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Resilience Management for Healthy Cities in a Changing Climate

Abstract

Cities are experiencing multiple impacts from global environmental change, and the degree to which they will need to cope with and adapt to these challenges will continue to increase. We argue that a ‘complex systems and resilience management’ view may significantly help guide future urban development through innovative integration of, for example, grey, blue and green infrastructure embedded in flexible institutions (both formal and informal) for multi-functionality and improved health. For instance, the urban heat island effect will further increase city-centre temperatures during projected more frequent and intense heat waves. The elderly and people with chronic cardiovascular and respiratory diseases are particularly vulnerable to heat. Integrating vegetation and especially trees in the urban infrastructure helps reduce temperatures by shading and evapotranspiration. Great complexity and uncertainty of urban social-ecological systems are behind this heatwave-health nexus, and they need to be addressed in a more comprehensive manner. We argue that a systems perspective can lead to innovative designs of new urban infrastructure and the redesign of existing structures. Particularly to promoting the integration of grey, green and blue infrastructure in urban planning through institutional innovation and structural reorganization of knowledge-action systems may significantly enhance prospects for improved urban health and greater resilience under various scenarios of climate change.

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Resilience Management for Healthy Cities in a Changing Climate

Author: Elmqvist, Thomas,Gatzweiler, Franz,Lindgren, Elisabet,Liu, Jieling
Publisher: Springer
Year: 2019
Source: https://repositorio.ulisboa.pt/bitstream/10451/40549/1/ICS_JLiu_Resilience.pdf
411© The Au ho (s) 2019
M. R. Ma selle e al. (eds.), Biodi e si y and Heal h in he Face o Clima e
Change, h ps://doi.o g/10.1007/978-3-030-02318-8_18
Chap e 18
Resilience Managemen o Heal hy Ci ies
inaChanging Clima e
ThomasElmq is , F anzGa zweile , Elisabe Lindg en, andJielingLiu
Abs ac Ci ies a e expe iencing mul iple impac s om global en i onmen al
change, and he deg ee o which hey will need o cope wi h and adap o hese chal-
lenges will con inue o inc ease. We a gue ha a ‘complex sys ems and esilience
managemen ’ iew may signi ican ly help guide u u e u ban de elopmen h ough
inno a i e in eg a ion o , o example, g ey, blue and g een in as uc u e embedded
in lexible ins i u ions (bo h o mal and in o mal) o mul i- unc ionali y and
imp o ed heal h. Fo ins ance, he u ban hea island e ec will u he inc ease ci y-
cen e empe a u es du ing p ojec ed mo e equen and in ense hea wa es. The
elde ly and people wi h ch onic ca dio ascula and espi a o y diseases a e pa icu-
la ly ulne able o hea . In eg a ing ege a ion and especially ees in he u ban
in as uc u e helps educe empe a u es by shading and e apo anspi a ion. G ea
complexi y and unce ain y o u ban social-ecological sys ems a e behind his
hea wa e- heal h nexus, and hey need o be add essed in a mo e comp ehensi e
manne . We a gue ha a sys ems pe spec i e can lead o inno a i e designs o new
u ban in as uc u e and he edesign o exis ing s uc u es. Pa icula ly o p omo -
ing he in eg a ion o g ey, g een and blue in as uc u e in u ban planning h ough
ins i u ional inno a ion and s uc u al eo ganiza ion o knowledge-ac ion sys ems
may signi ican ly enhance p ospec s o imp o ed u ban heal h and g ea e esil-
ience unde a ious scena ios o clima e change.
Keywo ds Resilience managemen · Na u e-based solu ions · U ban heal h ·
Clima e change · U ban complexi y · Knowledge-ac ion sys ems
T. Elmq is (*) · E. Lindg en
S ockholm Resilience Cen e , S ockholm Uni e si y, S ockholm, Sweden
e-mail: [email p o ec ed]; [email p o ec ed]
F. Ga zweile
Ins i u e o U ban En i onmen (IUE), Chinese Academy o Sciences (CAS), Xiamen, China
e-mail: [email p o ec ed]
J. Liu
Ins i u e o Social Sciences (ICS), Uni e si y o Lisbon, Lisbon, Po ugal
e-mail: [email p o ec ed]
412
Highligh s
• Ci ies a e expe iencing mul iple impac s om global en i onmen al change.
