[1] 苑宏英, 王亭, 祁丽, 等. 不同预处理方法对污泥脱水性能的影响[J]. 环境工程学报, 2015, 9(8):4015-4020
[2] XUE Yonggang, LIU Huajie, CHEN Sisi, et al. Effects of thermal hydrolysis on organic matter solubilization and anaerobic digestion of high solid sludge[J]. Chemical Engineering Journal, 2015, 264:174-180
[3] 陈银广, 杨海真, 吴桂标, 等. 表面活性剂改进活性污泥的脱水性能及其作用机理[J]. 环境科学, 2000, 21(5):97-100
[4] CHEN Yinguang, CHEN Yinsheng, GU Guowei. Influence of pretreating activated sludge with acid and surfactant prior to conventional conditioning on filtration dewatering[J]. Chemical Engineering Journal, 2004, 99(2):137-143
[5] 周煜, 张爱菊, 张盼月, 等. 光-Fenton氧化破解剩余污泥和改善污泥脱水性能[J]. 环境工程学报, 2011,5(11):2600-2604
[6] 何光裕, 张艳, 钱茂公, 等. 磁性Fe3O4/石墨烯Photo-Fenton催化剂的制备及其催化性[J]. 无机化学学报, 2012, 28(11):2306-2312
[7] 魏霞, 郭云红, 赵泉林, 等. 磁性Fe3O4/石墨烯纳米复合材料催化降解水中17β-雌二醇[J]. 环境工程学报, 2015, 9(5):2137-2143
[8] 杨焱明, 冷艳秋, 林欣, 等. Fe3O4/石墨烯活化过硫酸盐降解罗丹明B废水的研究[J]. 环境科学与管理, 2014, 39(4):80-84
[9] HUMMERS W S, OFFEMAN R E. Preparation of graphitic oxide[J]. Journal of the American Chemical Society, 1958, 80(6):1339
[10] KOVTYUKHOVA N I, OLLIVIER P J, MARTIN B R, et al. Layer-by-layer assembly of ultrathin composite films from micron-sized graphite oxide sheets and polycations[J]. Chemistry of Materials, 1999, 11(3):771-778
[11] DONG Xiangmao, LI Li, ZHAO Chongjun, et al. Controllable synthesis of RGO/FexOy nanocomposites as high-performance anode materials for lithiumion batteries[J]. Journal of Materials Chemistry A, 2014, 2:9844-9850
[12] FU Yongsheng, CHEN Haiqun, SUN Xiaoqiang, et al. Combination of cobalt ferrite and graphene:high-performance and recyclable visible-light photocatalysis[J]. Applied Catalysis B:Environmental, 2012, 111-112:280-287
[13] CHENG Yang, GAO Fang, AN Liang, et al. Different combinations of Fe3O4 microsphere, Polypyrrole and silver as core-shell nanocomposites for adsorption and photocatalytic application[J]. Advanced Powder Technology, 2014, 25(5):1600-1607
[14] HE Dongqin, WANG Longfei, JIANG Hong, et al. A Fenton-like process for the enhanced activated sludge dewatering[J]. Chemical Engineering Journal, 2015, 272:128-134
[15] JIN B, WILEN B, LANT P. Impacts of morphological, physical and chemical properties of sludge flocs on dewaterability of activated sludge[J]. Chemical Engineering Journal, 2004, 98(1/2):115-126
[16] CHEN Yinguang, YAN Haizhen, GU Guowei. Effect of acid and surfactant treatment on activated sludge dewatering and settling[J]. Water Research, 2001, 35(11):2615-2620
[17] CETIN S, ERDINCLER A. The role of carbohydrate and protein parts of extracellular polymeric substances on the dewaterability of biological sludges[J]. Water Science and Technology, 2004, 50(9):49-56
[18] 周俊, 周立祥, 黄焕忠. 污泥胞外聚合物的提取方法及其对污泥脱水性能的影响[J]. 环境科学, 2013, 34(7):2752-2757
[19] SHENG Guoping, YU Hanqing, LI Xiaoyan. Extracellular polymeric substances (EPS) of microbial aggregates in biological wastewater treatment systems:A review[J]. Biotechnology Advances, 2010, 28(6):882-894
[20] ZHOU Xu, JIANG Guangming, ZHANG Tingting, et al. Role of extracellular polymeric substances in improvement of sludge dewaterability through peroxidation[J]. Bioresource Technology, 2015, 192:817-820
[21] 何培培, 余光辉, 邵立明, 等. 污泥中蛋白质和多糖的分布对脱水性能的影响[J]. 环境科学, 2008, 29(12):3457-3461
[22] DEWIL R, BAEYENS J, NEYENS E. Fenton peroxidation improves the drying performance of waste activated sludge[J]. Journal of Hazardous Materials, 2005, 117(2/3):161-170
[23] NEYENS E, BAEYENS J. A review of classic Fenton's peroxidation as an advanced oxidation technique[J]. Journal of Hazardous Materials, 2003, 98(1/2/3):33-50
[24] BUYUKKAMACI N. Biological sludge conditioning by Fenton's reagent[J]. Process Biochemistry, 2004, 39(11):1503-1506
[25] 李小平, 张健, 冼萍, 等. Fenton氧化破解污水处理厂污泥[J]. 环境工程学报, 2013, 7(12):4709-4713
[26] 孙正男, 杨琦, 纪冬丽,等. Fe3O4/ZrO2-H2O2非均相类Fenton体系对3,4-二氯三氟甲苯的降解[J]. 环境工程学报, 2015, 9(8):3590-3596
[27] 李娟, 张盼月, 曾光明, 等. Fenton氧化破解剩余污泥中的胞外聚合物[J]. 环境科学, 2009, 30(2):475-479
[28] 潘胜, 黄光团, 谭学军, 等. Fenton试剂对剩余污泥脱水性能的改善[J]. 净水技术, 2012, 31(3):26-31
[29] 陈英文, 刘明庆, 惠祖刚, 等. Fenton氧化破解剩余污泥的实验研究[J]. 环境工程学报, 2011, 05(2):409-413
[30] SCHULER A J, JANG H. Density effects on activated sludge zone settling velocities[J]. Water Research, 2007, 41(8):1814-1822