Partial wet oxidation of dairy manure as a pretreatment process to produce acetic acid ‘a Source Growth of Methanogens’

Author:

Mainali Kalidas12,Haghighi Mood Sohrab1ORCID,Chen Shulin1ORCID,Garcia-Perez Manuel1

Affiliation:

1. Department of Biological Systems Engineering, Washington State University, Pullman, WA, USA

2. Sustainable Biofuels and Co-products Research Unit, Eastern Regional Research Center, US Department of Agriculture, Agricultural Research Service, Wyndmoor, PA, USA

Abstract

Wet oxidation can be an effective process for the pretreatment of complex biomass such as lignocellulose. However, studies on the use of wet oxidation for treating solid waste such as dairy manure are limited. The use of partial wet oxidation to convert dairy manure into low molecular weight carboxylic acids as final products were investigated. This work focuses on the performance of the sub-critical wet oxidation treatment of dairy cattle manure as a conversion/pretreatment process to release matter from the lignocellulosic fraction rather than a destructive process. The operating conditions were controlled at the short residence time and optimal temperature in the presence of oxygen under a pressure of 120 psi. The thermal hydrolysis under wet oxidation significantly affected conversion manure slurry into organic acids. The concentration of acetic acid reached 1778 mg L−1, achieved at 190°C (60 minutes reaction time) as the reaction temperature increased within the range of 150°C–200°C, total organic carbon was reduced and monomers in the process liquids decreased. On the other hand, soluble COD in process liquids increased with an increment in reaction temperature. The results provide insights into technical options to pretreat dairy manure to improve biochemical conversion yield.

Funder

U.S. Department of Energy’s Office of Energy Efficiency and Renewable Energy

Washington State Applied Bioenergy program

Publisher

SAGE Publications

Subject

Pollution,Environmental Engineering

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