Global Photovoltaic Cell Recycling Market Research Report 2024
Published on: 2024-01-04 | No of Pages : 400 | Industry : Latest Trends
Publisher : MRA | Format : PDF
Global Photovoltaic Cell Recycling Market Research Report 2024
Recycling photovoltaic panels can reuse useful resources, such as aluminum, copper, silicon, etc. These resources can be recycled and regenerated, saving the cost of mining and production of new resources.
According to MRA Research’s new survey, global Photovoltaic Cell Recycling market is projected to reach US$ 130.6 million in 2033, increasing from US$ 105 million in 2023, with the CAGR of 2.6% during the period of 2023 to 2033.
Since the introduction of grid-connected benchmark electricity prices in 2014, domestic photovoltaic power generation installed capacity has grown rapidly and continues to maintain an average annual growth rate of more than 100%. At present, the domestic cumulative installed photovoltaic power generation capacity has exceeded 200GW. It is expected that in 2023, China's cumulative installed photovoltaic power generation capacity will exceed 100%. will exceed 300GW. With the rapid development of photovoltaic power generation, the problem of recycling and reuse of waste photovoltaic modules has also arisen. According to the International Renewable Energy Agency (IRENA), the accumulated photovoltaic module waste worldwide will reach millions of tons by 2030; and by 2050, it will reach tens of millions of tons. According to the prediction of the Institute of Electrical Engineering of the Chinese Academy of Sciences, starting from 2020, the amount of domestic waste photovoltaic modules will also increase significantly. By 2030, domestic waste photovoltaic modules can produce 1.45 million tons of carbon steel, 1.1 million tons of glass, and 540,000 tons of plastics. , 260,000 tons of aluminum, 170,000 tons of copper, 50,000 tons of silicon and 550 tons of silver.
Report Scope
This report, based on historical analysis (2018-2023) and forecast calculation (2023-2033), aims to help readers to get a comprehensive understanding of global Photovoltaic Cell Recycling market with multiple angles, which provides sufficient supports to readers’ strategy and decision making.
Veolia
ROSI
ERI
GreenMatch
GEP ECOTECH
Yingli Energy Development Co., Ltd.
State Power Investment Ronghe Investment Co., Ltd.
Segment by Type
Polycrystalline Silicon Solar Panels
Monocrystalline Silicon Solar Panel
Amorphous Silicon Solar Panel
Composite Solar Panels
Industrial
Business
Others
North America
United States
Canada
Europe
Germany
France
U.K.
Italy
Russia
Asia-Pacific
China
Japan
South Korea
India
Australia
China Taiwan
Southeast Asia
Latin America
Mexico
Brazil
Argentina
Colombia
Middle East & Africa
Turkey
Saudi Arabia
UAE
The Photovoltaic Cell Recycling report covers below items
Chapter 1Product Basic Information (Definition, Type and Application)
Chapter 2Manufacturers’ Competition Patterns
Chapter 3Country Level Sales Analysis
Chapter 4Product Type Analysis
Chapter 5Product Application Analysis
Chapter 6Manufacturers’ Outline
Chapter 7Industry Chain, Market Channel and Customer Analysis
Chapter 8Market Opportunities and Challenges
Chapter 9Market Conclusions
Chapter 10Research Methodology and Data Source
According to MRA Research’s new survey, global Photovoltaic Cell Recycling market is projected to reach US$ 130.6 million in 2033, increasing from US$ 105 million in 2023, with the CAGR of 2.6% during the period of 2023 to 2033.
Since the introduction of grid-connected benchmark electricity prices in 2014, domestic photovoltaic power generation installed capacity has grown rapidly and continues to maintain an average annual growth rate of more than 100%. At present, the domestic cumulative installed photovoltaic power generation capacity has exceeded 200GW. It is expected that in 2023, China's cumulative installed photovoltaic power generation capacity will exceed 100%. will exceed 300GW. With the rapid development of photovoltaic power generation, the problem of recycling and reuse of waste photovoltaic modules has also arisen. According to the International Renewable Energy Agency (IRENA), the accumulated photovoltaic module waste worldwide will reach millions of tons by 2030; and by 2050, it will reach tens of millions of tons. According to the prediction of the Institute of Electrical Engineering of the Chinese Academy of Sciences, starting from 2020, the amount of domestic waste photovoltaic modules will also increase significantly. By 2030, domestic waste photovoltaic modules can produce 1.45 million tons of carbon steel, 1.1 million tons of glass, and 540,000 tons of plastics. , 260,000 tons of aluminum, 170,000 tons of copper, 50,000 tons of silicon and 550 tons of silver.
Report Scope
This report, based on historical analysis (2018-2023) and forecast calculation (2023-2033), aims to help readers to get a comprehensive understanding of global Photovoltaic Cell Recycling market with multiple angles, which provides sufficient supports to readers’ strategy and decision making.
By Company
Veolia
ROSI
ERI
GreenMatch
GEP ECOTECH
Yingli Energy Development Co., Ltd.
State Power Investment Ronghe Investment Co., Ltd.
Segment by Type
Polycrystalline Silicon Solar Panels
Monocrystalline Silicon Solar Panel
Amorphous Silicon Solar Panel
Composite Solar Panels
Segment by Application
Industrial
Business
Others
Consumption by Region
North America
United States
Canada
Europe
Germany
France
U.K.
Italy
Russia
Asia-Pacific
China
Japan
South Korea
India
Australia
China Taiwan
Southeast Asia
Latin America
Mexico
Brazil
Argentina
Colombia
Middle East & Africa
Turkey
Saudi Arabia
UAE
The Photovoltaic Cell Recycling report covers below items
Chapter 1Product Basic Information (Definition, Type and Application)
Chapter 2Manufacturers’ Competition Patterns
Chapter 3Country Level Sales Analysis
Chapter 4Product Type Analysis
Chapter 5Product Application Analysis
Chapter 6Manufacturers’ Outline
Chapter 7Industry Chain, Market Channel and Customer Analysis
Chapter 8Market Opportunities and Challenges
Chapter 9Market Conclusions
Chapter 10Research Methodology and Data Source