Micro-Pollutant degradation using nanostructured catalysts
Öz
Anahtar Kelimeler
Kaynakça
- [1] Reiss R, Mackay N, Habig C, Griffin J. “An ecological risk assessment for triclosan in lotic systems following discharge from wastewater treatment plants in the United States”. Environmental Toxicology and Chemistry, 21(11), 2483-2492, 2002.
- [2] Çelebi H, Gök O. “Effect of triclosan exposure on mortality and behavioral changes of Poecilia reticulata and Danio rerio”. Human and Ecological Risk Assessment: An International Journal, 24(5), 1327-1341, 2018.
- [3] Bedoux G, Roig B, Thomas O, Dupont V, Le Bot B. “Occurrence and toxicity of antimicrobial triclosan and by-products in the environment”. Environmental Science and Pollution Research, 19(4), 1044-1065, 2012.
- [4] Zhang H, Yamada H, Tsuno H. “Removal of endocrine-disrupting chemicals during ozonation of municipal sewage with brominated byproducts control”. Environmental Science and Technology, 42(9), 3375-3380, 2008.
- [5] Munoz M, De Pedro ZM, Casas JA, Rodriguez JJ. “Triclosan breakdown by Fenton-like oxidation”. Chemical Engineering Journal, 198-199, 275-281, 2012.
- [6] Son HS, Ko G, Zoh KD. “Kinetics and mechanism of photolysis and TiO2 photocatalysis of triclosan”. Journal of Hazardous Materials, 166(2-3), 954-960, 2009.
- [7] Yu JC, Kwong TY, Luo Q, Cai Z. “Photocatalytic oxidation of triclosan”. Chemosphere, 65(3), 390-399, 2006.
- [8] Piccoli A, Fiori J, Andrisano V, Orioli M. “Determination of triclosan in personal health care products by liquid chromatography (HPLC)”. Il Farmaco, 57(5), 369-372, 2002.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yazarlar
Neval Baycan
Bu kişi benim
Türkiye
Yayımlanma Tarihi
9 Haziran 2021
Gönderilme Tarihi
12 Aralık 2019
Kabul Tarihi
-
Yayımlandığı Sayı
Yıl 2021 Cilt: 27 Sayı: 3