[1] SHANNON M A,BOHN P W,ELIMELECH M,et al. Science and Technology for Water Purification in the Coming Decades[J]. Nature,2008,452 (7185):301-320.
[2] 路金喜,关占良,张永惠,等. 农村污水生态净化回用处理工艺研究[J]. 甘肃农业大学学报,2011,46 (3):136-141.(LU Jin-xi,GUAN Zhan-liang,ZHANG Yong-hui,et al. Experimental Study on Rural Sewage Ecology Purification Treatment and Recycling Process [J]. Journal of Gansu Agricultural University,2011,46 (3):136-141.(in Chinese))
[3] 白永刚,吴浩汀. 太湖地区农村生活污水处理技术初探[J].电力环境保护,2005,21(2): 44-45,61.(BAI Yong-gang,WU Hao-ting. Primary Study of Technology for Rural Domestic Sewage Treatment in the Lake Taihu Area[J]. Electric Power Environmental Protection,2005,21 (2): 44-45,61.(in Chinese))
[4] 胡恒祥,吕伟娅,梁 磊,等. 农村地区生活污水处理技术研究[J].安徽农业科学,2010,38(31): 17625-17626.(HU Heng-xiang,LV Wei-ya,LIANG Lei,et al. Study on the Domestic Sewage Treatment Technologies in Rural Areas [J]. Journal of Anhui Agricultural Sciences,2010,38 (31): 17625-17626.(in Chinese))
[5] LI Xian-fa,JIANG Chun-cai. Constructed Wetland Systems for Water Pollution Control in North China [J]. Water Science and Technology,1995,32 (3): 349-356.
[6] SONG Zhi-wen,ZHENG Zhao-pei,LI Jie,et al. Seasonal and Annual Performance of a Full-scale Constructed Wetland System for Sewage Treatment in China [J]. Ecological Engineering,2006,26 (3):272-282.
[7] AKRATOS C S,TSIHRINTZIS V A. Effect of Temperature,HRT,Vegetation and Porous Media on Removal Efficiency of Pilot-scale Horizontal Subsurface Flow Constructed Wetlands [J]. Ecological Engineering,2007,29 (2):173-191.
[8] TANG X Q,HUANG S L,SHOLZ M. Nutrient Removal in Wetlands during Intermittent Artificial Aeration: A Pilot-scale Study [J]. Environmental Engineering Science,2008,25(9): 1279-1290.
[9] 王茂玉,胡树超,秦 赏,等. 寒冷地区人工湿地保温措施及运行方式优化研究[J]. 环境科学与管理,2012,37(1):103-106.(WANG Mao-yu,HU Shu-chao,QIN Shang,et al. Study on Heat Insulation Measures and Operation Optimization of Constructed Wetlands in Cold Area[J]. Environmental Science and Management,2012,37 (1): 103-106.(in Chinese))
[10]TUSZYSKA A,PEMPKOWIAK H O. Dependence between Quality and Removal Effectiveness of Organic Matter in Hybrid Constructed Wetlands[J]. Bioresource Technology,2008,99 (14): 6010-6016.
[11]CHAZARENC F,MERLIN G. Influence of Surface Layer on Hydrology and Biology of Gravel Bed Vertical Flow Constructed Wetlands[J]. Water Science and Technology,2005,51 (9): 91-97.
[12]熊佐芳,周云新,冼 萍,等. 水力负荷对垂直流人工湿地堵塞影响研究[J].水处理技术,2011,37(7):34-37.(XIONG Zuo-fang,ZHOU Yun-xin,XIAN Ping,et al. The Study for the Influence of Hydraulic Load on Clogging of the Vertical-Flow Constructed Wetland[J]. Technology of Water Treatment,2011,37 (7): 34-37.(in Chinese))
[13]鄢 璐,王世和,黄 娟,等. 潜流型人工湿地填料堵塞特性试验研究.[J].环境科学,2008,29(3):627-631.(YAN Lu,WANG Shi-he,HUANG Juan,et al. Clogging Characteristics of the Subsurface Flow Wetland [J]. Environmental Science,2008,29 (3): 627-631.(in Chinese))
[14]尹 军,王雪峰,王建辉,等. 低温对污水生物处理过程的影响及改进措施[J]. 吉林建筑工程学院学报,2007,24(2):29-33.(YIN Jun,WANG Xue-feng,WANG Jian-hui,et al. Effects of Low Temperature on Performance of Sewage Biological Treatment and Improvement Measures [J]. Journal of Jilin Institute of Architectural and Civil Engineering,2007,24(2): 29-33.(in Chinese))
[15]ZHANG Lie-yu,ZHANG Lan,LIU Yong-ding,et al. Effect of Limited Artificial Aeration on Constructed Wetland Treatment of Domestic Wastewater [J]. Desalination,2010,250(3):915-920.
[16]李春华,王蔚卿,倪利晓,等. 人工曝气对垂直流人工湿地运行效率的影响[J]. 河海大学学报(自然科学版),2011,39(3): 259-263.(LI Chun-hua,WANG Wei-qin,NI Li-xiao,et al. Influences of Artificial Aeration on Performance of Vertical-Flow Constructed Wetlands [J]. Journal of Hohai University (Natural Science),2011,39(3): 259-263.(in Chinese))
[17]柯 凡,王 磊,李海英,等. 微曝气垂直流湿地处理城郊低浓度生活污水模拟实验[J]. 湖泊科学,2008,20(2):257-262.(KE Fan,WANG Lei,LI HAI-ying,et al. Experimental Studies on Aerated Vertical-Flow Wetland for Low Concentration Domestic Wastewater Treatment [J]. Journal of Lake Science,2008,20 (2): 257-262.(in Chinese))
[18]NIVALA J,HOOS M B,CROSS C,et al. Treatment of Landfill Leachate Using an Aerated,Horizontal Subsurface-Flow Constructed Wetland[J]. Science of the Total Environment,2007,380(1/3): 19-27.
