← Volver a resultados
Ficha bibliográfica · Consulta y acceso
Artículo de revista

Optimization of Falcon concentrator for iron recovery from blast furnace sludge using Box–Behnken design

Çağrı Çerik · Nature Portfolio · 2026

Acceso abierto disponible
Lectura rápida. Revisá los datos básicos del recurso y luego accedé al contenido desde el botón principal. En esta ficha solo se muestra la información necesaria para identificar la obra, citarla y abrirla.
Publicación seriada

3D scan-based classification of Chinese young female hand morphology

Esta publicación seriada contiene 688 contenidos relacionados.

Acceso al recurso

Entrá al contenido desde la opción principal o elegí otra fuente disponible.

Acceso principal

Acceso abierto disponible

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Abrir recurso

Resumen

Descripción general del contenido del recurso.

Abstract Blast furnace sludge (BFS) is an iron and carbon rich by-product whose direct recycling to ironmaking routes is often constrained by its fine particle size and the presence of volatile/corrosive species. This study evaluates Falcon enhanced gravity separation as a physical pre-treatment for iron upgrading from fine-grained BFS and optimizes operating conditions using Response Surface Methodology (RSM) with a three-factor, three-level Box-Behnken design (solid ratio 10–30%, fluidization water pressure 0.5–1.5 psi, and G-force 50–250 G). Statistical modeling confirmed that fluidization water pressure and G-force dominate separation performance, producing a clear grade–recovery trade-off: increasing water pressure improves Fe grade but reduces recovery, whereas increasing G-force tends to increase recovery while diluting grade. The BFS feed contained 34.40% Fe, 18.44% C and 2.94% Zn, under multi response optimization, the validation test yielded a concentrate grading 51.42% Fe at 57.88% Fe recovery. A two-stage scavenging configuration increased overall recovery to 77.52% at 49.35% Fe in the final concentrate. The results demonstrate that an optimized, two-stage Falcon circuit can effectively upgrade BFS and reduce mass for downstream treatment, while noting that Zn remains concentrated in the Fe-rich stream and may require subsequent removal depending on the intended metallurgical route.

Cómo citar

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

Çerik, Ç. (2026). Optimization of Falcon concentrator for iron recovery from blast furnace sludge using Box–Behnken design. https://doi.org/10.1038/s41598-026-43785-1

MLA

Çerik, Çağrı. "Optimization of Falcon concentrator for iron recovery from blast furnace sludge using Box–Behnken design." 2026. https://doi.org/10.1038/s41598-026-43785-1.

Chicago

Çerik, Çağrı. 2026. "Optimization of Falcon concentrator for iron recovery from blast furnace sludge using Box–Behnken design.". https://doi.org/10.1038/s41598-026-43785-1.

Harvard

Çerik, Ç. 2026, Optimization of Falcon concentrator for iron recovery from blast furnace sludge using Box–Behnken design, Nature Portfolio, available at: https://doi.org/10.1038/s41598-026-43785-1 [Accessed 30 Jun. 2026].

Compartir e imprimir

Guardá la ficha, copiá su enlace permanente o imprimila como PDF.

Exportar referencia

Si usás un gestor bibliográfico, podés exportar el registro en los formatos más comunes.

Detalles del recurso

Información bibliográfica útil para confirmar que se trata del material correcto.

Título
Optimization of Falcon concentrator for iron recovery from blast furnace sludge using Box–Behnken design
Autor / colaboradores
Çağrı Çerik
Editorial
Nature Portfolio
Año de publicación
2026
ISSN
2045-2322
ISSN
2045-2322
Idioma
eng
Copiado