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·2014· 精细化工 FINE CHEMICALS 第 39 卷
794: 148699. Journal, 2018, 353: 595-605.
[20] SHIN K H, CHA D K. Microbial reduction of nitrate in the presence [40] ZHANG Y, DOUGLAS G B, PU L, et al. Zero-valent iron-facilitated
of nanoscale zero-valent iron[J]. Chemosphere, 2008, 72(2): 257-262. reduction of nitrate: Chemical kinetics and reaction pathways[J].
[21] HUANG Y H, ZHANG T C, SHEA P J, et al. Effects of oxide Science of the Total Environment, 2017, 598: 1140-1150.
coating and selected cations on nitrate reduction by iron metal[J]. [41] WANG H X (汪虹西), LIAO B (廖兵), LU T (卢涛), et al. Nitrate
Journal of Environmental Quality, 2003, 32(4): 1306-1315. removal from groundwater by zero-valent iron-biochar composites[J].
[22] SOHN K, KANG S W, AHN S, et al. Fe (0) nanoparticles for nitrate Chinese Journal of Environmental Engineering (环境工程学报),
reduction: Stability, reactivity, and transformation[J]. Environmental 2020, 14(12): 3317-3328.
Science &Technology, 2006, 40(17): 5514-5519. [42] JI M K, AHN Y T, ALI KHAN M, et al. Removal of nitrate and
[23] SONG N F, XU J, CAO Y P, et al. Chemical removal and selectivity ammonium ions from livestock wastewater by hybrid systems
reduction of nitrate from water by (nano) zero-valent iron/activated composed of zero-valent iron and adsorbents[J]. Environmental
carbon micro-electrolysis[J]. Chemosphere, 2020, 248: 125986. Technology, 2011, 32 (16): 1851-1857.
[24] GHOSH A, DUTTA S, MUKHERJEE I, et al. Template-free synthesis [43] KIM I, CHA D K. Effect of low temperature on abiotic and biotic
of flower-shaped zero-valent iron nanoparticle: Role of hydroxyl nitrate reduction by zero-valent iron[J]. Science of the Total
group in controlling morphology and nitrate reduction[J]. Advanced Environment, 2021, 754: 142410.
Powder Technology, 2017, 28(9): 2256-2264. [44] GUO X J, YANG Z, LIU H, et al. Common oxidants activate the
[25] ZHANG Y, DOUGLAS G B, KAKSONEN A H, et al. Microbial reactivity of zero-valent iron (ZVI) and hence remarkably enhance
reduction of nitrate in the presence of zero-valent iron[J]. Science of nitrate reduction from water[J]. Separation and Purification Technology,
the Total Environment, 2019, 646: 1195-1203. 2015, 146: 227-234.
[26] GIBERT O, ABENZA M, REIG M, et al. Removal of nitrate from [45] KHALIL A M, ELJAMAL O, JRIBI S, et al. Promoting nitrate
groundwater by nano-scale zero-valent iron injection pulses in reduction kinetics by nanoscale zero valent iron in water via copper
continuous-flow packed soil columns[J]. Science of the Total Environment, salt addition[J]. Chemical Engineering Journal, 2016, 287: 367-380.
2021: 152300. [46] LI S Y (李胜业), JIN C H (金朝晖), JIN X Q (金晓秋), et al.
[27] VELIMIROVIC M, SIMONS Q, BASTIAENS L. Use of CAH- Removal of nitrate in groundwater by zero-valent iron packed
degrading bacteria as test-organisms for evaluating the impact of fine columns[J]. Journal of Agro-Environment Science (农业环境科学学
zerovalent iron particles on the anaerobic subsurface environment[J]. 报), 2004, 23(6): 1203-1206.
Chemosphere, 2015, 134: 338-345. [47] HAO Z W (郝志伟), LI L (李亮), MA L M (马鲁铭). Study on
[28] JIANG C, JIA L Y, HE Y L, et al. Adsorptive removal of phosphorus removal of nitrate from groundwater by zero-valent iron reduction
from aqueous solution using sponge iron and zeolite[J]. Journal of process[J]. China Water & Wastewater (中国给水排水), 2008,
Colloid and Interface Science, 2013, 402: 246-252. 24(17): 36-39.
[29] FU F, DIONYSIOU D D, LIU H. The use of zero-valent iron for [48] SU C, PULS R W. Nitrate reduction by zerovalent iron: Effects of
groundwater remediation and wastewater treatment: A review[J]. formate, oxalate, citrate, chloride, sulfate, borate, and phosphate[J].
Journal of Hazardous Materials, 2014, 267: 194-205. Environmental Science &Technology, 2004, 38(9): 2715-2720.
