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Slow, [Expensive] and Amazing - Nuclear Power [2/3]

Mr. Sustainability

Nuclear power is up to three times more expensive than wind or solar Summary - Costs of renewables continue to fall incrementally and are at a record low of around €40 per MWh. Nuclear power plants, especially in the West, are confronted with high construction costs, extreme delays and more stringent safety measures.

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Southern Company Commits to Net-Zero Carbon by 2050, but Seeks New Gas Plants for Now

GreenTechMedia

utilities in setting a net-zero carbon target for 2050, aiming to balance the emissions from its sizable fossil fuel-fired generation fleet and sprawling natural gas business with reductions to be gained by expanding its portfolio of renewable energy and energy efficiency. Counting on 'negative carbon' solutions.

Carbon 130
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Arizona Utility APS Charts 15-Year Plan on Its Way to Zero-Carbon Energy by 2050

GreenTechMedia

Arizona Public Service released its plan for reaching zero-carbon by 2050 , with multiple options to balance the costs and carbon benefits of switching from coal and natural gas to renewables, batteries, distributed energy resources and as-yet-untested technologies. Long-range tradeoffs: Carbon reduction vs. costs.

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Climate Sceptic Goes Unchallenged on BBC’s Today Programme

DeSmogBlog

Porter states in her Twitter bio that she works with “businesses with projects across the electricity, gas and oil industries”, though these professional links to fossil fuel interests were not identified on the Today programme. She added: “And so whenever it isn’t windy we’re starting to get into issues of the grid being stressed”.

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Negative emissions under a net zero target: the controversies and pitfalls

Business Green

Josh Burke at LSE's Grantham Research Institute navigates the costs, opportunities, advantages and disadvantages of different carbon capture and negative emissions technologies. Net negative emissions are achieved when gross negative emissions match or exceed gross positive emissions. Why negative emissions?

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Hydrogen Production With A Low Carbon Footprint

R-Squared Energy

In a previous article , I analyzed the carbon footprint of producing hydrogen from fossil fuels. To recap, the carbon footprint of hydrogen production from natural gas in a steam methane reformer (SMR) is higher than from directly burning the natural gas. On a mass basis, it is 9.3 Hydrogen from Electrolysis.

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Lost Decade: How Shell Downplayed Early Warnings Over Climate Change

DeSmogBlog

Compiled by Dutch climate activist Vatan Hüzeir , and reviewed by DeSmog and Dutch investigative journalism platform Follow The Money , the documents show how Shell was actively supporting research that clearly underscored the dangers posed by burning its fossil fuel products from the mid-1970s — years earlier than previously thought.