Blockchain in Energy Market
The global Blockchain in Energy Market is forecasted to be worth USD 8,761.4 Million by 2027, according to a current analysis by Emergen Research. During the forecasted timeline, the global blockchain in the energy market is expected to rise substantially, owing to the rising adoption of blockchain in the energy industry. The growing safety concerns related to automated grids is anticipated to further propel the market growth in the forecast period. Besides, the rising internet of things technology penetration is likely to drive the market growth shortly.
The rising adoption of blockchain in the energy industry and growing safety concerns related to automated grids are driving the demand for the market.
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The report covers in-depth profiling of the prominent players of the industry and includes Infosys Limited, SAP SE, Oracle Corporation, Accenture plc, WePower UAB, IBM Corporation, Microsoft Corporation, Deloitte Touche Tohmatsu Limited, LO3 Energy, Inc., and BigchainDB GmbH, among others. Furthermore, it offers a detailed analysis of the competitive landscape of the market with massive data on recent trends, technological developments, product advancements, methodologies, and strategic business decisions such as mergers and acquisitions, joint ventures, collaborations, and product launches, among others.
Emergen Research has segmented the global Blockchain in Energy Market on the basis of type, component, application, and end-use:
The report further covers extensive regional analysis of the Blockchain in Energy industry with regards to market scope, market size, market share, revenue generation, production and consumption ratio, supply and demand ratio, and analysis of the key players operating in those regions. The regional analysis covers North America, Europe, AsiaPacific, Latin America, and Middle East & Africa.
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Key questions answered in the Report:
The report studies dynamic market elements such as drivers, restraints, challenges, threats, opportunities, and growth prospects, among others. The report presents the statistical data in an organized format with pictorial representations in charts, graphs, tables, figures, and diagrams. The report offers strategic recommendations to the new entrants as well as established players to assist them in capitalizing on the advantageous opportunities. The detailed analysis of the competitive landscape offers a competitive advantage to the reader and helps them gain a better understanding of the industry.
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Table of Content
Chapter 1. Methodology & Sources 1.1. Market Definition 1.2. Research Scope 1.3. Methodology 1.4. Research Sources 1.4.1. Primary 1.4.2. Secondary 1.4.3. Paid Sources 1.5. Market Estimation Technique Chapter 2. Executive Summary 2.1. Summary Snapshot, 2019-2027 Chapter 3. Key Insights Chapter 4. Blockchain in Energy Market Segmentation & Impact Analysis 4.1. Blockchain in Energy Market Segmentation Analysis 4.2. Industrial Outlook 4.2.1. Market indicators analysis 4.2.2. Market drivers analysis 4.2.2.1. The rise in electric vehicle influx voltage loads 4.2.2.2. Escalating adoption of blockchain in the energy industry 4.2.2.3. Increasing security concerns 4.2.2.4. The rise in the distributed power generation 4.2.3. Market restraints analysis 4.2.3.1. Lack of regulatory standards 4.2.3.2. Uncertain regulatory landscape 4.3. Technological Insights 4.4. Regulatory Framework 4.5. Porter’s Five Forces Analysis 4.6. Competitive Metric Space Analysis 4.7. Price trend Analysis 4.8. Covid-19 Impact Analysis
Chapter 5. Blockchain in Energy Market By Type Insights & Trends Revenue (USD Million) 5.1. Type Dynamics & Market Share, 2019 & 2027 5.1.1. Public 5.1.2. Private
Chapter 6. Blockchain in Energy Market By Component Insights & Trends Revenue (USD Million) 6.1. Component Dynamics & Market Share, 2019 & 2027 6.1.1. Services 6.1.2. Platform
Chapter 7. Blockchain in Energy Market By Application Insights & Trends Revenue (USD Million) 7.1. Application Dynamics & Market Share, 2019 & 2027 7.1.1. Peer-To-Peer Transaction 7.1.2. Grid Transactions 7.1.3. Energy Financing 7.1.4. Electric Vehicle 7.1.5. Sustainability Attribution 7.1.6. Others
CONTINUED…!!
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