Page 309 - 《环境工程技术学报》2022年第5期
P. 309

第 5 期                        马慧等:富含硅铝的工业灰渣合成沸石的研究进展                                        · 1665 ·

            时也产    生  CO ,不利于碳中和,为此在利           用  Al O 和           violet dye by low-cost P-type zeolite/carbon composite obtained
                                                       3
                        2                            2
            SiO 合成沸石的同时,如何利用残碳值得深入研                                 from  in  situ  conversion  of  coal  gasification  fine  slag[J].
                2
                                                                    Microporous and Mesoporous Materials,2021,312:110742.
            究。3)沸石合成过程中具有能耗高、用水量大、合
                                                              [12]   CHEN  Y  G,  CONG  S  L,  WANG  Q  Q,  et  al.  Optimization  of
            成周期长等缺点,限制富含硅铝的工业灰渣合成沸
                                                                    crystal  growth  of  sub-micron  ZSM-5  zeolite  prepared  by  using
            石的工业化生产,今后应在合成沸石的性能和经济                                  Al(OH)   extracted  from  fly  ash  as  an  aluminum  source[J].
                                                                        3
            效益之间达到平衡,探索出高效的合成工艺。                                    Journal of Hazardous Materials,2018,349:18-26.
                                                              [13]   ZHANG Y N, CHEN Y G, KANG W, et al. Excellent adsorption
                                                                    of Zn(II) using NaP zeolite adsorbent synthesized from coal fly
            参考文献
                                                                    ash via stage treatment[J]. Journal of Cleaner Production,2020,
            [  1  ]   宋远明, 钱觉时, 王智.燃煤灰渣活性差异及来源研究[J]. 粉煤
                                                                    258:120736.
                  灰综合利用,2006,19(6):16-18.
                                                              [14]   国家统计局. 中国统计年鉴[M]. 北京: 中国统计出版社, 2018.
                  SONG  Y  M,  QIAN  J  S,  WANG  Z.  Experimental  study  on
                                                              [15]   严博文, 叶长文, 龚锐, 等.响应曲面分析优化改性粉煤灰漂珠
                  pozzolanic activity difference among some of coal ashes[J]. Fly
                                                                    对水中氟的吸附性能及机理研究[J]. 环境科学研究,2019,
                  Ash Comprehensive Utilization,2006,19(6):16-18.
                                                                    32(4):709-717.
            [  2  ]   姚阳阳. 煤气化粗渣制备活性炭/沸石复合吸附材料及其性能
                                                                    YAN  B  W,  YE  C  W,  GONG  R,  et  al.  Optimization  study  of
                  研究[D]. 长春: 吉林大学, 2018.
                                                                    adsorption  parameters  for  removal  of  fluoride  by  fly  ash
            [  3  ]   MYMRIN V, BORGO S C, ALEKSEEV K, et al. Galvanic Cr-  cenospheres  modified  with  calcium  using  response  surface
                  Zn  and  spent  foundry  sand  waste  application  as  valuable  methodology[J].  Research  of  Environmental  Sciences,2019,
                  components  of  sustainable  ceramics  to  prevent  environment  32(4):709-717.
                  pollution[J].  International  Journal  of  Advanced  Manufacturing  [16]   宋远明, 钱觉时, 王智.燃煤灰渣活性研究综述[J]. 粉煤灰,
                  Technology,2020,107(3/4):1239-1250.               2007,19(1):44-46.
            [  4  ]   刘璇, 李如燕, 孙可伟, 等.铸造旧砂再生粉尘和废旧易拉罐原               SONG Y M, QIAN J S, WANG Z. Summary of study of coal
                  位反应制取Al O 颗粒增强Al-Si基复合材料的研究[J]. 铸造,               slag activation[J]. Coal Ash China,2007,19(1):44-46.
                           2
                             3
                  2014,63(1):81-84.                           [17]   郑志龙, 向丛阳, 黄凯, 等.固硫灰渣作水泥混合材的应用研
                  LIU X, LI R Y, SUN K W, et al. Research on in situ formation of  究[J]. 水泥工程,2018(5):64-65.
