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Canadian Energy Centre

First Nations in Manitoba pushing for LNG exports from Hudson’s Bay

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5 minute read

From the Canadian Energy Centre

By Will Gibson

NeeStaNan project would use port location selected by Canadian government more than 100 years ago

Building a port on Hudson’s Bay to ship natural resources harvested across Western Canada to the world has been a long-held dream of Canadian politicians, starting with Sir Wilfred Laurier.

Since 1931, a small deepwater port has operated at Churchill, Manitoba, primarily shipping grain but more recently expanding handling of critical minerals and fertilizers.

A group of 11 First Nations in Manitoba plans to build an additional industrial terminal nearby at Port Nelson to ship liquefied natural gas (LNG) to Europe and potash to Brazil.

Courtesy NeeStaNan

Robyn Lore, a director with project backer NeeStaNan, which is Cree for “all of us,” said it makes more sense to ship Canadian LNG to Europe from an Arctic port than it does to send Canadian natural gas all the way to the U.S. Gulf Coast to be exported as LNG to the same place – which is happening today.

“There is absolutely a business case for sending our LNG directly to European markets rather than sending our natural gas down to the Gulf Coast and having them liquefy it and ship it over,” Lore said. “It’s in Canada’s interest to do this.”

Over 100 years ago, the Port Nelson location at the south end of Hudson’s Bay on the Nelson River was the first to be considered for a Canadian Arctic port.

In 1912, a Port Nelson project was selected to proceed rather than a port at Churchill, about 280 kilometres north.

The Port Nelson site was earmarked by federal government engineers as the most cost-effective location for a terminal to ship Canadian resources overseas.

Construction started but was marred by building challenges due to violent winter storms that beached supply ships and badly damaged the dredge used to deepen the waters around the port.

By 1918, the project was abandoned.

In the 1920s, Prime Minister William Lyon MacKenzie King chose Churchill as the new location for a port on Hudson’s Bay, where it was built and continues to operate today between late July and early November when it is not iced in.

Lore sees using modern technology at Port Nelson including dredging or extending a floating wharf to overcome the challenges that stopped the project from proceeding more than a century ago.

Port Nelson, Manitoba in 1918. Photo courtesy NeeStaNan

He said natural gas could travel to the terminal through a 1,000-kilometre spur line off TC Energy’s Canadian Mainline by using Manitoba Hydro’s existing right of way.

A second option proposes shipping natural gas through Pembina Pipeline’s Alliance system to Regina, where it could be liquefied and shipped by rail to Port Nelson.

The original rail bed to Port Nelson still exists, and about 150 kilometers of track would have to be laid to reach the proposed site, Lore said.

“Our vision is for a rail line that can handle 150-car trains with loads of 120 tonnes per car running at 80 kilometers per hour. That’s doable on the line from Amery to Port Nelson. It makes the economics work for shippers,” said Lore.

Port Nelson could be used around the year because saltwater ice is easier to break through using modern icebreakers than freshwater ice that impacts Churchill between November and May.

Lore, however, is quick to quell the notion NeeStaNan is competing against the existing port.

“We want our project to proceed on its merits and collaborate with other ports for greater efficiency,” he said.

“It makes sense for Manitoba, and it makes sense for Canada, even more than it did for Laurier more than 100 years ago.”

Canadian Energy Centre

Alberta oil sands legacy tailings down 40 per cent since 2015

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Wapisiw Lookout, reclaimed site of the oil sands industry’s first tailings pond, which started in 1967. The area was restored to a solid surface in 2010 and now functions as a 220-acre watershed. Photo courtesy Suncor Energy

From the Canadian Energy Centre 

By CEC Research

Mines demonstrate significant strides through technological innovation

Tailings are a byproduct of mining operations around the world.

In Alberta’s oil sands, tailings are a fluid mixture of water, sand, silt, clay and residual bitumen generated during the extraction process.

Engineered basins or “tailings ponds” store the material and help oil sands mining projects recycle water, reducing the amount withdrawn from the Athabasca River.

In 2023, 79 per cent of the water used for oil sands mining was recycled, according to the latest data from the Alberta Energy Regulator (AER).

