在弱碱性条件下达到峰值,且材料对NOR的吸附能力显著超过OFLX。Fe-Mn-NAM吸附材料的添加量与NOR和OFLX的吸附量呈负相关,与抗生素去除率呈正相关。在相同吸附剂投加量下,Fe-Mn-NAM吸附材料对NOR的吸附量和去除率均显著高于OFLX。Fe-Mn-NAM吸附材料通过静电吸引、氢键、表面络合和表面疏水性,对医疗固体废物中的NOR和OFLX表现出一定的处理和去除能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Express
Materials Express NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
0.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: Information not localized
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