                  Al O  particle reinforced Al-Si matrix composites with foundry  ZHENG Z L, XIANG C Y, HUANG K, et al. Application study
                     3
                   2
                  used  sand  reclamation  dust  and  waste  cans[J].  Foundry,2014,  on  the  sulfurous  slag  using  as  cement  mixture[J].  Cement
                  63(1):81-84.                                      Engineering,2018(5):64-65.
            [  5  ]   WU R D, DAI S B, JIAN S W, et al. Utilization of the circulating  [18]   李国栋.粉煤灰的结构、形态与活性特征[J]. 粉煤灰综合利用,
                  fluidized  bed  combustion  ash  in  autoclaved  aerated  concrete:  1998(3):37-40.
                  effect  of  superplasticizer[J].  Construction  and  Building  LI  G  D.  Characteristics  of  structure,  shape  and  activity  of  fly
                  Materials,2020,237:117644.                        ash[J]. Fly Ash Comprehensive Utilization,1998(3):37-40.
            [  6  ]   赵永彬, 吴辉, 蔡晓亮, 等.煤气化残渣的基本特性研究[J]. 洁      [19]   钱觉时, 王智, 张玉奇.粉煤灰的矿物组成(下)[J]. 粉煤灰综合
                  净煤技术,2015,21(3):110-113.                          利用,2001,14(4):24-28.
                  ZHAO Y B, WU H, CAI X L, et al. Basic characteristics of coal  QIAN J S, WANG Z, ZHANG Y Q. Mineral composition of fly
                  gasification  residual[J].  Clean  Coal  Technology,2015 ,21 (3 ) :  ash (the third part)[J]. Fly Ash Comprehensive Utilization,2001,
                  110-113.                                          14(4):24-28.
            [  7  ]   XU Y T, CHAI X L. Characterization of coal gasification slag-  [20]   袁春林, 张金明, 段玖祥, 等.我国火电厂粉煤灰的化学成分特
                  based  activated  carbon  and  its  potential  application  in  lead  征[J]. 电力环境保护,1998,14(1):9-14.
                  removal[J]. Environmental Technology,2018,39(3):382-391.  [21]   郭俊温. 粉煤灰合成沸石及氨氮吸附性能的研究[D]. 包头: 内
            [  8  ]   de  MATOS  P  R,  MARCON  M  F,  SCHANKOSKI  R  A,  et  al.  蒙古科技大学, 2011.
                  Novel  applications  of  waste  foundry  sand  in  conventional  and  [22]   王朝强, 李昌文, 谭克锋.沸腾炉渣作为新型建材原材料的研
                  dry-mix  concretes[J].  Journal  of  Environmental  Management,  究[J]. 粉煤灰,2015,27(4):16-17.
                  2019,244:294-303.                                 WANG C Q, LI C W, TAN K F. Study of boiling slag as new
            [  9  ]   HE H F, XU S Y, HAN R Q, et al. Nutrient sequestration from  building raw material[J]. Coal Ash,2015,27(4):16-17.
                  wastewater  by  using  zeolite  Na-P1  synthesized  from  coal  fly  [23]   李燕. 沸腾炉渣用作混凝土掺和料的试验研究[D]. 杭州: 浙江
                  ash[J]. Environmental Technology,2017,38(8):1022-1029.  工业大学, 2009.
            [10]   AMONI  B  D  C,  FREITAS  A  D  L  D,  LOIOLA  A  R,  et  al.  A  [24]   周宛谕. 灰渣资源化综合利用试验研究[D]. 杭州: 浙江大学,
                 method  for  NaA  zeolite  synthesis  from  coal  fly  ash  and  its  2010.
                 application  in  warm  mix  asphalt[J].  Road  Materials  and  [25]   盛羽静. 气流床气化灰渣的理化特性研究[D]. 上海: 华东理工
                 Pavement Design, 2019, 20(Suppl 2): S558-S567.     大学, 2017.
            [11]   WU Y H, XUE K, MA Q L, et al. Removal of hazardous crystal  [26]   王成永. 铸造废砂和炉渣在道路基层中的应用研究[D]. 鞍山:
   304   305   306   307   308   309   310   311   312   313   314