Nuclear Waste and Environmental Safety Key Laboratory of Defense, State Key Laboratory of Environment-friendly Energy Materials, National Co-innovation Center for Nuclear Waste Disposal and Environmental Safety, Sichuan Civil-military Integration Institute, School of National Defence Science & Technology, Southwest University of Science and Technology, Mianyang 621010, China.
Institute of Nuclear Physics and Chemistry, Chinese Academy of Engineering Physics, Mianyang 621900, China.
J Hazard Mater. 2020 Jun 15;392:122350. doi: 10.1016/j.jhazmat.2020.122350. Epub 2020 Feb 19.
As an effective way to obtain solar energy and separate the soluble contaminants from water, solar-driven interfacial evaporation is used in desalination, wastewater treatment, electricity generation, and domestic water heating system. Herein, we demonstrate a monolithic sponge with three-dimensional porous structure as the solar-energy evaporator, which is composed of hydrophilic polymer (Konjac Glucomannan, KGM) and solar absorbent (reduced graphene oxide, rGO). Under one sun irradiation, the sponge achieves a rapid evaporation rate (1.60 kg m h) and high interfacial water evaporation efficiency (92 %) due to its good absorption, photothermal, thermal insulation, and fast water transport properties. Meanwhile, the concentrations of radioactive elements (strontium, cesium, and uranium) in wastewater dropped from grams to micrograms after purification, even under radiation and acidic conditions. Additionally, the durability and repeatability of the sponge also have been verified. The results showed that solar-driven interfacial evaporation can effectively treat radioactive wastewater and enrich various radionuclides in a more energy-saving manner.
作为获取太阳能并将可溶性污染物从水中分离出来的有效方法,太阳能驱动界面蒸发被用于海水淡化、污水处理、发电和家用热水系统。在此,我们展示了一种由亲水性聚合物(魔芋葡甘聚糖,KGM)和太阳能吸收剂(还原氧化石墨烯,rGO)组成的具有三维多孔结构的整体式海绵作为太阳能蒸发器。在单阳光照射下,由于其良好的吸收、光热、隔热和快速水传输性能,海绵实现了快速蒸发率(1.60 kg m h)和高界面水蒸发效率(92%)。同时,即使在辐射和酸性条件下,废水中放射性元素(锶、铯和铀)的浓度也从克降低到了微克。此外,海绵的耐用性和可重复性也得到了验证。结果表明,太阳能驱动界面蒸发可以有效地处理放射性废水,并以更节能的方式富集各种放射性核素。