1 |
Catalytic removal of volatile organic compounds using black mass from spent batteries Park YK, Shim WG, Jung SC, Jung HY, Kim SC Korean Journal of Chemical Engineering, 39(1), 161, 2022 |
2 |
Intelligent optimization of bioleaching process for waste lithium-ion batteries: An application of support vector regression approach Ruhatiya C, Gandra R, Kondaiah P, Manivas K, Samhith A, Gao L, Lam JSL, Garg A International Journal of Energy Research, 45(4), 6152, 2021 |
3 |
Advances in bioleaching as a sustainable method for metal recovery from e-waste: A review Baniasadi M, Vakilchap F, Bahaloo-Horeh N, Mousavi SM, Farnaud S Journal of Industrial and Engineering Chemistry, 76, 75, 2019 |
4 |
Electroanalytical determination of soluble Mn(II) species at high concentration levels Ruggeri S, Terzi F, Zanfrognini B, Corsi E, Dossi N, Zanardi C, Pigani L, Seeber R Electrochimica Acta, 240, 108, 2017 |
5 |
Study on preparation of NiCo ferrite using spent lithium-ion and nickel-metal hydride batteries Xi GX, Xu HD, Yao L Separation and Purification Technology, 145, 50, 2015 |
6 |
Recovery of manganese and zinc via sequential precipitation from spent zinc-MnO2 dry cells after fusion with potassium hydrogenosulfate Quintanilha CL, Afonso JC, Vianna CA, Gante V, Mantovano JL Journal of Power Sources, 248, 596, 2014 |
7 |
Influence of gaseous atmosphere during a thermal process for recovery of manganese and zinc from spent batteries Belardi G, Medici F, Piga L Journal of Power Sources, 248, 1290, 2014 |
8 |
Solvent Extraction Studies for Separation of Zn(II) and Mn(II) from Spent Batteries Leach Solutions Falco L, Quina MJ, Gando-Ferreira LM, Thomas H, Curutchet G Separation Science and Technology, 49(3), 398, 2014 |
9 |
폐건전지에서 회수된 Mn을 이용한 오존분해 특성 연구 김거종, 홍성창 Applied Chemistry for Engineering, 24(2), 161, 2013 |
10 |
Recovery of rare earths and base metals from spent nickel-metal hydride batteries by sequential sulphuric acid leaching and selective precipitations Innocenzi V, Veglio F Journal of Power Sources, 211, 184, 2012 |