[1] |
李菲, 谭浩波, 邓雪娇, 等. 2006-2010年珠三角地区SO2特征分析[J]. 环境科学, 2015, 36(5): 1530-1537.
|
[2] |
XIAO Z, LI D, ZHU Q, et al. Simultaneous removal of NO and SO2 through a new wet recycling oxidation-reduction process utilizing micro-nano bubble gas-liquid dispersion system based on Na2SO3[J]. Fuel, 2020, 263: 116682. doi: 10.1016/j.fuel.2019.116682
|
[3] |
ZHANG D, MA Z, WANG B, et al. VxMn(4-x)Mo3Ce3/Ti catalysts for selective catalytic reduction of NO by NH3[J]. Journal of Environmental Sciences, 2020, 88: 145-154. doi: 10.1016/j.jes.2019.07.010
|
[4] |
郑超群, 张艮林, 孙珮石, 等. 化学强化法烟气同时脱硫脱氮的动力学研究[J]. 环境工程, 2018, 36(5): 110-114.
|
[5] |
SUN C C, YUAN J Q, XU H, et al. Simultaneous removal of nitric oxide and sulfur dioxide in a biofilter under micro-oxygen thermophilic conditions: Removal performance, competitive relationship and bacterial community structure[J]. Bioresource Technology, 2019, 290: 1-8.
|
[6] |
CHEN J, GU S Y, ZHENG J, et al. Simultaneous removal of SO2 and NO in a rotating drum biofilter coupled with complexing absorption by Fe(II)(EDTA)[J]. Biochemical Engineering Journal, 2016, 114: 87-93. doi: 10.1016/j.bej.2016.06.027
|
[7] |
WANG X C, XIAO Y B, PEI S S, et al. Effects of oxygen content on the simultaneous microbial removal of SO2 and NOx in biotrickling towers[J]. Biotechnology and Bioprocess Engineering, 2015, 20: 924-930.
|
[8] |
闫亮, 赵辉. 硫酸盐还原菌酶学性质及应用的研究进展[J]. 中国农学通报, 2020, 36(31): 13-19. doi: 10.11924/j.issn.1000-6850.casb20191100879
|
[9] |
RINK R, KLOK J B M, HEERINGEN G J, et al. Increasing the selectivity for sulfur formation in biological gas desulfurization[J]. Environmental Science & Technology, 2019, 53(8): 4519-4527.
|
[10] |
MUYZER G, SOROLIN D Y, MAVROMATIS K, et al. Complete genome sequence of “Thioalkalivibrio sulfidophilus” HL-EbGr7[J]. Standards in Genomic Sciences, 2011, 4(1): 23-35. doi: 10.4056/sigs.1483693
|
[11] |
JIN R, LIU T, LIU G, et al. Simultaneous heterotrophic nitrification and aerobic denitrification by the marine origin bacterium pseudomonas sp. ADN-42[J]. Applied Biochemistry & Biotechnology, 2015, 175(4): 2000-2011.
|
[12] |
JI B, YANG K, ZHU L, et al. Aerobic denitrification: A review of important advances of the last 30 years[J]. Biotechnology and Bioprocess Engineering, 2015, 20(4): 643-651. doi: 10.1007/s12257-015-0009-0
|
[13] |
陈浚, 蒋轶锋, 沙昊雷, 等. 生物转鼓过滤器反硝化去除NO的模型研究和实验验证[J]. 高校化学工程学报, 2008, 22(2): 344-350. doi: 10.3321/j.issn:1003-9015.2008.02.029
|
[14] |
CHEN J, JIANG Y, CHEN J, et al. Dynamic model for nitric oxide removal by a rotating drum biofilter[J]. Journal of Hazardous Materials, 2009, 168(2/3): 1047-1052.
|
[15] |
邬成贤, 郑成航, 张军, 等. 脱硫浆液中组分扩散及SO2溶解的分子动力学研究[J]. 环境科学学报, 2014, 34(11): 2904-2910.
|
[16] |
HAN Y Q, ZHANG W J. Simultaneous removal of NOx and SO2 in exhausted gas through landfill leachate[J]. Indian Journal of Experimental Biology, 2010, 48(12): 1237-1242.
|
[17] |
CALABROP S, MANNINA G, VIVIANI G. In sewer processes: Mathematical model development and sensitivity analysis[J]. Water Science & Technology, 2009, 60(1): 107-115.
|
[18] |
胡安辉, 郑平, 胡宝兰. 3种硝化污泥性能的比较研究[J]. 四川大学学报(工程科学版), 2009, 41(6): 89-96.
|
[19] |
柯斯乐E L. 扩散-流体系统中的传质[M]. 2版. 北京: 化学工业出版社, 2002: 144.
|
[20] |
金鹏康, 杨珍瑞, 李蓉, 等. 反硝化抑制硫酸盐还原的工艺特性[J]. 环境科学, 2017, 38(5): 1982-1990.
|
[21] |
OH S E, KIM K S, CHOI H C, et al. Kinetics and physiological characteristics of autotrophic denitrifying sulphur bacteria[J]. Water Science & Technology, 2000, 42(3): 959-968.
|
[22] |
CHEN J, LI B, ZHENG J, et al. Control of H2S generation in simultaneous removal of NO and SO2 by rotating drum biofilter coupled with Fe(II)(EDTA)[J]. Environmental Technology, 2018, 40(1): 1-35.
|
[23] |
黎宝仁, 陈洲洋, 王剑斌, 等. 复合催化膜生物反应器处理一氧化氮废气研究[J]. 环境科学, 2016, 37(3): 847-853.
|
[24] |
TOMOYA H, YUSHI M, SHINGO N, et al. Structural basis of biological N2O generation by bacterial nitric oxide reductase[J]. Science, 2010, 330(6011): 1666-1670. doi: 10.1126/science.1195591
|