RSC Advances · 2020 · 35 citations · 24 references
In this study, the stabilized landfill leachate which has a BOD : COD ratio of 0.045 was treated using Fenton's process. The effect of process parameters like reaction time, pH, dose of FeSO<sub>4</sub> and dose of H<sub>2</sub>O<sub>2</sub> was estimated using One Factor At a Time (OFAT) and the linear, interactive and quadratic effects between the factors were studied using Face Centered Central Composite Design (CCF). In the OFAT approach, reaction time: 5 minutes, pH: 3.0, dose of FeSO<sub>4</sub>: 30 mM, and dose of H<sub>2</sub>O<sub>2</sub>: 30 mM were optimized. In CCF, the statistically optimized model shows maximum removal of organic substances at an FeSO<sub>4</sub> concentration of 14.44 mM, pH 3.0 and 29.12 mM of H<sub>2</sub>O<sub>2</sub>. The regression co-efficient <i>R</i> <sup>2</sup> = 0.9079, adj <i>R</i> <sup>2</sup> = 0.854 and adequate precision = 14.676. The degradation of organic substances was assessed by measuring the Chemical Oxygen Demand (COD). Total Organic Carbon (TOC) and Gas Chromatography-Mass Spectroscopy (GC-MS) were investigated for the sample corresponding to the maximum COD reduction.
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Standard methods: For the examination of water and waste water
Analytical Biochemistry · 1990 · 72.5K citations · Full text
Fenton’s pre-treatment of mature landfill leachate
Antonio López, Michele Pagano, Angela Volpe et al. · Chemosphere · 2003 · 366 citations
Mariana Neamțu, Ayfer Yediler, Ilie Siminiceanu et al. · Journal of Photochemistry and Photobiology A Chemistry · 2003 · 294 citations
Advanced Oxidation Process, Chemical Engineering, Fenton-like Processes +10