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The catalytic destruction of antibiotic tetracycline by sulfur-doped manganese oxide (S-MgO) nanoparticles

机译:硫掺杂氧化锰(S-MgO)纳米颗粒催化破坏抗生素四环素

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The present study evaluates the efficacy of S-doped MgO (S-MgO) as compared with the plain MgO as a catalyst for destructive removal of tetracycline (TTC) in aqueous solutions. The S-MgO had around 6% S in its structure. Doping MgO with S caused increase in surface oxygen vacancy defects. Adding S-MgO (12 g/ L) to a TTC aqueous solution (50 mg/L) caused removal of around 99% TTC at the neutral pH (ca. 5.1) and a short reaction time of 10 min. In comparison, plain MgO could remove only around 15% of TTC under similar experimental conditions. Diffusing O_2 into the TTC solution under the reaction with S-MgO resulted in a considerable improvement of TTC removal as compared to diffusing N_2. Complete removal of TTC and 86.4% removal of its TOC could be obtained using 2 g/L S-MgO nanoparticles. The removal of TTC increased with the increase in solution temperature. The presence of nitrate, sulfate and chloride did not considerably affect the removal of TTC using S-MgO while TTC removal significantly decreased at the presence of bicarbonate and phosphate. The S-MgO was a stable and reusable catalyst exhibiting much higher catalytic activity than plain MgO for the TTC destruction. Accordingly, S-MgO is an emerging and efficient catalyst for catalytic decomposition and mineralization of such pharmaceutical compounds as TTC under atmospheric temperature and pressure.
机译:本研究评估了与普通MgO相比,S掺杂MgO(S-MgO)作为破坏性去除水溶液中四环素(TTC)的催化剂的功效。 S-MgO的结构中约含6%的S。用S掺杂MgO会导致表面氧空位缺陷的增加。在TTC水溶液(50 mg / L)中添加S-MgO(12 g / L),在中性pH值(约5.1)下可去除约99%的TTC,反应时间短,只需10分钟。相比之下,在相似的实验条件下,纯MgO只能去除大约15%的TTC。与扩散N_2相比,在与S-MgO反应的情况下将O_2扩散到TTC溶液中可显着提高TTC的去除率。使用2 g / L的S-MgO纳米颗粒可以完全去除TTC和去除其TOC 86.4%。 TTC的去除随着溶液温度的升高而增加。硝酸盐,硫酸盐和氯化物的存在不会显着影响使用S-MgO去除TTC,而碳酸氢盐和磷酸盐的存在会显着降低TTC的去除。 S-MgO是一种稳定且可重复使用的催化剂,在破坏TTC方面比普通MgO表现出更高的催化活性。因此,S-MgO是在大气温度和压力下用于诸如TTC的药物化合物的催化分解和矿化的新兴且有效的催化剂。

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