Blockchain in Energy Industry scope 2019, Market Opportunities, Share Analysis up to 2025

The Blockchain in Energy Market Forecast Report provides details analysis of keyword industry which will accelerate your business. Blockchain in Energy market report covers the current state of business and the growth prospects of the worldwide keyword Market. The Blockchain in Energy market report lists the leading competitors and provides the Industry pitfall and challenges, Growth potential analysis of the key factors influencing the market.

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Blockchain in Energy Market is anticipated to exceed USD 3 billion by 2025. Growing complexity of power grids owing to increasing integration of renewable energy sources along with burgeoning demand for energy efficient systems for optimizing the grid operations will boost the blockchain in energy market. In addition, increased focus of the utilities toward the technology adoption coupled with massive propensity of the technology to direct constructive transformation will complement the business landscape. Since 2017, over 70 pilot projects have been deployed and more than 140 startups have been announced globally.


Blockchain in Energy Industry scope 2019, Market Opportunities, Share Analysis up to 2025

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Growing demand to achieve balance between energy supply and demand mismatch coupled with increasing security concerns owing to ongoing advancements in internet connected devices will accelerate the blockchain in energy market growth. Moreover, increasing deployment of the blockchain projects globally coupled with accelerating investments from various power giants toward its adoption will stimulate the technology demand. For instance, from the second quarters of 2017 till the first quarter of 2018, venture capitals and ICOs invested nearly USD 271 million toward blockchain based applications.

Emergence of peer-to-peer platform along with the unveiling of smart meters have initiated disintermediation, thereby driving the blockchain in energy market. Emerging focus of power utilities to explore thy potential benefits of the technology coupled with increasing percentage of empowered prosumers existing in the renewable power trading will further foster the industry growth. For instance, residents in Bangkok are involved in peer-to-peer energy trading and have a total generating capacity of about 635 kW.

Blockchain in energy market from private category in 2025 will grow over 45%. Strict control to reduce the downtime along with massive level of security provided by this platform are some of the key parameters stimulating the technology adoption. Moreover, lesser load and limited participants increases its competence to achieve faster transaction rate in comparison to its counterpart, thereby enhancing the business growth.

Oil & gas blockchain in energy market will exhibit substantial growth on account of rising concerns to enhance the trade accuracy along with technical efficiency of the technology to improve accessibility to trade data. Extensive ability to improve the scheduling and back office efficiency along with subsequent reduction in the working capital cycle will accelerate the product penetration across the industry. Furthermore, growing emphasis to eradicate the need for clearinghouses and confirmation processing combined with its potential to provide high degree of security, accuracy and reliability of transactions will propel the business outlook.

Accelerating investments toward the adoption of the technology coupled with enhanced initiatives toward exploring and promoting its research & development will drive the Europe blockchain in energy market. Enhanced focus to promote energy efficiency, privacy, cybersecurity and interoperability to implement & improve the current technology will further propel the industry landscape.

Eminent players operating in the blockchain in energy market comprise of Power Ledger, Limited, Oracle, Grid Singularity, Accenture, Greeneum, Drift, SAP, Electron, Grid+, Sun Exchange, WePower, LO3 Energy, EnergiMine, Conjoule GmbH amongst others.

