Zhaoling Li
Biographic Data
| ID | 3721876 |
|---|---|
| NAME | Zhaoling Li |
| GIVEN NAMES | Zhaoling |
| FAMILY NAME | Li |
| SIGNATURE | LI Z |
| AFFILIATIONS | National Institute for Environmental Studies |
| ORCID | 0000-0002-3091-0094 |
| VERIFIED | Yes |
| TOTAL WORKS | 9 |
| TOTAL CITATIONS | 2 |
| AUTHOR COUNT | 9 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2020 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Unveiling the environmental footprint of photovoltaic systems: A life cycle assessment across technologies and configurations
Rapid global PV (photovoltaic) expansion driven by global decarbonization goals requires comprehensive life cycle environmental evaluation. This study applies a harmonized life cycle assessment (LCA) to seven representative PV modules across six installation scenarios, enabling consistent comparison at both module and system levels. Results indicate that cadmium telluride (CdTe) achieves the lowest environmental footprint, followed closely by per…
Integrated assessment of resource synergy and emission reduction benefits in iron and steel and cement industries
Industrial symbiosis offers a critical pathway for advancing resource circularity and energy efficiency in hard-to-abate sectors. As the steel and cement industries undergo profound structural transformation toward low-carbon development, this study quantitatively assesses how these transitions affect existing symbiotic networks during 2020–2060 using an integrated assessment model. The model incorporates cleaner production structures, technologi…
Construction of a high-resolution city-level emission inventory based on multiple methods: A case study of Cangzhou City, China
Urban-industrial symbiosis practices in Tokyo Metropolis and the indication of carbon emissions reduction and environmental benefits
Enabling the green total factor productivity of the construction industry with the prospect of digital transformation
Driving mechanism of the allometric relationship between economic development and carbon emissions in the Yangtze River Delta urban agglomeration, China
Plant-level mitigation strategies could enable carbon neutrality by 2060 and reduce non-CO2 emissions in China’s iron and steel sector
Understanding the impact of environmental regulations on green technology innovation efficiency in the construction industry
Energy-saving and carbon emission reduction effect of urban-industrial symbiosis implementation with feasibility analysis in the city
Energy-saving and carbon emission reduction effect of urban-industrial symbiosis implementation with feasibility analysis in the city
Understanding the impact of environmental regulations on green technology innovation efficiency in the construction industry
Plant-level mitigation strategies could enable carbon neutrality by 2060 and reduce non-CO2 emissions in China’s iron and steel sector
Enabling the green total factor productivity of the construction industry with the prospect of digital transformation
Driving mechanism of the allometric relationship between economic development and carbon emissions in the Yangtze River Delta urban agglomeration, China
Construction of a high-resolution city-level emission inventory based on multiple methods: A case study of Cangzhou City, China
Urban-industrial symbiosis practices in Tokyo Metropolis and the indication of carbon emissions reduction and environmental benefits
Unveiling the environmental footprint of photovoltaic systems: A life cycle assessment across technologies and configurations
Rapid global PV (photovoltaic) expansion driven by global decarbonization goals requires comprehensive life cycle environmental evaluation. This study applies a harmonized life cycle assessment (LCA) to seven representative PV modules across six installation scenarios, enabling consistent comparison at both module and system levels. Results indicate that cadmium telluride (CdTe) achieves the lowest environmental footprint, followed closely by per…
Integrated assessment of resource synergy and emission reduction benefits in iron and steel and cement industries
Industrial symbiosis offers a critical pathway for advancing resource circularity and energy efficiency in hard-to-abate sectors. As the steel and cement industries undergo profound structural transformation toward low-carbon development, this study quantitatively assesses how these transitions affect existing symbiotic networks during 2020–2060 using an integrated assessment model. The model incorporates cleaner production structures, technologi…
Business (5 works) · Economics (5 works) · Environmental Science (5 works) · Greenhouse gas (4 works) · Carbon fibers (3 works) · China (3 works) · Computer Science (3 works) · Engineering (3 works) · Environmental Impact and Sustainability (3 works) · Geography (3 works)