Zhou Yue-Ming, Li Chao, Liu Li, Shen Yu
National Research Base of Intelligent Manufacturing Service, Chongqing Technology and Business University, 19 Xuefu Avenue, Nan'an, Chongqing, 400067, China.
Chongqing South-to-Thais Environmental Protection Technology Research Lnstitute Co., Ltd, 19 Xuefu Avenue, Nan'an, Chongqing, 400060, China.
Environ Sci Pollut Res Int. 2023 May;30(24):65762-65778. doi: 10.1007/s11356-023-27115-w. Epub 2023 Apr 24.
Sewage sludge (SS) and raw pharmaceutical wastewater (RPW) are both toxic and harmful wastes, which are a menace to human and animal health and the ecosystem. A sludge-base micro-electrolysis filler (SMEF) was gained by SS and Fe powder as the primary raw materials. The preparation process of the SMEF was achieved based on the tetracycline hydrochloride (TCH) removal efficiency. The physicochemical characteristics (e.g., surface area, morphology features, function groups, and valence state of Fe) of the obtained SMEF were decided. With an Fe/SS ratio of 1/2, a sintering temperature of 1050 °C, a sintering time of 30 min, an initial pH of 3, and a filler dosage of 100 g/L, the SMEF demonstrated a high degradation ability for TCH with a removal rate reached 95.62% in 24 h. Kinetic analysis showed that the adsorption process of TCH was consistent with the pseudo-first-order Lagergren kinetic model. Moreover, degradation mechanism analysis showed that TCH was gradually degraded through dehydroxylation, demethylation, ring opening, oxidation, and reduction in solution. The SMEF had a good continuous removal performance for contaminants in RPW in an up-flow aerated filter. The removal efficiency of TOC and TN reached 46.60 and 42.27% within 24 h, respectively. The treated pharmaceutical wastewater was considered non-biotoxic after 24-h treatment with the SMEF. This study presents a innovative Fe-C micro-electrolysis filler based on SS and is important to the environmental-friendly recycling of SS and sustainable treatment of RPW, achieving the purpose of waste disposal.
污泥和原制药废水都是有毒有害废物,对人类、动物健康和生态系统构成威胁。以污泥和铁粉为主要原料制备了一种污泥基微电解填料(SMEF)。基于盐酸四环素(TCH)的去除效率实现了SMEF的制备过程。确定了所得SMEF的物理化学特性(如表面积、形态特征、官能团和铁的价态)。在铁/污泥质量比为1/2、烧结温度为1050℃、烧结时间为30分钟、初始pH值为3、填料投加量为100g/L的条件下,SMEF对TCH表现出较高的降解能力,24小时内去除率达到95.62%。动力学分析表明,TCH的吸附过程符合准一级Lagergren动力学模型。此外,降解机理分析表明,TCH在溶液中通过脱羟基、脱甲基、开环、氧化和还原逐渐降解。SMEF在上流式曝气滤池中对制药废水中的污染物具有良好的连续去除性能。24小时内TOC和TN的去除率分别达到46.60%和42.27%。用SMEF处理24小时后,处理后的制药废水被认为无生物毒性。本研究提出了一种基于污泥的创新型铁碳微电解填料,对污泥的环境友好型回收利用和制药废水的可持续处理具有重要意义,实现了废物处置的目的。