论文标题
锂离子电池回收的超声识别技术
Ultrasonic identification technique in recycling of lithium ion batteries
论文作者
论文摘要
锂离子电池的回收已被提及是近乎未来的废物管理必需品之一。为了使回收在经济上可行,需要开发直接且具有成本效益的技术,以将复合电极中的单个材料分开。如果锂离子电池微粒对声场的反应,则超声分离可能是一种技术。锂离子电池阴极含有疏水碳。由于固体的不可压缩性,围绕这些疏水颗粒的稀薄气体层必须在进行超声检查时不对称地振荡。因此,从疏水微粒辐射的超声信号的谐波含量必须高于相同大小相同的亲水微粒。锂离子电池阴极中存在的物理疏水微粒产生的谐波信号响应是否高于阴极中其他组件材料的谐波响应。测量并比较了经受1 MHz超声检查的阴极材料的散射响应。阴极材料C65,PVDF和NMC对1-MHz超声的反应不同。 C65的超谐波响应归因于疏水性的不对称振荡。此外,C65疏水微粒可能是用于谐波成像的合适候选物。
The recycling of lithium ion batteries has been mentioned as one of the near-future waste management necessities. In order for recycling to be economically viable, straightforward and cost effective techniques need to be developed to separate the individual materials in a composite electrode. Ultrasonic separation might be such a technique, provided that lithium ion battery microparticles respond predictably to a sound field. Lithium ion battery cathodes contain hydrophobic carbon. Owing to the incompressibility of a solid, the thin gaseous layer surrounding these hydrophobic particles must oscillate asymmetrically, when subjected to ultrasound. Consequently, the harmonic content of the ultrasound signal radiated from hydrophobic microparticles must be higher than that from hydrophilic microparticles with the same size. The question of whether the harmonic signal response generated by physical hydrophobic microparticles present in lithium ion battery cathodes is higher than the harmonic response of other component materials in the cathode is the focus of this paper. The scattering response of cathode materials subjected to 1-MHz ultrasound was measured and compared. The cathode materials C65, PVDF, and NMC respond differently to 1-MHz ultrasound. The superharmonic response of C65 has been attributed to asymmetric oscillations owing to its hydrophobicity. In addition, C65 hydrophobic microparticles might be suitable candidates for harmonic imaging.