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Impact of the substrate loading regime and phosphoric acid supplementation on performance of biogas reactors and microbial community dynamics during anaerobic digestion of chicken wastes. | LitMetric

AI Article Synopsis

  • * The introduction of phosphoric acid led to higher biogas yields (361-447 mL g(VS)(-1)) during specific days compared to a control reactor, which produced 309-350 mL g(VS)(-1).
  • * Microbial analysis showed a shift from Bacteroidetes to Firmicutes, particularly an increase in Clostridium sp., while Methanosarcina sp. was the dominant archaeal type, indicating changes in microbial community composition in response to the experimental conditions

Article Abstract

This study evaluates the effects of increasing organic loading rate (OLR) and decreasing hydraulic retention time (HRT) as well as phosphoric acid addition on mesophilic reactors' performance and biogas production from chicken wastes. Furthermore, microbial community composition in reactors was characterized by a 16S rRNA gene-based pyrosequencing analysis. Each step of increasing OLR impacted on the activity of microorganisms what caused a temporary decrease in biogas production. The addition of phosphoric acid resulted in the increased biogas production with values between 361 and 447 mL g(VS)(-1) from day 61 to day 74 compared to control reactor (309-350 mL g(VS)(-1)). With reactors' operation, Bacteroidetes phylotypes were noticeably replaced with Firmicutes representatives, and significant increase of Clostridium sp. was identified. Within Euryarchaeota, Methanosarcina sp. dominated in all analyzed samples, in which high ammonium levels were detected (3.4-4.9 NH4(+)-N g L(-1)). These results can help in better understanding the anaerobic digestion process of simultaneously ammonium/phosphate-rich substrates.

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Source
http://dx.doi.org/10.1016/j.biortech.2015.06.066DOI Listing

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