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AP HG Unit 6 · Lesson 11 of 11CED 6.11Skill 2.D~ 60 min

Challenges of Urban Sustainability

Cities house a majority of humanity on a tiny fraction of Earth's land yet consume the majority of its energy and emit the majority of its carbon. EK SPS-6.B.1 names six challenges — sprawl, sanitation, climate change, air and water quality, ecological footprint, energy use — and EK SPS-6.B.2 names four responses: regional planning, brownfield remediation, urban growth boundaries, and farmland protection. This lesson closes Unit 6 by asking which responses are actually effective.

Learning Objectives

By the end of this lesson, students will be able to (per CED LO SPS-6.B):

  • Describe the effectiveness of different attempts to address urban sustainability challenges (per LO SPS-6.B).
  • Identify and explain the six challenges named in EK SPS-6.B.1: suburban sprawl, sanitation, climate change, air and water quality, the large ecological footprint of cities, and energy use.
  • Identify and explain the four responses named in EK SPS-6.B.2: regional planning, brownfield remediation and redevelopment, urban growth boundaries, and farmland protection policies.
  • Apply Skill 2.D: explain the significance of geographic similarities and differences among different locations and at different times as it relates to response effectiveness.
  • Evaluate which responses have strong evidence of success, which are mixed, and what trade-offs each creates.

Key Concepts

Unit 6.11 is the framing lesson for sustainability. Lesson 6.8 introduced sustainable design practices (New Urbanism, transit-oriented development, greenbelts). Lesson 6.11 steps back to the system level: what challenges do cities face overall, and which policy responses actually work? The CED packages this into two tight essential-knowledge statements. Both are heavily tested.

"Among the obstacles to urban sustainability are suburban sprawl, sanitation, climate change, air and water quality, the heavy ecological footprint of cities, and energy use."AP HG CED, EK SPS-6.B.1 (paraphrased)
"Cities respond to sustainability challenges through tools such as regional planning, brownfield remediation and redevelopment, urban growth boundaries, and farmland protection policies."AP HG CED, EK SPS-6.B.2 (paraphrased)

Skill 2.D: comparing across places and times

The suggested skill is 2.D: explain the significance of geographic similarities and differences among different locations and/or at different times. This framing is essential: the same challenge plays out differently in Atlanta than in Tokyo; the same response produces different results in 1970s Portland than in 2020s Nashville. Effectiveness is always place-specific and time-specific. The AP exam rewards students who can articulate that significance, not just describe isolated cases.

Challenge: Suburban Sprawl (EK SPS-6.B.1)

Sprawl is low-density, auto-oriented, spatially discontinuous expansion of the urban fringe. It consumes land faster than population grows.

Challenge 1
Suburban Sprawl

Land consumption outpaces population growth

Sprawling US metros add roughly 1,000 acres of developed land per 1,000 new residents, whereas dense world cities add closer to 100 acres per 1,000 new residents. Vehicle miles traveled (VMT) per capita in Atlanta, Phoenix, and Houston run 2–3 times that of Tokyo or New York City.

Infrastructure cost per unit ↑ with distance from core

Water pipes, sewers, roads, and emergency services all cost more per dwelling unit as density falls. Sprawl imposes long-term fiscal liabilities that many suburbs cannot sustain.

AP test: Atlanta, Phoenix, Houston = sprawl exemplars; Tokyo, NYC, Hong Kong = dense counter-examples

Challenge: Sanitation (EK SPS-6.B.1)

Sanitation challenges fall into two families: aging infrastructure in Global North cities, and informal infrastructure in rapidly-growing Global South cities. Older US cities (Chicago, Washington DC, Philadelphia, Boston) use combined sewer systems that carry stormwater and sewage in the same pipe; during heavy rain they overflow raw sewage into waterways. In Mumbai's Dharavi and Nairobi's Kibera, open sewers run alongside footpaths and flood into homes during monsoon rains. Cape Town's 2018 "Day Zero" drought nearly made a major city the first modern metro to run out of water — a climate-driven sanitation crisis that saw reservoirs drop below 15 percent capacity before emergency rationing averted the cutoff.

