Optimization of hydrothermal synthesis conditions of Bidens pilosa–derived NiFe2O4@AC for dye adsorption using response surface methodology and Box-Behnken design

Environmental Science and Pollution Research(2024)

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摘要
The presence of stable and hazardous organic dyes in industrial effluents poses significant risks to both public health and the environment. Activated carbons and biochars are widely used adsorbents for removal of these pollutants, but they often have several disadvantages such as poor recoverability and inseparability from water in the post-adsorption process. Incorporating a magnetic component into activated carbons can address these drawbacks. This study aims to optimizing the production of NiFe2O4-loaded activated carbon (NiFe2O4@AC) derived from a Bidens pilosa biomass source through a hydrothermal method for the adsorption of Rhodamine B (RhB), methyl orange (MO), and methyl red (MR) dyes. Response surface methodology (RSM) and Box-Behnken design (BBD) were applied to analyze the key synthesis factors such as NiFe2O4 loading percentage (10–50
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关键词
Dyes removal,Optimization,Bidens pilosa,Box–Behnken,Response surface methodology,NiFe2O4@AC
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