4.6 Article

Impact of trace element additives on anaerobic digestion of sewage sludge with in-situ carbon dioxide sequestration

Journal

PROCESS BIOCHEMISTRY
Volume 51, Issue 9, Pages 1283-1289

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.procbio.2016.06.003

Keywords

Anaerobic digestion; Trace elements; Carbon dioxide sequestration; Olivine; Renewable methane production

Funding

  1. California Energy Commission of California Government [ARV-10-003-01 SMUD]
  2. [DE-AC02-06CH11357]

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Anaerobic digestion (AD) of sludge at wastewater treatment plants can benefit from addition of essential trace metals such as iron, nickel and cobalt to increase biogas production for utilization in combined heat and power systems, fed into natural gas pipelines or as a vehicle fuel. This study evaluated the impact and benefits of Ni/Co and olivine addition to the digester at mesophilic temperatures. These additions supplement previously reported research in which iron-rich olivine (MgSiO4) was added to sequester CO2 in-situ during batch AD of sludge. Trace element addition has been shown to stimulate and stabilize biogas production and have a synergistic effect on the mineral carbonation process. AD with 5% w/v olivine and 1.5 mg/L Ni/Co addition had a 17.3% increase in methane volume, a 6% increase in initial exponential methane production rate and a 56% increase in methane yield (mL CH4/g CODdegraded) compared to the control due to synergistic trace element and olivine addition while maintaining 17.7% CO2 sequestration from olivine addition. Both first-order kinetic modeling and response surface methodology modeling confirmed the combined benefit of the trace elements and olivine addition. These results were significantly higher than previously reported results with olivine addition alone [1] (Linville et al., 2016). (C) 2016 Elsevier Ltd. All rights reserved.

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