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Zinc–air Battery Market by Type (Primary Type, Secondary Type), Voltage Type (Up to 12 V, 12 V to 36 V, More than 36 V), Application, and Geography - Global Forecast to 2030
Report ID: MRSE - 104736 Pages: 250 Jun-2024 Formats*: PDF Category: Semiconductor and Electronics Delivery: 24 to 72 Hours Download Free Sample ReportThe Zinc–Air Battery Market is projected to reach $ 223.7 million by 2030, at a CAGR of 7.8% from 2024 to 2030. The growth of this market is attributed to the increasing R&D in Zinc–air battery and rising investments by leading manufacturers due to the economic advantages of Zinc–air battery. Furthermore, the rising demand for Zinc–air battery for hearing aids and electronic devices and the growth in demand for higher energy-density storage solutions are expected to create significant opportunities for the players operating in this market.
Anode corrosion is one of the most common phenomena in Zinc–air battery affecting battery performance. Such performance issues pose a serious challenge for the Zinc–air battery adoption. Additionally, the health concerns owing to mercury restrain this market’s growth.
The global Zinc–air battery market is segmented by type, voltage type, application, and geography. The study also evaluates industry competitors and analyses the regional and country-level markets.
The spread of COVID-19 resulted in huge casualties and heavy economic losses. The pandemic severely impacted several sectors, including the automotive sector, with major manufacturers shutting down their operations completely or operating at reduced capacities following the directives issued by their respective governments. Uncertainty regarding the duration of the lockdown and supply-chain disruptions made it difficult for players to anticipate the Zinc–air battery market's recovery. The COVID-19 crisis caused structural shifts severely impacted this market.
Major applications of Zinc–air battery include hearing aids, alarm system battery, electric fencing, energy storage, IoT wearables, LED lamps, military, and railway & road traffic signaling, among others. The adoption of Zinc–air battery for alarm systems, electric fencing, energy storage and railway & road traffic signaling was hampered due to worldwide disruption of mobility, manufacturing processes, and lowered trespassing.
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The increasing research and development activities in Zinc–air battery for usage in electric vehicles and energy storage devices are expected to fuel the Zinc–air battery market growth. The economic advantages of Zinc–air battery, such as lower manufacturing costs over lithium-ion battery and higher energy density, are expected to stimulate market growth. The increasing efforts by key players to improve battery characteristics are anticipated to create lucrative growth opportunities for the market. For instance, in September 2020, Ashok Leyland (India) and Hindustan Zinc Limited (India) collaborated with IIT-Madras to develop Zinc–air battery.
The rising adoption of renewable energy sources, such as wind and solar, for power generation is expected to favor the growth of this market. Furthermore, the increasing need to reduce greenhouse gas emissions is anticipated to boost the demand for battery storage systems and is thus anticipated to complement the market growth. The growing advancements in electric vehicles are also expected to fuel market growth.
Based on type, the global Zinc–air battery market is segmented into primary type and secondary type. The secondary type segment is projected to register the highest CAGR during the forecast period. The segment's high growth is attributed to its high shelf life and durability. Rechargeable Zinc–air battery have multiple applications, ranging from small-scale devices to large vehicles. These battery are also known for their durability, reliability, and output generation.
Based on voltage type, the global Zinc–air battery market is segmented into up to 12 V, 12 V to 36 V, and more than 36 V. In 2024, the up to 12 V segment is expected to account for the largest share of the Zinc–air battery market. The large market share of this segment is attributed to the rising demand for low-voltage Zinc–air battery for applications, including hearing aids and LED lamps.
Based on application, the global Zinc–air battery market is segmented into hearing aids, alarm system battery, electric fencing, energy storage, IoT wearables, LED lamps, military, railway & road traffic signaling, and other application. The energy storage segment is projected to register the highest CAGR during the forecast period. The growth of this segment is attributed to the growing acceptance of renewable sources of energy, such as solar and wind. The rising necessity to diminish greenhouse gas emissions (GHG) and growing demand for power supply are contributing to the installation of renewable sources for power generation, leading to the development of battery storage systems, which, in turn, support the development of Zinc–air battery.
Based on geography, the global Zinc–air battery market is segmented into North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa. Europe is projected to register the highest CAGR during the forecast period. The growth of this market is driven by the increasing government emphasis on reducing greenhouse gas emissions. Many European countries, including France, Argentina, and Germany, aim to reach zero CO2 emissions by 2050. Additionally, government projects to develop modern battery for the automotive industry are anticipated to propel the growth of the Europe Zinc–air battery market in the coming years.
