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一种用于表征废镍氢电池粉末工业样品的多分析方法。

A multi-analytical methodology for the characterization of industrial samples of spent Ni-MH battery powders.

机构信息

Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, Toulouse, France; Société Nouvelle d'Affinage des Métaux (S.N.A.M.), Viviez, France.

Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, Toulouse, France.

出版信息

Waste Manag. 2020 Dec;118:677-687. doi: 10.1016/j.wasman.2020.09.017. Epub 2020 Oct 1.

Abstract

A multi-analytical methodology is implemented to characterize several sieving fractions of industrial samples of Black Mass (BM) powders originating from the thermo-mechanical treatment of cylindrical and prismatic-type spent nickel metal-hydride (Ni-MH) batteries. Elemental analyses of 17 elements (including C and O) indicate that the elemental composition of the powders (greater than93 %wt) does not depend on the battery type nor on the sieving fraction. XRD analyses evidence several phases (including Ni, NiO, CeO and C) but their quantification is not possible. Beyond these standard characterisations, magnetic susceptibility measurements demonstrate that the amount of metallic nickel versus nickel oxide increases with the sieving fraction, and that powders from prismatic-type batteries contain twice as much metallic nickel than cylindrical ones. Thanks to statistical analysis (based on clustering algorithms) of an electron probe µ-analysis (EPMA) compositional map, the complete methodology allows us to propose a full phase distribution for the BM particles. Three types of particles are identified and quantified. They originate from the partial oxidation of the battery components (anode active mass, anode current collector, cathode active mass and cathode current collector). The whole picture highlights the joint importance of battery ageing mechanisms, thermal deactivation and BM sieving steps on powder composition.

摘要

采用多分析方法对圆柱形和棱柱形废镍金属氢化物(Ni-MH)电池热机械处理的工业黑料(BM)粉末的几个筛分部分进行了特征描述。对 17 种元素(包括 C 和 O)的元素分析表明,粉末的元素组成(大于 93wt%)不取决于电池类型或筛分部分。XRD 分析表明存在几种相(包括 Ni、NiO、CeO 和 C),但无法对其进行定量分析。除了这些标准特性外,磁化率测量表明,金属镍与氧化镍的比例随筛分部分的增加而增加,棱柱形电池的粉末中所含的金属镍是圆柱形电池的两倍。通过对电子探针微分析(EPMA)成分图的统计分析(基于聚类算法),完整的方法使我们能够为 BM 颗粒提出完整的相分布。识别和量化了三种类型的颗粒。它们来源于电池组件(阳极活性物质、阳极集流器、阴极活性物质和阴极集流器)的部分氧化。整个情况突出了电池老化机制、热失活和 BM 筛分步骤对粉末成分的共同重要性。

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