[1] 吴亦霄,乔建江.氯代烃污染控制方法研究进展[J].焦作大学学报,2014,28(2):87-89+86. WU Y X, QIAO J J. Progress in research on pollution control methods for chlorinated hydrocarbons[J]. Journal of Jiaozuo University, 2014, 28(2): 87-89+86 (in Chinese). [2] 高存荣,王俊桃.中国69个城市地下水挥发性卤代烃污染检测与特征研究[J].地球科学与环境学报,2012,34(1):66-71. GAO C R, WANG J T. Investigation and research on volatile halogenated hydrocarbon contamination from groundwater in 69 cities of China[J]. Journal of Earth Sciences and Environment, 2012, 34(1): 66-71 (in Chinese). [3] 黄文建,陈 芳,么 强,等.地下水污染现状及其修复技术研究进展[J].水处理技术,2021,47(7):12-18. HUANG W J, CHEN F, YAO Q, et al. Research progress on groundwater pollution and its remediation technology[J]. Technology of Water Treatment, 2021, 47(7): 12-18 (in Chinese). [4] GILBERT K M, BLOSSOM S J. Trichloroethylene: toxicity and health risks[M]. London: Springer London, 2014. [5] SONG J X, ZHAO Q, GUO J, et al. The microbial community responsible for dechlorination and benzene ring opening during anaerobic degradation of 2,4,6-trichlorophenol[J]. Science of the Total Environment, 2019, 651: 1368-1376. [6] TSENG H H, SU J G, LIANG C J. Synthesis of granular activated carbon/zero valent iron composites for simultaneous adsorption/dechlorination of trichloroethylene[J]. Journal of Hazardous Materials, 2011, 192(2): 500-506. [7] 丁琳洁,黄冬侠,宋纪斌,等.三氯乙烯污染地下水的原位修复技术研究进展[J].环境污染与防治,2021,43(5):631-637. DING L J, HUANG D X, SONG J B, et al. Research progress on in situ remediation technology of trichloroethylene-polluted groundwater[J]. Environmental Pollution & Control, 2021, 43(5): 631-637 (in Chinese). [8] 张 力,李星吾,张元赏,等.粉煤灰综合利用进展及前景展望[J].建材发展导向,2021,19(24):1-6. ZHANG L, LI X W, ZHANG Y S, et al. Progress and prospects of comprehensive utilization of fly ash[J]. Development Guide to Building Materials, 2021, 19(24): 1-6 (in Chinese). [9] WANG B, LI Q, KANG J F, et al. Preparation and characterization of polypyrrole coating on fly ash cenospheres: role of the organosilane treatment[J]. Journal of Physics D: Applied Physics, 2011, 44(41): 415301. [10] QUAN Y H, CHEN L. Removal of methylene blue in aqueous solution by microwave and fly ash combined process[C]//Proceedings of the 2017 6th International Conference on Energy, Environment and Sustainable Development (ICEESD 2017). Paris: Atlantis Press, 2017, 129: 803-806. [11] 崔家新,王连勇,张 坤,等.粉煤灰基沸石处理氮磷废水的研究进展[J].硅酸盐通报,2021,40(8):2622-2630. CUI J X, WANG L Y, ZHANG K, et al. Research progress on treatment of nitrogen and phosphorus wastewater with fly ash-based zeolite[J]. Bulletin of the Chinese Ceramic Society, 2021, 40(8): 2622-2630 (in Chinese). [12] ILERI B, SANLIYUKSEL Y D. Metal removal from acid mine lake using ultrasound-assisted modified fly ash at different frequencies[J]. Environmental Monitoring and Assessment, 2020, 192(3): 185. [13] 张晓民,贺 波,李 瑾,等.粉煤灰漂珠表面碳纳米管的生长及铅离子吸附研究[J].硅酸盐通报,2019,38(12):3741-3745+3758. ZHANG X M, HE B, LI J, et al. Growth of carbon nanotubes on fly ash floating beads surface and adsorption of lead ions[J]. Bulletin of the Chinese Ceramic Society, 2019, 38(12): 3741-3745+3758 (in Chinese). [14] 乔生莉.