Technologies and policies to decarbonize global industry: Review and assessment of mitigation drivers through 2070
Технологии и политика декарбонизации мировой промышленности: обзор и оценка факторов снижения выбросов до 2070 года
2020-03-29
SCID: 54.1/mwmmcpct
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carbon capturecarbon pricingcircular economyindustrial decarbonizationzero-carbon hydrogen
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Abstract (AI)
Fully decarbonizing global industry is essential to achieving climate stabilization, and reaching net zero greenhouse gas emissions by 2050–2070 is necessary to limit global warming to 2 °C. This paper assembles and evaluates technical and policy interventions, both on the supply side and on the demand side. It identifies measures that, employed together, can achieve net zero industrial emissions in the required timeframe. Key supply-side technologies include energy efficiency (especially at the system level), carbon capture, electrification, and zero-carbon hydrogen as a heat source and chemical feedstock. There are also promising technologies specific to each of the three top-emitting industries: cement, iron & steel, and chemicals & plastics. These include cement admixtures and alternative chemistries, several technological routes for zero-carbon steelmaking, and novel chemical catalysts and separation technologies. Crucial demand-side approaches include material-efficient design, reductions in material waste, substituting low-carbon for high-carbon materials, and circular economy interventions (such as improving product longevity, reusability, ease of refurbishment, and recyclability). Strategic, well-designed policy can accelerate innovation and provide incentives for technology deployment. High-value policies include carbon pricing with border adjustments or other price signals; robust government support for research, development, and deployment; and energy efficiency or emissions standards. These core policies should be supported by labeling and government procurement of low-carbon products, data collection and disclosure requirements, and recycling incentives. In implementing these policies, care must be taken to ensure a just transition for displaced workers and affected communities. Similarly, decarbonization must complement the human and economic development of low- and middle-income countries.
Key Findings
1
Combining supply-side technologies—including system-level energy efficiency, carbon capture, electrification, and zero-carbon hydrogen—can enable industrial net zero.
2
Demand-side measures such as material-efficient design, waste reduction, low-carbon material substitution, and circularity reduce industrial emissions.
3
Effective policy packages should combine carbon pricing, research and deployment support, efficiency or emissions standards, product labeling, procurement, disclosure, and recycling incentives.
4
Industrial decarbonization policies must address just-transition needs and support human and economic development in low- and middle-income countries.
5
Industry-specific options include alternative cement chemistries, multiple zero-carbon steelmaking routes, and novel chemical catalysts and separation technologies.
6
Reaching net-zero industrial greenhouse-gas emissions by 2050–2070 is necessary to limit global warming to 2 °C.
Research Object
Global industrial sector (industry) targeted for decarbonization through 2070
Research Subject
The technologies and policies, including their mitigation drivers and combined effectiveness, for achieving net-zero industrial greenhouse-gas emissions by 2050–2070
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2020-03-29
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