• A sys ems pe spec i e can lead o inno a i e designs o new u ban in as uc u e
and he edesign o exis ing s uc u es o add ess complex u ban heal h
challenges.
• The in eg a ion o g ey, g een and blue in as uc u e in u ban planning h ough
ins i u ional inno a ion and s uc u al eo ganiza ion o knowledge-ac ion sys-
ems may esul in la ge heal h imp o emen s and inc ease u ban esilience.
18.1 In oduc ion
U ban heal h and well-being is an ou come o u ban complexi y. In his chap e we
a gue ha ci ies a e complex adap i e social-ecological- echnological sys ems, a
pe spec i e needed in o de o un angle his complexi y and de ine he ypes o
p oblems we a e con on ed wi h (Albe i e al. 2018). By aming complexi y con-
cep ually we sugges pa hways o u ban go e nance o u ban heal h and well-
being, pa hways ha add ess p oblems o g ea scien i ic and economic complexi y
and adical unce ain y, o which clima e change is a p ime example. One example
o such a pa hway is using mul iple ecosys em se ices as a means o c ea e esil-
ience o clima e change in ci ies and hus educe nega i e impac s onheal h and
well-being, o so-called ‘na u e-based solu ions’ (NBSs) (Sec e a ia o he
Con en ion on Biological Di e si y 2009), such as he ‘Sponge Ci y’ ini ia i e o
lood wa e ea men cu en ly aking place in China and he g een oo design
h i ing ac oss many Eu opean ci ies. Whe eas echnology can be help ul o sol -
ing complica ed enginee ing p oblems by seeking solu ions o op ima and equilib-
ia, complex o inexac p oblems equi e he ecogni ion o deep unce ain y and
non-linea i y.
18.1.1 U ban Sys ems asComplex Adap i e Sys ems
A social- echnological app oach has, up un il now, been he adi ional way o ana-
lyzing u ban complexi y (e.g. Geels 2011; Hodson and Ma in 2010), and in his
con ex , many ha e s uggled o de ine exac ly wha is mean by a ci y. He e we
expand on an eme ging amewo k o ci ies as complex social-ecological-
echnological sys ems, as ci ies include much mo e han a pa icula densi y o peo-
ple o a ea co e ed by human-made s uc u es (Bai e al. 2016; Albe i e al. 2018).
Ci ies a e places whe e social, ecological and echnological sys ems connec
and in eg a e; whe e a ious ypes o capi al and in as uc u es in e sec in
mul i- dimensional spaces; and whe e connec i i y, in e ac ion, exchange and com-
munica ion accele a e in ime. U ban socio-ecological- echnological sys ems a e
T. Elmq is e al.
413
complex and dynamic because mul iple agen s om a ious ypes o ne wo ks
in e ac wi h each o he and hei en i onmen s, and on mul iple scales (Table18.1).
The heal h and well-being ou comes ha eme ge om hese complex adap i e sys-
ems a e no en i ely plannable (Albe i e al. 2018).
U ban sys ems (which include social, echnological and ecological dimensions)
p o ide unc ions (Table18.1) ha a e simila bu no iden ical o hose p o ided by
ecosys ems (Ga zweile e al. 2016, 2018).
A key di e ence be ween u ban and na u al ecosys ems is ha mos goods and
se ices in u ban sys ems a e p oduced by people and a e a esul o seconda y
p oduc ion, while na u al ecosys ems consis o p ima y (au o oph) and seconda y
p oduce s. Ne e heless, ecognizing ci ies as complex adap i e sys ems ha p o-
ide nume ous ca ego ies o unc ions (Table18.1) is he basis o esilience man-
agemen o heal hy ci ies in he con ex o clima e change.
