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参考文献 [1] 魏永,吴宏,罗政博,等. 正渗透去除单宁酸的影响因素分析[J]. 中国给水排水, 2022, 38(1): 70-76. [2] 魏永,吴宏. 纳滤处理太湖水的膜污染中试研究[J]. 中国给水排水, 2021, 37(7): 66-70. [3] Wei Y,Ren B,Zheng S, et al. Effect of High Concentration of Ammonium on Production of N-caproate: Recovery of a High-value Biochemical From Food Waste Via Lactate-driven Chain Elongation[J]. Waste Management, 2021, 128: 25-35. [4] 马琦琦,李刚,魏永. 城郊关键带土壤中溶解性有机质的光谱特性及其时空变异[J]. 环境化学, 2020, 39(2): 455-466. [5] 王薪淯,朱晓宇,李海翔,等. 乳酸碳链延长技术及其在有机废弃物资源化中的应用研究进展[J]. 应用与环境生物学报, 2020, 26(4): 827-835. [6] 魏永,姚维昊,桂波,等. 在线混凝/超滤处理太湖水的试验研究[J]. 中国给水排水, 2019, 35(15): 54-58. [7] 魏永,姚维昊,桂波,等. 超低压反渗透与纳滤处理太湖水的对比试验[J]. 环境化学, 2019, 38(6): 1413-1419. [8] 江晓栋,薛银刚,魏永,等. 基于成组生物毒性测试的PM_(2.5)毒性[J]. 环境科学, 2019, 40(8): 3840-3848. [9] 魏永. 工科专业实验教学资源建设[J]. 山西青年, 2019(13): 62. [10] 魏永. 工科专业实习教学基地建设[J]. 山西青年, 2019(14): 43. [11] Yong W,Wei Z,Lan X, et al. Research on the Removal of Pb2+ From Aqueous Solution By Electrosorption with Activated Carbon Fibre[J]. Oxidation Communications, 2018, 41(2): 296-306. [12] 魏永,赵威,石舟翔,等. ACF电吸附去除盐离子及其选择吸附性研究[J]. 工业水处理, 2018, 38(9): 37-40. [13] 魏永,姚维昊,桂波,等. 超低压反渗透处理太湖水的中试分析[J]. 给水排水, 2018, 54(12): 11-16. [14] 魏永,赵威,姚维昊,等. 掺S三维石墨烯气凝胶对水中铅离子的电吸附去除[J]. 环境化学, 2018, 37(10): 2305-2314. [15] Wei Y,Xu L,Yang K, et al. Electrosorption of Toxic Heavy Metal Ions By Mono S- Or N-doped and S, N-codoped 3d Graphene Aerogels[J]. Journal of the Electrochemical Society, 2017, 164(2): 0-0. [16] 魏永,赵威,董秉直. TiO_2/UV光催化氧化耦合膜分离处理太湖水的效果[J]. 中国给水排水, 2017, 33(15): 52-57. [17] 魏永,赵威,江晓栋,等. PVDF超滤膜的制备影响因素研究[J]. 化工新型材料, 2017, 45(9): 114-116, 120. [18] 魏永,赵威,董良飞,等. 光催化耦合膜分离去除腐殖酸效果研究[J]. 常州大学学报(自然科学版), 2017, 29(3): 43-50. [19] Wei Y,Xu L,Tao YX, et al. Electrosorption of Lead Ions By Nitrogen-doped Graphene Aerogels Via One-pot Hydrothermal Route[J]. Industrial & Engineering Chemistry Research, 2016, 55(7): 1912-1920. [20] Zhu XY,Bao LP,Wei Y, et al. Removal of Toxic Indigo Blue with Integrated Biomaterials of Sodium Carboxymethyl Cellulose and Chitosan[J]. International Journal of Biological Macromolecules, 2016, 91: 409-415. [21] Tao YX,Gu XG,Pan Y, et al. Overoxidation of Conducting Polymers Combined with in Situ Plated Bismuth Film: an Approach for Simultaneous Detection of Cadmium and Lead Ions[J]. Journal of the Electrochemical Society, 2015, 162(4): 0-0. [22] Li S,Wei Y,Kong Y, et al. Electrochemical Removal of Lead Ions Using Paper Electrode of Polyaniline/attapulgite Composites[J]. Synthetic Metals, 2015, 199: 45-50. [23] 董良飞,涂保华,魏永,等. 培养综合能力的水质工程学教学方法探讨[J]. 