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Recovery of metals from waste nickel-metal hydride batteries using multifunctional Diphonix resin

机译:使用多功能二酚树脂从废镍 - 金属氢化物电池中回收金属

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In this study, Diphonix resin containing sulfonic, diphosphonic and carboxylic groups was used to evaluate the adsorption capacity of metal ions contained in the nickel-metal hydride batteries (Ni-MH). This type of ion exchanger can be considered as the multifunctional material having great affinity to many metal ions. Using Diphonix resin adsorption process was carried out for La(III) and Ni(II) ions to characterize kinetic, adsorption and thermodynamic parameters. Preliminary studies of the Nd(III), Ce(III), La(III), Fe(III), Co(II), Ni(II), Cu(II) and Zn(II) metal ions mixture were also performed. The best results of adsorption studies were obtained using 0.2M HNO3. Diphonix resin exhibits especially good adsorptive properties with respect to rare earth element ions (adsorption efficiency of about 100%) in comparison with the heavy metal ions in the second oxidation state (about 50% or below). The series of affinity of the resin for the studied ions can be presented as follows: La(III)>Fe(III)>Nd(III)>Ce(III)>Cu(II)>Zn(II)>Co(II)>Ni(II). The obtained results confirmed the possibility of further use of the resin for the recovery and separation of rare earth elements from solutions after Ni-MH batteries leaching.
机译:在该研究中,使用含磺酸,二膦和羧基和羧基的Diphonix树脂评估镍 - 金属氢化物电池(Ni-MH)中包含的金属离子的吸附能力。这种类型的离子交换剂可以被认为是对许多金属离子具有很大亲和力的多功能材料。使用Diphonix树脂吸附方法对La(III)和Ni(II)离子进行,以表征动力学,吸附和热力学参数。还进行了对Nd(III),Ce(III),LA(III),Fe(III),Co(II),Ni(II),Cu(II)和Zn(II)金属离子混合物的初步研究。使用0.2M HNO 3获得吸附研究的最佳结果。与第二氧化态中的重金属离子(约50%或更低)相比,Diphonix树脂特别良好的吸附性能相对于稀土元素离子(约100%的吸附效率)。用于研究的离子的树脂的一系列亲和力可以如下所述:La(III)> Fe(III)> Nd(III)> Ce(III)> Cu(II)> Co(II) )> NI(II)。所得结果证实了在Ni-MH电池浸出后从溶液中进一步使用树脂以进行稀土元素的回收和分离的可能性。

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