1 | YAN T, WANG P, WANG L. Utilization of oxalic acid-modified spent mushroom substrate for removal of methylene blue from aqueous solution [J]. Desalination and Water Treatment, 2015, 55(4): 1007-1017. | 2 | 范盛远, 王黎明, 冯康. 菌糠基吸附剂研究现状与展望[J]. 安徽农业科学, 2018, 46(32): 17-19. | 2 | FAN Shengyuan, WANG Liming, FENG Kang. Present situation and prospect of adsorbent characteristics of mushroom slag [J]. Journal of Anhui Agricultural Sciences, 2018, 46(32): 17-19. | 3 | SEWU D D, BOAKYE P, JUNG H, et al. Synergistic dye adsorption by biochar from co-pyrolysis of spent mushroom substrate and Saccharina japonica[J]. Bioresource Technology, 2017, 244: 1142-1149. | 4 | 陈慧玲. 菌糠制备生物炭及其应用研究[D]. 福州: 福州大学, 2016. | 4 | CHEN Huiling. Study on biochar of spent mushroom substrate and its application[D]. Fuzhou: Fuzhou University, 2016. | 5 | ZEMSKOVA L, VOIT A, SHLYK D K, et al. Carbon fibers modified with molybdenum for sorption of arsenic (Ⅴ) [J]. Russian Journal of Applied Chemistry, 2016, 89(5): 727-731. | 6 | 佟国宾, 徐州, 李伟, 等. 载钼活性炭的制备、表征及其苯吸附性能[J]. 林产化学与工业, 2018, 38(3): 33-40. | 6 | TONG Guobin, XU Zhou, LI Wei, et al. Preparation, charactization and gaseous benzene adsorption preformance of Mo-loaded activared carbon[J]. Chemistry and Industry of Forest Products, 2018, 38(3): 33-40. | 7 | 王光永, 张华西, 吴强, 等. 活性炭改性钼基催化剂用于高CO焦炉气加氢脱硫 [J]. 石油化工, 2019, 48(7): 687-693. | 7 | WANG Guangyong,ZHANG Huaxi,WU Qiang,et al. Hydrodesulfurization of coke oven gas rich in CO over Mo-based catalyst modified by activated carbon[J]. Petrochemical Technology, 2019, 48(7): 687-693. | 8 | 刘元东. 钼/活性炭渣油加氢催化剂的制备 [J]. 化工进展, 2012, 31(12): 2708-2713. | 8 | LIU Yuandong,Preparation of activated carbon supported molybdenum-based catalysts for hydroprocessing of residue[J]. Chemical Industry and Engineering Progress, 2012, 31(12): 2708-2713. | 9 | QIN Q, MA J, LIU K. Adsorption of nitrobenzene from aqueous solution by MCM-41 [J]. Journal of Colloid and Interface Science, 2007, 315(1): 80-86. | 10 | 冯冰.三氧化钼层状材料的染料吸附及催化性能研究[D]. 南京: 南京航空航天大学,2017. | 10 | FENG bing.Study on dye adsorption and catalytic performance of molybdenum trioxide layered materials[D]. Nanjing: Nanjing University of Aeronautics and Astronautics, 2017. | 11 | XIE L, LIU D, HUANG H, et al. Efficient capture of nitrobenzene from waste water using metal-organic frameworks[J]. Chemical Engineering Journal, 2014, 246: 142-149. | 12 | WEI W, SUN R, JIN Z, et al. Hydroxyapatite-gelatin nanocomposite as a novel adsorbent for nitrobenzene removal from aqueous solution [J]. Applied Surface Science, 2014, 292: 1020-1029. | 13 | 周艳, 罗娅君, 胡晓黎. 胺化木质素对水中硝基苯吸附性能的研究 [J]. 化学研究与应用, 2011, 23(9): 1182-1186. | 13 | ZHOU Yan,LUO Yajun,HU Xiaoli. Adsorption of nitrobenzene from aqueous solution by aminated lignin[J]. Chemical Research and Application, 2011, 23(9): 1182-1186. | 14 | DAI Y, ZHANG D, ZHANG K. Nitrobenzene-adsorption capacity of NaOH-modified spent coffee ground from aqueous solution [J]. Journal of the Taiwan Institute of Chemical Engineers, 2016, 28:232-238. | 15 | WANG F, MA Y. MPC-973: a low-cost and effective adsorbent for the removal of nitrobenzene from aqueous solutions [J]. Materials Chemistry and Physics, 2018, 208:157-162. |
|