This third webinar in the series 'CCS in Developing Countries' was presented by the World Bank.
Deploying CCS in developing countries is critically important. The International Energy Agency estimates that to achieve global emissions reduction targets 70% of CCS projects will be in non-OECD countries by 2050.
CCS faces a number of challenges, in all countries, but particularly in developing countries. This webinar discussed some of these challenges and barriers using South Africa as a case study. South Africa is working towards a Test Injection Project and subsequently a Carbon Capture and Sequestration Project. The World Bank considered it important to understand a set of constraints, including regulatory, technical, economic, human capacity, etc. to realization of CCS demonstration and commercialization, and how the CCS development will look like in the South African context, out to 2050. A techno-economic assessment has been undertaken to gain this understanding.
The techno-economic assessment explored CCS deployment in six relevant industries in South Africa, and assessed projected scenarios associated with key issues of interest (such as cost, impact on electricity prices, timeframes etc). The key output from the techno-economic study was a techno-economic model, supported by the data sets, specifically for South Africa. The potential storage site capacity has been analysed to provide a strong indication of the likely storage capacity available within physical and economic constraints.
Webinar: The Global Status of CCS: 2014 - Overcoming challenges in EuropeGlobal CCS Institute
The Global CCS Institute was pleased to announce the release of our annual Global Status of CCS: 2014 report, and invite you to join the Institute’s Europe, Middle East and Africa Team for a webinar summarising the main themes of the report.
The Institute’s General Manager for the region, Andrew Purvis, presented a summary of the report, and was then joined by a number of our subject matter experts to discuss issues raised during the presentation by our global and regional audience.
Chairman: John Scowcroft, Executive Adviser/ UNFCCC Specialist
Presentation: Andrew Purvis, General Manager
Expert Panel:
Kirsty Anderson: Public Engagement
Silvia Vaghi: Policy and Regulation
Guido Magneschi: Capture
Chris Consoli: Storage
The report provides a detailed overview of the current status of CCS projects worldwide and provides a comprehensive overview of global and regional developments in CCS technologies and the policies, laws and regulations that must drive the demonstration and deployment of technologies to support global climate mitigation efforts.
Providing a number of key recommendations for decision makers, The Global Status of CCS: 2014 report is an important reference guide for industry, government, research bodies and the broader community.
This third webinar in the series 'CCS in Developing Countries' was presented by the World Bank.
Deploying CCS in developing countries is critically important. The International Energy Agency estimates that to achieve global emissions reduction targets 70% of CCS projects will be in non-OECD countries by 2050.
CCS faces a number of challenges, in all countries, but particularly in developing countries. This webinar discussed some of these challenges and barriers using South Africa as a case study. South Africa is working towards a Test Injection Project and subsequently a Carbon Capture and Sequestration Project. The World Bank considered it important to understand a set of constraints, including regulatory, technical, economic, human capacity, etc. to realization of CCS demonstration and commercialization, and how the CCS development will look like in the South African context, out to 2050. A techno-economic assessment has been undertaken to gain this understanding.
The techno-economic assessment explored CCS deployment in six relevant industries in South Africa, and assessed projected scenarios associated with key issues of interest (such as cost, impact on electricity prices, timeframes etc). The key output from the techno-economic study was a techno-economic model, supported by the data sets, specifically for South Africa. The potential storage site capacity has been analysed to provide a strong indication of the likely storage capacity available within physical and economic constraints.
Webinar: The Global Status of CCS: 2014 - Overcoming challenges in EuropeGlobal CCS Institute
The Global CCS Institute was pleased to announce the release of our annual Global Status of CCS: 2014 report, and invite you to join the Institute’s Europe, Middle East and Africa Team for a webinar summarising the main themes of the report.
The Institute’s General Manager for the region, Andrew Purvis, presented a summary of the report, and was then joined by a number of our subject matter experts to discuss issues raised during the presentation by our global and regional audience.
Chairman: John Scowcroft, Executive Adviser/ UNFCCC Specialist
Presentation: Andrew Purvis, General Manager
Expert Panel:
Kirsty Anderson: Public Engagement
Silvia Vaghi: Policy and Regulation
Guido Magneschi: Capture
Chris Consoli: Storage
The report provides a detailed overview of the current status of CCS projects worldwide and provides a comprehensive overview of global and regional developments in CCS technologies and the policies, laws and regulations that must drive the demonstration and deployment of technologies to support global climate mitigation efforts.
Providing a number of key recommendations for decision makers, The Global Status of CCS: 2014 report is an important reference guide for industry, government, research bodies and the broader community.
Green Hydrogen Production Powering a Sustainable Futureadityakumar92483
The term green hydrogen has gained prominence in recent discussions about sustainable energy solutions. This article explores the various aspects of green hydrogen production, its advantages, challenges, and its role in addressing environmental concerns.
BHC Conference : Joining forces on Hydrogen – Belgium, Benelux and its neighb...Cluster TWEED
The Belgian Hydrogen Council (BHC) held its first public conference in Brussels, organized by WaterstofNet and Cluster TWEED.
With the BHC, launched in March 2023, WaterstofNet and Cluster TWEED joined forces between their regional clusters Waterstof Industrie Cluster and H2Hub Wallonia under the umbrella of the Belgian Hydrogen Council.
With around 400 registrations from companies, research institutions, governments, foreign embassies and journalists, the Dockx Dome Event hall was packed.
On the program for the day: opening speeches by regional Ministers Jo Brouns and Philippe Henry, 6 key note speeches by Tom Hautekiet (president of the BHC), Steven Libbrecht (CEO Hydrogen Council), Namibian ambassador Mekondjo Kaapanda-Girnus, CEO of CMB Alexander Saverys, professor at University de Liège Aurore Richel and Ruud Kempener who works at the cabinet of European Commissioner Kadri Simson. We had the honor of welcoming Federal Minister Tinne Van der Straeten to close our conference with an exiting speech.
