Global and regional potential of wastewater as a water, nutrient and energy source

Глобальный и региональный потенциал сточных вод как источника воды, питательных веществ и энергии
Manzoor Qadir, Pay Drechsel, Blanca Jiménez, Younggy Kim, Amit Pramanik, Praem Mehta, Oluwabusola Olaniyan
2020-01-27

energy recoverymunicipal wastewaternutrient recoverywastewater resource recoverywater reuse
Abstract There is a proactive interest in recovering water, nutrients and energy from waste streams with the increase in municipal wastewater volumes and innovations in resource recovery. Based on the synthesis of wastewater data, this study provides insights into the global and regional “potential” of wastewater as water, nutrient and energy sources while acknowledging the limitations of current resource recovery opportunities and promoting efforts to fast‐track high‐efficiency returns. The study estimates suggest that, currently, 380 billion m 3 (m 3 = 1,000 L) of wastewater are produced annually across the world which is a volume five‐fold the volume of water passing through Niagara Falls annually. Wastewater production globally is expected to increase by 24% by 2030 and 51% by 2050 over the current level. Among major nutrients, 16.6 Tg (Tg = million metric ton) of nitrogen are embedded in wastewater produced worldwide annually; phosphorus stands at 3.0 Tg and potassium at 6.3 Tg. The full nutrient recovery from wastewater would offset 13.4% of the global demand for these nutrients in agriculture. Beyond nutrient recovery and economic gains, there are critical environmental benefits, such as minimizing eutrophication. At the energy front, the energy embedded in wastewater would be enough to provide electricity to 158 million households. These estimates and projections are based on the maximum theoretical amounts of water, nutrients and energy that exist in the reported municipal wastewater produced worldwide annually. Supporting resource recovery from wastewater will need a step‐wise approach to address a range of constraints to deliver a high rate of return in direct support of Sustainable Development Goals (SDG) 6, 7 and 12, but also other Goals, including adaptation to climate change and efforts in advancing “net‐zero” energy processes towards a green economy.
1
Complete nutrient recovery from wastewater could offset 13.4% of global agricultural demand for these nutrients and help reduce eutrophication.
2
Global municipal wastewater production is currently estimated at 380 billion m³ annually and is projected to rise 24% by 2030 and 51% by 2050.
3
Realizing these theoretical resource-recovery potentials requires a stepwise approach addressing technological and other constraints to achieve high-efficiency returns.
4
The energy embedded in global wastewater could theoretically generate enough electricity to supply 158 million households.
5
Wastewater contains approximately 16.6 Tg of nitrogen, 3.0 Tg of phosphorus, and 6.3 Tg of potassium annually worldwide.

municipal wastewater produced worldwide

the global and regional potential for recovering water, nutrients, and energy from wastewater, including resource quantities, future production projections, and recovery benefits

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2020-01-27
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Manzoor Qadir
Pay Drechsel
Blanca Jiménez
Younggy Kim
Amit Pramanik
Praem Mehta
Oluwabusola Olaniyan
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