School of Environmental Science and Engineering, Donghua University, 2999 North Renmin Road, Shanghai, 201620 P.R. China.
Nanoscale. 2018 Mar 8;10(10):4771-4778. doi: 10.1039/c7nr09435c.
Effective, affordable and low energy water purification technologies are highly desirable to address the current environmental issues. In this study, we developed a low-cost method to achieve efficient organic pollutants degradation by incorporating conductive nanomaterials (i.e., carbon nanotubes, CNTs) to assist electro-oxidation, leading to an efficient conductive nano-sponge filtration device. The integration of electrochemistry has significantly improved the performance of the sponge-based device to adsorb and oxidize organic compounds in aqueous solution. In particular, CNT materials could serve as both high-performance electro-catalysts for pollutant degradation and conductive additives that make polyurethane sponges highly conductive. On the other hand, the polyurethane sponge could work as a low-cost and highly porous matrix that could effectively host these CNT conductors. The conductive sponge can be easily fabricated by a simple dying based approach. The as-fabricated gravity fed device could effectively oxidize two model organic compounds (i.e., >92% antibiotic tetracycline and >94% methyl orange) via a single pass through the conductive sponge under the optimized experimental conditions (e.g., [NaSO] = 10 mmol L, [CNT] = 0.3 mg mL, and [SDBS] = 2.0 mg mL). We have achieved >88% degradation efficiency for the antibiotic tetracycline within 6 h of continuous operation with an average electro-oxidation flux of 0.82 ± 0.05 mol h m and an energy requirement of 1.0 kW h kg COD or <0.02 kW h m. These promising data make our CNT-sponge filtration device attractive for affordable and effective water purification.
高效、经济且低能耗的水净化技术对于解决当前的环境问题至关重要。在本研究中,我们开发了一种低成本方法,通过将导电纳米材料(如碳纳米管,CNTs)结合到电氧化中,来实现高效的有机污染物降解,从而得到一种高效的导电纳米海绵过滤装置。电化学的整合极大地提高了基于海绵的装置在吸附和氧化水溶液中有机化合物方面的性能。具体来说,CNT 材料可以作为高效的电催化剂来降解污染物,同时也可以作为导电添加剂,使聚氨酯海绵具有高导电性。另一方面,聚氨酯海绵可以作为一种低成本且具有高多孔性的基质,有效地容纳这些 CNT 导体。导电海绵可以通过简单的浸染方法轻松制备。在优化的实验条件下(例如,[NaSO] = 10 mmol L、[CNT] = 0.3 mg mL 和 [SDBS] = 2.0 mg mL),所制备的重力驱动装置可以有效地通过导电海绵一次性氧化两种模型有机化合物(即,>92%的抗生素四环素和>94%的甲基橙)。在连续运行 6 小时内,我们实现了 >88%的抗生素四环素降解效率,平均电氧化通量为 0.82 ± 0.05 mol h m,能量需求为 1.0 kW h kg COD 或 <0.02 kW h m。这些有前景的数据使我们的 CNT-海绵过滤装置在经济实惠和有效水净化方面具有吸引力。