常州信息职业技术学院学报, 2015, 14(3): 33-35. [24] Li KJ,Guo DF,Lin FR, et al. Electrosorption of Copper Ions By Poly(m-phenylenediamine)/reduced Graphene Oxide Synthesized Via a One-step in Situ Redox Strategy[J]. Electrochimica Acta, 2015, 166: 47-53. [25] Dai JY,Tao YX,Gu XG, et al. Electrically Controllable Perchlorate Removal Based on Poly(aniline-co-o-aminophenol) Doped with P-toluene Sulfonate[J]. Journal of Applied Polymer Science, 2015, 132(17). [26] Kong Y,Ge H,Xiong J, et al. Palygorskite Polypyrrole Nanocomposite: a New Platform for Electrically Tunable Drug Delivery[J]. Applied Clay Science, 2014, v 99: 119-124. [27] Kong Y,Sha Y,Xue S, et al. Poly(aniline-co-p-aminobenzoic Acid): a Conducting Copolymer with Broadened Useful Ph Range and Electrochemically Controllable Ion Exchange Behavior[J]. Journal of the Electrochemical Society, 2014(161): 0-0. [28] Kong Y,Ge HL,Xiong JX, et al. Palygorskite Polypyrrole Nanocomposite: a New Platform for Electrically Tunable Drug Delivery[J]. Applied Clay Science, 2014, 99: 119-124. [29] Kong Y,Sha Y,Xue SK, et al. Poly(aniline-co-p-aminobenzoic Acid): a Conducting Copolymer with Broadened Useful Ph Range and Electrochemically Controllable Ion Exchange Behavior[J]. Journal of the Electrochemical Society, 2014, 161(4): 0-0. [30] Kong Y,Zhou T,Qin Y, et al. Electrocatalytic Copolymerization of Aniline and M-aminophenol By Graphene and the Electrochemical Removal of Cr(vi) By the Copolymer[J]. Journal of the Electrochemical Society, 2014, 161(9): 0-0. [31] Zhang YL,Zhao J,Chu HQ, et al. Effect of Modified Attapulgite Addition on the Performance of a Pvdf Ultrafiltration Membrane[J]. Desalination, 2014, 344: 71-78. [32] 赵玲萍,张凤娥,董良飞,等. 高等院校给排水工程专业英语教学的探讨[C]//Proceedings of 2014 3rd International Conference on Physical Education and Society Management(ICPESM 2014 V24): Singapore Management and Sports Science Institute, 2014: 373-377. [33] 魏永,陈雪丹,董良飞. 一体化改性膜生物反应器处理城市污水的效果[J]. 中国给水排水, 2014, 30(1): 6-9. [34] 魏永,陈雪丹,董良飞. 纳米改性膜生物反应器处理生活污水的试验研究[J]. 工业水处理, 2014, 34(1): 26-29. [35] 赵玲萍,涂保华,张凤娥,等. 独立学院给排水专业“三大实习”基地建设改革探究[J]. 中国电力教育, 2014(6): 145-146. [36] 陈雪丹,魏永,董良飞. 纳米TiO_2改性PVDF中空纤维膜的制备及性能研究[J]. 化工新型材料, 2013, 41(6): 175-177, 183. [37] Yu ZX,Chu HQ,Cao DW, et al. Pilot-scale Hybrid Bio-diatomite/dynamic Membrane Reactor for Slightly Polluted Raw Water Purification[J]. Desalination, 2012, 285: 73-82. [38] Zhao LP,Zhang FG,Dong LF, et al. Fuzzy Evaluation of Water Quality in Water Distribution System Based on Entropy Weight and Epanet[J]. Advances in Environmental Science and Engineering, Pts 1-6, 2012, 518-523: 3703-3706. [39] Chen XD,Dong LF,Wei Y. Progress in Modified Mbr with Tio2 for Wastewater Reuse[J]. Advanced Engineering Materials Ii, Pts 1-3, 2012, 535-537: 2236-2239. [40] Evaluation