Challenge: Climate Change (EK SPS-6.B.1)

Climate change threatens cities through multiple pathways.

  • Urban heat island: dark paving and roofing, waste heat, and lack of vegetation make cities run 2–8°F hotter than surrounding rural areas. The differential widens during heat waves, driving cooling-related deaths that concentrate in older, poorer neighborhoods.
  • Coastal flooding: Miami's sunny-day flooding during king tides; Jakarta's northern districts, which are sinking one meter per decade; Dhaka's vulnerability to cyclone storm surge; Venice's MOSE flood barriers.
  • Permafrost failure: Fairbanks, Alaska and other circumpolar cities watch foundations shift as ice-rich soil thaws, forcing costly structural retrofits.
  • Sinking capitals: Jakarta's subsidence combined with sea-level rise prompted Indonesia's 2019 decision to relocate its capital to Nusantara in Kalimantan. That decision ties climate change directly to top-level urban policy.

Challenge: Air and Water Quality (EK SPS-6.B.1)

Urban air and water quality crises recur across the 20th and 21st centuries and drive some of the most important environmental policy.

  • Mexico City: the 1990s PM2.5 crisis ranked among the worst on Earth. Two decades of aggressive policy (emissions testing, cleaner fuels, Metro expansion) have cut concentrations sharply, yet the city still exceeds the WHO limit by 2–3 times.
  • Beijing airpocalypse: winter heating fires coal, trapping PM2.5 over the North China Plain. Beijing's Air Quality Index regularly reaches "hazardous" (300+) during inversions.
  • Los Angeles smog: the 1950s–60s smog crisis birthed the California Air Resources Board (CARB, 1967), which became the nation's strictest emissions regulator and a preview of federal action. The Donora (Pennsylvania) smog disaster of 1948 killed 20 and focused US attention on industrial air pollution.
  • Flint, Michigan: the 2014–present water crisis began when a cost-cutting water-source switch corroded lead service lines. It exposed how aging water infrastructure in declining US cities threatens public health. Lead remediation in Flint remains incomplete.
  • London Great Smog of 1952: a temperature inversion trapped coal smoke over the city, killing an estimated 12,000 residents in four days. The disaster prompted the UK Clean Air Act of 1956 — the first modern comprehensive air-quality law.

Challenge: Ecological Footprint (EK SPS-6.B.1)

The CED specifically flags "the large ecological footprint of cities." The numbers are striking: cities house roughly 55 percent of humans (on the way to 68 percent by 2050), on about 3 percent of land surface — yet they consume roughly 78 percent of global energy and generate about 60 percent of greenhouse gas emissions. The arithmetic is that urban consumption of food, water, materials, and energy reaches far beyond city boundaries. Geographers call this an ecological shadow: the land outside the city that supports it. Per-capita footprints diverge sharply: US, Canadian, and Australian urbanites consume 4–6 global hectares per person; Indian urbanites consume under one. Singapore has a tiny national land area but a vast ecological shadow in palm-oil plantations, ocean fisheries, and imported gravel.

Challenge: Energy Use (EK SPS-6.B.1)

Urban energy use decomposes into three buckets.

  • Building energy: heating, cooling, lighting. LEED and Passivhaus certification programs target net-zero or near-net-zero building performance. District energy systems (centralized heating/cooling plants serving many buildings) can cut consumption dramatically.
  • Transport energy: the single-occupant automobile is the least efficient widely-used transport mode. Transit-oriented development (see 6.8) and dense cities cut transport energy per capita by more than half.
  • Embodied energy: concrete and steel production each generate substantial carbon. Renovating existing buildings usually beats new construction on carbon grounds.

Reykjavik illustrates the upper bound of what is possible: nearly all of Iceland's capital is heated by geothermal district energy, and almost all its electricity is renewable. Not every city has volcanoes underneath, but the example shows what total decarbonization of urban energy looks like.

Response: Regional Planning (EK SPS-6.B.2)

Response 1
Regional Planning

Cross-jurisdictional coordination at metro scale

A single metropolitan area routinely contains dozens or hundreds of municipalities. Regional planning bodies coordinate transport, housing, environment, and economic development across those jurisdictions. In the US, federal law requires a Metropolitan Planning Organization (MPO) in every urban area of 50,000+ residents to receive federal transport funding.

Notable regional-planning bodies: Portland Metro (the only directly-elected US regional government); Minneapolis-St. Paul Metropolitan Council; Atlanta Regional Commission; Greater London Authority (created 2000).

Example EK test: A city wants to reduce sprawl across 20 suburban municipalities. Which response applies? → Regional planning

Response: Brownfield Remediation (EK SPS-6.B.2)

Response 2
Brownfield Remediation

Cleaning and reusing contaminated industrial land

A brownfield is a former industrial or commercial site where redevelopment is complicated by real or suspected contamination. Remediation cleans the site so it can be productively reused. The US EPA Brownfields Program (1995) funds cleanup and liability protection.

Celebrated brownfield projects: New York City's High Line (a disused elevated rail line converted to a linear park, opened 2009–2014 in three phases); Germany's Emscher Park in the Ruhr (former steel works and coal mines converted to a 300-square-mile landscape park over 1989–1999); Chicago Millennium Park (opened 2004 on a former rail yard); London's Olympic Park in Stratford (a former industrial site cleaned for the 2012 Games).

Effectiveness: strong environmental wins; recurring concern is gentrification displacing low-income residents

Response: Urban Growth Boundaries (EK SPS-6.B.2)

Response 3
Urban Growth Boundary

Legal limit on outward expansion

A UGB is a line drawn around a metropolitan region outside of which urban development is restricted or forbidden. Land inside the boundary can be developed at urban densities; land outside is reserved for farms, forests, and open space. Concept overlaps with the British greenbelt covered in lesson 6.8.

Inside: urban density | Outside: rural reserve

Flagship examples: Portland, Oregon UGB (established 1973 under Oregon state law, still in effect, periodically expanded); Seoul, South Korea greenbelt (1971, restricted 40 percent of the city's land); Ontario Greenbelt (2005, 2 million acres surrounding the Greater Golden Horseshoe); Boulder, Colorado open-space system (voter-approved sales-tax-funded purchases since 1967).

Effectiveness: reduces sprawl + preserves farmland; creates housing-cost pressure inside the boundary

Response: Farmland Protection (EK SPS-6.B.2)

Response 4
Farmland Protection

Tax, easement, and zoning tools that keep farmland farming

Farmland protection policies resist the conversion of working farms and ranches into subdivisions. Several instruments exist.

California Williamson Act (1965): offers property-tax relief to landowners who contract to keep land in agricultural use for at least 10 years. Over 16 million acres participate.

Agricultural conservation easements: a farmer sells (or donates) the development rights to a land trust or government. The land remains privately owned and farmed but can never be developed. The Maryland Agricultural Land Preservation Foundation (1977) is an early state model.

EU Common Agricultural Policy: cross-compliance rules tie farm subsidies to environmental standards on urban-fringe farmland.

Effectiveness: preserves ag land; can push growth to leapfrog exurbs if not paired with a UGB

Skill 2.D — Comparing Effectiveness Across Places and Times

Skill 2.D asks students to explain the significance of geographic similarities and differences. Three paired comparisons illustrate how the same challenge produces different outcomes depending on place and time.

ComparisonCase ACase BSignificance (Skill 2.D)
UGBPortland, OR (1973–): tight UGB + infill zoning. Contained sprawl; 1.8× higher density than comparable metros.Atlanta, GA (no UGB): among the most sprawling US metros; developed area tripled 1980–2010.Place difference: state enabling law matters. Oregon mandated UGBs; Georgia did not.
TransitCuritiba, Brazil (1970s): chose integrated Bus Rapid Transit over highway expansion; ridership exceeds many rail systems.Typical 1970s US city: built Interstate-based loop highways; BRT arrived two decades late.Time difference: 1970s policy windows closed differently in the two contexts; path dependence locked in outcomes.
Air QualityLondon 1952: Great Smog kills ~12,000; UK Clean Air Act 1956 followed within four years.Delhi 2010s: recurring PM2.5 crises; patchwork bans (diesel, firecrackers, crop burning) with slower regulatory build-out.Time + place: national institutional capacity + media coverage shaped response speed.

