>
Fa   |   Ar   |   En
   multivariate modeling of the fenton process for enhanced cod removal and low sludge generation in landfill leachate treatment  
   
نویسنده biglarijoo nader ,shams amin
منبع journal of applied research in water and wastewater - 2024 - دوره : 11 - شماره : 2 - صفحه:110 -115
چکیده    Biological treatment methods are not practical when it comes to landfill leachate treatment. fenton as a physiochemical pretreatment technique is used in this research to increase the bod/cod ratio. conventionally, the main purpose of fenton reaction has been the removal of organic pollutants, but in this paper, two other factors including sludge to iron ratio (sir) and organic removal to sludge ratio (orsr) are examined to generate low amounts of sludge as well. for the design of the experimental procedure, central composite design was used to not only minimize the required tests, but also observe the interactions between factors. therefore, ph, ,  dosage and reaction time were considered as critical parameters while cod removal rate, sir, and orsr were introduced as targets. in order to have a clearer understanding of the process, multivariate modeling was applied to three targets to provide better predictions of the reaction. according to the statistical results, models can acceptably predict the target responses with r2 above 0.95 and standard error and f-values were within suitable ranges. to reach high cod removal rates, the critical factors were  and  while for lower sir and higher orsr, the role of ph and  were more significant. the reaction time was not a determining factor based on our observations for all three targets.
کلیدواژه fenton process ,landfill leachate ,cod removal ,sludge generation ,multivariate modeling
آدرس semnan university, school of civil engineering, department of civil engineering, iran, semnan university, school of civil engineering, civil engineering department, iran
پست الکترونیکی amin.shams@semnan.ac.ir
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved