PubMed چکیده/رکورد

Selective lithium recovery from spent LiMn2O4 cathodes through carbothermic reduction.

استودیوی صوتی مقاله

پخش حرفه‌ای فارسی و انگلیسی

در حال بررسی نسخه‌های صوتی ذخیره‌شده…

صوت تولیدشده با هوش مصنوعی است. برای کاربرد علمی یا درمانی، متن و منبع اصلی را بررسی کنید.
خواندن هوشمند فارسی و انگلیسی در حال آماده‌سازی صداهای مرورگر…
تنظیم صدای طبیعی و سرعت

صداهایی که در نامشان «Natural»، «Neural» یا «Online» دیده می‌شود معمولاً طبیعی‌ترند. انتخاب صدا به صداهای نصب‌شده در ویندوز و مرورگر شما بستگی دارد.

چکیده اصلی

Selective lithium recovery from spent lithium-ion batteries is essential for improving resource utilization and establishing sustainable recycling processes. Carbothermic reduction offers a promising pyrometallurgical route for recovering lithium from manganese-rich cathode materials, yet the reaction pathways governing lithium liberation and their influence on recovery efficiency remain poorly understood. In this study, the carbothermic reduction behavior of spent LiMn2O4 (LMO) cathodes was systematically investigated using integrated thermodynamic, kinetic, and experimental analyses. Simultaneous TGA-DSC and ex-situ XRD analyses performed between 800 and 1000 °C showed that LMO underwent stepwise reduction through LiMnO2 and Mn3O4 intermediates, ultimately forming water-leachable lithium species and insoluble MnO. Raman spectroscopy revealed the persistence of a monoclinic LiMnO2 local structure during the final reduction stage, indicating that the conversion of LiMnO2 to lithium species remained sluggish. Kinetic analysis showed that the rate-controlling mechanism changed above 850 °C from an interfacial reaction to CO(g) diffusion, driven by the development of a porous reaction structure. Water leaching achieved lithium recoveries exceeding 95 % for samples reduced at 900-950 °C. Further increasing the reduction temperature did not improve lithium recovery because MnO sintering limited lithium extraction. These results establish the relationship between reaction pathway, microstructural evolution, and lithium recovery efficiency, providing practical guidance for optimizing carbothermic recycling of manganese-rich spent LiMn2O4 cathodes.

متن کامل اصلی

متن در JumpToDate ذخیره نشده است.

برای بررسی دسترسی کتابخانه‌ای یا خرید، رکورد اصلی را باز کنید.

رفتن به منبع اصلی

کلیدواژه‌ها

Carbothermic reductionLIB recyclingLi recoveryLiMn(2)O(4)Pyrometallurgical recycling
در همین زیرشاخه

مقاله‌های مرتبط

PubMed2027

A New Combined Technique for Neophallus Elongation and Girth Enhancement for Metoidioplasty (Barroso Procedure): Total Corpora Mobilization with Martius Flap.

PURPOSE: Metoidioplasty is used in transmasculine gender-affirming surgery; however, limited neophallus length and girth remain significant challenges (1-4). We describe a combined technique using Total Corpora Mobilization (TCM) for elongation and a Martius flap for girth enhancement (5-9). MATERIALS AND METHODS: Fifteen transgender men underwent first-stage metoidioplasty with TCM and Martius flap between 2023 and 2026. The vestibula…

PubMed2027

Chlamydia trachomatis Infection in a Microphysiologic Cell Culture Model.

Chlamydia trachomatis is an obligate intracellular bacterium that infects the columnar epithelium of the human endocervix. While conventional two-dimensional cell cultures and animal models have been instrumental in advancing our understanding of C. trachomatis biology, they are limited in capturing the multicellularity, architecture, and physiological microenvironment of the human cervix. This chapter describes the use of a three-dime…

PubMed2027

Culture and Maintenance Methods for Botrytis cinerea.

Culturing and maintaining Botrytis cinerea in vitro is essential for advancing research on fungal biology, host-pathogen interactions, and plant disease management. Reliable culture methods provide the basis for reproducible experiments, ensuring stable growth and long-term preservation of isolates. This chapter details standardized procedures for establishing fungal colonies on agar and broth media, including Universal Beer Agar, Pota…

PubMed2027

Lipase-Catalyzed Synthesis of Nutritional Structured Lipids at Laboratory-Scale Using Crude or Refined Oils.

In this chapter, some examples of laboratory protocols to produce nutritional structured lipids, namely human milk fat substitutes, dietetic triacylglycerols, and interesterified fat blends with improved functional and rheological properties, catalyzed by either immobilized commercial or noncommercial lipase preparations, are presented. The use of crude oils instead of refined counterparts to reduce oil purification costs is also addre…