Effectiveness — Honest Assessment

LO SPS-6.B asks students to describe the effectiveness of these responses. Honest assessment resists cheerleading. Each response has an evidence base for what it does well and what trade-offs it creates.

  • Regional planning: works well where enabling legislation is strong (Portland Metro, the UK Greater London Authority). Weakens where jurisdictions can simply opt out.
  • Brownfield remediation: strong environmental wins. Recurring risk: gentrification. The High Line's adjacent neighborhoods saw property values rise sharply, displacing longtime residents.
  • Urban growth boundaries: Portland's UGB cut sprawl measurably but raised housing costs inside the line. The trade-off is real. Some evidence that periodic boundary expansions can release the pressure.
  • Farmland protection: preserves agricultural land. If paired with a UGB, contains growth. If unpaired, pushes growth to leapfrog exurbs beyond protected parcels, sometimes worsening the sprawl footprint.

The takeaway for students: no single response solves urban sustainability. The responses work best in combination, tailored to local political, legal, and physical geography. That is the Skill 2.D point.

Country Case Studies

Four cases, each illustrating a different challenge or response from EK SPS-6.B.1 and B.2.

United States flag

United States · Portland UGB Exemplar

Portland Metro UGB, 1973–present

Portland's UGB is the most-studied American sprawl-containment policy. State law (Oregon Senate Bill 100, 1973) required every city to draw a UGB; Portland's is managed by Metro, the only elected regional government in the US. Density rose, per-capita VMT fell, and farmland surrounding the metro remained productive. Housing costs rose faster than the national average.

Country page →
Germany flag

Germany · Emscher Park Brownfield

Ruhr Valley, 1989–1999 IBA decade

The International Building Exhibition Emscher Park (IBA 1989–1999) transformed 800 square kilometers of the Ruhr coal-and-steel heartland. Former blast furnaces became climbing walls (Duisburg-Nord); the Emscher River was re-engineered from an open sewer back toward ecological function; a regional green corridor linked what had been disconnected industrial sites. A model for post-industrial remediation.

Country page →
Indonesia flag

Indonesia · Jakarta Climate + Sanitation Crisis

Sinking 1 m/decade; capital moving to Nusantara

Northern Jakarta is sinking faster than almost any other coastal megacity, driven by groundwater extraction and compounded by sea-level rise. Flooding, saltwater intrusion into drinking water, and inundation of low-lying neighborhoods prompted the 2019 national decision to relocate the capital to Nusantara in Kalimantan. The case combines climate change, sanitation (water-supply failure), and the limits of incremental response.

Country page →
Brazil flag

Brazil · Curitiba Regional Planning + BRT

BRT since 1974; >80% transit mode share peak

Under mayor Jaime Lerner in the 1970s, Curitiba chose to build integrated Bus Rapid Transit rather than expand highways, and coupled transit with structural land-use planning around transit corridors. BRT ridership peaked above rail-equivalent levels and the concept spread worldwide (Bogotá TransMilenio, Guangzhou BRT, many US cities). An early model of regional-planning effectiveness.

Country page →

Discussion Questions

  1. Per EK SPS-6.B.1, the CED names six challenges. For your nearest metropolitan area, which two challenges are most pressing? Justify using evidence and explain why these two outrank the others locally (Skill 2.D).
  2. Compare Portland's UGB with Atlanta's sprawl pattern. What geographic similarities do the two metros share, and what differences explain the divergent outcomes? (Skill 2.D — comparing two cities.)
  3. Compare London's response to the 1952 Great Smog (UK Clean Air Act 1956) with Delhi's response to recurring 2010s–2020s air-quality crises. What does the time difference tell us about institutional capacity and policy windows? (Skill 2.D — comparing two time periods.)
  4. Brownfield redevelopment delivers environmental wins but recurrent gentrification risk. Using one named example (the High Line, Emscher Park, or Millennium Park), describe the trade-off and propose one policy tool to mitigate displacement.
  5. If a state that currently has no UGB statute were considering adopting one, which three design choices from Oregon's experience would you emphasize, and which would you modify? Defend using effectiveness evidence from lesson 6.11.