含酚废水处理过程中加入适量粉煤灰的研究及应用[J].山西化工,2018,38(2):199-201. QIAO S L. Study and application of proper amount of fly ash in the treatment of phenol wastewater[J]. Shanxi Chemical Industry, 2018, 38(2): 199-201 (in Chinese). [15] 许效天,霍 林,左叶颖,等.铝改性粉煤灰漂珠吸附水溶液中砷的性能研究[J].中国环境科学,2011,31(8):1300-1305. XU X T, HUO L, ZUO Y Y, et al. Performance research on arsenic adsorption from aqueous solution by aluminum-modified fly ash cenospheres[J]. China Environmental Science, 2011, 31(8): 1300-1305 (in Chinese). [16] 孟俊峰,许效天.铝改性粉煤灰漂珠材料吸附水中氟的性能研究[J].环境科技,2011,24(4):8-11. MENG J F, XU X T. Performance research on fluoride adsorption from aqueous solution by aluminum-modified fly ash cenospheres[J]. Environmental Science and Technology, 2011, 24(4): 8-11 (in Chinese). [17] 席建红.三氯乙烯在环境介质表面的吸附特性研究进展[J].山西大同大学学报(自然科学版),2020,36(6):1-2+26. XI J H. Research progress on adsorption properties of trichloroethylene on the surface of environmental medium[J]. Journal of Shanxi Datong University (Natural Science), 2020, 36(6): 1-2+26 (in Chinese). [18] 万祥龙,张海军,叶 漫,等.粉煤灰改性及其疏水薄膜研究[J].化工新型材料,2013,41(11):171-173. WAN X L, ZHANG H J, YE M, et al. Study on surface modification of flyash and its hydrophobic hybrid film[J]. New Chemical Materials, 2013, 41(11): 171-173 (in Chinese). [19] HSU T C, YU C C, YEH C M. Adsorption of Cu2+ from water using raw and modified coal fly ashes[J]. Fuel, 2008, 87(7): 1355-1359. [20] BARTON R R. Response surface methodology[J]. Wiley Interdisciplinary Reviews Computational Statistics, 1999, 2(2): 128-149. [21] RICOU-HOEFFER P, LECUYER I, CLOIREC P L. Experimental design methodology applied to adsorption of metallic ions onto fly ash[J]. Water Research, 2001, 35(4): 965-976. [22] 吴幼权.粉煤灰改性及其吸附性能研究[D].重庆:重庆大学,2006. WU Y Q. The study on fly ash's modification and it's adsorption capacity[D]. Chongqing: Chongqing University, 2006 (in Chinese). [23] GAO H, LUO F, WEN Q L, et al. Effect of preparation conditions on mechanical, dielectric and microwave absorption properties of SiC fiber/mullite matrix composite[J]. Ceramics International, 2019, 45(9): 11625-11632. [24] 王 伟,龙 悦,吕鹏刚.粉煤灰改性为水处理化学品的研究进展[J].精细与专用化学品,2017,25(7):35-37. WANG W, LONG Y, LV P G. Research progress on modified coal ash as water management chemicals[J]. Fine and Specialty Chemicals, 2017, 25(7): 35-37 (in Chinese). [25] MISHRA S B, LANGWENYA S P, MAMBA B B, et al. Study on surface morphology and physicochemical properties of raw and activated South African coal and coal fly ash[J]. Physics and Chemistry of the Earth, Parts A/B/C, 2010, 35(13/14): 811-814. [26] 欧阳平,范洪勇,张贤明,等.基于吸附的粉煤灰改性机理研究进展[J].材料科学与工程学报,2014,32(4):619-624. OUYANG P, FAN H Y, ZHANG X M, et al. Research progress of the modification mechanism of flyash based on adsorption[J]. Journal of Materials Science and Engineering, 2014, 32(4): 619-624 (in Chinese). [27] 魏玉锋,陈守楠,张西玲.煅烧参数对粉煤灰活性的影响[J].萍乡学院学报,2018,35(3):113-116. WEI Y F, CHEN S N, ZHANG X L. Influence of calcination parameters on the activity of fly ash[J]. Journal of Pingxiang University, 2018, 35(3): 113-116 (in Chinese). |