Table 18.1 Func ions o u ban sys ems
Func ion Desc ip ion
Suppo ing Bene i s p o ided by physical space (habi a ) and in as uc u e o basic li e
suppo unc ions such as was e managemen , wa e ea men and sani a ion, and
ene gy p o ision (elec ici y). Enables he low o ene gy (cap u ed in he o m o
low-en opy goods) and in o ma ion. They a e necessa y o all o he unc ions o
be p oduced. Ma ke s some imes equi e physical space o exchange, bu ma ke
exchange can also ake place in i ual spaces
P o isioning Bene i s de i ed om p o iding manu ac u ed goods and knowledge, and
p o iding in as uc u e o access o wa e , ene gy, ood, anspo a ion, social
in e ac ion and ma ke exchange o main ain he popula ion’s heal h, in e nal
s uc u e, p ocedu es and p ocesses; e.g. (p ocessed) ood, (pu i ied) d inking
wa e , cons uc ion ma e ials, machines, a i ac s (e.g. u ni u e, bicycles),
educa ion and knowledge in as uc u e (uni e si ies)a
Regula ing Bene i s de i ed om p o iding ules and egula ion mechanisms o keep he
in as uc u e unning; e.g. egula ing access o social space, legal sys ems and
ma ke s (al hough no exclusi e o u ban a eas, hei signi icance may o en be
highe he e because o highe ins i u ional densi y and economic ac i i y in u ban
a eas).The means a e laws, no ms, coope a i es, law en o cemen , disease and
disas e managemen and eme gency esponse sys ems, hospi als and heal h
se ice sys ems, and en i onmen al p o ec ion agencies
Cul u al Bene i s p o ided o humans in ci ies ha a e c ea ed in socio-cul u al spaces
(again no exclusi e o ci ies). Social space and libe ies o economic and
poli ical exchange, exchange o ideas, social exchange, ec ea ion and leisu e,
space o spi i ual en ichmen , a and cogni i e de elopmen ; e.g. cul u al e en s,
“Heima ” (sense o belonging), exhibi ions, lib a ies, cul u al he i age alues (e.g.
his o ical places), cul u al di e si y
aNo e: The aw ma e ials and na u al esou ces, like oil, gas and wood, a e also used di ec ly in
ci ies; howe e , ha is a he a p o isioning unc ion o na u al ecosys ems
18 Resilience Managemen o Heal hy Ci ies inaChanging Clima e
414
18.1.2 U ban Complexi y, Sus ainabili y andGo e nance
The complexi y o u ban sys ems poses eno mous challenges o sus ainabili y in
iden i ying causal mechanisms because o he many con ounding a iables ha
exis . A he same ime, scien i ic indings om empi ical s udies a e di icul o
gene alize due o a ia ions in socio-economic and biophysical con ex s, and he
g ea he e ogenei y ha cha ac e izes u ban egions (G imm e al. 2008). Key chal-
lenges a e scale misma ches, c oss-scale in e ac ions and limi ed ans e abili y
ac oss scales (Cumming e al. 2012). Fu he mo e, he limi ed p edic abili y o sys-
em beha iou o e he long e m equi es a new conside a ion o unce ain y
(Polasky e al. 2011).
The esea ch and applica ion o u ban sus ainabili y p inciples ha e un il now
a ely been applied beyond ci y bounda ies and a e o en cons ained o ei he single
o na owly de ined issues (e.g. popula ion, clima e, ene gy, wa e ) (Ma co ullio
and McG anahan 2007; Sei zinge e al. 2012). Al hough local go e nmen s o en
aim o op imize esou ce use in ci ies, inc ease e iciency and minimize was e, ci ies
can ne e become ully sel -su icien . The e o e, indi idual ci ies canno be con-
side ed ‘sus ainable’ wi hou acknowledging and accoun ing o hei dependence
on he na u al ecosys ems, esou ces and popula ions om o he egions a ound he
wo ld (Folke e al. 1997; Sei zinge e al. 2012). Consequen ly, he e is a need o
e isi he concep o sus ainabili y, as i s na ow de ini ion and applica ion may no
only be insu icien bu can also esul in unin ended consequences, such as he
‘lock-in’ o undesi able u ban de elopmen ajec o ies (E ns son e al. 2010).
Go e nance ailu es and hei nega i e ou comes can a leas pa ly be unde -
s ood as he esul o a cons ained abili y and willingness o unde s and he dynam-
ics o u ban complexi y. Go e ning dynamic complex u ban sys ems o imp o ing
u ban heal h and well-being, he e o e, equi es a be e unde s anding o u ban
sys em complexi y and he ins i u ions ha inhibi o enable solu ion-o ien ed
ac ions (c . Dui and Galaz 2008).
The dynamics and empo ali y o changes o a sys em de e mine adap i e go e -
nance s yles. Unde sho - e m shocks o longe - e m s esses he s yles o ac ion
can be con ol-o ien ed o adap i e (Fig.18.1). Con ol-o ien ed s yles o go e nance
Fig. 18.1 Go e nance
s yles a e de e mined by
con ol and adap i e s yles
o ac ion and how he
empo ali y o sys em
changes is pe cei ed.