Classroom Activities

40 min

Response Effectiveness Matrix

Students build a 4×6 matrix: the four EK SPS-6.B.2 responses (planning, brownfields, UGB, farmland) down the rows; the six EK SPS-6.B.1 challenges (sprawl, sanitation, climate, air and water, footprint, energy) across the columns. For an assigned city they rate each cell on a 1–5 effectiveness scale and justify in one sentence. Class debriefs the highest-leverage combinations.

CED EK: SPS-6.B.1 + SPS-6.B.2Deliverable: Completed matrix + 3 key-finding bullets
45 min

Cross-City Comparison (Skill 2.D)

Pairs pick two cities with contrasting sustainability profiles (suggested pairs: Portland and Atlanta; Curitiba and Phoenix; Copenhagen and Dubai). They research each city's portfolio of responses, then write a one-page Skill 2.D comparison: what similarities, what differences, what does the difference signify for the cities' long-term sustainability trajectory?

Skill: 2.DDeliverable: One-page Skill 2.D comparison brief

Vocabulary

The capacity of a city to meet current needs without compromising the environment or future generations.
LO SPS-6.B
Low-density, auto-oriented, spatially discontinuous expansion of the urban fringe.
EK SPS-6.B.1
Total distance traveled by motor vehicles; per-capita VMT is a key sprawl and energy metric.
Builds on EK SPS-6.B.1
Discharge of mixed stormwater and sewage into waterways from aging combined sewer systems during heavy rain.
EK SPS-6.B.1 (sanitation)
The elevated air temperature of urban areas, typically 2–8°F above surrounding rural areas.
EK SPS-6.B.1 (climate)
Area of land and water required to produce the resources a population consumes and absorb its waste.
EK SPS-6.B.1
Former industrial or commercial site where redevelopment is complicated by contamination.
EK SPS-6.B.2
Coordinated metropolitan-scale planning for transport, housing, and environment across jurisdictions.
EK SPS-6.B.2
US federally-required regional body in every urban area of 50,000+ that receives federal transport funding.
Builds on EK SPS-6.B.2
Legal line around a metropolitan area outside of which urban development is restricted.
EK SPS-6.B.2
Tax, easement, or zoning policy that preserves working farms against urban conversion.
EK SPS-6.B.2
State in which net greenhouse gas emissions equal zero through reduction and offsetting.
EK SPS-6.B.1 (energy)
California's 1965 farmland protection law offering property-tax relief for 10-year agricultural contracts.
EK SPS-6.B.2 example
Ring of undeveloped or agricultural land around a city; British planning precedent for UGBs. Cross-reference lesson 6.8.
Cross-ref 6.8

Unit 6 Conclusion

Lesson 6.11 closes Unit 6. Looking back across the eleven lessons, the unit traces an arc from urban systems (6.1 origins, 6.2 cities across the world, 6.3 globalization, 6.4 size and distribution) through urban form (6.5 internal structure, 6.6 density and land use, 6.7 infrastructure), into responses and analysis (6.8 sustainable design, 6.9 urban data, 6.10 socioeconomic challenges, 6.11 environmental challenges and system-level responses). The through-line is that cities are simultaneously humanity's greatest engine of productivity, innovation, and cultural exchange, and its greatest concentration of environmental and social challenges. The four CED-named responses (regional planning, brownfield remediation, UGBs, farmland protection) are not a complete toolkit, but they anchor the unit's answer to the question "what do we actually do about it?"

