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Unizon
Energy Path · Lens 4: Technology

The Technology
of Energy

The opening question
How does a drill turn sideways two kilometres underground, and how does the grid keep the lights on when the wind stops?

See the machines and systems behind energy: drilling rigs and oil sands operations, tailings and land reclamation, pipelines and their safety systems, the electricity grid and batteries, and technologies for capturing carbon and measuring methane.

Inside this module
  • 00First Principlesp.2
  • 01Drilling & wellsp.4
  • 02Oil sands operationsp.5
  • 03Pipelinesp.6
  • 04The grid & storagep.7
  • 05Capture & measurep.8
  • ✦Self-check · Make it · 5 Questions · Side Questp.9
How this works
CoreThe main path. Everyone does this part.
Level UpOptional, harder challenges if you want to push further.
Try ItMap the energy tech in your community.

You'll need: a notebook, a map (paper or online), and an adult for any outings.

Energy Path · Unizon01/12
Energy Path · Unizon · Lens 4: Technology00 · Start here
Before anything else
First
Principles

A first principle is a basic truth you can build on. Energy technology rests on four: every technology solves one problem and creates others, monitoring catches problems early, supply and demand must balance every second and what gets measured can be managed.

1

What do I already know?

Dump it all out. Half-sure counts.
What energy infrastructure have you seen near you?
How do you think pipelines are checked for leaks?
Circle every word you could explain to a friend right now. Underline the ones you've heard but couldn't explain.
drilling righorizontal wellfrackingSAGDtailingsreclamationpipeline pigSCADAtransmissionintertieCCUSmethane
2

What is necessary?

The building blocks you need before going further

Everything in this module is built from four bricks. Rate yourself on each one, then check the example to see if your rating holds up.

Trade-offsEvery tech. tailings
Got itKindaNot yet
MonitorCatch early. sensors
Got itKindaNot yet
BalanceEvery second. grid
Got itKindaNot yet
MeasureTo manage. methane
Got itKindaNot yet
Is anything else necessary? What else do you think you'd need to know or have to really get this topic?
The Technology of Energy · Energy Path · Unizon02/12
Energy Path · Unizon · Lens 4: Technology00 · Start here
3

What is the objective?

What am I trying to understand or be able to do by the end?
The module's objective

By the end, you’ll be able to describe how wells are drilled and closed, explain oil sands operations and tailings, explain how pipelines are monitored, describe how the grid balances supply and demand, and explain carbon capture and methane measurement.

  • 01Describe horizontal drilling.
  • 02Explain tailings and reclamation.
  • 03Name 3 pipeline safety tools.
  • 04Explain interties and batteries.
  • 05Explain CCUS.
  • 06Describe how methane is measured.
My objective

The list on the left is ours. Now make it yours. What do you want out of this?

By the end, I want to be able to
The part I'm most curious about is
I'll know I've got there when
Knowledge meter

How much do you know about the technology of energy right now? Shade the boxes in pencil. You'll come back at the end (p.9) and shade it again in pen.

NothingCould teach it

Why start this way? When you know what you already have (1), what you need (2) and where you're going (3), you learn faster and you notice the gaps. Every module on the Energy Path starts with these same three questions.

Your route through this module
00
First Principles
01
Wells
02
Oil sands
03
Pipelines
04
Grid
05
Capture
✓
Check
▶
Make
?
5 Qs
★
Quest
The Technology of Energy · Energy Path · Unizon03/12
Energy Path · Unizon · Lens 4: Technology01 · Wells
01
Down and sideways

Drilling & wells

Wells are engineered from the first metre to the final seal.

Drilling a well

Down and sideways

  • A rig drills down through rock, lining the hole with steel casing and cement to protect groundwater.
  • Modern wells can turn and run horizontally for kilometres through a thin layer of rock.
  • Drilling fluid (“mud”) cools the bit and carries rock chips to the surface.
End of a well’s life

Closing and cleaning up

When a well stops producing, it must be sealed (abandoned) and the land reclaimed. Alberta has many inactive wells.

When an owner goes bankrupt, the industry-funded Orphan Well Association cleans up. People debate how much companies should pay up front to cover future cleanup.

The regulator

Alberta Energy Regulator

The AER approves, inspects and enforces rules for oil, gas, oil sands, coal and deep geothermal projects in Alberta. Pipelines that cross provincial or national borders are regulated by the Canada Energy Regulator (CER).

Think & talk
  • Why do you think wells are lined with steel and cement?
  • Who should pay to clean up old wells?
Try it

Well diagram

Draw a cross-section of a well: surface, groundwater, casing, cement, the horizontal section and the target rock layer.
Level Up

Why is casing cemented in place?

