Kadlec R H. The inadequacy of first-order treatment wetland models[J]. Ecological Engineering, 2000, 15(1-2):105-109.
[2]
徐文杰, 姜 磊, 王其东, 等. 垂直流与水平流人工湿地污水净化效果的对比研究[J]. 环境保护与循环经济, 2013(4):35-37.XU Wen-jie, JIANG Lei, WANG Qi-dong, et al. A comparative study of vertical flow and horizontal flow constructed wetlands wastewater treatment[J]. Environmental Protection & Re-cycling Economy, 2013(4):35-37.
[3]
崔理华, 郑离妮, 楼 倩, 等. 不同回流比对无植物垂直流人工湿地除氮效果的影响[J]. 环境工程学报, 2009, 3(7):1170-1174.CUI Li-hua, ZHENG Li-ni, LOU Qian, et al. Effect of different recirculation ratios on removal efficiency of nitrogen in unplanted vertical flow constructed wetlands[J]. Chinese Journal of Environmental Engineering, 2009, 3(7):1170-1174.
[4]
李伟航. 人工湿地脱氮机理及其主要影响因素研究[J]. 轻工科技, 2013(6):106-108.LI Wei-hang. The nitrogen removal mechanism and main influence factor of constructed wetland[J]. Light Industry Science and Technology, 2013(6):106-108.
[5]
张 政, 付融冰, 顾国维, 等. 人工湿地脱氮途径及其影响因素分析[J]. 生态环境, 2006, 15(6):1385-1390.ZHANG Zheng, FU Rong-bing, GU Guo-wei, et al. Analysis of nitrogen removal pathways and their effect factors in constructed wetland[J]. Ecology and Environmental Science, 2006, 15(6):1385-1390.
Kadlec R H, Knight R L, Vymazal J, et al. Constructed wetlands for pollution control:Processes, performance, design and operation[M]. London, UK:IWA Publishing, 2000:55-78.
[8]
Peterz M M, Hernandez J M, Bossens J, et al. Vertical flow constructed wetlands:Kinetics of nutrient and organic matter removal[J]. Water Science and Technology, 2014, 70(1):76-81.
[9]
Bunwong K, Sae-Jie W, Lenbury Y. Modelling nitrogen dynamics of a constructed wetland:Nutrient removal process with variable yield[J]. Nonlinear Analysis:Theory, Methods & Applications, 2009, 71(12):e1538-e1546.
[10]
Mayo A W, Bigambo T. Nitrogen transformation in horizontal subsurface flow constructed wetlands I:Model development[J]. Physics and Chemistry of the Earth, 2005, 30(11-16):658-667.
[11]
李慧峰, 黄津辉, 林 超. Subwet模型在人工湿地设计中的应用[J]. 环境科学, 2013, 34(7):2628-2636.LI Hui-feng, HUANG Jin-hui, LIN Chao. Application of Subwet Model in the design of constructed wetland[J]. Environmental Science, 2013, 34(7):2628-2636.
[12]
Morvannou A, Choubert J, Vanclooster M, et al. Modeling nitrogen removal in a vertical flow constructed wetland treating directly domestic wastewater[J]. Ecological Engineering, 2014, 70:379-386.
[13]
白少元, 宋志鑫, 丁彦礼, 等. 潜流人工湿地基质结构与水力特性相关性研究[J]. 环境科学, 2014, 35(2):592-596.BAI Shao-yuan, SONG Zhi-xin, DING Yan-li, et al. Correlation of substrate structure and hydraulic characteristics in subsurface flow constructed wetlands[J]. Environmental Science, 2014, 35(2):592-596.
[14]
刘晓娜, 丁爱中, 陈莉蓉, 等. 潜流人工湿地除氮的生态动力学模拟[J]. 农业环境科学学报, 2011, 30(1):166-170.LIU Xiao-na, DING Ai-zhong, CHEN Li-rong, et al. Simulation of nitrogen removal in subsurface flow constructed wetland[J]. Journal of Agro-Environment Science, 2011, 30(1):166-170.
[15]
Robert C, Alexey V. Modeling ecological and economic systems with STELLA:Part Ⅲ[J]. Ecological Modelling, 2001, 143(1-2):1-7.
[16]
张修峰, 陆健健. 温州三垟湿地底泥疏浚对水体总磷浓度影响的生态模型研究[J]. 农业环境科学学报, 2006, 25(增刊):158-162.ZHANG Xiu-feng, LU Jian-jian. A ecological model of influences on concentrations of total phosphorus in water after dredging of bottom mud in Sanyang wetland of Wenzhou[J]. Journal of Agro-Environment Science, 2006, 25(Suppl):158-162.
[17]
Kumar J L G, Wang Z Y, Zhao Y Q. STELLA software as a tool for modelling phosphorus removal in a constructed wetland employing dewatered alum sludge as main substrate[J]. Journal of Environmental Science and Health Part A-Toxic/Hazardous Substances & Environmental Engineering, 2011, 46(7):751-757.
[18]
Xuan Z M, Chang N B, Daranpob A, et al. Modeling subsurface upflow wetlands systems for wastewater effluent treatment[J]. Environmental Engineering Science, 2010, 27(10):879-888.
[19]
连小莹, 金 秋, 李先宁, 等. 氮形态对人工湿地氮去除效果的影响[J]. 环境科技, 2011, 24(1):26-28.LIAN Xiao-ying, JIN Qiu, LI Xian-ning, et al. Effect of nitrogen forms denitrifying efficiency in constructed wetland[J]. Environmental Science and Technology, 2011, 24(1):26-28.
Ouyang Y, Luo S M, Cui L H. Estimation of nitrogen dynamics in a vertical-flow constructed wetland[J]. Ecological Engineering, 2011, 37(3):453-459.
[22]
王 洋, 刘景双, 孙志高, 等. 湿地系统氮的生物地球化学研究概述[J]. 湿地科学, 2006, 4(4):311-320.WANG Yang, LIU Jing-shuang, SUN Zhi-gao, et al. A review on nitrogen biogeochemistry study in wetland systems[J]. Wetland Science, 2006, 4(4):311-320.
[23]
周旺明, 秦胜金, 刘景双, 等. 沼泽湿地土壤氮矿化对温度变化及冻融的响应[J]. 农业环境科学学报, 2011, 30(4):806-811.ZHOU Wang-ming, QIN Sheng-jin, LIU Jing-shuang, et al. Effects of temperature and freeze-thaw on soil nitrogen mineralization in typical calamagrostis angustifolia wetlands in Sanjiang Plain[J]. Journal of Agro-Environment Science, 2011, 30(4):806-811.