[19]魏光普. 太阳能与阳光经济[J].上海电力,2006,4: 337-342.(WEI Guang-pu. Solar Energy and Sun Economy[J]. Shanghai Electric Power,2006,4: 337-342.(in Chinese))
[20]王 峥,任 毅. 我国太阳能资源的利用现状与产业发展[J]. 资源与产业,2010,12(2):89-92.(WANG Zheng,REN Yi. Utilization and Development of Solar Energy Industry in China [J]. Resources & Industries,2010,12(2): 89-92.(in Chinese))
[21]SENTHILNATHAN J,PHILIP L. Elimination of Pesticides and Their Formulation Products from Drinking Water Using Thin Film Continuous Photoreactor Under Solar Radiation[J]. Solar Energy,2012,86(9): 2735-2745.
[22]BERNABEU A,VERCHER R F,SANTOS-JUANES L,et al. Solar Photocatalysis as a Tertiary Treatment to Remove Emerging Pollutants from Wastewater Treatment Plant Effluents [J]. Catalysis Today,2011,161(1): 235-240.
[23]EDUARDO DA HORA MACHADO A,PADOVANI XAVIER T,RODRIGUES DE SOUZA D,et al. Solar Photo-Fenton Treatment of Chip Board Production Waste Water [J]. Solar Energy,2004,77 (5): 583-589.
[24]LUCAS M S,PERES J A,AMOR C. Tertiary Treatment of Pulp Mill Wastewater by Solar Photo-Fenton [J]. Journal of Hazardous Materials,2012,225/226(7): 173-181.
[25]GHALY M Y,JAMIL T S,EL-SEESY I E. Treatment of Highly Polluted Paper Mill Wastewater by Solar Photocatalytic Oxidation with Synthesized Nano TiO2 [J]. Chemical Engineering Journal,2011,168(1): 445-454.
[26]FOSTIER A H,SILVA PEREIRA M S,RATH S,et al. Arsenic Removal from Water Employing Heterogeneous Photocatalysis with TiO2 Immobilized in PET Bottles[J]. Chemosphere ,2008,72 (2): 319-324.
[27]MONCAYO-LASSO A,PULGARIN C,BENTEZ N. Degradation of DBPs’ Precursors in River Water Before and After Slow Sand Filtration by Photo-Fenton Process at pH 5 in a Solar CPC Reactor [J]. Water Research,2008,42(15):4125-4132.
[28]ANTONIADIS A,TAKAVAKOGLOU V,ZALIDIS G,et al. Development and Evaluation of an Alternative Method for Municipal Wastewater Treatment Using Homogeneous Photocatalysis and Constructed Wetlands[J]. Catalysis Today,2007,124(3/4): 260-265.
[29]MENG Cheng-lin,LI Rong-ping,LI Xiu-jin. Integrated System of Greenhouse and Solar Heater for Anaerobic Digestion of Excess Activated Sludge [J]. Transactions of the Chinese Society of Agricultural Engineering,2009,25(9):210-214.
[30]SCRIVANI A,ASMAR T EL,BARDI U. Solar Trough Concentration for Fresh Water Production and Waste Water Treatment [J]. Desalination,2007,206 (1/3): 485-493.
[31]于 威,王铁良,刘文合,等. 太阳能土壤加温系统在日光温室土壤加温中的应用效果研究[J].沈阳农业大学学报,2010,41(2):190-194.(YU Wei,WANG Tie-liang,LIU Wen-he,et al. Application Research on the Heating Effect of Solar Geothermal Heating System on Soil Temperature in the Solar Greenhouse [J]. Journal of Shenyang Agricultural University,2010,41(2): 190-194.(in Chinese))
[32]张建洲,王 锐,刘 琼. 一种太阳能温室湿地污水处理系统:中国,201120120083[P]. 2011.11.30.(ZHANG Jian-zhou,WANG Rui,LIU Qiong. A Solar Energy Greenhouse Wetland Wastewater Treating System: China,201120120083[P]. 2011.11.30.(in Chinese))
[33]王文林,殷小海,卫 臻,等.太阳能曝气技术治理城市重污染河道试验研究[J]. 中国给水排水,2008,24(17):44-48.(WANG Wen-lin,YIN Xiao-hai,WEI Zhen,et al. Experimental Study on Solar Aeration Technology for Treatment of Heavily Polluted Urban River Channel [J]. China Water & Wastewater,2008,24(17): 44-48.(in Chinese))
[34]于 萍,穆元春. 太阳能光热发电的发展[J]. 玻璃,2012,39(6): 36-38.(YU Ping,MU Yuan-chun. Development of Concentrated Solar Power[J]. Glass,2012,39(6): 36-38.(in Chinese))
[35]吴东磊,徐 强,田光明. 太阳能驱动微动力人工湿地污水处理装置:中国,201110226970 [P]. 2011.12.14.(WU Dong-lei,XU Qiang,TIAN Guang-ming. Solar Driven Micro-Power Constructed Wetland: China,201110226970[P]. 2011.12.14.(in Chinese))
[36]李跃起,薛 慧. 太阳能型人工湿地污水处理系统:中国,201020252042[P]. 2011.01.26.(LI Yue-qi,XUE Hui. Solar Energy Constructed Wetland for Wastewater Treatment: China,201020252042[P]. 2011.01.26.(in Chinese))