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· 220 ·                                 环境工程技术学报                                         第 13 卷

            统对磷的去除。根据铁溶出情况与加入的铁粉量,                                  24683-24694.
                                                              [  8  ]   张恒亮, 朱铁群, 王海燕, 等.芦苇碳源投加量对表面流人工湿
            预计铁与竹的耦合脱氮效应会长期存在。
                                                                    地中试系统强化脱氮启动的影响[J]. 环境工程技术学报,
             3 结论                                                   2017,7(3):332-339.
                                                                    ZHANG  H  L,  ZHU  T  Q,  WANG  H  Y,  et  al.  Influence  of
                (1)静态释碳、氮试验结果显示,竹刨花有机物                              Phragmites  australis  carbon  dosage  on  enhanced  nitrogen
            释放速率较慢,氮释放量很少,表明竹刨花是一种适                                 removal  start-up  of  pilot-scale  surface  flow  constructed
                                                                    wetland[J].  Journal  of  Environmental  Engineering  Technology,
            合长期应用、二次污染风险低的固体碳源。
                                                                    2017,7(3):332-339.
                (2)竹刨花体系不       同  Fe/ 的静态反硝化试验结              [  9  ]   LI  Y  Y,  WANG  S,  LI  Y,  et  al.  Corn  straw  as  a  solid  carbon
                                     C
            果表明,各体       系  NO   - N  去除过程均符合一级动力
                              −
                              3                                     source  for  the  treatment  of  agricultural  drainage  water  in
            学,耦合体系的         k  均高于单纯竹刨花体系,但当                        horizontal subsurface flow constructed wetlands[J]. Water,2018,
            Fe/ 大  于  0.125∶ 时, 提升不显著。综合经济因                         10(4):511.
                           1
                                k
               C
                                                              [10]   SI Z H, SONG X S, WANG Y H, et al. Intensified heterotrophic
            素,耦合填     料  Fe/ 定 为  0.125∶1。
                           C
                                                                    denitrification  in  constructed  wetlands  using  four  solid  carbon
                (3)动态试验结果显示,竹刨花-铁耦合体系稳定
                                                                    sources:  denitrification  efficiency  and  bacterial  community
            运 行  70  其  T N  平均去除率大     于  75%,相比单纯竹                structure[J]. Bioresource Technology,2018,267:416-425.
                    d
            刨花对照组提高了         近  1  倍;此外,T 稳定去除期间,             [11]   LING  Y,  YAN  G  K,  WANG  H  Y,  et  al.  Release  mechanism,
                                           N
            基本无有机物二次污染风险,引入单质铁粉的耦合                                  secondary pollutants and denitrification performance comparison
                                                                    of  six  kinds  of  agricultural  wastes  as  solid  carbon  sources  for
            体系并未出      现  NH - N  明显积累与铁的大量溶出,且
                            3                                       nitrate  removal[J].  International  Journal  of  Environmental
            NO   积累浓度比单纯竹刨花对照组低                 近  50%。
                −
                -
                 N
               2                                                    Research and Public Health,2021,18(3):1232.
                                                              [12]   GUAN  X  X,  JI  G  X,  XU  S  Y,  et  al.  Selection  of  agricultural
            参考文献                                                    straws as sustained-release carbon source for denitrification in a
                                                                    drawer-type  biological  filter[J].  Water,  Air,  &  Soil  Pollution,
            [  1  ]   HU  R  T,  ZHENG  X  L,  ZHENG  T  Y,  et  al.  Effects  of  carbon
                                                                    2019,230(1):1-11.
                  availability  in  a  woody  carbon  source  on  its  nitrate  removal
                                                              [13]   SÁNCHEZ M P, SULBARÁN-RANGEL B C, TEJEDA A, et al.
                  behavior   in   solid-phase   denitrification[J].   Journal   of
                                                                    Evaluation  of  three  lignocellulosic  wastes  as  a  source  of
                  Environmental Management,2019,246:832-839.