Key Players
The key players profiled in the global Zinc–air battery market study include Energizer Holdings, Inc. (U.S.), ENZINC, INC. (U.S.), The Duracell Company (U.S.), ZAF Energy Systems, INC (U.S.), Electric Fuel Battery Corporation (U.S.), Iskra (Solvenia), VARTA AG (Germany), Renata AG SA (Switzerland), AZA Battery (Belgium), Phinergy Ltd. (Israel), ZeniPower (Zhuhai Zhi Li) Battery Co., Ltd. (China), Zinc8 Energy Solutions Inc. (Canada), and GPB International Limited (China).
Key Questions Answered in the Report:
The global Zinc–air battery market is segmented by type, voltage type, application, and geography. The study also evaluates industry competitors and analyses the regional and country-level markets.
The global Zinc–air battery market is projected to reach $ 223.7 million by 2030, at a CAGR of 7.8% from 2024 to 2030.
In 2024, the primary type segment is expected to account for the largest share of the global Zinc–air batteryt market.
In 2024, the hearing aids segment is expected to account for the largest share of the global Zinc–air battery market.
The growth of this market is attributed to the increasing R&D in Zinc–air batteries and rising investments by leading manufacturers due to the economic advantages of Zinc–air battery. Furthermore, the rising demand for Zinc–air battery for hearing aids and electronic devices and the growth in demand for higher energy-density storage solutions are expected to create significant opportunities for the players operating in this market.
The key players profiled in the global Zinc–air battery market study include Energizer Holdings, Inc. (U.S.), ENZINC, INC. (U.S.), The Duracell Company (U.S.), ZAF Energy Systems, INC (U.S.), Electric Fuel Battery Corporation (U.S.), Iskra (Solvenia), VARTA AG (Germany), Renata AG SA (Switzerland), AZA Battery (Belgium), Phinergy Ltd. (Israel), ZeniPower (Zhuhai Zhi Li) Battery Co., Ltd. (China), Zinc8 Energy Solutions Inc. (Canada), and GPB International Limited (China).
Europe is projected to register the highest CAGR during the forecast period. The growth of this market is driven by the increasing government initiatives to reduce greenhouse gas emissions. Many European countries, including France, Argentina, and Germany, aim to reach zero CO2 emissions by 2050. Additionally, government projects to develop modern batteries for the automotive industry are anticipated to propel the growth of the Europe Zinc–air battery market in the coming years.