Decades of operations, rising production and federal regulations prohibiting the release of process-affected water have contributed to a significant accumulation of oil sands fluid tailings.

The Mining Association of Canada describes that:

“Like many other industrial processes, the oil sands mining process requires water. 

However, while many other types of mines in Canada like copper, nickel, gold, iron ore and diamond mines are allowed to release water (effluent) to an aquatic environment provided that it meets stringent regulatory requirements, there are no such regulations for oil sands mines. 

Instead, these mines have had to retain most of the water used in their processes, and significant amounts of accumulated precipitation, since the mines began operating.”

Despite this ongoing challenge, oil sands mining operators have made significant strides in reducing fluid tailings through technological innovation.

This is demonstrated by reductions in “legacy fluid tailings” since 2015.

Legacy Fluid Tailings vs. New Fluid Tailings

As part of implementing the Tailings Management Framework introduced in March 2015, the AER released Directive 085: Fluid Tailings Management for Oil Sands Mining Projects in July 2016.

Directive 085 introduced new criteria for the measurement and closure of “legacy fluid tailings” separate from those applied to “new fluid tailings.”

Legacy fluid tailings are defined as those deposited in storage before January 1, 2015, while new fluid tailings are those deposited in storage after January 1, 2015.

The new rules specified that new fluid tailings must be ready to reclaim ten years after the end of a mine’s life, while legacy fluid tailings must be ready to reclaim by the end of a mine’s life.

Total Oil Sands Legacy Fluid Tailings

Alberta’s oil sands mining sector decreased total legacy fluid tailings by approximately 40 per cent between 2015 and 2024, according to the latest company reporting to the AER.

Total legacy fluid tailings in 2024 were approximately 623 million cubic metres, down from about one billion cubic metres in 2015.

The reductions are led by the sector’s longest-running projects: Suncor Energy’s Base Mine (opened in 1967), Syncrude’s Mildred Lake Mine (opened in 1978), and Syncrude’s Aurora North Mine (opened in 2001). All are now operated by Suncor Energy.

The Horizon Mine, operated by Canadian Natural Resources (opened in 2009) also reports a significant reduction in legacy fluid tailings.

The Muskeg River Mine (opened in 2002) and Jackpine Mine (opened in 2010) had modest changes in legacy fluid tailings over the period. Both are now operated by Canadian Natural Resources.

Imperial Oil’s Kearl Mine (opened in 2013) and Suncor Energy’s Fort Hills Mine (opened in 2018) have no reported legacy fluid tailings.

Suncor Energy Base Mine

Between 2015 and 2024, Suncor Energy’s Base Mine reduced legacy fluid tailings by approximately 98 per cent, from 293 million cubic metres to 6 million cubic metres.

Syncrude Mildred Lake Mine

Between 2015 and 2024, Syncrude’s Mildred Lake Mine reduced legacy fluid tailings by approximately 15 per cent, from 457 million cubic metres to 389 million cubic metres.

Syncrude Aurora North Mine

Between 2015 and 2024, Syncrude’s Aurora North Mine reduced legacy fluid tailings by approximately 25 per cent, from 102 million cubic metres to 77 million cubic metres.

Canadian Natural Resources Horizon Mine

Between 2015 and 2024, Canadian Natural Resources’ Horizon Mine reduced legacy fluid tailings by approximately 36 per cent, from 66 million cubic metres to 42 million cubic metres.

Total Oil Sands Fluid Tailings 

Reducing legacy fluid tailings has helped slow the overall growth of fluid tailings across the oil sands sector.

Without efforts to reduce legacy fluid tailings, the total oil sands fluid tailings footprint today would be approximately 1.6 billion cubic metres.

The current fluid tailings volume stands at approximately 1.2 billion cubic metres, up from roughly 1.1 billion in 2015.

The unaltered reproduction of this content is free of charge with attribution to the Canadian Energy Centre.