(Modi ied om Leach
e al. 2010)
T. Elmq is e al.
415
assume less unce ain y and mo e calculable isks. Unde such go e nance, s abili y
(agains shocks) o endu ance (agains s esses) o a sys em a e belie ed o be main-
ained o es o ed by ac ions o con ol and o de . Recognizing he inhe en unce -
ain y o complexi y also acknowledges limi s o a con ol-s yle o go e nance.
Managing he esilience o an u ban sys em o heal h depends on how sys em
changes a e pe cei ed and on whe he con olled o adap i e, lexible ac ions a e
pe o med (Fig.18.1). The co-p oduc ion o knowledge o u ban heal h esilience
managemen and in eg a ed sys ems o lexible go e nance o u ban heal h a e
esponses o u ban complexi y and an a emp o ha ness i o sus ainabili y.
The Wo ld Heal h O ganiza ion’s Global Ou b eak Ale and Response Ne wo k1
is an example o go e nance s a egies o esilience. I is se up o espond o unp e-
dic able ex e nal shocks (ou b eaks) wi h a lexible esponse ne wo k ha can be
mobilised when needed. Ano he example o esilience managemen o heal h is
he Epidemic In elligence and ou b eak esponses p o ided by he Eu opean Cen e
o Disease P e en ion and Con ol (ECDC) o he EU Membe S a es. ECDC con-
inuously moni o s and assesses epidemic ou b eaks in he EU egion. In case o
eme gencies and esponse needs, ECDC p o ides bo h assessmen missions and
di e en le els o epidemic esponse ac ions. An example o in eg a ed, lexible
sys ems go e nance o u ban heal h in he con ex o clima e change a e he u ban
Knowledge-Ac ion Sys ems (KAS) analysed by Muñoz-E ickson e  al. (2017).
KAS a e social ne wo ks o ac o s in ol ed in he p oduc ion, sha ing and use o
knowledge o ac ion and all o he ypes o in as uc u e, acili a ing he low o
esou ces, including da a and knowledge, and he eby enabling eedback, esponse
and lea ning o ac ion. Such KAS, once ins i u ionalised as an o ganisa ional en i y,
could be e e ed o as he collec i e mind o a ci y, o he ‘u ban b ain’. An example
is he Sou heas Flo ida Regional Clima e Compac ,2 which came oge he o
upg ade hei esilience knowledge sys ems o clima e adap a ion.
18.1.3 U ban Complexi y andResilience
When people hink o u ban esilience, i is gene ally in he con ex o esponse o
sudden impac s, such as a haza d o disas e eco e y (see Albe i e al. 2003; Albe i
and Ma zlu 2004; Vale and Campanella 2005; Cu e e al. 2008; Wallace and
Wallace 2008). Howe e , he esilience concep goes a beyond eco e y om sin-
gle dis u bances, as demons a ed by he abo e example o knowledge-ac ion
sys ems. Resilience is a mul i-disciplina y concep ha explo es pe sis ence, eco -
e y, and adap i e and ans o ma i e capaci ies o in e linked social and ecological
sys ems and subsys ems (Holling 2001; Folke e al. 2002; Walke e al. 2004; Biggs
e al. 2012).
1 h ps://ex ane .who.in /goa n/
2 h p://www.sou heas lo idaclima ecompac .o g/abou -us/wha -is- he-compac /
18 Resilience Managemen o Heal hy Ci ies inaChanging Clima e

416
Resilience hinking is pa o sys ems hinking in complexi y science, and has
wo cen al oci: one is o s eng hen he cu en social-ecological- echnological
sys em o li e wi h change by enhancing he abili y o adap o po en ial ex e nal
p essu es, in o de o e ain i s essen ial unc ions and iden i y; he o he is he abil-
i y o shi de elopmen pa hways om hose ha a e less desi able o unsus ainable
o ones ha a e mo e desi able o sus ainable –also e e ed o as ans o mabili y
(Walke e al. 2004; Folke e al. 2010).
