Energy News  
BIO FUEL
Biofuel potential from wastewater ponds
by Staff Writers
Adelaide, Australia (SPX) Aug 31, 2021

Flinders Professor Howard Fallowfield conducting research at the HRAP at Kingston-on-Murray in South Australia.

Environmental health experts at Flinders University are advancing research into a highly sustainable wastewater recycling program by developing a cost-effective way to harvest microalgal biomass for use in biofuels and other applications.

The high-rate algal pond (HRAP) model, recycling wastewater at two low rainfall areas in regional South Australia, uses algae and bacteria to treat the wastewater.

Research led by Flinders University Professor Howard Fallowfield and Dr Paul Young has presented details of a new system using slaked lime and magnesium concentration to concentrate the microalgae-rich biosolids produced in the HRAP at Kingston-on-Murray in SA's Riverland.

Chemical reaction modelling was used to optimise the processing and the cost of chemicals was evaluated.

"This autoflocculation process was successful in harvesting the biosolids while significantly reducing the turbidity, nutrients and E. coli contamination left in the wastewater," says lead author Dr Young, who completed a PhD at Flinders University.

These sustainable, low-energy systems are cost effective to run, and the capital cost of construction is about 40% of the previous system for effluent-only schemes, and marginally higher for blackwater schemes, the Flinders University research has shown.

While a conventional system requires 66 days to treat the wastewater, HRAPs can perform a similar level of treatment in 5-10 days. Its ability to remove pathogens is equal to, or better than, existing wastewater systems, Professor Fallowfield said after an earlier Flinders University study compared the Loxton-Waikerie District Council trial site at Kingston-on-Murray with a conventional system.

Professor Fallowfield says the study for the first time shows the HRAP wastewater treatment system could also be used to efficiently harvest microalgae grown in a low-cost environment - without the need for further investment in expensive infrastructure.

"The integration of treatment and biosolid recovery offers new configurations for the operation of HRAP-based wastewater treatment systems," he says.

Research Report: "Autoflocculation of microalgae, via magnesium hydroxide precipitation, in a high rate algal pond treating municipal wastewater in the South Australian Riverland"


Related Links
Flinders University
Bio Fuel Technology and Application News


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Biomass is attracting growing interest from researchers as a source of renewable, sustainable, and clean energy. It can be converted into bio-oil by thermochemical methods, such as gasification, liquefaction, and pyrolysis, and used to produce fuels, chemicals, and biomaterials. In Journal for Renewable and Sustainable Energy, researchers from Heilongjiang Academy of Agricultural Machinery Sciences in China share their work on the physicochemical properties and antioxidant activity of wood vinegar ... read more

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