A 3-Part Plan to Take On Extreme Heat Waves | Eleni Myrivili | TED

65,568 views ・ 2022-07-18

TED


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So in my city of Athens, Greece,
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like in many cities around the world,
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a lot of people thought that climate change
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is something happening far away.
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Until ash started falling from the sky
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and temperatures neared 45 degrees Celsius
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in the summer of 2021,
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and they stayed above 40 degrees for several days.
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The asphalt sizzled and huge wildfires burned the forests around the city
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and people died.
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The last decade has been the hottest ever recorded in our history.
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Paradoxically, even though we've been talking about global warming for decades,
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we haven't been talking about extreme heat,
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especially in urban environments.
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Extreme heat is the deadliest of all extreme weather phenomena.
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Very few of us know this.
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We overlook extreme heat
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because heat doesn't come with the drama of roofs sent flying
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and streets turned into rivers.
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Heat destroys quietly.
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Yet there is little escape from heat.
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These are temperatures our bodies are not made for and cannot adapt to.
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These are temperatures our cities and our infrastructure is not made for.
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The structures of our cities
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and the surfaces absorb heat and store it and radiate it at night.
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Cars and air conditioning add more to the urban environment.
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And this is a deadly mix.
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This is what we call the urban heat island.
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The list of health effects from heat and from heat waves is long,
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and it includes significant mental problems,
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mental health problems.
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It also,
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heat creates fatigue and loss of sleep,
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which in turn increases workplace injuries
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as well as significant losses of productivity.
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Heat waves also, we know,
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that they increase violence in communities,
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we have correlated it to increased violence in communities,
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and also they lower the ability of children to learn.
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And in the cities,
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not everybody, of course, is affected equally.
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The poor, especially the energy-poor and the housing-poor are most vulnerable
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as well as people with pre-existing conditions,
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people above 60 years old,
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pregnant women, young children
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and people that have manual labor jobs.
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Also, we know that heat has been baking farmers' crops,
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reducing yields,
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inhibiting pollination,
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and more and more farm workers are going to work before daybreak
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or farming in the night, harvesting in the night.
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It's just getting too darn hot.
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The great infrastructures that we have built
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with ingenuity and effort
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during the last two centuries,
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the dams, the waterways, the highways, the railways,
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they have been carefully engineered for a climate that no longer exists.
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What can we do?
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I will talk about cities because that's my territory.
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As chief health officer of Athens,
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I think of all possible efforts in three general categories.
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Awareness,
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preparedness and redesign.
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Awareness means that we recognize the threat.
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It's hard sometimes to persuade people, especially in hot climates,
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to take heat exposure seriously.
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So this year, together with the Arsht-Rockefeller Resilience Center,
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we are going to pilot, for the first time this summer,
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four cities in the US and Athens,
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we're going to pilot a new methodology for naming
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and categorizing heat waves like we do hurricanes.
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So consider this.
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When there is a category 4 hurricane,
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you don't expect the pizza delivery person to bring a pizza to your house,
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nor do you expect, like, people to keep working in a construction site.
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However, we don't have such considerations or policies
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in relation to a category 4 heat wave
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because there is no category 4 heat waves.
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We don’t have metrics, and we don’t have categories.
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And I think that this will be a real game changer.
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So this is just one thing, but I think this is important.
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So awareness leads to preparedness,
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and preparedness means that you are kind of, ready
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to basically, when the event happens, to protect the most vulnerable.
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And there's a whole slew of actions
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that cities are doing all around the world,
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short-term things, to protect people during the heat waves.
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For example, in Athens, we have created a smartphone app
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that gives you personalized
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and real-time risk assessment
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and gives you, on a map,
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risk assessments in relation to heat,
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and gives you on a map where you can go to get cover,
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where are the cool spaces, the nearest cool spaces.
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New York has created this great buddy system
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where people in the neighborhood keep on checking during heat waves
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on people that are vulnerable in the neighborhood.
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They also gave, I think a couple of years ago,
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74,000 units of air conditioning for low-income seniors.
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Sydney does this great thing,
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which is that they divert energy from the industrial sector
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to residential districts to avoid blackouts
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during heat waves.
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So these are some short-term things that we can do
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and we've been doing.
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But the real task at hand is redesigning our cities
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to make our cities cooler
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and thinking beyond air conditioning.
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So before we started designing our buildings and our cities
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and cooling them and heating them with fossil fuels,
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architecture had incorporated centuries-long wisdom
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for design solutions and materials
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that were fine-tuned to the local climate conditions.
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So thick walls with tiny openings
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or well-placed windows high up in the building
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that kind of move air from the bottom up and out
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or outside shutters.
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Shady and verdant internal courtyards with fountains
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or outside walls that are whitewashed every spring
