1 |
Enhancement of the electro-Fenton degradation of organic contaminant by accelerating Fe3+/Fe2+ cycle using hydroxylamine Li D, Zheng T, Yu J, He H, Shi W, Ma J Journal of Industrial and Engineering Chemistry, 105, 405, 2022 |
2 |
Biosynthesis of hydrazine from ammonium and hydroxylamine using an anaerobic ammonium oxidizing bacterium Oshiki M, Yamada K, Kato I, Okoshi K, Imai T, Yamaguchi T, Araki N Biotechnology Letters, 42(6), 979, 2020 |
3 |
Hydroxylamine promoted Fe(III)/Fe(II) cycle on ilmenite surface to enhance persulfate catalytic activation and aqueous pharmaceutical ibuprofen degradation Yin R, Hu LL, Xia DH, Yang JL, He C, Liao YH, Zhang Q, He J Catalysis Today, 358, 294, 2020 |
4 |
Succinic Anhydride로부터 N-Hydroxysuccinimide의 친환경 생산공정 개발 구본석, 백정연, 박화인, 정인찬, 김우선 Clean Technology, 26(2), 91, 2020 |
5 |
Lewis Acid 촉매를 이용한 N-Hydroxysuccinimide의 실용적 합성법 연구 김동년, 김석찬 Applied Chemistry for Engineering, 30(3), 313, 2019 |
6 |
Rapid start-up and stable maintenance of domestic wastewater nitritation through short-term hydroxylamine addition Li J, Zhang Q, Li XY, Peng YZ Bioresource Technology, 278, 468, 2019 |
7 |
Ammonium transformed into nitrous oxide via nitric oxide by Pseudomonas putida Y-9 under aerobic conditions without hydroxylamine as intermediate Huang XJ, Xu Y, He TX, Jia HJ, Feng M, Xiang SD, Wang ST, Ni JP, Xie DT, Li ZL Bioresource Technology, 277, 87, 2019 |
8 |
Hydroxylamine enhanced degradation of naproxen in Cu2+ activated peroxymonosulfate system at acidic condition: Efficiency, mechanisms and pathway Chi HZ, He X, Zhang JQ, Wang D, Zhai XD, Ma J Chemical Engineering Journal, 361, 764, 2019 |
9 |
Hydroxylamine-assisted catalytic degradation of ciprofloxacin in ferrate/persulfate system Li C, Lin H, Armutlulu A, Xie RZ, Zhang YL, Meng XY Chemical Engineering Journal, 360, 612, 2019 |
10 |
Electrocatalytic reduction of hydroxylamine on copper immobilized platinum surface: Heterogeneous kinetics and sensing performance Hasnat MA, Mumtarin Z, Rahman MM Electrochimica Acta, 318, 486, 2019 |