School of Environmental Science and Engineering, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.
Department of Civil Engineering, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.
Sci Rep. 2024 Oct 13;14(1):23932. doi: 10.1038/s41598-024-74911-6.
The presence of refractory micropollutants in natural waters poses significant environmental and health risks. Preferably, advanced oxidation techniques like electro-Fenton (EF) and bio-electro-Fenton (BEF) are used to mitigate micropollutants; nevertheless, their field-scale implementation is limited by prohibitive catalyst cost. As an alternative, waste-iron electrocoagulated algal biomass (A-BC/Fe) was explored as a heterogeneous Fenton catalyst to eliminate dimethyl phthalate (DMP) from wastewater. The Fenton-conducive morphological, chemical, and electrochemical properties of the A-BC/Fe catalyst were revealed by detailed characterisation. In EF treatment, 10 mg/L of DMP was completely degraded within 15 min at pH of 7.0, 50 mM NaSO, and cathode potential of - 1.4 V vs. Ag/AgCl. Moreover, the EF system achieved 87.80 ± 2.10% and 96.14 ± 1.10% of DMP removal from secondary and tertiary treated municipal sewage, respectively. The A-BC/Fe catalyst-driven EF process disintegrated DMP into benign non-toxic by-products and showed stable performance over eight batch cycles with only a 1.71% decline in DMP removal efficiency. Further, the A-BC/Fe-catalysed BEF system eliminated 94.81 ± 1.90% of DMP in 4 h while achieving a maximum power density of 124.03 ± 5.64 mW/m. This investigation underscores the potential of repurposing electrocoagulated algal biomass as a sustainable heterogenous catalyst for micropollutant remediation.
天然水中存在难处理的微量污染物会对环境和健康造成重大风险。最好使用电芬顿(EF)和生物电芬顿(BEF)等高级氧化技术来减轻微量污染物的影响;然而,由于催化剂成本过高,它们在现场的应用受到限制。作为替代方案,研究了废铁电凝聚藻生物质(A-BC/Fe)作为一种非均相芬顿催化剂来去除废水中的邻苯二甲酸二甲酯(DMP)。通过详细的表征揭示了 A-BC/Fe 催化剂的 Fenton 促进形态、化学和电化学特性。在 EF 处理中,在 pH 值为 7.0、50mM NaSO 和阴极电位为-1.4 V 相对于 Ag/AgCl 的条件下,10mg/L 的 DMP 在 15 分钟内完全降解。此外,EF 系统分别从二级和三级处理的城市污水中去除了 87.80±2.10%和 96.14±1.10%的 DMP。A-BC/Fe 催化剂驱动的 EF 过程将 DMP 分解为良性无毒的副产物,在八个批次循环中表现出稳定的性能,DMP 去除效率仅下降了 1.71%。此外,在 4 小时内,A-BC/Fe 催化的 BEF 系统消除了 94.81±1.90%的 DMP,同时实现了 124.03±5.64mW/m 的最大功率密度。这项研究强调了将电凝聚藻生物质再利用为可持续的非均相催化剂来修复微量污染物的潜力。