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Volatile fatty acids platform from thermally hydrolysed secondary sewage sludge enhanced through recovered micronutrients from digested sludge. | LitMetric

Volatile fatty acids platform from thermally hydrolysed secondary sewage sludge enhanced through recovered micronutrients from digested sludge.

Water Res

Wales Centre of Excellence for Anaerobic Digestion, Sustainable Environment Research Centre (SERC), University of South Wales, Pontypridd, Mid-Glamorgan, CF37 1DL, UK. Electronic address:

Published: September 2016

AI Article Synopsis

  • Extracellular polymeric substances and microbial cytoplasmic contents are essential for anaerobic microorganisms as they contain important nutrients for metabolism, such as inorganic ions, proteins, and carbohydrates.
  • Adding soluble nutrients recovered from thermally treated digestate sludge to fermented thermally hydrolyzed waste activated sludge significantly increased volatile fatty acid (VFA) yields by 27% compared to control without micronutrients.
  • Using a low pH from high sucrose levels improved VFA production by 20% and combined with recovered microbial nutrients, it could eliminate the need for thermal pre-treatment of the inoculum.

Article Abstract

The extracellular polymeric substances and microbial cytoplasmic contents seem to hold inorganic ions and organic products, such as proteins and carbohydrates that are of critical importance for the metabolism of hydrolytic and acidogenic anaerobic microorganisms. The addition of soluble microbially recovered nutrients from thermally treated digestate sludge, for the fermentation of thermally hydrolysed waste activated sludge, resulted in higher volatile fatty acids yields (VFAs). The yield of VFAs obtained from the recovered microbial nutrients was 27% higher than the no micronutrients control, and comparable to the yield obtained using a micronutrients commercial recipe. In addition, the use of a low pH resulting from a high sucrose dose to select spore forming acidogenic bacteria was effective for VFA production, and yielded 20% higher VFAs than without the pH shock and this associated with the addition of recovered microbial nutrients would overcome the need to thermally pre-treat the inoculum.

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Source
http://dx.doi.org/10.1016/j.watres.2016.05.030DOI Listing

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