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1.
J Environ Manage ; 358: 120818, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38599086

RESUMO

Hydrometallurgy is a primary method for recovering cathode electrode materials from spent lithium-ion batteries (LIBs). Most of the current research materials are pure cathode electrode materials obtained through manual disassembly. However, the spent LIBs are typically broken as a whole during the actual industrial recycling which makes the electrode materials combined with the collector fluid. Therefore, the competitive leaching between metal collector fluid and electrode material was examined. The pyrolysis characteristics of the electrode materials were analyzed to determine the pyrolysis temperature. The electrode sheet was pyrolyzed and then crushed for competitive leaching. The effect of pyrolysis was analyzed by XPS. The competitive leaching behavior was studied based on leaching agent concentration, leaching time and leaching temperature. The composition and morphology of the residue were determined to prove the competitive leaching results by XRD-SEM. TG results showed that 500 °C was the suitable pyrolysis temperature. XPS analysis demonstrated that pyrolysis can completely remove PVDF. Li and Co were preferentially leached during the competitive leaching while the leaching rates were 90.10% and 93.40% with 50 min leaching at 70 °C. The Al and Cu had weak competitive leachability and the leaching rate was 29.10% and 0.00%. XRD-SEM analysis showed that Li and Co can be fully leached with residual Al and Cu remaining. The results showed that the mixed leaching of electrode materials is feasible based on its excellent selective leaching properties.


Assuntos
Fontes de Energia Elétrica , Eletrodos , Lítio , Lítio/química , Reciclagem , Metais/química
2.
J Environ Manage ; 348: 119288, 2023 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-37864943

RESUMO

The metal resource crisis and the inherent need for a low-carbon circular economy have driven the rapid development of e-waste recycling technology. High-value waste printed circuit boards (WPCBs) are an essential component of e-waste. However, WPCBs are considered hazardous to the ecosystem due to the presence of heavy metals and brominated organic polymers. Therefore, achieving the recycling of metals in WPCBs is not only a strategic requirement for building a green ecological civilization but also an essential guarantee for achieving a safe supply of mineral resources. This review systematically analyzes the hydrometallurgical technology of metals in WPCBs in recent years. Firstly, the different unit operations of pretreatment in the hydrometallurgical process, which contain disassembly, crushing, and pre-enrichment, were analyzed. Secondly, environmentally friendly hydrometallurgical leaching systems and high-value product regeneration technologies used in recent years to recover metals from WPCBs were evaluated. The leaching techniques, including cyanidation, halide, thiourea, and thiosulfate for precious metals, and inorganic acid, organic acid, and other leaching methods for base metals such as copper and nickel in WPCBs, were outlined, and the leaching performance and greenness of each leaching system were summarized and analyzed. Eventually, based on the advantages of each leaching system and the differences in chemical properties of metals in WPCBs, an integrated and multi-gradient green process for the recovery of WPCBs was proposed, which provides a sustainable pathway for the recovery of metals in WPCBs. This paper provides a reference for realizing the gradient hydrometallurgical recovery of metals from WPCBs to promote the recycling metal resources.


Assuntos
Resíduo Eletrônico , Metais Pesados , Ecossistema , Resíduo Eletrônico/análise , Cobre/análise , Níquel , Ácidos
3.
Waste Manag ; 172: 71-79, 2023 Dec 01.
Artigo em Inglês | MEDLINE | ID: mdl-37717464

RESUMO

Waste printed circuit boards (WPCBs) are an attractive secondary resource that is challenging to dispose of due to its complexity. Reverse flotation is an effective method to remove non-metallic particles (NMPs) to obtain metals from WPCBs. Nevertheless, the removal of NMPs is usually inadequate in the present flotation practice. Thus, to provide a clean approach to improve the removal efficiency of NMPs, the method of adding gutter oil during dry grinding process was adopted to enhance the hydrophobic sites on the surface of NMPs to improve the floatability. The surface morphology of NMPs was analyzed by SEM, the results show that the rough morphology inhibited the adhesion of bubbles, while water occupied the cracks and pores, making it challenging for collector adsorption, which result in unstable particle-bubble adhesion. The results of FTIR indicate that both NMPs and gutter oil have -CH3, -CH2, -C = O, -C-O functional groups, which promotes the adsorption of gutter oil on the surface of NMPs. The contact angle (CA) results show that the adsorption of gutter oil on the particle surface is conducive to the formation of enhanced CA. Furthermore, the flotation enhancement effect was verified by flotation kinetic experiments. The accumulated floats yield of NMPs conditioned by gutter oil during grinding is increased from 67.05% (NMPs without conditioning) to 95.02%, and the resin recovery is increased by 31.10%. It is demonstrated that dry grinding with gutter oil can strengthen the floatability of NMPs, which provides a potential approach to increase the flotation efficiency of WPCBs.


Assuntos
Resíduo Eletrônico , Resíduo Eletrônico/análise , Reciclagem/métodos , Metais , Interações Hidrofóbicas e Hidrofílicas , Cinética
4.
Hua Xi Kou Qiang Yi Xue Za Zhi ; 27(5): 496-500, 2009 Oct.
Artigo em Chinês | MEDLINE | ID: mdl-19927717

RESUMO

OBJECTIVE: To compare the expression of nitricoxide synthase (NOS) in the osteogenesis tissues of gradual distraction and split osteotomy, and investigate molecular biology mechanism. METHODS: Thirty-six rabbits were randomly divided into gradual distraction group, high split osteotomy group and control group. A batch of 4 animals in each of the first 2 groups were sacrificed respectively on the 1st day, 1st, 2nd and 4th weeks after operation. The local changes of the tissues between bony segments were observed by inspections, radiography, HE staining, and immunological evaluation of NOS. The areas occupied by positive cells with inducible nitric oxide synthase (iNOS) and endothelial nitric oxide synthase (eNOS) were compared statistically within and among different batches. RESULTS: Immunologically, little expression of iNOS and eNOS could be detected in normal bone. In gradual distraction group, the iNOS stains were at peak values at 1st day, eNOS at 1st week postoperatively. In split osteotomy group, the iNOS stain were at peak values at 2nd week, eNOS at 1st week postoperatively. The nNOS was not detected in both of the groups. CONCLUSION: Routine procedure of distraction produced better osteogenesis, whereas split osteotomy with free bony segments would lead to abnormal osteogenesis.


Assuntos
Osteogênese por Distração , Osteogênese , Animais , Osso e Ossos , Mandíbula , Óxido Nítrico Sintase , Óxido Nítrico Sintase Tipo II , Osteotomia , Coelhos
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