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Heavy metal adsorption properties of a submerged aquatic plant ( Ceratophyllum demersum )

Bioresource Technology, 2004
Heavy metals can be adsorbed by living or non-living biomass. Submerged aquatic plants can be used for the removal of heavy metals. In this paper, lead, zinc, and copper adsorption properties of Ceratophyllum demersum (Coontail or hornwort) were investigated and results were compared with other aquatic submerged plants.
Keskinkan O.   +3 more
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Photosynthetic characteristics of the submerged macrophyte Ceratophyllum demersum

Physiologia Plantarum, 1986
The photosynthetic and growth characteristics of Ceratophyllum demersum L. were investigated under laboratory conditions which simulated those encountered in the plants' normal environment. The carbon fixation rate of C. demersum measured with 14C at light and carbon saturation at pH 8.0 was 4.48 mg C (g ash‐free dry weight)−1 h−1. It was lower at pH 6.
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Bioaccumulation of Nickel and Cobalt in the Aquatic Plants Ceratophyllum submersum & Ceratophyllum demersum

SAR Journal of Anatomy and Physiology
Aquatic macrophytes play a critical role in the removal and sequestration of heavy metals from contaminated freshwater systems through bioaccumulation and phytoremediation processes. This study examines the capacity of two submerged aquatic plants, Ceratophyllum submersum and Ceratophyllum demersum, to accumulate nickel (Ni) and cobalt (Co) from ...
Roaa Basim Shnain, Anwer Abbas Fadaam
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Charophyte occurrence in Ceratophyllum demersum stands

Hydrobiologia, 2014
The hornwort Ceratophyllum demersum is a loosely attached to the bottom or free-floating vascular macrophyte, which builds dense stands in nutrient-rich waters. The hornwort stands are usually monospecific communities with a negligible contribution of other aquatic plants.
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Analysis of pollution removal from wastewater by Ceratophyllum demersum

2012
Water is one of the most stable and abundant complexes on nature that can be polluted with natural and human factors. Polluted water is harmful to human health and need to purify. One of the economic and rapid methods for elements removal is displacement of metals by biosorption.
Foroughi, M   +3 more
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Structural and metabolic responses of Ceratophyllum demersum to eutrophic conditions

2013
Eutrophication in water bodies affects the growth of aquatic plants. In this study, we conducted static experiments to better understand the structural and metabolic responses of Ceratophyllum demersum under eutrophication conditions. The anatomical structure, nitrogen (N) and phosphorous (P) levels in tissue, malondiadehyde (MDA), and activities of ...
Hanfeng, Xiong   +2 more
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