A dis inc ion is o en made be ween gene al esilience and speci ied esilience
(Walke and Sal 2006). Gene al esilience e e s o he esilience o a sys em o all
kinds o shocks, including no el ones, whe eas speci ied esilience e e s o he
esilience ‘o wha , o wha ’– in o he wo ds, esilience o some pa icula pa o a
sys em ( ela ed o a pa icula con ol a iable) o one o mo e iden i ied kinds o
shocks (Walke and Sal 2006; Folke e al. 2010). While sus ainable de elopmen is
inhe en ly no ma i e and posi i e, his is no necessa ily ue o he esilience con-
cep (Picke e al. 2013). Fo example, de elopmen may lead o aps ha a e e y
esilien and di icul o b eak ou o . The desi abili y o speci ied esilience, in
pa icula , depends on ca e ul analysis o esilience ‘o wha , o wha ’ (Ca pen e
e al. 2001) since many examples can be ound o highly esilien sys ems (e.g.
opp essi e poli ical sys ems) locked in o an undesi able sys em con igu a ion o
s a e. I also may e e ‘ o whom’ as a ecogni ion o en i onmen al inequi y (e.g.
Picke e al. 2011).
In gene al, bo h he sus ainabili y and he esilience concep s (pa icula ly gen-
e al esilience) a e no easily applicable o he ci y scale (Elmq is e al. 2013a).
Ci ies a e cen es o p oduc ion and consump ion, and u ban inhabi an s a e elian
on esou ces and ecosys em se ices– including e e y hing om ood, wa e and
cons uc ion ma e ials o was e assimila ion– secu ed om loca ions ou side o ci -
ies. Al hough ci ies can op imize hei esou ce use, inc ease hei e iciency and
minimize was e, hey can ne e become ully sel -su icien (G o e 2009). Fo ha
eason, i is no su icien o de-couple ci ies om esou ce use (UNEP 2013), a he ,
ci ies need o be e-coupled wi h he egional and global ecosys ems in which hey
a e con ained (Zhu e al. 2017). The e o e, indi idual ci ies canno be conside ed
“sus ainable” wi hou acknowledging and accoun ing o hei eleconnec ions
(Se o e al. 2012)– in o he wo ds, he long-dis ance dependence and impac on
ecosys ems, esou ces and popula ions in o he egions a ound he wo ld (Folke
e al. 1997).
Vi ually all li ing sys ems om he local o he global scale a e open and in e -
connec ed ne wo ks. To achie e esilience o u ban heal h, he e is a need o be e
unde s and he heal h and well-being e ec s o in e en ions a mul iple scales o
complex u ban sys ems (B els o d e al. 2017). Fu he , as Ma kelo a and Mwangi
(2012) poin ou , e e ing o Cash and Mose (2000), i is necessa y o asce ain he
app op ia e scale o e alua ing bene i s om complex sys ems, and choosing he
app op ia e scale depends on nume ous ac o s such as he speci ic objec i es o a
s udy, he le el o accu acy, and he alue sys em chosen by he e alua o . In addi-
ion, in e en ions will no be e ec i e “when a pa icula p oblem issue is managed
T. Elmq is e al.
417
a an ins i u ional scale whose au ho i a i e each does no co espond wi h he geo-
g aphical scale o pa icula spa ial dynamics o a (…) p oblem”.
Howe e , despi e he complex na u e o u ban sys ems, he e exis ela i ely
simple uni e sal laws ha a e use ul o be awa e o when designing sys ems o go -
e nance o u ban heal h esilience. One e e s o he u ban scaling e ec and simi-
la ly coun s o li ing o ganisms. I says ha he bigge he o ganisa ion becomes,
he less ene gy pe capi a is needed. Fo ci ies, his means ha wi h a doubling o
popula ion size, ene gy supply, o example, inc eases sublinea ly by 85% (one pe -
ol s a ion can se e mo e people), implying an economy o scale sa ings e ec o
15% o ene gy and in as uc u e. Wi h ega d o a e age wages, he amoun o
c ime and incidence o in ec ious diseases, he numbe o pa en s p oduced, o he
numbe o es au an s, he e is a supe linea scaling e ec o 1.15, mani es ing sys-
ema ic inc easing e u ns o scale (Wes 2017, Be encou e al. 2010).
