4.6 Article

Development of Hybrid Systems by Integrating an Adsorption Process with Natural Zeolite and/or Palygorskite into the Electrocoagulation Treatment of Sanitary Landfill Leachate

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SUSTAINABILITY
卷 15, 期 10, 页码 -

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MDPI
DOI: 10.3390/su15108344

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landfill leachate; hybrid system; electrocoagulation; adsorption; zeolite; palygorskite

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The effectiveness of a hybrid approach combining electrocoagulation (EC) and adsorption (AD) processes with natural zeolite and/or palygorskite was investigated for treating raw sanitary landfill leachate (SLL). Optimal EC conditions were identified, and the implementation of zeolite as pre- or post-treatment for EC significantly improved ammonium nitrogen (NH4+-N) removal efficiency. Sequential treatment of AD(zeo)-EC showed higher color removal compared to EC-AD(zeo), and integration of AD(pal) into the AD(zeo)-EC system enhanced nitrate nitrogen (NO3--N) removal. The hybrid AD(zeo)-AD(pal)-EC system exhibited high simultaneous removal efficiencies for color, d-COD, NO3--N, and NH4+-N, making it a promising approach for raw landfill leachate treatment.
The effectiveness of a hybrid approach comprising electrocoagulation (EC) and adsorption (AD) (using natural zeolite and/or palygorskite) processes to treat raw sanitary landfill leachate (SLL) was investigated in terms of color, dissolved chemical oxygen demand (d-COD), nitrate nitrogen (NO3--N) and ammonium nitrogen (NH4+-N) removal. Optimal EC conditions were found with a current density of 30 mA cm(-2), Fe electrode material and pH 8. Implementation of the AD process using zeolite (AD(zeo)) as pre- or post-treatment for EC significantly increased the NH4+-N removal efficiency. The AD(zeo)-EC sequential treatment showed considerably higher color removal compared to the EC-AD(zeo) sequential treatment and was therefore determined to be the optimal sequential treatment. Integration of the AD process using palygorskite (AD(pal)) into the first or middle stage of the AD(zeo)-EC treatment system enhanced the overall NO3--N removal efficiency. The hybrid AD(zeo)-AD(pal)-EC treatment system exhibited the highest simultaneous removal efficiencies of color, d-COD, NO3--N and NH4+-N, corresponding to 95.06 +/- 0.19%, 48.89 +/- 0.89%, 68.38 +/- 0.93% and 78.25 +/- 0.61%, respectively. The results of this study indicate that the AD(zeo)-AD(pal)-EC hybrid system is a promising and efficient approach for treating raw landfill leachate.

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