首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Adsorptive removal of Sb(III) from wastewater by environmentally-friendly biogenic manganese oxide (BMO) materials: Efficiency and mechanisms
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Adsorptive removal of Sb(III) from wastewater by environmentally-friendly biogenic manganese oxide (BMO) materials: Efficiency and mechanisms

机译:通过环保型生物锰氧化物(BMO)材料从废水中吸附Sb(III):效率和机制

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Antimony(Sb(III)) contamination in wastewater has raised global concerns due to its high toxicity. The efficiency and mechanisms of Sb(III) adsorptive removal from wastewater with environmentally-friendly biogenic Mn oxide (BMO) materials as adsorbent were investigated, based on kinetic experiments and multispectroscopic analyses. Kinetic experiments showed that after 300 min of reaction, 97.79-100% of Sb(III) and 85.60-92.92% of total Sb were removed, indicating that BMO can quickly and effectively oxidize Sb(III) and sequester Sb(V) from water. The bacterial activity in BMO did not significantly affect Sb(III) removal, but a decrease in the release of Mn(II) into solution may provide new reactive sites for the re-oxidation of Sb(III). X-ray photoelectron spectrometer (XPS) high-resolution analysis suggested that Sb(V) was the only speciation remaining in the solid phase after the reaction of Sb(III) with BMO. X-ray diffraction (XRD) results further showed that the fast oxidation of Sb(III) by BMO led to the production of Mn(II) antimonate (Mn2Sb2O7) precipitates. Successive extraction experiments confirmed that residual fraction (67.49-83.62%) and Mn oxide bound fraction (13.18-29.72%) were the dominant fractions of Sb(III) after 300 min of reaction, which were relatively stable and had low leaching risks. These findings indicated that BMO performed well in removing Sb(III) from wastewater. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:废水中的锑(SB(III))污染引起了全球疑虑,因为它具有高毒性。基于动力学实验和多光谱分析,研究了Sb(III)与环保型生物Mn氧化物(BMO)材料的废水的效率和机制。动力学实验表明,除去300分钟后,除去了97.79-100%的Sb(III)和85.60-92.92%的总Sb,表明BMO可以快速有效地氧化Sb(III)并从水中沉淀SB(V) 。 BMO中的细菌活性没有显着影响Sb(III)的去除,但是Mn(II)释放到溶液中的降低可为Sb(III)的再氧化来提供新的反应性位点。 X射线光电子光谱仪(XPS)高分辨率分析表明,Sb(v)是Sb(III)与BMO反应后唯一残留在固相的形态。 X射线衍射(XRD)结果进一步表明,BMO通过BMO的快速氧化导致Mn(II)锑酸盐(MN2SB2O7)沉淀物的产生。连续的提取实验证实,残留级分(67.49-83.62%)和Mn氧化物结合级分(13.18-29.72%)是300分钟反应后Sb(III)的主要部分,其相对稳定并且具有低浸出风险。这些发现表明,BMO在从废水中除去Sb(III)时表现良好。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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