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Treatment of chromium-containing sludge using sintering and ironmaking combined technology: A risk-reducing strategy for environmental impact.
Fan, Shengxuan; Wei, Jinchao; Xu, Xiaorong; Yan, Ran; Li, Qian; Liu, Ying; Huang, Yanjun; Wang, Yi; Fan, Guozhi; Zhang, Lei.
Afiliación
  • Fan S; School of Chemistry and Environmental Engineering, Wuhan Polytechnic University, Wuhan, 430023, China.
  • Wei J; Zhongye Changtian International Engineering Co., Ltd., Changsha, 410205, China; National Engineering Research Center of Sintering and Pelletizing Equipment System, Changsha, 410205, China.
  • Xu X; School of Chemistry and Environmental Engineering, Wuhan Polytechnic University, Wuhan, 430023, China.
  • Yan R; School of Chemistry and Environmental Engineering, Wuhan Polytechnic University, Wuhan, 430023, China.
  • Li Q; Zhongye Changtian International Engineering Co., Ltd., Changsha, 410205, China; National Engineering Research Center of Sintering and Pelletizing Equipment System, Changsha, 410205, China.
  • Liu Y; R&D Center of Wuhan Iron and Steel Company, Wuhan, 430080, China.
  • Huang Y; School of Chemistry and Environmental Engineering, Wuhan Polytechnic University, Wuhan, 430023, China.
  • Wang Y; School of Chemistry and Environmental Engineering, Wuhan Polytechnic University, Wuhan, 430023, China. Electronic address: 12540@whpu.edu.cn.
  • Fan G; School of Chemistry and Environmental Engineering, Wuhan Polytechnic University, Wuhan, 430023, China.
  • Zhang L; School of Chemistry and Environmental Engineering, Wuhan Polytechnic University, Wuhan, 430023, China. Electronic address: zhanglei@whpu.edu.cn.
J Environ Manage ; 359: 120986, 2024 May.
Article en En | MEDLINE | ID: mdl-38696849
ABSTRACT
The efficient, safe and eco-friendly disposal of the chromium-containing sludge (CCS) has attracted an increasing concern. In this study, Co-processing of CCS was developed via employing sintering and ironmaking combined technology for its harmless disposal and resource utilization. Crystalline phase and valence state transformation of chromium (Cr), technical feasibility assessment, leaching risk, characteristics of sintered products, and pollutant release during CCS co-processing were investigated through a series of laboratory-scale sintering pot experiments and large scale industrial trials. The results showed that the content of Cr(VI) in sintered products first increased then decreased with increasing temperature ranges of 300 °C-800 °C, and reached a maximum of 2189.64 mg/kg at 500 °C. 99.99% of Cr(VI) can be reduced to Cr(III) at above 1000 °C, which was attributed to the transformation of the Cr(VI)-containing crystalline phases (such as, MgCrO4 and CaCrO4) to the (Mg, Fe2+)(Cr, Al, Fe3+)2O4. The industrial trial results showed that adding 0.5 wt‰ CCS to sintering feed did not have adverse effects on the properties of the sintered ore and the plant's operating stability. The tumbler index of sinter was above 78% and the leaching concentrations of TCr (0.069 mg/L) was significantly lower than the Chinese National Standard of 1.0 mg/L (GB5085.3-2007). The TCr contents of sintering dust and blast furnace gas (BFG) scrubbing water were less than 0.19 wt‰ and 0.11 mg/L, respectively, which was far below the regulatory limit (1.5 mg/L, GB13456-2012). The mass balance evaluation results indicated that at least 89.9% of the Cr in the CCS migrated into the molten iron in the blast furnace (BF), which became a useful supplement to the molten iron. This study provided a new perspective strategy for the safe disposal and resource utilization of CCS in iron and steel industry.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Aguas del Alcantarillado / Cromo Idioma: En Revista: J Environ Manage Año: 2024 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Aguas del Alcantarillado / Cromo Idioma: En Revista: J Environ Manage Año: 2024 Tipo del documento: Article País de afiliación: China