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publications.yml
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- path: https://doi.org/10.1016/j.oneear.2024.10.006
image: /files/images/journal/one-earth-logo.jpg
title: "Fewer than 15% of coal power plant workers in China can easily shift to green jobs by 2060"
# author:
subtitle: "*One Earth*"
description: "A coal power worker needs to travel 194 (178–242) km on average to access a green job. Only 11%–14% of existing coal power workers will transition to green jobs by 2060."
date: "2024-11-05"
# categories: []
- path: https://www.nature.com/articles/s41467-020-16184-x
image: /files/images/journal/nature-comms.png
title: "Rapid cost decrease of renewables and storage accelerates the decarbonization of China’s power system"
# author:
subtitle: "*Nature Communications*"
description: "A renewable dominant pathway is not just technogical sound, but also cost effective."
date: "2020-05-19"
# categories: []
- path: https://pubs.acs.org/doi/10.1021/acs.est.6b01345
image: /files/images/journal/est-50-11-cover-crop.jpg
title: "SWITCH-China: A Systems Approach to Decarbonizing China’s Power System"
# author:
subtitle: "*Environmental Science & Technology*"
description: "SWITCH-China, an integrated model for power sector decarbonization."
date: "2016-05-08"
# categories: []
- path: https://www.nature.com/articles/s43017-021-00244-x
image: /files/images/journal/nature-reviews-earth.jpg
title: "Challenges and opportunities for carbon neutrality in China"
# author:
subtitle: "*Nature Reviews Earth & Environment*"
description: "In this Perspective, we summarize the key features of China’s CO2 emissions, its reduction processes and successes in meeting climate targets."
date: "2022-03-01"
# categories: []
- path: https://doi.org/10.1016/j.oneear.2020.07.012
image: /files/images/journal/one-earth-logo.jpg
title: "Enabling a Rapid and Just Transition away from Coal in China"
# author:
subtitle: "*One Earth*"
description: "Aggressive coal-transition pathway is needed to achieve carbon nutrality goal while achieving water saving, avoiding premature death."
date: "2020-08-21"
# categories: []
- path: https://www.nature.com/articles/s41586-022-05316-6
image: /files/images/journal/nature.avif
title: "Quantifying the cost savings of global solar photovoltaic supply chains"
# author:
subtitle: "*Nature*"
description: "Globalized supply chain has saved solar installers in the U.S., Germany, and China $67B 2008-2020, and solar prices will be 20-30% higher in 2030 if countries move to produce domestically."
date: "2022-10-26"
# categories: []
- path: https://www.nature.com/articles/s43247-023-01006-x
image: /files/images/journal/commsearth.jpg
title: "Deploying solar photovoltaic energy first in carbon-intensive regions brings gigatons more carbon mitigations to 2060"
# author:
subtitle: "*Communications Earth & Environment*"
description: "A net GHG mitigation of 1.29 Gt CO2-equivalent from 2009–2019, achieved by 1.97 Gt of mitigation from installation minus 0.68 Gt of emissions from manufacturing."
date: "2023-10-11"
# categories: []
- path: https://www.nature.com/articles/s44221-023-00120-6
image: /files/images/journal/nature-water.jpg
title: "Global assessment of the carbon–water tradeoff of dry cooling for thermal power generation"
# author:
subtitle: "*Nature Water*"
description: "We build a global unit-level framework to investigate the CO2 emission and energy penalty due to the deployment of dry cooling."
date: "2023-08-07"
# categories: []
- path: https://www.nature.com/articles/s41560-023-01304-w
image: /files/images/journal/nature-energy.jpg
title: "Climate change impacts on planned supply–demand match in global wind and solar energy systems"
# author:
subtitle: "*Nature Energy*"
description: "Up to 32% or 44% of non-Antarctic land areas for wind or solar, respectively, are projected to experience supply demand match reductions by the end of this century under an intermediate emission scenario."
date: "2023-07-24"
# categories: []
- path: https://www.nature.com/articles/s41467-023-40337-3
image: /files/images/journal/nature-comms.png
title: "Heterogeneous effects of battery storage deployment strategies on decarbonization of provincial power systems in China"
# author:
subtitle: "*Nature Communications*"
description: "We find heterogeneous strategy provides the lowest system costs, however, carbon emissions depend on carbon prices."
date: "2023-08-11"
# categories: []