Journal of Environmental Management, Volume (223), No (1), Year (2018-7) , Pages (703-712)

Title : ( Combined effects of polyacrylamide and nanomagnetite amendment on soil and water quality, Khorasan Razavi, Iran )

Authors: Mohammad Reza Roshani Zarmehri , Amir Fotovat , Hojat Emami , M. Kehl , D. R. Hirmas , M. Hosseinalizadeh , Navid Ramezanian ,

Citation: BibTeX | EndNote

Abstract

Nanotechnology is increasingly being used to remediate polluted soil and water. However, few studies are available assessing the potential of nanoparticles to bind surface particles, decrease erosion, and minimize the loading of water pollutants from agricultural surface discharge. To investigate this potential, we treated in situ field plots with two practical surface application levels of anionic polyacrylamide (PAM only) with and without anomagnetite (PAM-NM), examined soil physical properties, and evaluated the impact of this amendment on contaminant sorption and soil erosion control. Polyacrylamide and PAM-NM treatments resulted in 32.2 and 51.9 fold reductions in Mn2+, 1.8 and 2.7 fold for PO4 3--P, and 2.3 and 1.6 fold for NH4 +-N, respectively, compared to the control. Thus, we found that the combination of PAM and NM, had an important inhibitory ffect on NH4 +-N and PO4 3--P transport from soil—pollutants which can contribute substantially to the utrophication of surface water bodies. Additionally, since the treatment, especially at a high concentration of NM, was effective at reducing Mn2+concentrations in the runoff water, the combination of PAM and NM may be important for mitigating potential risks associated with Mn2+ toxicity. Average sediment contents in the runoff monitored during the rainfall simulation were reduced by 3.6 and 4.2 fold for the low and high concentration PAM-NM treatments when compared to a control. This treatment was only slightly less effective than the PAMonly applications (4.9 and 5.9 fold, respectively). We report similar findings for turbidity of the runoff (2.6–3.3 fold for PAM only and 1.8–2.3 fold for PAM-NM) which was caused by the effects of both PAM and NM on the binding of surface particles corresponding to an increase in aggregate size and stability. Findings from this fieldbased study show that PAM-modified NM adsorbents can be used to both inhibit erosion and control contaminant transport.

Keywords

Anionic polyacrylamide Nanomagnetite Water quality Soil erosion Aggregate size
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@article{paperid:1069228,
author = {Roshani Zarmehri, Mohammad Reza and Fotovat, Amir and Emami, Hojat and M. Kehl and D. R. Hirmas and M. Hosseinalizadeh and Ramezanian, Navid},
title = {Combined effects of polyacrylamide and nanomagnetite amendment on soil and water quality, Khorasan Razavi, Iran},
journal = {Journal of Environmental Management},
year = {2018},
volume = {223},
number = {1},
month = {July},
issn = {0301-4797},
pages = {703--712},
numpages = {9},
keywords = {Anionic polyacrylamide Nanomagnetite Water quality Soil erosion Aggregate size},
}

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%0 Journal Article
%T Combined effects of polyacrylamide and nanomagnetite amendment on soil and water quality, Khorasan Razavi, Iran
%A Roshani Zarmehri, Mohammad Reza
%A Fotovat, Amir
%A Emami, Hojat
%A M. Kehl
%A D. R. Hirmas
%A M. Hosseinalizadeh
%A Ramezanian, Navid
%J Journal of Environmental Management
%@ 0301-4797
%D 2018

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