18.2 Clima e Change Agg a a ing Exis ing U ban
Complexi y
Demog aphic and echnological changes ha e esul ed in an h opogenic o ces on
he clima e sys em, g ea ly exace ba ing he low o ene gy and ma e ials wi hin
u ban sys ems, inc easing he complexi y le els o u ban sys ems and hei unc-
ions. In addi ion, clima e change agg a a es he complexi y o u ban sys ems by
imposing di ec and indi ec impac s on he u ban sys em a iables and hei unc-
ions. Clima e change e ec s include inc eased in ensi ies and equency o ain all,
d ough s, s o ms and hea wa es, due o wa me sea and land su ace empe a u es,
ising sea le els and educ ion o albedo, which u he exace ba es he wa ming,
and a ange o clima e unce ain y. These e ec s challenge he sensi i i y o each
a iable o he u ban social-ecological sys ems and subsys ems (da Sil a e al.
2012). The geo-demog aphical change shows an o e all end o inc easing popula-
ion in inc easingly mul i- and in e cul u al u ban a eas, which challenges he
al eady p eca ious concep o sus ainabili y o u ban sys ems. The di e en magni-
udes o clima e change, he e o e, accele a e and complica e bo h he gene al and
speci ied esilience o u ban sys ems o mul iple scales.
Resilience as a concep has been a gued equen ly o he case o clima e change
o he easons p esen ed abo e. I is also p ima ily e e ed o as he adap a ion o
clima e change impac s. As u ban sys ems a e composed o complex en i onmen s
in which ecological, social, cul u al and economic ac o s in e ac on mul iple scales
and ac oss di e en subsys ems, clima e change imposes no only di ec impac s on
he g ey, g een and blue in as uc u e in u ban sys ems, basic li e suppo unc ions
and manu ac u ed goods, such as ood, wa e , ene gy, anspo a ion and hei man-
agemen and p o ision, bu also indi ec impac s on he heal h and well-being o
u ban dwelle s. The e o e, we a gue ha heal h should be an end goal o clima e
change adap a ion and a p oxy o examine he le el o esilience o complex u ban
18 Resilience Managemen o Heal hy Ci ies inaChanging Clima e
418
social-ecological- echnological sys ems. Comp ehensi ely acknowledging he
alue o ecosys em se ices, inco po a ing hem in o u ban planning p ac ices o
clima e change impac s, and ins i u ionalizing his p ocess can help us achie e his
end goal.
18.3 Clima e Change, U ban Ecosys ems andHeal h
Despi e he ac ha “…human heal h is be e now han a any ime in his o y…”
(Haines 2018), his p og ess has come a social and en i onmen al cos s such as
inc easing inequali y, inc easing ene gy use and ela ed g eenhouse gas emissions,
soil deg ada ion, biodi e si y loss and se e e wa e s ess. Toge he wi h inc easing
u ban popula ion p essu es, his mix u e can become a backlash o wha we may
pe cei e as p og ess in human de elopmen . In 2012 app oxima ely 7million peo-
ple died p ema u ely as a esul o exposu e o ai pollu ion, making ai pollu ion he
wo ld’s la ges single en i onmen al heal h isk. Despi e imp o ed a ailabili y o
heal h sys ems and o he public se ices, u ban heal h isks emain: exposu e o
noise, wa e and ai pollu ion, diseases ela ed o u ban li es yle, con agious dis-
eases connec ed wi h c owding (e.g. ube culosis, sexually ansmi ed diseases,
in luenza, and ce ain oden - and ec o -bo ne diseases such as dengue e e , e c.),
and isks associa ed wi h homelessness, iolence and inequali y. Unde s anding he
complex in e ac ions o clima e change, u ban sys em unc ions and heal h has been
iden i ied as a esea ch p io i y o ci ies in he u u e (Bai e al. 2018).
Clima e change will ha e nume ous impac s on human heal h and well-being in
u ban en i onmen s depending on local condi ions and ulne abili ies. The isk o
dea hs, inju ies and epidemics (especially wa e -, ood-, oden - and ec o -bo ne
diseases) om s o ms, coas al s o m su ges and loods will inc ease in disas e -
p one a eas, exace ba ed by damages o impo an in as uc u e and socie al se -
ices. Ci ies a e pa icula ly ulne able o hea wa es since empe a u es in ce ain
pa s o a ci y can each se e al deg ees highe han in su ounding pe i-u ban and
u al a eas, due o he so-called u ban hea island e ec (Zhang e al. 2017). I has
been shown ha he isk bo h o dea h and o acu e episodes o ch onic diseases,
such as acu e espi a o y illness, hea a acks and s oke, inc eases ma kedly in
ela ion o hea wa e e en s (Michelozzi e al. 2009). The elde ly, pe sons wi h
ch onic ca dio- ascula and espi a o y diseases, and indi iduals who ha e di icul-
ies implemen ing hea - educing ac ions du ing a hea wa e a e pa icula ly ulne -
able, and so a e ou doo wo ke s in ci ies whe e empe a u es may soa du ing
wo king hou s (IPCC 2014; Ko a s and Haja 2008). I is well known ha ai pollu-
ion inc eases he isks associa ed wi h hea , and ice e sa, which u he inc eases
heal h isks om hea wa es in ci ies.