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to reflect the hot summer heat,
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the heat of the hot summers.
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So compare these to our concrete,
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steel and glass buildings that are air conditioned
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and that have sealed windows
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that basically make our cities into heat traps
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compounding instead of solving the problem.
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So, what we really need to do
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is we need to radically rethink and redesign
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our urban environments
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away from the logic of modernity,
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away from the logic of carbon modernity.
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Carbon is there from the get go,
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from the materials that we use for the types of construction,
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from the way we use the buildings, we heat and cool them,
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the way we eat, the way we consume,
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the way we move around in our urban environments.
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So we need to redesign our cities
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beyond energy efficiency and cutting carbon emissions.
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We need an urban design revolution,
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a total paradigm shift
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that probably needs to be led not by architects anymore,
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but landscape architects
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that know more about thermodynamics and soil
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and the importance of soils for biodiversity
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and all these things that can really bring about a real paradigm shift,
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a revolution in design, a new type of urbanity
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that actually is a different metabolic animal.
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Our cities of the future will be different metabolic systems.
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And we don't really know yet what this is going to look like,
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but I think it’s going to be great, and it’s just the beginning.
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But what we do know is that we really,
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really urgently need to build resilience to our current climate conditions
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at urban scale.
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There are materials
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and technologies that are currently being developed that will help,
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but the main thing, the first and foremost and most important thing
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for bringing down heat in cities is bringing nature into the urban fabric.
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And this means a radical increase of trees, of tree coverage,
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of biodiversity and of water in the surfaces of our cities
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so that we can bring down the heat.
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(Applause)
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So this is the time, this is the decade,
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and this means that cities have to really think
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the interconnections and interdependencies
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between different urban systems,
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and they have to think of resources very carefully
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and build backup systems
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and redundancies, flexibility and diversity.
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And think about sustainability and equity,
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because this is how we build resilience in our cities.
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And cities are already doing it and they’re changing.
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And we're very much learning from each other
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because for the first time, the last few decades,
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cities belong in powerful urban networks
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so we're kind of talking with each other and learning from each other.
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Networks like Resilient Cities Network and C40 are really supporting cities.
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And I'm going to give you a finish by giving you a few examples
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of what cities have done,
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and of course, I'm going to start from Athens.
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So in Athens, we have this incredible Roman aqueduct,
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a brilliant, ancient masterpiece
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of design and engineering
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that runs for 20 kilometers underground, totally invisible,
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and still today moves enormous amounts of water
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from the hills outside of Athens to the center of Athens.
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The water is great, too, it's perfect for irrigation,
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you don't need to do anything to it.
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And for decades now,
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we've been just throwing it into the sewage and then to the sea.
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So now this urban aqueduct, this ancient monument,
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is going to be used to build resilience and lower heat
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by supporting urban nature for the modern city of Athens.
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Another great example is Medellín, in Colombia.
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Medellín, they created 36 green corridors,
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a dense network of trees and flower beds
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that has lowered temperatures four degrees Celsius in the city,
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and it does a lot of other things,
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ecosystemic services, like captures pollution
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and noise pollution and water and soil erosion.
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So all these things have really important ecosystemic services.
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You probably know, Seoul in South Korea,
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they dismantled a highway that was ten lanes long
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and it had four lanes on top expressway,
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to restore a stream underneath
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and [they] created this blue corridor and green corridor, 3.6 miles long,
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a continuous space for wildlife
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and people to walk and bicycle,
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that not only lowers temperatures,
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they've measured that it goes up to 5.9 degrees Celsius,
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that it lowers temperatures in that area,
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But also it protects the city from flooding.
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And, of course, it attracts thousands of visitors every day,
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has created a lot of jobs
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and has supported business development more than any other part of Seoul.
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Paris is using the water of the Seine
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to give free cooling to buildings around the river.
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And finally, I'll finish with Melbourne in Australia
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because they have created an incredible strategy
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that's called Nature in the City Strategy,
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where they've analyzed and think
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how to bring together all of the levels of the ecosystem
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from the soil and the fungi underneath
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to the plants and the animals and the birds and the insects
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and the frogs
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and put into place all these actions
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that will ensure that the urban environment,
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that their kids will grow up, will be richer and much healthier.
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So, what keeps me really excited about this work,
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working to help cities cool down
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and work against climate change,
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is also that I feel that I'm really helping
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create much more wonderful cities to live in.
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So just think about this,
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cranking up the air conditioning
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is just not going to cut it.
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Thank you.
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(Applause)
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