1. Introduction
1.1. Market Definition
1.2. Market Ecosystem
1.3. Currency and Limitations
1.4. Key Stakeholders
2. Research Methodology
2.1. Research Process
2.2. Data Collection & Validation
2.2.1. Secondary Research
2.2.2. Primary Research
2.3. Market Assessment
2.3.1. Market Size Estimation
2.3.1.1. Bottom-up Approach
2.3.1.2. Top-down Approach
2.3.1.3. Growth Forecast
2.4. Assumptions for the Study
3. Executive Summary
4. The Impact of COVID-19 on the Global Zinc–air Battery Market
5. Market Insights
5.1. Introduction
5.2. Market Dynamics
5.3. Drivers
5.3.1. Increasing R&D in Zinc–air Battery
5.3.2. Rising Investments by Leading Manufacturers Due to the Economic Advantages of Zinc–air Battery
5.4. Restraints
5.4.1. Health Concerns Owing to Mercury
5.5. Opportunities
5.5.1. Rising Demand for Zinc–air Battery for Hearing Aids and Electronics Devices
5.5.2. Increasing Demand for Higher Energy-Density Storage Solutions
5.6. Challenges
5.6.1. Corrosion Between Electrolyte and Anode Zinc–air Battery
5.7. Value Chain Analysis
6. Global Zinc–air Battery Market, by Type
6.1. Introduction
6.2. Primary Type
6.3. Secondary Type
7. Global Zinc–air Battery Market, by Voltage Type
7.1. Introduction
7.2. Up to 12 V
7.3. 12 V to 36 V
7.4. More than 36 V
8. Global Zinc–air Battery Market, by Application
8.1. Introduction
8.2. Hearing Aids
8.3. Alarm System Battery
8.4. Electric Fencing
8.5. Energy Storage
8.5.1. Backup Power
8.5.2. On-grid Integration with Renewable
8.5.3. Off-grid Energy Storage
8.6. IoT Wearables
8.7. LED Lamps
8.8. Military
8.9. Railway & Road Traffic Signaling
8.10. Other Applications
9. Zinc–air Battery Market, by Geography
9.1. Introduction
9.2. Asia-Pacific
9.2.1. China
9.2.2. Japan
9.2.3. South Korea
9.2.4. India
9.2.5. Singapore
9.2.6. Rest of Asia-Pacific
9.3. Europe
9.3.1. Germany
9.3.2. U.K.
9.3.3. France
9.3.4. Italy
9.3.5. Spain
9.3.6. Rest of Europe
9.4. North America
9.4.1. U.S.
9.4.2. Canada
9.5. Latin America
9.5.1. Brazil
9.5.2. Mexico
9.5.3. Rest of Latin America
9.6. Middle East & Africa
9.6.1. UAE
9.6.2. Saudi Arabia
9.6.3. South Africa
9.6.4. Rest of Middle East & Africa
10. Competitive Landscape
10.1. Introduction
10.2. Key Growth Strategies
10.3. Competitive Benchmarking
10.4. Key Players in the Global Zinc–air Battery Market
11. Company Profiles (Business Overview, Financial Overview, Product Portfolio, and Strategic Developments)
11.1. Energizer Holdings, Inc.
11.2. ENZINC, INC.
11.3. The Duracell Company
11.4. ZAF Energy Systems, INC
11.5. Electric Fuel Battery Corporation
11.6. ZeniPower (Zhuhai Zhi Li) Battery Co., Ltd.
11.7. Zinc8 Energy Solutions Inc.
11.8. GPB International Limited
11.9. Iskra
11.10. VARTA AG
11.11. Renata AG SA
11.12. AZA Battery
11.13. Phinergy Ltd.
12. Appendix
12.1. Questionnaire
12.2. Available Customization
List of Tables
Table 1 Market Size and CAGR (USD Million)
Table 2 Global Zinc–air Battery Market Size, by Type, 2021–2030 (USD Million)
Table 3 Global Primary Zinc–air Battery Market Size, by Country/Region, 2021–2030 (USD Million)
Table 4 Global Secondary Zinc–air Battery Market Size, by Country/Region, 2021–2030 (USD Million)
Table 5 Global Zinc–air Battery Market Size, by Voltage Type, 2021–2030 (USD Million)
Table 6 Global Zinc–air Battery Market Size for Up to 12 V, by Country/Region, 2021–2030 (USD Million)
Table 7 Global Zinc–air Battery Market Size for 12 V to 36 V, by Country/Region, 2021–2030 (USD Million)
Table 8 Global Zinc–air Battery Market Size for More than 36 V, by Country/Region, 2021–2030 (USD Million)
Table 9 Global Zinc–air Battery Market Size, by Application, 2021–2030 (USD Million)
Table 10 Global Zinc–air Battery Market Size for Hearing Aids, by Country/Region, 2021–2030 (USD Million)
Table 11 Global Zinc–air Battery Market Size for Alarm System Battery, by Country/Region, 2021–2030 (USD Million)
Table 12 Global Zinc–air Battery Market Size for Electric Fencing, by Country/Region, 2021–2030 (USD Million)
Table 13 Global Zinc–air Battery Market Size for Energy Storage, by Country/Region, 2021–2030 (USD Million)
Table 14 Global Zinc–air Battery Market Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 15 Global Zinc–air Battery Market Size for Backup Power, by Country/Region, 2021–2030 (USD Million)
Table 16 Global Zinc–air Battery Market Size for On-grid Integration with Renewable, by Country/Region, 2021–2030 (USD Million)
Table 17 Global Zinc–air Battery Market Size for Off-grid Energy Storage, by Country/Region, 2021–2030 (USD Million)
Table 18 Global Zinc–air Battery Market Size for IoT Wearables, by Country/Region, 2021–2030 (USD Million)
Table 19 Global Zinc–air Battery Market Size for LED Lamps, by Country/Region, 2021–2030 (USD Million)
Table 20 Global Zinc–air Battery Market Size for Military, by Country/Region, 2021–2030 (USD Million)
Table 21 Global Zinc–air Battery Market Size for Railway & Road Traffic Signaling, by Country/Region, 2021–2030 (USD Million)
Table 22 Global Zinc–air Battery Market Size for Other End Users, by Country/Region, 2021–2030 (USD Million)
Table 23 Global Zinc–air Battery Market Size, by Country/Region, 2021–2030 (USD Million)
Table 24 Asia-Pacific: Zinc–air Battery Size, by Country, 2021–2030 (USD Million)
Table 25 Asia-Pacific: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 26 Asia-Pacific: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 27 Asia-Pacific: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 28 Asia-Pacific: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 29 China: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 30 China: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 31 China: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 32 China: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 33 Japan: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 34 Japan: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 35 Japan: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 36 Japan: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 37 South Korea: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 38 South Korea: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 39 South Korea: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 40 South Korea: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 41 India: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 42 India: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 43 India: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 44 India: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 45 Singapore: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 46 Singapore: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 47 Singapore: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 48 Singapore: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 49 Rest of Asia-Pacific: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 50 Rest of Asia-Pacific: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 51 Rest of Asia-Pacific: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 52 Rest of Asia-Pacific: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 53 Europe: Zinc–air Battery Size, by Country, 2021–2030 (USD Million)