To seal the well and protect groundwater
The Technology of Energy · Energy Path · Unizon04/12
Energy Path · Unizon · Lens 4: Technology02 · Oil sands
02
Big operations

Oil sands operations

The oil sands use some of the world’s largest machines, and leave big challenges.

Oil sands operations

Mines and in situ sites

  • Mines use giant shovels and trucks; bitumen is separated from sand with hot water.
  • In situ sites use steam, wells and pipelines, with a smaller surface footprint but more natural gas for steam.
  • Many sites generate their own steam and electricity (cogeneration).
Tailings

Leftover water, clay and sand

Mining leaves tailings: water, clay, sand and leftover bitumen, stored in ponds. Fluid tailings in the Athabasca region reached about 1.5 billion m³ in 2024 (AER).

Companies must treat and reclaim them; the speed and methods are debated.

AER, State of Fluid Tailings Management for Mineable Oil Sands, 2024.

When things go wrong

Kearl, 2022–2023

In 2022, Imperial found discoloured water seeping from a tailings area at its Kearl mine; in early 2023 a wastewater overflow followed. The AER issued an environmental protection order. Nearby First Nations, including the Athabasca Chipewyan First Nation, said they weren’t told soon enough. The event led to reviews of how communities are notified.

Think & talk
  • What surprised you most about oil sands operations?
  • How should companies tell nearby communities about problems?
Try it

Footprint compare

Make a table comparing mining and in situ: land disturbed, water use, natural gas use and reclamation.
Level Up

Why does in situ production use a lot of natural gas?

To make steam to heat the bitumen
The Technology of Energy · Energy Path · Unizon05/12
Energy Path · Unizon · Lens 4: Technology03 · Pipelines
03
Moving oil and gas

Pipelines

Pipelines carry most of Alberta’s oil and gas, watched day and night.

Pipelines

Safety systems

  • Control rooms watch pressure and flow 24/7 (SCADA systems).
  • Inline inspection tools (“pigs”) travel inside pipes to find dents, cracks and corrosion.
  • Valves can isolate sections if a leak is detected.
  • Patrols, aerial surveys and leak-detection software add more checks.
Spills and safety records

Several viewpoints

Industry groups and regulators point out that most oil moves safely by pipeline, often compared with rail or trucks. Environmental groups and some Indigenous Nations point to past spills and the harm when one happens near water.

Both use real data; they weigh it differently.

Safety first

Buried pipelines run under farms, yards and roads. In Alberta, contact Utility Safety Partners (Click Before You Dig, 1-800-242-3447) at least 3 full working days before digging. If you smell gas or a rotten-egg odour, leave the area and call 911 from a safe distance.

Think & talk
  • Why do you think pipelines are watched 24 hours a day?
  • Why is it easy to forget about buried lines?
Try it

Map it

With an adult, find the pipeline warning signs nearest your home or school. What company and phone number do they show?
Level Up

Why do pipelines have valves along their length?

To shut off and isolate a section quickly
The Technology of Energy · Energy Path · Unizon06/12
Energy Path · Unizon · Lens 4: Technology04 · Grid
04
Keep it balanced

The grid & storage

The grid is a giant machine that must balance every moment.

The grid

From plant to plug

  • Transmission lines carry high-voltage power long distances.
  • Distribution lines bring lower voltages to homes.
  • Interties connect Alberta’s grid to B.C., Saskatchewan and Montana for imports and exports.
  • The AESO dispatches plants every minute to match demand.
Storage and flexibility

Filling the gaps

Alberta had about 190 MW of battery storage at the end of 2025 (AESO), small next to the record peak of 12,785 MW.

Gas plants that can ramp quickly, imports, demand response (big users cutting back) and forecasting also help balance variable wind and solar.

Reliability debates

Several viewpoints

Some argue more wind and solar lower costs and emissions; others argue they need more backup and transmission, raising costs. Many experts say a reliable grid needs a mix. The AESO publishes reliability reports and proposes market changes.

Think & talk
  • What would happen if supply and demand didn’t match?
  • Which tool would you use to keep the grid balanced on a still, cold night?
Try it

Live grid

With an adult, look at the AESO’s current supply and demand page. What share comes from gas, wind and solar right now?
Level Up

Why does a grid need reserves?

In case a plant or line suddenly fails
The Technology of Energy · Energy Path · Unizon07/12
Energy Path · Unizon · Lens 4: Technology05 · Capture
05
Catch it, count it

Capture & measure

New tools try to capture carbon and find leaks, with debate about how well they work.

Carbon capture

CCUS

Carbon capture, utilization and storage catches CO₂ from industrial sites and stores it deep underground or uses it. Shell’s Quest project near Fort Saskatchewan has operated since 2015 and injected about 1 million tonnes of CO₂ in 2024.

Supporters see a way to cut emissions from heavy industry; critics question the cost, public funding and how much can be captured.

