Domestic Wastewater Treatment as a Net Energy Producer–Can This be Achieved?

Очистка бытовых сточных вод как источник чистой энергии — достижимо ли это?
Perry L. McCarty, Jaeho Bae, Jeonghwan Kim
2011-07-12

anaerobic digestionbiogas generationdomestic wastewater treatmentmicrobial fuel cellsnet energy production
In seeking greater sustainability in water resources management, wastewater is now being considered more as a resource than as a waste-a resource for water, for plant nutrients, and for energy. Energy, the primary focus of this article, can be obtained from wastewater's organic as well as from its thermal content. Also, using wastewater's nitrogen and P nutrients for plant fertilization, rather than wasting them, helps offset the high energy cost of producing synthetic fertilizers. Microbial fuel cells offer potential for direct biological conversion of wastewater's organic materials into electricity, although significant improvements are needed for this process to be competitive with anaerobic biological conversion of wastewater organics into biogas, a renewable fuel used in electricity generation. Newer membrane processes coupled with complete anaerobic treatment of wastewater offer the potential for wastewater treatment to become a net generator of energy, rather than the large energy consumer that it is today.
1
Energy recovery from wastewater can exploit both its organic matter and thermal content, while nutrient reuse may offset the energy costs of synthetic fertilizer production.
2
Microbial fuel cells can directly convert wastewater organics into electricity, but require substantial improvement to compete with anaerobic biogas production.
3
New membrane processes combined with complete anaerobic wastewater treatment could enable treatment plants to become net energy generators instead of major energy consumers.
4
Wastewater can be treated as a resource for recovering water, nutrients, and energy rather than solely as waste.

domestic wastewater treatment systems

the potential for net energy production through recovery and conversion of wastewater organic and thermal energy, including comparisons of microbial fuel cells, anaerobic biogas production, and membrane-coupled anaerobic treatment

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2011-07-12
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Perry L. McCarty
Jaeho Bae
Jeonghwan Kim
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