CAS Key Laboratory of Crust-Mantle Materials and the Environments, School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, PR China; State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, The Chinese Academy of Sciences, Xi'an, Shaanxi 710075, PR China.
CAS Key Laboratory of Crust-Mantle Materials and the Environments, School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, PR China; State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, The Chinese Academy of Sciences, Xi'an, Shaanxi 710075, PR China.
Chemosphere. 2019 Jan;215:101-114. doi: 10.1016/j.chemosphere.2018.10.027. Epub 2018 Oct 6.
Novel TiO/Fe/FeC-biochar composite, as a heterogeneous catalyst, has been synthesized by a single-step route, where sewage sludge (SS) and different ratios of nanoparticles (NPs: Fe and Ti) impregnated with chitosan using coagulation and flocculation techniques for subsequent thermal decomposition at 800 °C. The physiochemical properties of samples have been characterized thoroughly and employed in methylene blue (MB) degradation tests. It was found that NPs ratio and chitosan support have significant influences on the properties and catalytic activity of catalysts. Chitosan inclusion successfully improves the surface area and mesoporosity of composites, while high contents of Fe integration reduce surface area and active site (FeC) due to Fe agglomeration. Though, Ti incorporation produces Ti that activated photosensitivity. Catalyst with the high mesoporous surface, Ti, selective FeC, and small Fe shows superior MB removal competency through concurrent adsorption, photodegradation, and HO activation. Primarily OH and some O radicles participating in the degradation reactions evident from scavenging experiments. The maximum MB removal capacity evaluated as 376.9 mg L in neutral pH. Moreover, the catalyst exhibits excellent material stability, recyclability, easy separability, and low Fe-ion leaching (0.11 mg L) after catalysis. This study provided new insight into a low-cost and environmentally friendly route of catalyst synthesis using SS, NPs, and chitosan, which concurrently advantageous to SS disposal and wastewater treatment.
新型 TiO/Fe/FeC-生物炭复合材料作为一种多相催化剂,采用一步法合成,其中污水污泥(SS)和不同比例的纳米颗粒(NP:Fe 和 Ti)用壳聚糖浸渍,采用混凝和絮凝技术,随后在 800°C 下进行热分解。对样品的物理化学性质进行了全面的表征,并用于亚甲基蓝(MB)降解测试。结果表明,NP 比例和壳聚糖载体对催化剂的性质和催化活性有显著影响。壳聚糖的加入成功地提高了复合材料的比表面积和中孔率,而高含量的 Fe 整合由于 Fe 团聚而降低了比表面积和活性位(FeC)。然而,Ti 的掺入产生了激活光敏感性的 Ti。具有高介孔表面、Ti、选择性 FeC 和小 Fe 的催化剂通过协同吸附、光降解和 HO 激活表现出优异的 MB 去除能力。主要是 OH 和一些 O 自由基参与降解反应,从清除实验中可以明显看出。在中性 pH 下,MB 的最大去除容量评估为 376.9mg/L。此外,该催化剂在催化后表现出优异的材料稳定性、可回收性、易于分离性和低 Fe 离子浸出(0.11mg/L)。本研究为使用 SS、NP 和壳聚糖合成低成本、环保型催化剂提供了新的见解,这对 SS 处理和废水处理同时有利。