[1] 唐艳.TiO2光催化降解氨氮废水的研究[D].杨凌:西北农林科技大学, 2007.
[2] 潘素素, 郑智阳, 惠俊杰, 等.纳米二氧化钛-聚合物复合材料去除无机/有机污染物的研究进展[J].湿法冶金, 2019, 38(1):1-6.
[3] 王宝磊, 吴玉锋, 章启军, 等.La掺杂TiO2纳米材料的制备及光催化性能研究进展[J].化工新型材料, 2016, 44(8):38-40.
[4] 余立志, 李京伟, 林银河.非金属掺杂改性纳米TiO2光催化性能研究进展[J].应用化工, 2019, 48(8):1944-1948.
[5] 张梦媚, 唐婉莹, 张婉, 等.纳米TiO2的制备及对低氨氮含量废水的去除效果研究[J].水处理技术, 2016, 42(7):65-69.
[6] Zhu X D, Nanny M A, Butler E C.Effect of inorganic anions on the titanium dioxide-based photocatalytic oxidation of aqueous ammonia and nitrite[J].Journal of Photochemistry and Photobiology A:Chemistry, 2007, 185:289-294.
[7] 罗仙平, 杨晶, 王春英, 等.P25 TiO2光催化降解中低浓度氨氮废水[J].有色金属科学与工程, 2015, 6(3):100-104.
[8] Lee J S, Park H W, Choi W Y.Selective photocatalytic oxidation of NH3 to N2 on platinized TiO2 in water[J].Environ Sci Technol, 2002, 36:5462-5468.
[9] Pretzer L A, Carlson P J, Boyd J E.The effect of Pt oxidation state and concentration on the photocatalytic removal of aqueous ammonia with Pt-modified titania[J].Journal of Photochemistry and Photobiology A:Chemistry, 2008, 200:246-253.
[10] Shibuya S, Aoki S, Sekine Y, et al.Influence of oxygen addition on photocatalytic oxidation of aqueous ammonia over platinum-loaded TiO2[J].Applied Catalysis B:Environmental, 2013, 138-139:294-298.
[11] Shibuya S, Sekine Y, Mikami I, et al.Influence of pH and pH adjustment conditions on photocatalyticoxidation of aqueous ammonia under airflow over Pt-loaded TiO2[J].Applied Catalysis A:General, 2015, 496:73-78.
[12] Altomare M, Selli E.Effects of metal nanoparticles deposition on the photocatalytic oxidation of ammonia in TiO2 aqueous suspensions[J].Catalysis Today, 2013, 209:127-133.
[13] 李丹丹, 刘中清, 刘旭, 等.Ag掺杂TiO2纳米管阵列的制备及光电催化降解氨氮废水[J].无机化学学报, 2012, 28(7):1343-1347.
[14] Dozzi M V, Brocato S, Marra G, et al.Aqueous ammonia abatement on Pt- and Ru-modified TiO2:selectivity effects of the metal nanoparticles deposition method[J].Catalysis Today, 2017, 287:148-154.
[15] Luo X P, Chen C F, Yang J, et al.Characterization of La/Fe/TiO2 and its photocatalytic performance in ammonia nitrogen wastewater[J].Int J Environ Res Public Health, 2015, 12:14626-14639.
[16] 刘佳, 龙天渝, 陈前林, 等.Cu/La共掺杂TiO2光催化氧化水中的氨氮[J].环境工程学报, 2013, 7(2):457-462.
[17] Reli M, AmbroAzˇ5ov N, ihor M, et al.Novel cerium doped titania catalysts for photocatalytic decomposition of ammonia[J].Applied Catalysis B:Environmental, 2015, 178:108-116.
[18] 任海涛.Ag增强TiO2和g-C3N4复合材料光催化转化含氮和苯酚污染物的研究[D].天津:天津大学, 2015.
