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纳米二氧化锰改性生物炭作为吸附剂和氧化剂去除土霉素

Biochar Modified by Nano-manganese Dioxide as Adsorbent and Oxidant for Oxytetracycline.

机构信息

Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai, 264003, Shandong, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Bull Environ Contam Toxicol. 2021 Aug;107(2):269-275. doi: 10.1007/s00128-020-02813-0. Epub 2020 Feb 25.

Abstract

Biochar has limited capacity to adsorb oxytetracycline (OTC). Here we have used bamboo willow biochar (BC) as a carrier to produce nMnO-loaded biochars (MBC) by a co-precipitation method. Their chemical compositions, morphological features, specific surface area, and surface functional groups were observed or determined. Batch experiments were conducted to assess the effects of reaction time, initial OTC concentrations, pH, salt concentrations, and natural organic matter (NOM) on OTC removal. Kinetics and isotherms indicated that OTC was mainly adsorbed via chemical interactions, and mono- and multi-layer adsorption occurred on the surface. MBC removed 19-25 times more OTC than BC, and the removal was highest at near-neutral pH, not influenced by NaCl (2, 10 mM), slighted reduced by NOM (0-20 mg L), and enhanced by NaHCO (2, 10 mM). Besides being an adsorbent, MBC acted as an oxidant and degraded 58.5% of OTC at 24 h.

摘要

生物炭对土霉素(OTC)的吸附容量有限。在这里,我们使用毛竹生物炭(BC)作为载体,通过共沉淀法制备负载 nMnO 的生物炭(MBC)。观察或确定了它们的化学成分、形态特征、比表面积和表面官能团。通过批量实验评估了反应时间、初始 OTC 浓度、pH 值、盐浓度和天然有机物(NOM)对 OTC 去除的影响。动力学和等温线表明,OTC 主要通过化学相互作用吸附,并且在表面上发生单分子层和多分子层吸附。与 BC 相比,MBC 去除 OTC 的能力高 19-25 倍,在接近中性 pH 值时去除率最高,不受 NaCl(2、10 mM)的影响,受 NOM(0-20 mg L)的轻微影响,受 NaHCO3(2、10 mM)的促进。除了作为吸附剂,MBC 还充当氧化剂,在 24 小时内降解了 58.5%的 OTC。

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