2015Journal of Environmental Science and Health Part BRequires access

Effect of the pesticide lindane on the biomass of the microalgaeNannochloris oculata

Ignacio Alejandro Pérez‐Legaspi, Luis Alfredo Ortega‐Clemente, Jesús David Moha-León, Elvira Ríos‐Leal, Sergio Curiel-Ramírez Gutiérrez, Isidoro Rubio‐Franchini

Open publisher page 37 citations

Abstract

This study assesses the growth of the microalgae Nannochloris oculata in the presence of lindane and the ability of N. oculata to remove lindane from media. Algal biomass increased with 0.1 and 0.5 mg L−1 of lindane, and lindane concentrations in the media decreased. N. oculata removed 73% and 68.2% of lindane in the 0.1 and 0.5 mg L−1 media concentrations, respectively. Algal biomass decreased to the level of the control at lindane concentrations greater than 2.5 mg L−1, probably due to toxicity. N. oculata removed lindane from the media at concentrations lower than 1.0 mg L−1. Thus, N. oculata may be useful for lindane bioremediation in contaminated aquatic systems.

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What this paper is about

This study assesses the growth of the microalgae Nannochloris oculata in the presence of lindane and the ability of N. oculata to remove lindane from media. Algal biomass increased with 0.1 and 0.5 mg L−1 of lindane, and lindane concentrations in the media decreased. N. oculata removed 73% and 68.2% of lindane in the 0.1 and 0.5 mg L−1 media concentrations, respectively. Algal biomass decreased to the level of the control at lindane concentrations greater than 2.5 mg L−1, probably due to toxicity. N. oculata removed lindane from the media at concentrations lower than 1.0 mg L−1. Thus, N. oculata may be useful for lindane bioremediation in contaminated aquatic systems.

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Available abstract

This study assesses the growth of the microalgae Nannochloris oculata in the presence of lindane and the ability of N. oculata to remove lindane from media. Algal biomass increased with 0.1 and 0.5 mg L−1 of lindane, and lindane concentrations in the media decreased. N. oculata removed 73% and 68.2% of lindane in the 0.1 and 0.5 mg L−1 media concentrations, respectively. Algal biomass decreased to the level of the control at lindane concentrations greater than 2.5 mg L−1, probably due to toxicity. N. oculata removed lindane from the media at concentrations lower than 1.0 mg L−1. Thus, N. oculata may be useful for lindane bioremediation in contaminated aquatic systems.

Key concepts: Lindane, Pesticide, Biomass (ecology), Bioremediation, Environmental chemistry, Chemistry, Biology, Toxicology

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