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Why it’s time to repeal the oil tanker ban on B.C.’s north coast

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The Port of Prince Rupert on the north coast of British Columbia. Photo courtesy Prince Rupert Port Authority

From the Canadian Energy Centre

By Will Gibson

Moratorium does little to improve marine safety while sending the wrong message to energy investors

In 2019, Martha Hall Findlay, then-CEO of the Canada West Foundation, penned a strongly worded op-ed in the Globe and Mail calling the federal ban of oil tankers on B.C.’s northern coast “un-Canadian.”

Six years later, her opinion hasn’t changed.

“It was bad legislation and the government should get rid of it,” said Hall Findlay, now director of the University of Calgary’s School of Public Policy.

The moratorium, known as Bill C-48, banned vessels carrying more than 12,500 tonnes of oil from accessing northern B.C. ports.

Targeting products from one sector in one area does little to achieve the goal of overall improved marine transport safety, she said.

“There are risks associated with any kind of transportation with any goods, and not all of them are with oil tankers. All that singling out one part of one coast did was prevent more oil and gas from being produced that could be shipped off that coast,” she said.

Hall Findlay is a former Liberal MP who served as Suncor Energy’s chief sustainability officer before taking on her role at the University of Calgary.

She sees an opportunity to remove the tanker moratorium in light of changing attitudes about resource development across Canada and a new federal government that has publicly committed to delivering nation-building energy projects.

“There’s a greater recognition in large portions of the public across the country, not just Alberta and Saskatchewan, that Canada is too dependent on the United States as the only customer for our energy products,” she said.

“There are better alternatives to C-48, such as setting aside what are called Particularly Sensitive Sea Areas, which have been established in areas such as the Great Barrier Reef and the Galapagos Islands.”

The Business Council of British Columbia, which represents more than 200 companies, post-secondary institutions and industry associations, echoes Hall Findlay’s call for the tanker ban to be repealed.

“Comparable shipments face no such restrictions on the East Coast,” said Denise Mullen, the council’s director of environment, sustainability and Indigenous relations.

“This unfair treatment reinforces Canada’s over-reliance on the U.S. market, where Canadian oil is sold at a discount, by restricting access to Asia-Pacific markets.

“This results in billions in lost government revenues and reduced private investment at a time when our economy can least afford it.”

The ban on tanker traffic specifically in northern B.C. doesn’t make sense given Canada already has strong marine safety regulations in place, Mullen said.

Notably, completion of the Trans Mountain Pipeline expansion in 2024 also doubled marine spill response capacity on Canada’s West Coast. A $170 million investment added new equipment, personnel and response bases in the Salish Sea.

“The [C-48] moratorium adds little real protection while sending a damaging message to global investors,” she said.

“This undermines the confidence needed for long-term investment in critical trade-enabling infrastructure.”

Indigenous Resource Network executive director John Desjarlais senses there’s an openness to revisiting the issue for Indigenous communities.

“Sentiment has changed and evolved in the past six years,” he said.

“There are still concerns and trust that needs to be built. But there’s also a recognition that in addition to environmental impacts, [there are] consequences of not doing it in terms of an economic impact as well as the cascading socio-economic impacts.”

The ban effectively killed the proposed $16-billion Eagle Spirit project, an Indigenous-led pipeline that would have shipped oil from northern Alberta to a tidewater export terminal at Prince Rupert, B.C.

“When you have Indigenous participants who want to advance these projects, the moratorium needs to be revisited,” Desjarlais said.

He notes that in the six years since the tanker ban went into effect, there are growing partnerships between B.C. First Nations and the energy industry, including the Haisla Nation’s Cedar LNG project and the Nisga’a Nation’s Ksi Lisims LNG project.

This has deepened the trust that projects can mitigate risks while providing economic reconciliation and benefits to communities, Dejarlais said.

“Industry has come leaps and bounds in terms of working with First Nations,” he said.

“They are treating the rights of the communities they work with appropriately in terms of project risk and returns.”

Hall Findlay is cautiously optimistic that the tanker ban will be replaced by more appropriate legislation.

“I’m hoping that we see the revival of a federal government that brings pragmatism to governing the country,” she said.

“Repealing C-48 would be a sign of that happening.”

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