Literature DB >> 22852424

Microalgae growth using high-strength wastewater followed by anaerobic co-digestion.

Xin Yuan1, Meng Wang, Chul Park, Ashish K Sahu, Sarina J Ergas.   

Abstract

Integration of algal biofuel production to wastewater anaerobic digestion infrastructure has the potential to increase biogas production, decrease high and variable internal nitrogen loads, and improve sludge digestibility and dewaterability. In this research, two species of microalgae, Spirulina platensis and Chlorella sp., were grown on sludge centrate and a centrate and nitrified wastewater effluent mixture. Harvested algae were co-digested with waste activated sludge (WAS) at varying ratios. High-growth (6.8 g m(-2) x d(-1)), nitrogen (36.5 g m(-3) x d(-1)), and phosphorus (6.5 g m(-3) x d(-1)) uptake rates were achieved with Chlorella on centrate. No growth was observed with S. platensis under the same conditions; however, both organisms grew well on the centrate and effluent mixture. Co-digestion of algae with WAS improved volatile solids reduction. Although co-digestion with S. platensis improved biosolids dewaterability, Chlorella had a slight negative effect on dewaterability compared to WAS alone. The efficiency of energy conversion from photons to biogas generated from Chlorella was estimated at 1.4%.

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Year:  2012        PMID: 22852424     DOI: 10.2175/106143011x13233670703242

Source DB:  PubMed          Journal:  Water Environ Res        ISSN: 1061-4303            Impact factor:   1.946


  2 in total

1.  Biomass production and removal of ammonium and phosphate by Chlorella sp. in sludge liquor at natural light and different levels of temperature control.

Authors:  Anette M Åkerström; Leiv M Mortensen; Bjørn Rusten; Hans Ragnar Gislerød
Journal:  Springerplus       Date:  2016-05-23

2.  Wastewater use in algae production for generation of renewable resources: a review and preliminary results.

Authors:  Omatoyo K Dalrymple; Trina Halfhide; Innocent Udom; Benjamin Gilles; John Wolan; Qiong Zhang; Sarina Ergas
Journal:  Aquat Biosyst       Date:  2013-01-05
  2 in total

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