2020International Journal of Renewable Energy TechnologyRequires access

Effect of some operational conditions on bioelectricity production in algal fuel cell

Victoria Olaide Adenigba, Julius Kola Oloke, Iyabo Olunike Omomowo, Collins Ejovwokoghene Odjadjare, Oluwabusayo Odunola Oluyide, Seun Barnabas Ogunsona

Open publisher page 1 citations

Abstract

Optimisation of bioelectricity production from microalgae in double chamber algal fuel cell was investigated. Ten microalgae were isolated from pond and sea water and characterised molecularly. They were identified as follow: Nanochloropsis sp MG257918, Chlorella sorokiniana MG257919 and Coelastrella sp. MG257917. Others include Chlorococcum sp MG257921, Neosdesmus pupukensis MG257914, Chlorella vulgaris MG257915, Leptolyngbya boryana MG257913, Chlamydopodium starrii MG257920, Parachlorella sp. MF114127 and Neochloris aquatica MG257916. The potential of these microalgae to produce electricty was determined by using human urine as substrate. Three microalgae: C. vulgaris, C. sorokiniana and Parachlorella. sp with the best output were selected for optimisation under different conditions which are: pH, inoculum size, salt bridge concentration, oxidising agent and number of salt bridge. At the end of the different experiments, C. vulgaris, C. sorokiniana and Parachlorella sp. had maximum output of (1.49 V; 1.31 mA), (1.67 V; 1.4 mA) and (1.46 V; 1.25 mA) respectively. The optimum requirement for the 3 microalgae were similar: pH of 8-8.5, 10-15 ml of each algal as inoculum, 1 M KCl-based salt bridge, potassium permanganate as oxidising agent and increase in the number of salt bridges favoured optimum performance by each microalgae.

About this research paper

What this paper is about

Optimisation of bioelectricity production from microalgae in double chamber algal fuel cell was investigated. Ten microalgae were isolated from pond and sea water and characterised molecularly. They were identified as follow: Nanochloropsis sp MG257918, Chlorella sorokiniana MG257919 and Coelastrella sp. MG257917. Others include Chlorococcum sp MG257921, Neosdesmus pupukensis MG257914, Chlorella vulgaris MG257915, Leptolyngbya boryana MG257913, Chlamydopodium starrii MG257920, Parachlorella sp. MF114127 and Neochloris aquatica MG257916. The potential of these microalgae to produce electricty was determined by using human urine as substrate. Three microalgae: C. vulgaris, C. sorokiniana and Parachlorella. sp with the best output were selected for optimisation under different conditions which are: pH, inoculum size, salt bridge concentration, oxidising agent and number of salt bridge. At the end of the different experiments, C. vulgaris, C. sorokiniana and Parachlorella sp. had maximum output of (1.49 V; 1.31 mA), (1.67 V; 1.4 mA) and (1.46 V; 1.25 mA) respectively. The optimum requirement for the 3 microalgae were similar: pH of 8-8.5, 10-15 ml of each algal as inoculum, 1 M KCl-based salt bridge, potassium permanganate as oxidising agent and increase in the number of salt bridges favoured optimum performance by each microalgae.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Optimisation of bioelectricity production from microalgae in double chamber algal fuel cell was investigated. Ten microalgae were isolated from pond and sea water and characterised molecularly. They were identified as follow: Nanochloropsis sp MG257918, Chlorella sorokiniana MG257919 and Coelastrella sp. MG257917. Others include Chlorococcum sp MG257921, Neosdesmus pupukensis MG257914, Chlorella vulgaris MG257915, Leptolyngbya boryana MG257913, Chlamydopodium starrii MG257920, Parachlorella sp. MF114127 and Neochloris aquatica MG257916. The potential of these microalgae to produce electricty was determined by using human urine as substrate. Three microalgae: C. vulgaris, C. sorokiniana and Parachlorella. sp with the best output were selected for optimisation under different conditions which are: pH, inoculum size, salt bridge concentration, oxidising agent and number of salt bridge. At the end of the different experiments, C. vulgaris, C. sorokiniana and Parachlorella sp. had maximum output of (1.49 V; 1.31 mA), (1.67 V; 1.4 mA) and (1.46 V; 1.25 mA) respectively. The optimum requirement for the 3 microalgae were similar: pH of 8-8.5, 10-15 ml of each algal as inoculum, 1 M KCl-based salt bridge, potassium permanganate as oxidising agent and increase in the number of salt bridges favoured optimum performance by each microalgae.

Key concepts: Chlorella sorokiniana, Chlorella vulgaris, Potassium permanganate, Chlorella, Algae, Botany, Biology, Photobioreactor

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of some operational conditions on bioelectricity production in algal fuel cell — Research Paper | ScholarLens