4.7 Article

China?s pathway to carbon neutrality for the iron and steel industry

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Green & Sustainable Science & Technology

Exploring selected pathways to low and zero CO2 emissions in China's iron and steel industry and their impacts on resources and energy

Shaohui Zhang et al.

Summary: This paper presents a study that used the MESSAGEix-China iron and steel model to explore pathways for achieving zero CO2 emissions in China's iron and steel industry. The study found that rapid adoption of scrap-based Electric Arc Furnaces (EAFs) and hydrogen-based Direct Reduced Iron (DRI)-EAFs steel-making technologies can significantly reduce CO2 emissions by 2060. However, carbon sink or negative emission technologies will still be needed to achieve carbon neutrality. The study also highlights the varying impacts of different technologies on material and energy consumption.

JOURNAL OF CLEANER PRODUCTION (2022)

Article Green & Sustainable Science & Technology

Towards carbon neutrality: A study on China's long-term low-carbon transition pathways and strategies

Jiankun He et al.

Summary: As the world's largest carbon emitter, China must make significant efforts to peak its emissions by 2030 and achieve carbon neutrality by 2060. This study examines different scenarios and evaluates the pathways, energy transformation, technology, policy, and investment demands necessary for carbon neutrality. The findings highlight the challenges and investment requirements for China to achieve its carbon neutrality goals.

ENVIRONMENTAL SCIENCE AND ECOTECHNOLOGY (2022)

Article Green & Sustainable Science & Technology

Biased technical change and its influencing factors of iron and steel industry: Evidence from provincial panel data in China

Jian-Bai Huang et al.

Summary: This study analyzed the biased technical change in China's iron and steel industry using provincial panel data from 2006 to 2016. The results showed that the industry experienced labor-saving, energy-saving, and capital-using technical changes, with improving energy efficiency being the primary pathway to promote biased technical change.

JOURNAL OF CLEANER PRODUCTION (2021)

Review Chemistry, Physical

Low-carbon production of iron and steel: Technology options, economic assessment, and policy

Zhiyuan Fan et al.

Summary: With the urgency to transition to a net-zero CO2 economy, governments and industries are focusing on decarbonizing hard-to-abate sectors like steel making. Current decarbonization technologies have limitations, and achieving deep decarbonization in the iron and steel industry will require a combination of factors including cost and technical maturity.
Article Environmental Sciences

Assessment to China's Recent Emission Pattern Shifts

Yuru Guan et al.

Summary: Energy and emission data are crucial for climate change research and mitigation efforts, with accurate energy statistics being essential for mitigation strategies and evaluating low carbon energy transition efforts. This study provides updated emission inventories for China and its provinces for 2018 and 2019, while also updating CO2 emission inventories based on revised energy statistics since 2012.

EARTHS FUTURE (2021)

Article Energy & Fuels

Decarbonizing China's iron and steel industry from the supply and demand sides for carbon neutrality

Ming Ren et al.

Summary: The study explores low-carbon transition pathways for China's iron and steel industry to achieve carbon neutrality by 2050, emphasizing the importance of adopting breakthrough technologies in the long term and implementing system-wide cross-sector decarbonization measures to achieve climate change mitigation goals.

APPLIED ENERGY (2021)

Review Green & Sustainable Science & Technology

A review of CO2 emissions reduction technologies and low-carbon development in the iron and steel industry focusing on China

Lei Ren et al.

Summary: China's iron and steel industry, as the largest producer and consumer of steel globally, plays a significant role in energy conservation and reducing greenhouse gas emissions. By combining technological improvements and ultra-low carbon technologies, the industry can achieve a substantial reduction in CO2 emissions and improve cost-effectiveness.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2021)

Article Green & Sustainable Science & Technology

Key factors for achieving emission reduction goals cognizant of CCS

Hadi Farabi-Asl et al.

INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL (2020)

Article Green & Sustainable Science & Technology

Achieving carbon-neutral iron and steelmaking in Europe through the deployment of bioenergy with carbon capture and storage

Hana Mandova et al.

JOURNAL OF CLEANER PRODUCTION (2019)

Article Environmental Sciences

Quantitative analysis of the precise energy conservation and emission reduction path in China's iron and steel industry

Zongguo Wen et al.

JOURNAL OF ENVIRONMENTAL MANAGEMENT (2019)

Article Engineering, Environmental

Energy and resource conservation and air pollution abatement in China's iron and steel industry

Qi Zhang et al.

RESOURCES CONSERVATION AND RECYCLING (2019)

Editorial Material Geosciences, Multidisciplinary

Beyond carbon budgets

Glen P. Peters

NATURE GEOSCIENCE (2018)

Article Green & Sustainable Science & Technology

Assessment of hydrogen direct reduction for fossil-free steelmaking

Valentin Vogl et al.

JOURNAL OF CLEANER PRODUCTION (2018)

Article Green & Sustainable Science & Technology

Pathways to a low-carbon iron and steel industry in the medium-term - the case of Germany

Marlene Arens et al.

JOURNAL OF CLEANER PRODUCTION (2017)

Review Green & Sustainable Science & Technology

A review of energy use and energy-efficient technologies for the iron and steel industry

Kun He et al.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2017)

Article Green & Sustainable Science & Technology

The role of government in industrial energy conservation in China: Lessons from the iron and steel industry

Fang Zhang et al.

ENERGY FOR SUSTAINABLE DEVELOPMENT (2017)

Review Green & Sustainable Science & Technology

Biomass applications in iron and steel industry: An overview of challenges and opportunities

Elsayed Mousa et al.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2016)

Article Environmental Sciences

Differences between carbon budget estimates unravelled

Joeri Rogelj et al.

NATURE CLIMATE CHANGE (2016)

Proceedings Paper Engineering, Industrial

On Material Substitution in Automotive BIWs - From Steel to Aluminum Body Sides

Fredrik Henriksson et al.

26TH CIRP DESIGN CONFERENCE (2016)

Article Green & Sustainable Science & Technology

Techno-economic evaluation of innovative steel production technologies

Manfred Fischedick et al.

JOURNAL OF CLEANER PRODUCTION (2014)

Article Engineering, Environmental

Quantification of Chinese steel cycle flow: Historical status and future options

Peng Wang et al.

RESOURCES CONSERVATION AND RECYCLING (2014)

Article Engineering, Environmental

Challenges and political solutions for steel recycling in China

Jost Wuebbeke et al.

RESOURCES CONSERVATION AND RECYCLING (2014)

Article Engineering, Environmental

The Steel Scrap Age

Stefan Pauliuk et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2013)

Article Green & Sustainable Science & Technology

Post-combustion capture of CO2 at an integrated steel mill - Part I: Technical concept analysis

Antti Arasto et al.

INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL (2013)

Article Green & Sustainable Science & Technology

Modelling a new, low CO2 emissions, hydrogen steelmaking process

A. Ranzani da Costa et al.

JOURNAL OF CLEANER PRODUCTION (2013)

Article Metallurgy & Metallurgical Engineering

Analysis of synthetic natural gas injection into charcoal blast furnace

Elisa Pinto da Rocha et al.

Journal of Materials Research and Technology-JMR&T (2013)

Article Environmental Studies

Trends and development of steel demand in China: A bottom-up analysis

Xiang Yin et al.

RESOURCES POLICY (2013)

Article Engineering, Environmental

Moving Toward the Circular Economy: The Role of Stocks in the Chinese Steel Cycle

Stefan Pauliuk et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2012)

Review Thermodynamics

Comparative assessment of CO2 capture technologies for carbon-intensive industrial processes

Takeshi Kuramochi et al.

PROGRESS IN ENERGY AND COMBUSTION SCIENCE (2012)