[1] Lee D J,Chen Y Y,Show K Y,et al. Advances in aerobic granule for-mation and granule stability in the course of storage and reactor opera-tion[J]. Biotechnology Advances,2010,28(6):919-934.
[2] 赵霞,王晓春,董立超,等.污泥快速颗粒化降解有机物过程研究[J].工业水处理,2014,34(7):15-18.
[3] 刘晓,曹国凭.微氧颗粒污泥的快速培养及其同步脱氮效能[J].工业水处理,2012,32(8):37-40.
[4] Wang Dianzhan,Zhou Lixiang. Characteristics and biodegradation of aniline by aerobic granular sludge[J]. China Environmental Science, 2010,30(4):527-532.
[5] 李姝,胡学伟,Nguyen D T,等.干燥好氧颗粒污泥对重金属的吸附研究[J].工业水处理,2013,33(10):40-43.
[6] Wei D,Si W,Zhang Y F,et al. Aerobic granulation and nitrogen re-moval with the effluent of internal circulation reactor in start-up of a pilot-scale sequencing batch reactor[J]. Bioprocess and Biosystem Engineering,2012,35(9):1489-1496.
[7] Chen M Y,Lee D J,Tay J H. Distribution of extracellular polymeric substances in aerobic granules[J]. Applied Microbiology and Biote-chnology,2007,73(6):1463-1469.
[8] Chen Mingyuan,Lee D J,Tay J H,et al. Staining of extracellular po-lymeric substances and cells in bioaggregates[J]. Applied Microbi-ology and Biotechnology,2007,75(2):467-474.
[9] 刘玉玲,高升,白凯.好氧颗粒污泥形成过程与机理分析[J].环境科学与技术,2012,35(9):125-128.
[10] Chen Yao,Jiang Wenju,Liang D T,et al. Aerobic granulation under the combined hydraulic and loading selection pressures[J]. Biore-source Technology,2008,99(16):7444-7449.
[11] Isanta E,Suárez-Ojeda M E,Val del Río á,et al. Long term opera-tion of a granular sequencing batch reactor at pilot scale treating a low-strength wastewater[J]. Chemical Engineering Journal,2012, 198-199:163-170.
[12] Tay J H,Pan Shun,He Yanxin,et al. Effect of organic loading rate on aerobic granulation.Ⅱ:characteristics of aerobic granules[J]. Journal of Environmental Engineering,2004,130(10):1109-1102.
[13] Moy B Y P,Tay J H,Toh S K,et al. High organic loading influences the physical characteristic of aerobic sludge granules[J]. Letters in Applied Microbiology,2002,34(6):407-412.
[14] Wan Chunli,Yang Xue,Lee D J,et al. Formation of filamentous aerobic granules:role of pH and mechanism[J]. Applied Microbi-ology and Biotechnology,2014,98(19):8389-8397.
[15] Yang S F,Li X Y,Yu Hanqing. Formation and characterisation of fungal and bacterial granules under different feeding alkalinity and pH conditions[J]. Process Biochemistry,2008,43(1):8-14.
[16] Yang Shufang,Tay J H,Liu Yu. Inhibition of free ammonia to the formation of aerobic granules[J]. Biochemical Engineering Journal, 2004,17(1):41-48.
[17] Winkler M K H,Bassin J P,Kleerebezem R,et al. Temperature and salt effects on settling velocity in granular sludge technology[J]. Water Research,2012,46(12):3897-3902.
[18] 杨欣,李志华,谭周权.温度对好氧颗粒污泥形成和稳定的影响[J].中国给水排水,2014,30(1):10-13.
[19] de Kreuk M K,Pronk M,van Loosdrecht M C M. Formation of aero-bic granules and conversion processes in an aerobic granular sludge reactor at moderate and low temperatures[J]. Water Research, 2005,39(18):4476-4484.
[20] Show K Y,Lee D J,Tay J H. Aerobic granulation:advances and challenges[J]. Applied Biochemistry and Biotechnology,2012, 2012,167(6):1622-1640.
[21] 刘绍根,孙菁,徐锐. Ca2+、Mg2+对好氧污泥快速颗粒化的影响研究[J].环境科学学报,2015,35(1):168-176.
[22] 肖蓬蓬. Zn2+对好氧颗粒污泥形成与污染控制的影响[D].合肥:安徽农业大学,2013.
[23] 金雪瓶,邓风. Ce3+对好氧颗粒污泥培养的影响[J].化工环保,2013,33(2):103-107.
[24] Wang Xinhua,Gai Lihong,Sun Xuefei,et al. Effects of long-term addition of Cu(Ⅱ) and Ni(Ⅱ) on the biochemical properties of aerobic granules in sequencing batch reactors[J]. Applied Micro-biology and Biotechnology,2010,86(6):1967-1975.
[25] 刘润.好氧颗粒污泥的培养及其对合成氨工业废水处理的研究[D].南京:南京理工大学,2014.
[26] de Kreuk M K,Heijnen J J,van Loosdrecht M C M. Simultaneous COD,nitrogen and phosphate removal by aerobic granule[J]. Bio-technology and Bioengineering,2005,90(6):761-769.
[27] Lemaire R,Yuan Zhiguo,Blackall L L,et al. Microbial distribution of Accumulibacter spp. and Competibacter spp. in aerobic granules from a lab scale biological nutrient removal system[J]. Environ-mental Microbiology,2008,10(2):354-363.
[28] Wang Shuguang,Liu Xianwei,Zhang Huayong,et al. Aerobic gran-ulation for 2,4-dichlorophenol biodegradation in a sequencing batch reactor[J]. Chemosphere,2007,69(5):769-775.
[29] Lan Huixia,Liu Xiaofeng,Chen Rui,et al. The Adsorption of pen-tachlorophenol(PCP) on aerobic granules[J]. Advanced Materials Research,2012,599:354-357.
[30] 唐朝春,刘名,陈惠民,等.废水生物处理系统中胞外多聚物的研究进展[J].化工进展,2014,33(6):1576-1581.
[31] Xu Hui,Liu Yu. Mechanisms of Cd2+,Cu2+ and Ni2+ biosorption by aerobic granules[J]. Separation and Purification Technology,2008, 58(3):400-411.
[32] Xu Hui,Liu Yu,Tay J H. Effect of pH on nickel biosorption by aer-obic granular sludge[J]. Bioresource Technology,2006,97(3):359-363.
[33] Wang Lin,Li Yu. Biosorption behavior and mechanism of lead(Ⅱ) from aqueous solution by aerobic granules(AG) and bacterial al-ginate(BA)[J]. Journal of Ocean University of China,2012,11(4):495-500.
[34] Yao Lei,Ye Zhengfang,Tong Meiping,et al. Removal of Cr3+ from aqueous solution by biosorption with aerobic granules[J]. Journal of Hazardous Materials,2008,165(1/2/3):250-255.
[35] Wang Xinhua,Song Ruihong,Teng Shaoxiang,et al. Characteristics and mechanisms of Cu(Ⅱ) biosorption by disintegrated aerobic granules[J]. Journal of Hazardous Materials,2010,179(1/2/3):431-437. |