Standards Alignment

Draft alignment — pending educator review. AP HG codes correspond to the official College Board Course and Exam Description (Effective Fall 2020, V.1). Statements below are paraphrased in CountryReports' own voice; refer to the College Board's published CED for verbatim wording.

AP Human Geography CED-ALIGNED

Suggested Skill

2.DAccount for the importance of geographic similarities and differences across locations and across time.

Enduring Understanding

SPS-6Cities encounter distinct economic, political, cultural, and environmental challenges.

Learning Objective

SPS-6.BProvide a description of how effectively various efforts to address urban sustainability challenges have worked.

Essential Knowledge

SPS-6.B.1Among the obstacles to urban sustainability are suburban sprawl, sanitation, climate change, air and water quality, the heavy ecological footprint of cities, and energy use.
SPS-6.B.2Cities respond to sustainability challenges through tools such as regional planning, brownfield remediation and redevelopment, urban growth boundaries, and farmland protection policies.
National Cross-Walks
NCSS Theme 3People, Places, and Environments — how human-environment interaction is supported by maps and spatial analysis.
NCSS Theme 8Science, Technology, and Society — including the technology behind cartography and GIS.
C3 D2.Geo.11.9-12Assess the ways in which economic globalization and environmental change have shaped societies.
C3 D4.7.9-12Weigh the options available for individual and collective action on local, regional, and global problems.
NGSS HS-ESS3-4Assess or improve a technological solution intended to lessen the effects of human activity on natural systems.
Discipline-Specific National Standards
Geography for Life · Std 14The ways human action alters the physical environment.
Geography for Life · Std 16How the meaning, use, distribution, and importance of resources change over time.
Geography for Life · Std 18Using geography to make sense of the present and to plan for what comes next.
Other Assessment Frameworks
AP Environmental SciencePollution exposure and environmental equity within urban areas.
IB Geography SL/HLCore Theme: geographic perspectives — examining map types and projections.
AP US GovFederalism and metropolitan governance — MPOs operate as intergovernmental tools.

AP® and Advanced Placement® are registered trademarks of the College Board. The College Board was not involved in the production of this material and does not endorse it. Standards statements above are paraphrased; codes refer back to the official College Board CED, the NCSS C3 Framework, the Common Core State Standards, and other cited frameworks.

AP Practice Questions

Multiple Choice Sample
1Question: Per CED EK SPS-6.B.2, which of the following is NOT one of the four named responses to urban sustainability challenges?
  • (A) Regional planning efforts.
  • (B) Remediation and redevelopment of brownfields.
  • (C) Establishment of urban growth boundaries.
  • (D) Farmland protection policies.
  • (E) Establishment of a primate city hierarchy.

Correct: (E). EK SPS-6.B.2 names regional planning, brownfield remediation, UGBs, and farmland protection. "Primate city hierarchy" is a concept from EK PSO-6.C.1 (lesson 6.4) and is not a sustainability response.

Free-Response Question Stem
2Per CED EK SPS-6.B.1 and B.2, urban areas face sustainability challenges and governments respond with a suite of policies. (A) Identify three of the six challenges named in EK SPS-6.B.1 and briefly define each. (B) Identify two of the four responses named in EK SPS-6.B.2 and describe how each addresses at least one of the challenges in part (A). (C) Apply Skill 2.D: compare the effectiveness of urban growth boundaries in Portland, Oregon with the sprawl pattern in Atlanta, Georgia. Explain the significance of the difference. (D) Describe one trade-off or unintended consequence of the responses in part (B), citing evidence.

Scoring: 3 points part A (accept any three of: sprawl, sanitation, climate change, air and water quality, ecological footprint, energy use — with brief definition); 2 points part B (any two of regional planning, brownfield remediation, UGB, farmland protection — each correctly linked to a challenge); 2 points part C (Portland UGB reduced sprawl and raised density; Atlanta without UGB tripled developed area; significance = state enabling legislation or absence thereof explains outcomes per Skill 2.D); 1 point part D (accept: UGB raised housing costs; brownfield remediation drove gentrification; farmland protection without UGB caused leapfrog exurbs; regional planning bodies can lack enforcement).