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Anaerobic Treatment and Resource Recovery from Methanol Rich Waste Gases and Wastewaters
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Anaerobic Treatment and Resource Recovery from Methanol Rich Waste Gases and Wastewaters

Book Details

Format Paperback / Softback
ISBN-10 0367418460
ISBN-13 9780367418465
Publisher Taylor & Francis Ltd
Imprint CRC Press
Country of Manufacture GB
Country of Publication GB
Publication Date Oct 29th, 2019
Print length 208 Pages
Weight 362 grams
Ksh 15,650.00
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The anaerobic biological treatment of methanol-rich gaseous and liquid effluents was tested in two bioreactor configurations in the presence of sulfur and selenium oxyanions. The volatile fatty acids (VFA) produced in these bioreactors were quantified and a mass balance analysis was carried out.

Methanol is an important volatile organic compound (VOC) present in the gaseous and liquid effluents of process industries such as pulp and paper, paint manufacturing and petroleum refineries. An estimated 65% of the total methanol emission was from the Kraft mills of the pulp and paper industries. The effect of selenate, sulfate and thiosulfate on methanol utilization for volatile fatty acids (VFA) production was individually examined in batch systems. Gas-phase methanol removal along with thiosulfate reduction was carried out for 123 d in an anoxic BTF. To examine the gas-phase methanol removal along with selenate reduction, another anoxic biotrickling filter (BTF) was operated for 89 d under step and continuous selenate feeding conditions. For the study on liquid-phase methanol, acetogenesis of foul condensate (FC) obtained from a chemical pulping industry was tested in three upflow anaerobic sludge blanket (UASB) reactors operated at 22, 37 and 55 ºC for 51 d. The recovery of VFA was explored through adsorption studies using anion exchange resins in batch systems. The adsorption capacity of individual VFA on Amberlite IRA-67 and Dowex optipore L-493 was examined by fitting the experimental data to adsorption isotherms and kinetic models. A sequential batch process was tested to achieve selective separation of acetic acid from the VFA mixture.


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