[30] ZENG Y, WALKER H, ZHU Q. Reduction of nitrate by NaY zeolite [49] YAO S T (姚松涛). Study on removal of nitrate from groundwater by
supported Fe, Cu/Fe and Mn/Fe nanoparticles[J]. Journal of Hazardous zero-valent iron reduction process[D]. Shenyang:Shenyang Jianzhu
Materials, 2017, 324: 605-616. University (沈阳建筑大学), 2011.
[31] CHEN S S, HSU H D, LI C W. A new method to produce nanoscale [50] TANG C L (唐次来). Simulation groundwater nitrate reduction by
iron for nitrate removal[J]. Journal of Nanoparticle Research, 2004, zero-valent iron in the Loess Plateau area[D]. Yangling:Northwest
6(6): 639-647. A&F University (西北农林科技大学), 2007.
[32] ALOWITZ M J, SCHERER M M. Kinetics of nitrate, nitrite, and Cr [51] HAO Z W, XU X H, JIN J, et al. Science Letters: Simultaneous
(Ⅵ) reduction by iron metal[J]. Environmental Science & Technology, removal of nitrate and heavy metals by iron metal[J]. Journal of
2002, 36(3): 299-306. Zhejiang University Science, 2005, 6(5): 307-310.
[33] ZHOU L (周玲), LI T L (李铁龙), QUAN H M (全化民), et al. [52] LIU H B, CHEN T H, CHANG D Y, et al. Nitrate reduction over
Nitrate reduction by zero-valent iron from groundwater[J]. Journal of nanoscale zero-valent iron prepared by hydrogen reduction of
Agro-Environment Science (农业环境科学学报), 2006, 25(2): 368- goethite[J]. Materials Chemistry and Physics, 2012, 133(1): 205-211.
372. [53] YANG G C, LEE H L. Chemical reduction of nitrate by nanosized
[34] YANG Y (杨燕), ZHU J P (朱静平). Main reactions in denitrification iron: Kinetics and pathways[J]. Water Research, 2005, 39(5): 884-894.
system with zero valent iron addition[J]. Industrial Water Treatment [54] ZHANG J H, HAO Z W, ZHANG Z, et al. Kinetics of nitrate
(工业水处理), 2021, 41(3): 77-82. reductive denitrification by nanoscale zero-valent iron[J]. Process
[35] LIU M C (刘明朝), LIU P G (刘佩贵), CHEN X Q (陈学群), et al. Safety and Environmental Protection, 2010, 88(6): 439-445.
Reasons discussion on decreasing removal rate of groundwater [55] KIM D G, HWANG Y H, SHIN H S, et al. Kinetics of nitrate
nitrate in zero-valent iron reduction process[J]. Water Resources and adsorption and reduction by nano-scale zero valent iron (NZVI):
Power (水电能源科学), 2018, 36(4): 49-52. Effect of ionic strength and initial pH[J]. KSCE Journal of Civil
[36] ZAWAIDEH L L, ZHANG T C. The effects of pH and addition of an Engineering, 2016, 20(1): 175-187.
organic buffer (HEPES) on nitrate transformation in Fe0-water [56] LI T L (李铁龙), LIU H S (刘海水), JIN Z H (金朝晖), et al. Batch
systems[J]. Water Science and Technology, 1998, 38(7): 107-115. experiment on reduction of nitrate in water by nanoscale zero valent
[37] FAN X M, GUAN X H, MA J, et al. Kinetics and corrosion products of iron particles[J]. Journal of Jilin University (Engineering and Technology
aqueous nitrate reduction by iron powder without reaction conditions Edition) (吉林大学学报: 工学版), 2006, 30(2): 264-268.
control[J]. Journal of Environmental Sciences, 2009, 21(8): [57] YUAN S (袁帅), XIAO C (肖椿), CHU Z H (褚正虎), et al. Nitrate
1028-1035. removal by coupled nanoscale zero-valent iron and autohydrogenotrophic
[38] FAN X M (范潇梦), GUAN X H (关小红), MA J (马军). Mechanisms denitrifying bacteria[J]. China Water & Wastewater (中国给水排水),
and affecting factors of nitrate reduction by zero-valent iron[J]. 2019, 35(15): 43-47.
China Water & Wastewater (中国给水排水), 2008, 24(14): 5-9. [58] XIONG Z, ZHAO D Y, PAN G. Rapid and controlled transformation
[39] WEI A L, MA J, CHEN J J, et al. Enhanced nitrate removal and high of nitrate in water and brine by stabilized iron nanoparticles[J].
selectivity towards dinitrogen for groundwater remediation using Journal of Nanoparticle Research, 2009, 11(4): 807-819.
biochar-supported nano zero-valent iron[J]. Chemical Engineering [59] NA J J (那娟娟), RAN J G (冉均国), GOU L (苟立), et al.