of humic acid removal by a flat submerged membrane photoreactor[J]. Chinese Science Bulletin, 2011, 56(32): 3437-3444. [41] Wei Y,Chu HQ,Dong BZ, et al. Effect of Tio2 Nanowire Addition on Pvdf Ultrafiltration Membrane Performance[J]. Desalination, 2011, 272(1): 90-97. [42] Wei Y,Li X,Dong LF, et al. A New Flat-sheet Submerged Membrane Photoreactor (fsmpr) for the Removal of Humic Acid in Water[J]. Environmental Biotechnology and Materials Engineering, Pts 1-3, 2011, 183-185: 140-144. [43] Chu HQ,Zhang YL,Dong BZ, et al. Effect of Support Mesh Pore Size on the Performance of a Bio-diatomite Dynamic Membrane Filtration Used in Municipal Wastewater Treatment[J]. Fresenius Environmental Bulletin, 2011, 20(10): 2670-2676. [44] 涂保华,雷春生,魏永,等. 竺山湖底泥疏浚对内源磷释放控制作用研究[J]. 安徽农业科学, 2011, 39(3): 1675-1676, 1678. [45] Xu Y,Dong L,Zhang F, et al. Retracted Article: Study on Source-separated Urine Using Hydrolab Ds5x[J]. 5th International Conference on Bioinformatics and Biomedical Engineering, Icbbe 2011, 2011. [46] Wei Y,Chu HQ,Dong BZ, et al. Lake Taihu Water Treatment By a Flat Submerged Membrane Photocatalytic Reactor[J]. Fresenius Environmental Bulletin, 2011, 20(10): 2546-2554. [47] 魏永,虞亮. 住宅自动喷淋灭火系统技术应用[J]. 科技信息, 2011(11): 375-376. [48] 魏永,虞亮. 城市雨水的回用技术[J]. 科技信息, 2011(13): 29, 64. [49] Dong LF,Xu Y,Wei Y, et al. Fate of Nitrogen and Phosphorous in Source-separated Urine[J]. Environmental Biotechnology and Materials Engineering, Pts 1-3, 2011, 183-185: 328-332. [50] 魏永,张凤娥,董良飞,等. 利用网络管理系统指导大学生毕业设计[J]. 计算机光盘软件与应用, 2012(4): 117-118. [51] 魏永,董秉直. TiO2 在饮用水膜处理技术中的应用研究进展[J]. 给水排水, 2010(2): 117-121. [52] Wei Y,Dong L,Dong B. Optimization of Reclaim Nitrogen and Phosphorus From Source-separated Urine with Orthogonal Array Design[C]: Ieee, 2010: 1-4. [53] 董良飞,余海静,魏永,等. 磷酸铵镁沉淀法回收尿液中N和P的实验研究[J]. 环境工程学报, 2010, 4(8): 1795-1798. [54] 魏永,张凤娥,董良飞,等. 建筑给水排水工程课程教学实践环节建设[J]. 科技信息, 2010(3): 5, 7. [55] 赵玲萍,涂保华,张凤娥,等. 《水资源利用与保护》课程教学改革探讨[J]. 科技信息, 2010(34): 104. [56] 郭迎庆,黄翔峰,张玉先,等. 太湖地区农村生活污水示范工程处理工艺的选择[J]. 中国给水排水, 2009, 25(4): 6-9. [57] 董良飞,Salzgeber D,Siegrist H,等. 单级自养脱氮 SBR 处理消化污泥上清液研究[J]. 中国给水排水, 2008, 24(13): 96-99. [58] 董良飞,魏永,褚焕明. 特殊工况下船舶生活污水处理的试验研究[J]. 环境工程学报, 2008(2): 208-213. [59] 魏永,褚焕明,董良飞. 建筑给水排水施工图审查常见问题分析[J]. 给水排水, 2008, 44(S1): 294-296. [60] 王利平,何又庆,范洪波,等. 磁絮凝分离法处理含油废水的试验[J]. 环境工程, 2007(3): 2, 12-15. [61] 魏永,毕东苏,董惠芬. 对建筑给排水设计规范中存在问题的探讨[J]. 工程建设与设计, 2006(9): 63-65. [62] 魏永,王燕枫,董惠芬,等. 中水回用在高校学生公寓楼中的应用[J]. 工程建设与设计, 2006(11): 65-67. [63] 魏永,王书敏,由圆义,等. CAST 工艺在处理果汁加工废水中的应用[J]. 工业水处理, 2005, 25(9): 68-70. [64] 魏永,闪红光. 循环式活性污泥法 (CASS) 的研究进展[J]. 辽宁城乡环境科技, 2004, 24(4): 7-10.
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