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第 1 期 郑力等:竹刨花-铁耦合体系对低碳氮比污水的脱氮性能 · 221 ·
[20] ZHANG J M, FENG C P, HONG S Q, et al. Behavior of solid WANG Z J, WANG Z, LIN Z Z, et al. Research progress on
carbon sources for biological[J]. Water Science & Technology, application of denitrification biological filter in sewage
2012,65(9):1696-1704. treatment[J]. Applied Chemical Industry,2018 ,47 (8 ) :1727-
[21] 杨清培, 欧阳明, 杨光耀, 等.竹子生态化学计量学研究: 从生物 1731.
学基础到竹林培育学应用[J]. 植物生态学报,2016,40(3): [32] 孙雅丽, 张国臣, 阎中, 等.以腐朽木为碳源去除废水中硝酸盐
264-278. 氮的研究[J]. 环境科学,2010,31(6):1494-1498.
YANG Q P, OUYANG M, YANG G Y, et al. Research on SUN Y L, ZHANG G C, YAN Z, et al. Removing nitrate-
ecological stoichiometry in bamboos: from biological basis to nitrogen from wastewater using rotten wood as carbon source[J].
applications in silviculture of bamboo forests[J]. Chinese Journal Environmental Science,2010,31(6):1494-1498.
of Plant Ecology,2016,40(3):264-278. [33] 李斌, 郝瑞霞.固体纤维素类废物作为反硝化碳源滤料的比
[22] 张红爱, 黄宁辉, 莫家勇, 等.广东毛竹碳含量测定分析[J]. 林 选[J]. 环境科学,2013,34(4):1428-1434.
业与环境科学,2017,33(3):20-23. LI B, HAO R X. Comparison and optimization of cellulose
ZHANG H A, HUANG N H, MO J Y, et al. Determination and carbon source for denitrification filter[J]. Environmental
analysis of carbon content of Phyllostachys pubescens in Science,2013,34(4):1428-1434.
Guangdong Province[J]. Forestry and Environmental Science, [34] JIA L X, GOU E F, LIU H, et al. Exploring utilization of
2017,33(3):20-23. recycled agricultural biomass in constructed wetlands:
[23] 邵媛媛. 高效脱氮菌强化人工湿地处理村镇生活污水工艺研 characterization of the driving force for high-rate nitrogen
究[D]. 济南: 山东大学, 2014. removal[J]. Environmental Science & Technology,2019,53(3):
[24] 熊家晴, 孙建民, 郑于聪, 等.植物固体碳源添加对人工湿地脱 1258-1268.
氮效果的影响[J]. 工业水处理,2018,38(9):41-44. [35] 张雅君, 吕静静, 孙丽华, 等.不同硝酸盐浓度对再生水管网腐
XIONG J Q, SUN J M, ZHENG Y C, et al. Influences of solid 蚀状况的影响[J]. 腐蚀科学与防护技术,2018,30(3):259-
plant carbon source addition on the denitrification effect in 265.
constructed wetland[J]. Industrial Water Treatment,2018,38(9): ZHANG Y J, LÜ J J, SUN L H, et al. Influence of nitrate
41-44. concentration on corrosion of reclaimed water pipe network[J].
[25] 王玥, 秦帆, 唐燕华, 等.农业废弃物作为反硝化脱氮外加碳源 Corrosion Science and Protection Technology,2018,30(3):259-
的研究[J]. 林业工程学报,2019,4(5):146-151. 265.
WANG Y, QIN F, TANG Y H, et al. Agricultural wastes as [36] 曹晓敏, 李晨曦, 齐晗兵, 等.零价铁耦合厌氧微生物法在废水
additional carbon sources for denitrification[J]. Journal of 处理中的应用[J]. 化学通报,2021,84(4):365-371.
Forestry Engineering,2019,4(5):146-151. CAO X M, LI C X, QI H B, et al. Application of zero-valent iron
[26] SUN G P, WAN J F, SUN Y C, et al. Enhanced removal of coupled anaerobic biological method in wastewater treatment[J].
nitrate and refractory organic pollutants from bio-treated coking Chemistry,2021,84(4):365-371.
wastewater using corncobs as carbon sources and biofilm [37] ETIQUE M, JORAND F P A, ZEGEYE A, et al. Abiotic process
carriers[J]. Chemosphere,2019,237:124520. for Fe(Ⅱ) oxidation and green rust mineralization driven by a
[27] HARTZ T, SMITH R, CAHN M, et al. Wood chip denitrification heterotrophic nitrate reducing bacteria (Klebsiella mobilis)[J].
bioreactors can reduce nitrate in tile drainage[J]. California Environmental Science & Technology,2014,48(7):3742-3751.
Agriculture,2017,71(1):41-47. [38] WANG C, XU Y, HOU J, et al. Zero valent iron supported
[28] YIN W Z, WU J H, LI P, et al. Reductive transformation of biological denitrification for farmland drainage treatments with
pentachloronitrobenzene by zero-valent iron and mixed anaerobic low organic carbon: performance and potential mechanisms[J].
culture[J]. Chemical Engineering Journal,2012,210:309-315. Science of the Total Environment,2019,689:1044-1053.
[29] 王海燕, 赵远哲, 王文富, 等.人工湿地脱氮影响因素及强化措 [39] ZHU L, GAO K T, JIN J, et al. Analysis of ZVI corrosion
施研究进展[J]. 环境工程技术学报,2020,10(4):585-597. products and their functions in the combined ZVI and anaerobic
WANG H Y, ZHAO Y Z, WANG W F, et al. A review of sludge system[J]. Environmental Science and Pollution Research
influencing factors and enhanced measures for nitrogen removal International,2014,21(22):12747-12756.
0
of constructed wetlands[J]. Journal of Environmental Engineering [40] 李园怡, 李杰.Fe -生物铁法中铁的微生物腐蚀机理研究进
Technology,2020,10(4):585-597. 展[J]. 绿色科技,2019(8):50-52.
[30] 邵留, 徐祖信, 金伟, 等.以稻草为碳源和生物膜载体去除水中 LI Y Y, LI J. Research progress on microbial corrosion
0
的硝酸盐[J]. 环境科学,2009,30(5):1414-1419. mechanism of iron in Fe -biometric iron method[J]. Journal of
SHAO L, XU Z X, JIN W, et al. Nitrate removal from wastewater Green Science and Technology,2019(8):50-52.
using rice straw as carbon source and biofilm carrier[J]. [41] XU Y, WANG C, HOU J, et al. Application of zero valent iron
Environmental Science,2009,30(5):1414-1419. coupling with biological process for wastewater treatment: a
[31] 王子杰, 王郑, 林子增, 等.反硝化生物滤池在污水处理中的应 review[J]. Reviews in Environmental Science and
用研究进展[J]. 应用化工,2018,47(8):1727-1731. Bio/Technology,2017,16(4):667-693. ◇