Journal of Water Resource and Protection

Volume 1, Issue 1 (May 2009)

ISSN Print: 1945-3094   ISSN Online: 1945-3108

Google-based Impact Factor: 1.01  Citations  h5-index & Ranking

Study on the Heavy Metals Removal Efficiencies of Constructed Wetlands with Different Substrates

HTML  Download Download as PDF (Size: 8165KB)  PP. 22-28  
DOI: 10.4236/jwarp.2009.11004    8,055 Downloads   16,322 Views  Citations

Affiliation(s)

.

ABSTRACT

In this study constructed wetlands (CWs) were used to remove three heavy metals (Zn, Cu and Pb). The two tested substrates were made of coke and gravel, respectively. First order dynamic model was appropriate to describe removing of Zn and Cu. The experimental results showed that first dynamic removal rate constants of Zn in CWs with coke and gravel were 0.2326 h-1 and 0.1222 h-1, respectively. And those of Cu in CWs with coke and gravel were 0.2017 h-1 and 0.3739 h-1. However, removal efficiencies of Pb in the coke system and the gravel system were within 95-99%, so the first order dynamic model failed to fit the experimental data because the hydraulic resident times of Pb did not affect outlet concentration of Pb. From the removal rate constants, it is found that the coke and gravel system have different absorption efficiencies of heavy metal pollutants. Therefore, it is suggested that the removal efficiencies of heavy metals are influenced by the choice of substrates to some extent.

Share and Cite:

CHEN, M. , TANG, Y. , LI, X. and YU, Z. (2009) Study on the Heavy Metals Removal Efficiencies of Constructed Wetlands with Different Substrates. Journal of Water Resource and Protection, 1, 22-28. doi: 10.4236/jwarp.2009.11004.

