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在空心FeO纳米球上合成花瓣状MnO纳米片用于生物处理造纸废水的多相光催化

Synthesis of Petal-Like MnO Nanosheets on Hollow FeO Nanospheres for Heterogeneous Photocatalysis of Biotreated Papermaking Effluent.

作者信息

Du Yangliu, Li Fuqiang, Peng Yecan, Jia Shaowu, Lan Lei, Zhou Jinghong, Wang Shuangfei

机构信息

School of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China.

Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, Nanning 530004, China.

出版信息

Materials (Basel). 2019 Jul 24;12(15):2346. doi: 10.3390/ma12152346.

Abstract

Owing to the implementation of increasingly stringent water conservation policies and regulations, the pulp and paper mill industry must make increased efforts to meet the limits for pollutant emissions. The primary pretreatment and secondary biochemical treatment methods used currently generally fail to meet the country-specific environmental regulations, and the wastewater must be processed further even after being subjected to secondary biochemical treatments. In this work, we synthesized FeO/MnO nanocomposites (FMNs) with a flower-like structure for use in the heterogeneous photocatalytic treatment of biotreated papermaking wastewater. FMNs1.25, which were formed using a KMnO/FeO molar ratio of 1.25, could be separated readily using an external magnetic field and exhibited higher photocatalytic activity than those of the other samples as well as MnO and FeO. The effects of various experimental parameters on the photocatalytic activity of FMNs1.25, including the initial pH of the wastewater and the catalyst dosage, were determined. The common chemical oxygen demand (COD) reduction rate in the case of this sample reached 56.58% within 120 min at a pH of 3, the COD of effluent after treatment was 52.10 mg/L. Further, even under neutral conditions, the COD of the treated effluent was below the current limit for discharge in China. Moreover, the nanocomposites exhibited good recyclability, and their catalytic activity did not decrease significantly even after five usage cycles. This study should serve as a platform for the fabrication of effective photocatalysts for the advanced treatment of biotreated papermaking effluent and refractory organic wastewater.

摘要

由于日益严格的节水政策和法规的实施,制浆造纸厂必须加大努力以满足污染物排放限制。目前普遍使用的初级预处理和二级生化处理方法通常无法满足特定国家的环境法规要求,即使经过二级生化处理后,废水仍需进一步处理。在这项工作中,我们合成了具有花状结构的FeO/MnO纳米复合材料(FMNs),用于生物处理后的造纸废水的多相光催化处理。使用KMnO/FeO摩尔比为1.25形成的FMNs1.25可以很容易地通过外部磁场分离,并且比其他样品以及MnO和FeO表现出更高的光催化活性。确定了各种实验参数对FMNs1.25光催化活性的影响,包括废水的初始pH值和催化剂用量。在pH值为3的情况下,该样品在120分钟内的化学需氧量(COD)常见降低率达到56.58%,处理后的出水COD为52.10mg/L。此外,即使在中性条件下,处理后出水的COD也低于中国目前的排放限值。而且,该纳米复合材料表现出良好的可回收性,即使经过五个使用周期,其催化活性也没有显著降低。这项研究应为制备用于生物处理后的造纸废水和难降解有机废水深度处理的有效光催化剂提供一个平台。

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