Table 54 Europe: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 55 Europe: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 56 Europe: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 57 Europe: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 58 Germany: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 59 Germany: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 60 Germany: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 61 Germany: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 62 U.K.: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 63 U.K.: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 64 U.K.: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 65 France: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 66 France: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 67 France: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 68 France: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 69 Italy: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 70 Italy: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 71 Italy: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 72 Italy: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 73 Spain: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 74 Spain: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 75 Spain: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 76 Spain: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 77 Rest of Europe: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 78 Rest of Europe: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 79 Rest of Europe: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 80 Rest of Europe: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 81 North America: Zinc–air Battery Size, by Country, 2021–2030 (USD Million)
Table 82 North America: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 83 North America: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 84 North America: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 85 North America: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 86 U.S.: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 87 U.S.: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 88 U.S.: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 89 U.S.: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 90 Canada: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 91 Canada: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 92 Canada: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 93 Canada: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 94 Latin America: Zinc–air Battery Size, by Country, 2021–2030 (USD Million)
Table 95 Latin America: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 96 Latin America: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 97 Latin America: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 98 Latin America: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 99 Brazil: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 100 Brazil: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 101 Brazil: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 102 Brazil: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 103 Mexico: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 104 Mexico: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 105 Mexico: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 106 Mexico: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 107 Rest of Latin America: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 108 Rest of Latin America: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 109 Rest of Latin America: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 110 Rest of Latin America: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 111 Middle East & Africa: Zinc–air Battery Size, by Country, 2021–2030 (USD Million)
Table 112 Middle East & Africa: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 113 Middle East & Africa: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 114 Middle East & Africa: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 115 Middle East & Africa: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 116 UAE: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 117 UAE: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 118 UAE: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 119 UAE: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 120 Saudi Arabia: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 121 Saudi Arabia: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 122 Saudi Arabia: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 123 Saudi Arabia: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 124 South Africa: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 125 South Africa: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 126 South Africa: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 127 South Africa: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 128 Rest of Middle East & Africa: Zinc–air Battery Size, by Type, 2021–2030 (USD Million)
Table 129 Rest of Middle East & Africa: Zinc–air Battery Size, by Voltage Type, 2021–2030 (USD Million)
Table 130 Rest of Middle East & Africa: Zinc–air Battery Size, by Application, 2021–2030 (USD Million)
Table 131 Rest of Middle East & Africa: Zinc–air Battery Size, by Energy Storage Type, 2021–2030 (USD Million)
Table 132 Global Zinc–air Battery Market: Recent Developments, by Company, 2019–2022
List of Figures
Figure 1 Currency and Limitations
Figure 2 Research Process
Figure 3 Key Secondary Sources
Figure 4 Primary Research Techniques
Figure 5 Key Executives Interviewed
Figure 6 Market Size Estimation
Figure 7 Key Insights
Figure 8 Zinc–air Battery Market, by Type, 2024 vs. 2030 (USD Million)
Figure 9 Zinc–air Battery Market, by Voltage Type, 2024 vs. 2030 (USD Million)
Figure 10 Zinc–air Battery Market, by Application, 2024 vs. 2030 (USD Million)
Figure 11 Geographic Snapshot: Zinc–air Battery Market, (Value Share & CAGR)
Figure 12 The Impact of COVID-19 on the Zinc–air Battery Market
Figure 13 Zinc–air Battery Value Chain
Figure 14 Zinc–air Battery Market Size, by Type, 2024–2030 (USD Million)
Figure 15 Zinc–air Battery Market Size, by Voltage Type, 2024–2030 (USD Million)
Figure 16 Zinc–air Battery Market Size, by Application, 2024–2030 (USD Million)
Figure 17 Zinc–air Battery Market Size, by Geography, 2024–2030 (USD Million)
Figure 18 Key Growth Strategies Adopted by Leading Players, 2019–2022
Figure 19 Market Share Analysis: Zinc–air Battery Market, 2022
Figure 20 Energizer Holdings, Inc.: Financial Overview (2021)
Figure 21 VARTA AG: Financial Overview (2021)
Figure 22 Phinergy Ltd.: Financial Overview (2021)
Figure 23 Zinc8 Energy Solutions Inc.: Financial Overview (2021)
Published Date: Nov-2024
Published Date: Sep-2024
Published Date: Jul-2024
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Published Date: Jan-2024
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