[19] Jing Y, Hu X M, Shao C Y.Electrodeposition of CdS-TiO2 for the photocatalytic degradation of ammonia-nitrogen wastewater[J].Int J Electrochem Sci, 2017, 12:9311-9319.
[20] Shavisi Y, Sharifnia S, Zendehzaban M, et al.Application of solar light for degradation of ammonia in petrochemical wastewater by afloating TiO2/LECA photocatalyst[J].Journal of Industrial and Engineering Chemistry, 2014, 20:2806-2813.
[21] Shavisi Y, Sharifnia S, Hosseini S N, et al.Application of TiO2/perlite photocatalysis for degradation of ammonia in wastewater[J].Journal of Industrial and Engineering Chemistry, 2014, 20:278-283.
[22] Zendehzaban M, Sharifnia S, Hosseini S N.Photocatalytic degradation of ammonia by light expanded clay aggregate (LECA)-coating of TiO2 nanoparticles[J].Korean J Chem Eng, 2013, 30(3):574-579.
[23] Guo M C, Yu X C, Liu J H, et al.Composite photocatalysts of CNTS-TiO2:an efficient photocatalyst for the degradation of ammonia nitrogen pollutant in mariculture wastewater under UV light irradiation[J].IOP Conf Ser:Mater Sci Eng, 2018, 301:012138.
[24] 彭炳先, 王小力, 刘锐涵, 等.太阳光照射浮石负载二氧化钛降解氨氮废水[J].应用化学, 2017, 34(8):946-953.
[25] 王敏.生物质炭复合材料的制备及其去除氨氮的实验研究[D].南昌:华东交通大学, 2019.
[26] Farouq R, Abd-Elfatah M, Ossman M E.Response surface methodology for optimization of photocatalytic degradation of aqueous ammonia[J].Journal of Water Supply:Research and Technology—AQUA, 2018, 67(2):162-175.
[27] 唐艳, 呼世斌, 王俊华, 等.TiO2/沸石光催化剂的制备及其光催化性能研究[J].西北农林科技大学学报(自然科学版), 2007, 35(7):180-182.
[28] 焦玉荣, 弓莹, 刘玲娜, 等.硅藻土负载TiO2光催化剂的制备及其应用[J].工业催化, 2017, 25(9):31-34.
[29] Gong X, Wang H F, Yang C, et al.Photocatalytic degradation of high ammonia concentration wastewater by TiO2[J].Future Cities and Environment, 2015, 12:1-12.
[30] Sun D C, Sun W Z, Yang W Y, et al.Efficient photocatalytic removal of aqueous NH+4-NH3 by palladium-modified nitrogen-doped titanium oxide nanoparticles under visible light illumination, even in weak alkaline solutions[J].Chemical Engineering Journal, 2015, 264:728-734.
[31] 陈子尚, 梁小平, 樊小伟, 等.Ce-La-Ag共掺杂TiO2/玄武岩纤维复合光催化剂的制备和性能[J].材料研究学报, 2019, 33(7):515-522.
[32] Wang J, Liang X P, Chen P, et al.Microstructure and photocatalytic properties of Ag/Ce4+/La3+ co-modified TiO2/basalt fiber for ammonia-nitrogen removal from synthetic wastewater[J].J Sol-Gel Sci Technol, 2017, 82:289-298.
[33] Peng X M, Wang M, Hu F P, et al.Facile fabrication of hollow biochar carbon-doped TiO2/CuO composites for the photocatalytic degradation of ammonia nitrogen from aqueous solution[J].Journal of Alloys and Compounds, 2019, 770:1055-1063.
[34] Xu F, Wang C, Xiao K M, et al.Investigation of titanium dioxide/tungstic acid-based photocatalyst for human excrement wastewater treatment[J].Acta Astronautica, 2018, 146:7-14.
[35] Mohammadi Z, Sharifnia S, Shavisi Y.Photocatalytic degradation of aqueous ammonia by using TiO2-ZnO/LECA hybrid photocatalyst[J].Materials Chemistry and Physics, 2016, 184:110-117.