Shanghai Engineering Research Center of Solid Waste Treatment and Resource Recovery, School of Environmental Science and Engineering, Shanghai Jiao Tong University, No.800 Dongchuan Road, Shanghai, 200240, China.
Shanghai Engineering Research Center of Solid Waste Treatment and Resource Recovery, School of Environmental Science and Engineering, Shanghai Jiao Tong University, No.800 Dongchuan Road, Shanghai, 200240, China.
J Environ Manage. 2023 Oct 15;344:118430. doi: 10.1016/j.jenvman.2023.118430. Epub 2023 Jun 20.
In this study, an environmentally friendly alternative was developed using catalytic ozonation by sludge-derived biochar loaded with bimetallic Fe/Ce (O/SBC-FeCe) for enhanced sludge dewatering. The results indicated that the lowest capillary suction time (CST) of 20.9 s and water content of dewatered sludge cake (Wc) of 64.09% were achieved under the dosage of 40 mg O/g dry solids (DS) and 0.4 g SBC-FeCe/g DS which were considered as the optimum condition. In view of excellent electron exchanging capacity of SBC-FeCe with rich Lewis acid sites and conversions of valence sates of Fe and Ce, more O were decomposed into reactive oxygen species under the catalytic action of SBC-FeCe, which strengthened oxidizing capacity. Enhanced oxidation rendered sludge cells inactivation and compact network structure rupture releasing intracellular water and organic substances. Subsequently, hydrophilic organic matters were attacked and eliminated lessening sludge viscosity and colloidal forces and intensifying hydrophobicity and flowability. In addition, changes of sludge morphology suggested that sludge roughness was alleviated, structural strength and compressibility were raised and porous and retiform structure was constructed providing channels for water outflow by adding skeleton builder of SBC-FeCe. Overall, the synergistic interaction of strengthened oxidation and skeleton construction improved sludge dewaterability.
在这项研究中,开发了一种使用负载双金属 Fe/Ce 的污泥衍生生物炭进行催化臭氧化的环保替代方法(O/SBC-FeCe),以增强污泥脱水。结果表明,在 40mg O/g 干固体(DS)和 0.4g SBC-FeCe/g DS 的剂量下,可实现最低的毛细抽吸时间(CST)为 20.9s 和脱水污泥饼的含水量(Wc)为 64.09%,这被认为是最佳条件。鉴于 SBC-FeCe 具有丰富的路易斯酸位和 Fe 和 Ce 价态的转换,具有出色的电子交换能力,在 SBC-FeCe 的催化作用下,更多的 O 分解成活性氧物质,从而增强了氧化能力。增强的氧化作用使污泥细胞失活并破坏致密的网络结构,释放细胞内水和有机物质。随后,亲水性有机物受到攻击并被消除,减少了污泥的粘度和胶体力,并增强了疏水性和流动性。此外,污泥形态的变化表明,添加 SBC-FeCe 作为骨架构建剂,减轻了污泥粗糙度,提高了结构强度和可压缩性,并构建了多孔和网状结构,为水流出提供了通道。总的来说,强化氧化和骨架构建的协同作用提高了污泥的脱水性能。