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ARTICLES

Effects of the substrate depth on purification performance of a hybrid constructed wetland treating domestic sewage

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Pages 777-782 | Published online: 01 Jun 2011

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Adelaide Almeida, Krzysztof Jóźwiakowski, Alina Kowalczyk-Juśko, Piotr Bugajski, Karolina Kurek, Fátima Carvalho, Anabela Durao, Carlos Ribeiro & Magdalena Gajewska. (2020) Nitrogen removal in vertical flow constructed wetlands: influence of bed depth and high nitrogen loadings. Environmental Technology 41:17, pages 2196-2209.
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Rajendra Prasad Singh, DaFang Fu, Juan Huang & DaNeng Fu. (2015) Pollutant removal efficiency of mesocosm HSSF-constructed wetlands treating highway runoff with different filter materials and HRT. Desalination and Water Treatment 54:1, pages 103-112.
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Jingying Zhang, Qiuhui Yan, Ge Bai, Dun Guo, Yanbin Chi, Bin Li, Lei Yang & Yongxiang Ren. (2023) Inducing root redundant development to release oxygen: An efficient natural oxygenation approach for subsurface flow constructed wetland. Environmental Research 239, pages 117377.
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Jingying Zhang, Zhiyong Shao, Bin Li, Ge Bai, Lei Yang, Yanbin Chi, Min Wang & Yongxiang Ren. (2023) Root vertical spatial stress: A method for enhancing rhizosphere effect of plants in subsurface flow constructed wetland. Environmental Research 231, pages 116083.
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Marcos von Sperling, Scott D. Wallace & Jaime Nivala. (2023) What is the best design approach for estimating effluent concentrations from horizontal flow treatment wetlands: the use of volumetric ( k V) or areal ( k A) removal rate coefficients? . Water Science & Technology 88:2, pages 502-515.
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Wojciech Halicki & Michał Halicki. (2022) Effective Removal of Biogenic Substances Using Natural Treatment Systems for Wastewater for Safer Water Reuse. Water 14:23, pages 3977.
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M. Verduzo Garibay, A. Fernández del Castillo, J. de Anda, C. Senés-Guerrero & M. S. Gradilla-Hernández. (2021) Structure and activity of microbial communities in response to environmental, operational, and design factors in constructed wetlands. International Journal of Environmental Science and Technology 19:11, pages 11587-11612.
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Rajwinder Kaur, Anita Talan, Bhagyashree Tiwari, Sridhar Pilli, Balasubramanian Sellamuthu & R.D. Tyagi. 2020. Current Developments in Biotechnology and Bioengineering. Current Developments in Biotechnology and Bioengineering 87 140 .
N. Perujo, A. M. Romaní & X. Sanchez-Vila. (2018) Bilayer Infiltration System Combines Benefits from Both Coarse and Fine Sands Promoting Nutrient Accumulation in Sediments and Increasing Removal Rates. Environmental Science & Technology 52:10, pages 5734-5743.
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Alberto Barco & Maurizio Borin. (2017) Treatment performance and macrophytes growth in a restored hybrid constructed wetland for municipal wastewater treatment. Ecological Engineering 107, pages 160-171.
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Vassilios A. Tsihrintzis. (2017) The use of Vertical Flow Constructed Wetlands in Wastewater Treatment. Water Resources Management 31:10, pages 3245-3270.
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Zhengyan Zhao, Jie Chang, Wenjuan Han, Meng Wang, Danping Ma, Yuanyuan Du, Zelong Qu, Scott X. Chang & Ying Ge. (2016) Effects of plant diversity and sand particle size on methane emission and nitrogen removal in microcosms of constructed wetlands. Ecological Engineering 95, pages 390-398.
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. 2014. Vertical Flow Constructed Wetlands. Vertical Flow Constructed Wetlands 315 363 .
Alexandros Stefanakis, Christos S. Akratos & Vassilios A. Tsihrintzis. 2014. Vertical Flow Constructed Wetlands. Vertical Flow Constructed Wetlands 17 25 .

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