Source Journal of CSCD
Source Journal for Chinese Scientific and Technical Papers
Core Journal of RCCSE
Included in JST China
Volume 39 Issue 11
Jan.  2022
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WU Qin-yue, LIU He, ZHENG Wei, LIU Hong-bo, ZHENG Zhi-yong, ZHANG Yan, ZHANG Cui-cui. PREPARATION OF BIOCHAR BY PYROLYSIS OF PHARMACEUTICAL SLUDGE AND ITS ADSORPTION PERFORMANCE IN TREATING PHARMACEUTICAL WASTEWATER[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(11): 103-109. doi: 10.13205/j.hjgc.202111013
Citation: WU Qin-yue, LIU He, ZHENG Wei, LIU Hong-bo, ZHENG Zhi-yong, ZHANG Yan, ZHANG Cui-cui. PREPARATION OF BIOCHAR BY PYROLYSIS OF PHARMACEUTICAL SLUDGE AND ITS ADSORPTION PERFORMANCE IN TREATING PHARMACEUTICAL WASTEWATER[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(11): 103-109. doi: 10.13205/j.hjgc.202111013

PREPARATION OF BIOCHAR BY PYROLYSIS OF PHARMACEUTICAL SLUDGE AND ITS ADSORPTION PERFORMANCE IN TREATING PHARMACEUTICAL WASTEWATER

doi: 10.13205/j.hjgc.202111013
  • Received Date: 2021-07-15
    Available Online: 2022-01-26
  • This study adopted pyrolysis to prepare biochar from pharmaceutical sludge, investigated the influence of ZnCl2 activation conditions on the adsorption performance of biochar, and explored its performance in pharmaceutical wastewater treatment. Increasing the concentration and impregnation ratio of ZnCl2 activator improved the adsorption performance of pharmaceutical sludge biochar. The specific surface area of biochar reached 534.91 m2/g, and iodine value and phenol adsorption value reached 674.61 mg/g and 119.12 mg/g, respectively, under ZnCl2 concentration of 5 mol/L and impregnation ratio of 1:1. The adsorption kinetics of COD in pharmaceutical wastewater by the pharmaceutical sludge biochar was more consistent with the Elovich model and the pseudo-second order model. The rapid adsorption of COD by the biochar occurred within 1 h. The increase in the dosage of biochar improved the removal of pollutants in wastewater. COD removal and AOX removal achieved 66.3% and 61.8%, respectively, by adsorption at 50 g/L biochar dosage for 1 h. The multi-stage adsorption could achieve better pollutant removal effect at a lower dosage, as the 6-stage adsorption at a biochar dosage of 1 g/L removed 72.8% of COD and 65.2% of AOX. The study revealed that pyrolysis of pharmaceutical sludge with ZnCl2 activation could produce high quality biochar, which possessed excellent potential in pharmaceutical wastewater adsorption treatment.
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