            [  2  ]   LIU  D  Z,  LI  J  W,  LI  C  W,  et  al.  Poly(butylene  biodegradable carbon for denitrification in treatment wetlands[J].
                                                                    International Journal of Environmental Science and Technology,
                  succinate)/bamboo  powder  blends  as  solid-phase  carbon  source
                                                                    2020,17(12):4679-4692.
                  and biofilm carrier for denitrifying biofilters treating wastewater
                  from  recirculating  aquaculture  system[J].  Scientific  Reports,  [14]   辜夕容, 邓雪梅, 刘颖旎, 等.竹废弃物的资源化利用研究进
                  2018,8:3289.                                      展[J]. 农业工程学报,2016,32(1):236-242.
            [  3  ]   WANG T, WANG H Y, CHANG Y, et al. Enhanced nutrients  GU X R, DENG X M, LIU Y N, et al. Review on comprehensive
                  removal using reeds straw as carbon source in a laboratory scale  utilization  of  bamboo  residues[J].  Transactions  of  the  Chinese
                  constructed  wetland[J].  International  Journal  of  Environmental  Society of Agricultural Engineering,2016,32(1):236-242.
                  Research and Public Health,2018,15(6):1081.  [15]   BUCCO  S,  PADOIN  N,  NETTO  W  S,  et  al.  Drinking  water
            [  4  ]   YU  L  J,  CHEN  T,  XU  Y  H.  Effect  of  corn  cobs  as  external  decontamination by biological denitrification using fresh bamboo
                  carbon  sources  on  nitrogen  removal  in  constructed  wetlands  as inoculum source[J]. Bioprocess and Biosystems Engineering,
                  treating  micro-polluted  river  water[J].  Water  Science  &  2014,37(10):2009-2017.
                  Technology,2019,79(9):1639-1647.            [16]   WANG  Y  M.  Bamboo  as  solid  carbon  source  for  de-
            [  5  ]   凌宇, 赵远哲, 王海燕, 等.HRT对A/O-BF处理低碳氮比农村生           nitrification[J].   Advanced   Materials   Research,2013,
                  活污水脱氮的影响[J]. 环境科学研究,2021,34(4):927-935.           807/808/809:1330-1335.
                  LING  Y,  ZHAO  Y  Z,  WANG  H  Y,  et  al.  Effects  of  HRT  on  [17]   ZHANG Y B, FENG Y H, YU Q L, et al. Enhanced high-solids
                  A/O-BF nitrogen removal of low C/N rural domestic sewage[J].  anaerobic digestion of waste activated sludge by the addition of
                  Research of Environmental Sciences,2021,34(4):927-935.  scrap iron[J]. Bioresource Technology,2014,159:297-304.
            [  6  ]   郑冰冰, 吴怡伟, 李云辉, 等.不同碳氮比对海水养殖废水脱氮         [18]   杨燕, 朱静平.添加零价铁的反硝化系统中发生的主要反应[J].
                  效果的影响[J]. 环境科学研究,2020,33(8):1848-1856.            工业水处理,2021,41(3):77-82.
                  ZHENG B B, WU Y W, LI Y H, et al. Effect of different C/N  YANG Y, ZHU J P. Main reactions in denitrification system with
                  ratio on nitrogen removal of mariculture wastewater[J]. Research  zero  valent  iron  addition[J].  Industrial  Water  Treatment,2021,
                  of Environmental Sciences,2020,33(8):1848-1856.   41(3):77-82.
            [  7  ]   ZHOU B B, DUAN J J, XUE L H, et al. Effect of plant-based  [19]   ZHANG F F, MA C J, HUANG X F, et al. Research progress in
                  carbon  source  supplements  on  denitrification  of  synthetic  solid  carbon  source-based  denitrification  technologies  for
                  wastewater:  focus  on  the  microbiology[J]. Environmental  different  target  water  bodies[J].  Science  of  the  Total
                  Science  and  Pollution  Research  International,2019 ,26 (24 ) :  Environment,2021,782:146669.
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