The u ban ecosys em se ice and u ban social-ecological- echnological app oach
ha e ecen ly de eloped in o se e al p og ams explo ing he scope and po en ial o
T. Elmq is e al.
419
na u e-based solu ions (Kabisch e al. 2016). Na u e-based solu ions a e ac ions ha
a e inspi ed by, suppo ed by o copied om na u e, and o en wi h he po en ial o
add ess a a ie y o socie al challenges in sus ainable ways, and con ibu e o g een
g ow h (EU DG Resea ch and Inno a ion 2015). Na u e-based solu ions o sus ain-
able u baniza ion ely in la ge pa on na u al a eas and ea u es in and a ound ci ies
o pe o m essen ial ecosys em se ices. This concep may also be used in clima e
change adap a ion o educe clima e change- ela ed impac s on heal h (Gill e al.
2007), o o gain heal h co-bene i s om clima e change adap a ion wi hin o he
sec o s o socie y.
U ban g een a eas and ege a ion can educe some o he en i onmen al heal h
isks wi hin he u ban sys ems (Elmq is e al. 2013b). U ban g een and wa e a eas,
such as ci y ga dens and ponds, and nea by o es s, lakes and sea, ha e a s ong
po en ial o locally bu e hea ex emes (Ha din and Jensen 2007). In summe ime,
high empe a u es a e abso bed by wa e a eas. G eene y, in pa icula ees, e lec s
sola adia ion and lowe empe a u es locally h ough e apo anspi a ion and shad-
ing (Bowle e al. 2010). By inc easing u ban ege a ion h ough he plan ing o
ees, c ea ing pa klands, g een oo ops, g een walls, and so on, local empe a u es
in ci ies can be be e egula ed and main ained. U ban g eene y has also been
shown o be e ec i e in educing ai pollu an s such as pa icles and ni ogen and
sulphu oxides (Ha ig e al. 2014).
No only do u ban g een and blue a eas educe heal h isks associa ed wi h high
empe a u es and ai pollu an s, bu u ban ege a ion also con ibu es o educe
lood- ela ed heal h isks. Vege a ion s abilizes he soil and educes su ace uno
ollowing p ecipi a ion e en s. Keeping o adding ege a ion will dec ease he isk
o landslides, as well as he p essu e on d ainage sys ems a ound human se le-
men s. By inc easing he ege a ion co e and educing he impe meable su ace
a ea in buil en i onmen s, he olumes o su ace s o m-wa e uno can dec ease,
hus inc easing he esilience o looding. Inc eased u ban g een space will hus
inc ease pe meabili y and wa e uno mi iga ion, as well as dec ease lood isk by
in e cep ing ainwa e (Pa aki e al. 2011).
In addi ion, u ban ege a ion has o he bene icial heal h e ec s. Se e al s udies
ha e shown ha ege a ion con ibu es o educing noise pollu ion and c ea ing
anquil en i onmen s o conduci e o men al heal h (González-O eja e al. 2010).
U ban g een a eas and ege a ion suppo and acili a e human heal h and well-
being by alle ia ing s ess and allowing space o physical ac i i y and communi y
in e ac ion, which sus ain men al heal h, physical i ness and cogni i e and immune
unc ions (WHO 2017).
As he undamen al ecological base o u ban social-ecological sys ems, biodi e -
si y and ecosys em se ices play a signi ican ole in educing he nega i e impac s
o clima e change on heal h, bo h a p esen and in he u u e, he e o e educing
ulne abili y and s eng hening esilience o he u ban sys ems and subsys ems.
18 Resilience Managemen o Heal hy Ci ies inaChanging Clima e