Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand; Center of Excellence for Innovation in Chemistry (PERCH-CIC), Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand; Center of Excellence in Materials Science and Technology, Chiang Mai University, Chiang Mai 50200, Thailand.
Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.
Int J Biol Macromol. 2024 Jul;273(Pt 2):133119. doi: 10.1016/j.ijbiomac.2024.133119. Epub 2024 Jun 15.
Ethyl cellulose (EC)-based composite sponges were developed for oil spillage treatment. The EC sponge surface was decorated with helical carbon nanotubes (HCNTs) and molybdenum disulfide (MoS) (1 phr) using the inside-out sugar templating method. The inside surface of a sugar cube was coated with HCNTs and MoS. After filling the sugar cube pores with EC and the subsequent sugar leaching, the decorating materials presented on the sponge surface. The EC/HCNT/MoS sponge had a high level of oil removal based on its adsorption capacity (41.68 g/g), cycled adsorption (∼75-79 %), separation flux efficiency (∼85-95 %), and efficiency in oil/water emulsion separation (92-94 %). The sponge maintained adsorption capacity in acidic, basic, and salty conditions, adsorbed oil under water, and functioned as an oil/water separator in a continuous pump-assisted system. The compressive stress and Young's modulus of the EC sponge increased following its decoration using HCNTs and MoS. The composite sponge was robust based on cycled compression and was thermally stable up to ∼120 C. Based on the eco-friendliness of EC, the low loading of HCNTs and MoS, and sponge versatility, the developed EC/HCNT/MoS sponge should be good candidate for use in sustainable oil adsorption and separation applications.
乙基纤维素 (EC) 基复合海绵被开发用于处理溢油。采用内翻糖模板法,在 EC 海绵表面修饰螺旋状碳纳米管 (HCNT) 和二硫化钼 (MoS)(1 phr)。糖块的内表面涂覆有 HCNT 和 MoS。用 EC 填充糖块的孔隙并随后进行糖浸提后,修饰材料会出现在海绵表面。EC/HCNT/MoS 海绵具有较高的除油能力(基于其吸附能力为 41.68 g/g)、循环吸附(约 75-79%)、分离通量效率(约 85-95%)和油/水乳状液分离效率(92-94%)。该海绵在酸性、碱性和含盐条件下保持吸附能力,在水下吸附油,并在连续泵辅助系统中作为油水分离器发挥作用。在 HCNT 和 MoS 修饰后,EC 海绵的压缩应力和杨氏模量增加。复合海绵具有较强的抗循环压缩性,在约 120°C 下热稳定性良好。基于 EC 的生态友好性、HCNT 和 MoS 的低负载量以及海绵的多功能性,所开发的 EC/HCNT/MoS 海绵有望成为可持续的吸油和分离应用的良好候选材料。