Quest annual status report 2024 (Government of Alberta).

Measuring methane

What gets measured

Methane, a strong greenhouse gas, can leak from wells and pipes. Companies use infrared cameras, drones, aircraft and satellites to find leaks.

Alberta reported reaching its 45% methane-reduction target in 2022, ahead of 2025. Independent measurement studies have found actual emissions higher than official estimates.

Other technologies

Electrify, swap, improve

Heat pumps, electric vehicles, efficient motors, small nuclear reactors and hydrogen are all being tested or used in Alberta. Each has costs and limits, especially in deep cold.

Think & talk
  • Is carbon capture worth the cost? What would you need to know?
  • Why might measurements and estimates differ?
Try it

Tech pros and cons

Pick one technology on this page. List two benefits, two concerns and one question you’d ask an engineer.
Level Up

Why do measurements sometimes differ from official estimates?

Estimates use formulas; measurements catch leaks the formulas miss
The Technology of Energy · Energy Path · Unizon08/12
Energy Path · Unizon · Lens 4: TechnologySelf-check
✓
No pressure, just proof

Quick self-check

Six questions, covering every stop. Show your thinking. Answers are upside down at the bottom; no peeking till you're done.

1 · Why is a well lined with casing and cement?

2 · What are tailings?

3 · What is a pipeline “pig”?

4 · What are interties?

5 · What does CCUS stand for?

6 · Why do methane measurements matter?

1) to protect groundwater and seal the well · 2) leftover water, clay, sand and bitumen from mining · 3) a tool that travels inside a pipe to inspect it · 4) links to neighbouring grids · 5) carbon capture, utilization and storage · 6) they check whether reported emissions are accurate
Back to First Principles

Re-shade your knowledge meter

How much do you know about the technology of energy now? Flip back to p.3 and shade the meter again in pen (or shade this one). Did any of the four bricks on p.2 move from "Not yet" to "Got it"?

NothingCould teach it
Did I hit my objective? What's my evidence?
The idea that surprised me most:
The Technology of Energy · Energy Path · Unizon09/12
Energy Path · Unizon · Lens 4: TechnologyMini challenge · Make it
Mini challenge · Execution

Energy tech map

Map the energy technology around your community.

1 · Plan

Make a map of energy technology in your community: power lines, substations, pipeline signs, wells, solar panels, wind turbines, gas stations.

  • Area chosen
  • Adult along
  • Observed from public places
  • Map key made

2 · What I found

TechWhere / how many
Power lines
Substation
Pipeline signs
Solar or wind
Other

3 · Must-haves

  • Stayed on public land
  • Never touched equipment
  • Map labelled
  • One question for an expert

4 · Sketch map

Safety first

Observe only from public places with an adult. Never enter fenced sites, climb poles or touch equipment, and stay well back from power lines and wellheads.

The Technology of Energy · Energy Path · Unizon10/12
Energy Path · Unizon · Lens 4: Technology5 Questions I Still Have
The best part of learning is what's next

5 Questions
I Still Have

This module didn't answer everything. Good. Write 5 new questions it didn't answer, one of each type below. There are no wrong questions, only ones nobody's asked yet.

1
How does it work?
Pick something you've seen or used and wonder about the inside of. e.g. "How does a pipeline control room work?"
2
Why?
Ask about a reason or a cause. e.g. "What happens to old wind turbine blades?"
3
What if?
Change one thing and imagine the result. e.g. "What if Alberta had huge batteries?"
4
Connect it
Link this to another lens (math, science, psychology, technology, history, language & storytelling, art & design, execution) or another subject. e.g. "How did Alberta become an energy province? (Lens 5!)"
5
My life & community
Bring it home: your family, your friends, your community. e.g. "What energy infrastructure is closest to my home?"

★ Star the one question you'd most like answered. You'll need it on the next page.

The Technology of Energy · Energy Path · Unizon11/12
Energy Path · Unizon · Lens 4: TechnologySide Quest · Optional
Optional · for the curious

Side Quest

Take your starred question from p.11 and go find the answer, or at least a better question. You're the researcher now.

My quest question:

1What I'll find out

Break your big question into 2 or 3 smaller ones you could actually answer.

2Where I'll look

A library (Edmonton Public Library counts!)An astronomer, engineer or planetarium guideAn experiment I run myselfTrustworthy websites (who wrote it? when?)A book or documentary

3How I'll share it

A one-page zineA 60-second video or talkA poster or infographicA 2-minute talkSomething else

Who I'll share it with:

Done by:

Next on the Energy Path Lens 5 · History asks: how did Indigenous energy knowledge, coal, Leduc No. 1, the oil sands and renewables shape Alberta?
The Technology of Energy · Energy Path · Unizon12/12