화학공학소재연구정보센터
검색결과 : 195건
No. Article
1 The comprehensive investigation on removal mechanism of Cr(VI) by humic acid-Fe(II) system structured on V, Ti-bearing magnetite surface
Lu MM, Zhang YB, Su ZJ, Tu YK, Wang J, Liu S, Liu JC, Jiang T
Advanced Powder Technology, 32(1), 37, 2021
2 Oxidative demethylase ALKBH5 repairs DNA alkylation damage and protects against alkylation-induced toxicity
Akula D, O'Connor TR, Anindya R
Biochemical and Biophysical Research Communications, 534, 114, 2021
3 Quinone-mediated dissimilatory iron reduction of hematite: Interfacial reactions on exposed {001} and {100} facets
Hu SW, Wu YD, Shi ZQ, Li FB, Liu TX
Journal of Colloid and Interface Science, 583, 544, 2021
4 Enzymatic hydroxylation of L-pipecolic acid by L-prolinecis-4-hydroxylases and isomers separation
Lu F, Chen J, Ye H, Wu HL, Sha F, Huang FJ, Cao F, Wei P
Biotechnology Letters, 42(12), 2607, 2020
5 Performance, optimization, and mechanism of nitric oxide removal by thiourea dioxide/Fe(II)EDTA reaction systems
He FQ, Zhu XY, Chen XC, Ding JH
Chinese Journal of Chemical Engineering, 28(11), 2918, 2020
6 Design of a [FeFe] macrocyclic metallotecton for light-driven hydrogen evolution reaction
Rajak S, Schott O, Kaur P, Maris T, Hanan GS, Duong A
International Journal of Hydrogen Energy, 45(4), 2699, 2020
7 Simultaneous removal of NO and SO2 from flue gas by Fe(II)EDTA/sodium dithionite solutions
He FQ, Zhu XY, Chen XC, Qian Y, Ding JH
Journal of Chemical Technology and Biotechnology, 95(5), 1392, 2020
8 Enhancement of bisphenol A degradation by accelerating the Fe(III)/Fe(II) cycle in graphene oxide modified Fe(III)/peroxymonosulfate system under visible light irradiation
Cheng F, Zhou P, Huo XW, Liu Y, Liu YX, Zhang YL
Journal of Colloid and Interface Science, 580, 540, 2020
9 Developing superior catalysts engineered by multichannel healing strategy for advanced oxidation
Xia H, Zhang Z, Liu J, Ning XM, Zhang ST, Lu XQ
Applied Catalysis B: Environmental, 250, 189, 2019
10 Protocatechuic acid promoted catalytic degradation of rhodamine B with Fe@Fe2O3 core-shell nanowires by molecular oxygen activation mechanism
Qin YX, Li GY, Zhang LZ, An TC
Catalysis Today, 335, 144, 2019