Heterogeneous Catalytic Process for Wastewater Treatment
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IntechOpen
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http://www.intechopen.com/download/pdf/70440
Reference70 articles.
1. Taylor HS. Catalysis—Chemical Process. 1957. Available from: www.britannica.com
2. Wang Q, Tian S, Long J, Ning P. Use of Fe(II)Fe(III)-LDHs prepared by co-precipitationmethod in a heterogeneous-Fenton process for degradation of methylene blue. Catalysis Today. 2014:41-48
3. Cheng M, Ma W, Li J, Huang Y, Zhao J, Wen YX, et al. Visible-light-assisted degradation of dye pollutants over Fe(III)-loaded resin in the presence of H2O2 at neutral pH values. Environmental Science & Technology. 2004;38:1569-1575
4. Socci J, Osatiashtiani A, Kyriakou G, Bridgwater T. The catalytic cracking of sterically challenging plastic feedstocks over high acid density Al-SBA-15 catalysts. Applied Catalysis A: General. 2019;570:218-227
5. Lu P, Cai F, Zhang J, Liu Y, Sun Y. Hydrogen production from methanol steam reforming over B-modified CuZnAlOx catalysts. Journal of Fuel Chemistry and Technology. 2019;47:791-798
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