Cited by

[1] Constructed Wetlands for Reclamation and Reuse of Wastewater and Urban Stormwater: A Review
Frontiers in Environmental Science, 2022
[2] Constructed Wetlands as a Solution for Sustainable Sanitation: A Comprehensive Review on Integrating Climate Change Resilience and Circular Economy
Water, 2022
[3] Assessing the performance of horizontally flowing subsurface wetland equipped with Vetiveria zizanioides for the treatment of acid mine drainage
Advances in …, 2022
[4] Development of the data-driven models for accessing the impact of design variables on heavy metal removal in constructed wetlands
Blue-Green Systems, 2021
[5] Phythotechnology of touch industrial waste treatment in Sidoarjo using Typha latifolia plant to reduce TDS and ammonia levels
Journal of Research and …, 2021
[6] Characterizing copper and zinc content in forested wetland soils of North Carolina, USA
Fox, MR Burchell, MJ Vepraskas… - Environmental …, 2021
[7] Cadmium Removal and Sorption by Benthic Microbial Biomats and Potential Applications for A Contaminated Watershed in the Arequipa Region of Southern Peru
2021
[8] CONSTRUCTED WETLAND EFFLUENT IRRIGATION AS A POTENTIAL WATER AND NUTRIENT SOURCE FOR VEGETABLES
2021
[9] Current World Environment
2020
[10] Purifying effect of biochar-zeolite constructed wetlands on arsenic-containing biogas slurry in large-scale pig farms
2020
[11] Low-Cost Technology for the Purification of Wastewater Contaminated with Pathogenic Bacteria and Heavy Metals
2020
[12] Removal of nitrobenzene from wastewater by vertical flow constructed wetland and optimizing substrate composition using Hydrus-1D: optimizing substrate …
2019
[13] Pilot-Scale Removal of Arsenic and Heavy Metals from Mining Wastewater using Adsorption Combined with Constructed Wetland
2019
[14] Effect of bed absorption on contaminant transport in wetland channel with rectangular cross-section
2019
[15] Constructed Subsurface Wetlands: Case Study and Modeling
2018
[16] EVALUATION OF THE EFFICIENCY OF SUBSURFACE HORIZONTAL FLOW CONSTRUCTED WETLAND IN REMOVAL OF HEAVY METALS FROM AHMADU …
Nigerian Journal of …, 2018
[17] Treatment of petroleum refinery wastewater with constructed wetlands
2018
[18] PENGEMBANGAN MODEL PENGOLAHAN GREYWATER MENGGUNAKAN CONSTRUCTED WETLAND MELALUI SIMBIOSIS MUTUALISME HYDROPHYTA …
2018
[19] Pengolahan Air Limbah dan Produksi Biolistrik pada Lahan Basah dengan Metode Plant Microbial Fuel Cell (PMFC) pada Berbagai Tanaman.
2018
[20] Constructed Wetlands to Treat Petroleum Wastewater
2018
[21] Design of Combination Biofilter and Subsurface Constructed Wetland Multilayers Filtration with Vertical Flow Type Using Vetiveria Zizanioides
2018
[22] Global development of various emerged substrates utilized in constructed wetlands
Bioresource Technology, 2018
[23] Conference Proceeding
2018
[24] Time plots, trends and seasonal growth/decay of Cr removal in vertical subsurface flow sewage treatment wetland
2018
[25] Design of combination biofilter and subsurface constructed wetland-multilayer filtration with vertical flow type using Vetiveria zizanioides (akar wangi)
IOP Conference Series: Earth and Environmental Science, 2018
[26] 人工湿地基质配制对含 Pb 废水的处理效果研究
2018
[27] Ecological modelling of a wetland for phytoremediating Cu, Zn and Mn in a gold–copper mine site using Typha domingensis (Poales: Typhaceae) near …
European Journal of Ecology, 2017
[28] Ecological modelling of a wetland for phytoremediating Cu, Zn and Mn in a gold–copper mine site using Typha domingensis (Poales: Typhaceae) near Orange, NSW …
2017
[29] Assessing the Effectiveness of a Constructed Wetland in a Complex Suburban Environment
2017
[30] Azo textile dyes wastewater treatment with constructed wetlands: design and operation of experimental vertical-flow constructed wetlands applied for the treatment of …
2017
[31] Field Study On Heavy Metal Removal In A Natural Wetland Receiving Municipal Sewage Discharge
2017
[32] The removal of heavy metals by iron mine drainage sludge and Phragmites australis
IOP Conference Series: Earth and Environmental Science, 2017
[33] Azo Textile Dyes Wastewater Treatment with Constructed Wetlands Design and Operation of Experimental Vertical-Flow Constructed Wetlands Applied for the …
2017
[34] Azo textile dyes wastewater treatment with constructed wetlands: design and operation of experimental vertical-flow constructed wetlands applied for the …
2017
[35] Ecological modelling of a wetland for phytoremediating Cu, Zn and Mn in a gold–copper mine site using Typha domingensis (Poales: Typhaceae) near Orange …
2017
[36] Pb Removal Using Mixed Substrates in a Constructed Laboratory-Scale Unvegetated Vertical Subsurface-Flow Wetland
Polish Journal of Environmental Studies, 2016
[37] Cd removal in laboratory scale of unvegetated vertical subsurface flow constructed wetland using mixed substrates
2016
[38] Monitoring of selected contaminants (physico-chemical and bacteriological parameters) in wetland filters: A case study of a 10-year old Johannesburg zoo …
2015
[39] Impacts of sugarcane farming on coastal wetlands of the north coast of Zululand, Kwadukuza, South Africa
2015
[40] Monitoring of selected contaminants (physico-chemical and bacteriological parameters) in wetland filters: A case study of a 10-year old Johannesburg zoo …
2015
[41] Cd Fractions in Unvegetated Vertical Subsurface Flow Constructed Wetland Using Different Supporting Media
Measuring Technology and Mechatronics Automation (ICMTMA), 2015 Seventh International Conference on, 2015
[42] Monitoring of selected contaminants (physico-chemical and bacteriological parameters) in wetland filters: A case study of a 10-year old Johannesburg zoo constructed wetland
2015
[43] Efficient Water Purification by Photocatalysis and Rapid Adsorption of Dip‐Coated Metal Foam with Nanostructured Bismuth Vanadate
Journal of the American Ceramic Society, 2015
[44] Performance of a vertical subsurface flow constructed wetland under different operational conditions
Journal of Advanced Research, 2015
[45] EFFECT OF USING DIFFERENT MEDIA ON BOD TREATMENT IN HSSF CONSTRUCTED WETLANDS (STEADY STAGE)
AA Zidan, MA El-Gamal, AA Rashed, EH Abd - iwtj.info, 2014
[46] Impact of Heavy metal toxicity and Constructed wetland system as a tool in remediation
Archives of environmental & occupational health, 2014
[47] The effects of substrate type, HRT and reed on the lead removal in horizontal subsurface-flow constructed wetland
Desalination and Water Treatment, 2014
[48] STUDI KEMAMPUAN VERTICAL SUBSURFACE FLOW CONSTRUCTED WETLANDS DALAM MENYISIHKAN COD, NITRIT, DAN NITRAT PADA AIR LINDI (STUDI KASUS: TPA NGRONGGO, SALATIGA)
Jurnal Teknik Lingkungan, 2013
[49] STUDI KEMAMPUAN VERTICAL SUBSURFACE FLOW CONSTRUCTED WETLANDS DALAM MENYISIHKAN COD, NITRIT, DAN NITRAT PADA AIR LINDI (STUDI …
2013
[50] Accumulation of Heavy Metals by Wetland Plants with Different Root Systems in a Karst Mountainous Area
Advanced Materials Research, 2013
[51] Simulasi Aliran Air Asam Tambang
Jurnal Pembangunan dan Alam Lestari, 2013
[52] Assessment and management of heavy metal pollution in the marine environment of the Arabian Gulf: A review
Marine pollution bulletin, 2013
[53] Heavy metals in Phalaris arundinacea growing in a constructed wetland treating municipal sewage
International Journal of Environmental and Analytical Chemistry, 2011
[54] CONSTRUCTED WETLAND FOR WATER TREATMENT AND RECREATION, NGONG RIVER
2011
[55] Primerjava vertikalnih in horizontalnih sistemov rastlinskih čistilnih naprav
2011
[56] Penyisihan Logam Pada Lindi Menggunakan Constructed Wetland Metal Removal From Leachate In Constructed Wetland
2010
[57] Primerjava vertikalnih in horizontalnih sistemov rastlinskih ?istilnih naprav
Thesis, 2010
[58] Field Study on Heavy Metal Removal in a Natural Wetland Receiving Municipal Sewage Discharge Field Study on Heavy Metal Removal in a Natural Wetland …

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.