Report Content Chapter 1 Methodology & Scope 1.1 Methodology 1.2 Market definitions 1.3 Market estimates & forecast parameters 1.4 Data sources 1.4.1 Primary 1.4.2 Secondary 1.4.2.1 Paid sources 1.4.2.2 Public sources Chapter 2 Executive Summary 2.1 Blockchain in energy market 360 degree synopsis, 2017 – 2025 2.1.1 Business trends 2.1.2 Category trends 2.1.3 Application trends 2.1.4 Regional trends Chapter 3 Blockchain in Energy Industry Insights 3.1 Industry segmentation 3.2 Industry landscape, 2017 – 2025 (USD Million) 3.3 Working of blockchain 3.3.1 Vendor Matrix 3.4 Regulatory landscape 3.4.1 Europe 3.4.1.1 Policies and Directives on Renewable Energies in the EU 3.4.1.1.1 2013/347/EC – Trans-European Energy Infrastructure 3.4.1.1.2 2009/28/EC – Renewable Energy Directive 3.4.1.1.3 2001/77/EC – Renewable Energy Sources in the Internal Electricity 3.4.1.2 Paris agreement 3.4.2 European Commission 3.4.2.1 General Data Protection Regulation (GDPR): 2016/679 3.4.2.2 Renewable Energy Sources Act (EEG 2017) 3.4.2.3 Payment Service Directive (PSD1) 3.4.2.4 Payment Services Directive (PSD2) 3.4.3 U.S. 3.4.3.1 HOUSE BILL 2417 3.4.3.2 Article 5: 3.4.3.3 Senate Bill No. 398 3.4.3.4 Senate Bill 69 3.4.3.5 Energy Policy Act, 2005 3.4.3.5.1 IEEE1547 – Standard for Interconnecting Distributed Resources with Electric Power Systems 3.4.4 Canada 3.4.4.1 CAN/CSA-C22.2 No. 257-06 3.4.4.2 CAN/CSA-C22.3 No. 9-08 3.4.5 China 3.4.5.1 13th Five-Year Plan 3.4.6 Japan 3.4.6.1 New Growth Strategy in 2011 3.4.7 UAE 3.4.7.1 Emirates Blockchain Strategy 2021 3.5 Innovation and technology landscape 3.5.1 Grid+ 3.5.2 Oracle 3.5.3 Electron 3.5.4 Energi Mine 3.5.5 Sun Exchange 3.5.6 Greeneum 3.6 Potential of blockchain for the energy sector 3.7 History of development of blockchain technology 3.8 Start-Up Companies & Initiatives Utilizing Blockchain in the Energy Sector 3.9 Advantages of Blockchain Over Current Data Management Approaches 3.10 Alignment of Emerging Energy Issues and Core Blockchain Capabilities Resulting in Promising Energy Sector Applications of Blockchain 3.11 Industry impact forces 3.11.1 Growth drivers 3.11.1.1 Increased automation with data integrity and security 3.11.1.2 Rising Security Concerns Across the Globe 3.11.1.3 Growth in decentralized energy generation 3.11.2 Industry pitfalls & challenges 3.11.2.1 Lack of A Common Set of Regulatory Standards and Uncertain Regulatory Landscape 3.12 Blockchain is not Bitcoin 3.13 Growth potential analysis 3.14 Competitive landscape, 2017 3.14.1 Strategy dashboard 3.14.1.1 Electron 3.14.1.2 Power Ledger 3.14.1.3 LO3 Energy 3.14.1.4 WePower 3.14.1.5 Accenture 3.15 PESTEL Analysis Chapter 4 Blockchain in Energy Market, By Category 4.1 Blockchain in energy market share by category, 2018 & 2025 4.2 Private 4.2.1 Global market from private, 2017 – 2025 4.2.2 Global market from private, by region, 2017 – 2025 4.3 Public 4.3.1 Global market from public, 2017 – 2025 4.3.2 Global market from public, by region, 2017 – 2025 Chapter 5 Blockchain in Energy Market, By Application 5.1 Blockchain in energy market share by application, 2018 & 2025 5.2 Power 5.2.1 Global market from power, 2017 – 2025 5.2.2 Global market from power, by region, 2017 – 2025 5.2.3 Grid transaction 5.2.3.1 Global market from grid transaction, 2017 – 2025 5.2.3.2 Global market from grid transaction, by region, 2017 – 2025 5.2.4 Peer-to-peer 5.2.4.1 Global market from peer-to-peer, 2017 – 2025 5.2.4.2 Global market from peer-to-peer, by region, 2017 – 2025 5.2.5 Energy financing 5.2.5.1 Global market from energy financing, 2017 – 2025 5.2.5.2 Global market from energy financing, by region, 2017 – 2025 5.2.6 Sustainability attribution 5.2.6.1 Global market from sustainability attribution, 2017 – 2025 5.2.6.2 Global market from sustainability attribution, by region, 2017 – 2025 5.2.7 Electric vehicle charging 5.2.7.1 Global market from electric vehicle charging, 2017 – 2025 5.2.7.2 Global market from electric vehicle charging, by region, 2017 – 2025 5.2.8 Others 5.2.8.1 Global market from others, 2017 – 2025 5.2.8.2 Global market from others, by region, 2017 – 2025 5.3 Oil & Gas 5.3.1 Global market from oil & gas, 2017 – 2025 5.3.2 Global market from oil & gas, by region, 2017 – 2025 5.3.3 Supply chain 5.3.3.1 Global market from supply chain, 2017 – 2025 5.3.3.2 Global market from supply chain, by region, 2017 – 2025 5.3.4 Operations 5.3.4.1 Global market from operations, 2017 – 2025 5.3.4.2 Global market from operations, by region, 2017 – 2025 5.3.5 Trading 5.3.5.1 Global market from trading, 2017 – 2025 5.3.5.2 Global market from trading, by region, 2017 – 2025 5.3.6 Security 5.3.6.1 Global market from security, 2017 – 2025 5.3.6.2 Global market from security, by region, 2017 – 2025

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