The speeches were complemented by 4 dynamic panel discussions on Belgium as a large hydrogen offtake, a key technology supplier, a world leader on hydrogen R&D and as an important partner for regional, European and international collaboration.
The main message throughout the day: Realistic ambitions over euphoria !
The attendees were also introduced to a brand new BHC company directory brochure wherein we showcase our Belgian companies and expertise around the Belgian value chain.
Thanks to all speakers and participants to make this a successful first edition of the Belgian Hydrogen Council conference !
Green Hydrogen Market worth $7,314 million by 2027 growing at a CAGR of 61.0%. The mobility industry accounted for a share of 58% in terms of value in the Green Hydrogen Market in 2022 and is projected to reach USD 4,550 million by 2027 at a CAGR of 63.4%. The power sector is projected to witness the second-highest CAGR of 63.0%, growing from USD 88.5 million in 2022 to USD 1018 million by 2027.
Growing at a 61.0% CAGR, the green hydrogen market is projected to reach $7,314 million by 2027. The transportation sector is projected to hold a USD 4,550 million value share in the green hydrogen market by 2027, growing at a compound annual growth rate (CAGR) of 63.4% from its 58% value share in 2022.
Webinar: Global Status of CCS: 2014 - Driving development in the Asia Pacific Global CCS Institute
The Global CCS Institute launched The Global Status of CCS: 2014 report on 5 November 2014.
2014 has been a pivotal year for CCS as it is now a reality in the power industry. The Global Status of CCS: 2014 report provides a comprehensive overview of global and regional developments in CCS technologies and the policies, laws and regulations that must drive the demonstration and deployment of technologies to support global climate mitigation efforts.
Clare Penrose, the Institute's General Manager - Asia Pacific presented a summary of the report and discuss the key recommendations, an important reference for decision makers for the year ahead.
Ms Penrose was joined by the Institute’s subject matter experts who were available to answer questions:
Chris Consoli: CO2 Storage
Ian Havercroft: CCS Laws and Regulations
Lawrence Irlam: CCS Policy and Economics
Jessica Morton: CCS Public Engagement
Tony Zhang: CO2 Capture
Using recycled concrete aggregates (RCA) for pavements is crucial to achieving sustainability. Implementing RCA for new pavement can minimize carbon footprint, conserve natural resources, reduce harmful emissions, and lower life cycle costs. Compared to natural aggregate (NA), RCA pavement has fewer comprehensive studies and sustainability assessments.
Green Hydrogen Production Powering a Sustainable Futureadityakumar92483
The term green hydrogen has gained prominence in recent discussions about sustainable energy solutions. This article explores the various aspects of green hydrogen production, its advantages, challenges, and its role in addressing environmental concerns.
BHC Conference : Joining forces on Hydrogen – Belgium, Benelux and its neighb...Cluster TWEED
The Belgian Hydrogen Council (BHC) held its first public conference in Brussels, organized by WaterstofNet and Cluster TWEED.
With the BHC, launched in March 2023, WaterstofNet and Cluster TWEED joined forces between their regional clusters Waterstof Industrie Cluster and H2Hub Wallonia under the umbrella of the Belgian Hydrogen Council.
With around 400 registrations from companies, research institutions, governments, foreign embassies and journalists, the Dockx Dome Event hall was packed.
On the program for the day: opening speeches by regional Ministers Jo Brouns and Philippe Henry, 6 key note speeches by Tom Hautekiet (president of the BHC), Steven Libbrecht (CEO Hydrogen Council), Namibian ambassador Mekondjo Kaapanda-Girnus, CEO of CMB Alexander Saverys, professor at University de Liège Aurore Richel and Ruud Kempener who works at the cabinet of European Commissioner Kadri Simson. We had the honor of welcoming Federal Minister Tinne Van der Straeten to close our conference with an exiting speech.
The speeches were complemented by 4 dynamic panel discussions on Belgium as a large hydrogen offtake, a key technology supplier, a world leader on hydrogen R&D and as an important partner for regional, European and international collaboration.
The main message throughout the day: Realistic ambitions over euphoria !
The attendees were also introduced to a brand new BHC company directory brochure wherein we showcase our Belgian companies and expertise around the Belgian value chain.
Thanks to all speakers and participants to make this a successful first edition of the Belgian Hydrogen Council conference !
Green Hydrogen Market worth $7,314 million by 2027 growing at a CAGR of 61.0%. The mobility industry accounted for a share of 58% in terms of value in the Green Hydrogen Market in 2022 and is projected to reach USD 4,550 million by 2027 at a CAGR of 63.4%. The power sector is projected to witness the second-highest CAGR of 63.0%, growing from USD 88.5 million in 2022 to USD 1018 million by 2027.
Growing at a 61.0% CAGR, the green hydrogen market is projected to reach $7,314 million by 2027. The transportation sector is projected to hold a USD 4,550 million value share in the green hydrogen market by 2027, growing at a compound annual growth rate (CAGR) of 63.4% from its 58% value share in 2022.
Webinar: Global Status of CCS: 2014 - Driving development in the Asia Pacific Global CCS Institute
The Global CCS Institute launched The Global Status of CCS: 2014 report on 5 November 2014.
2014 has been a pivotal year for CCS as it is now a reality in the power industry. The Global Status of CCS: 2014 report provides a comprehensive overview of global and regional developments in CCS technologies and the policies, laws and regulations that must drive the demonstration and deployment of technologies to support global climate mitigation efforts.
Clare Penrose, the Institute's General Manager - Asia Pacific presented a summary of the report and discuss the key recommendations, an important reference for decision makers for the year ahead.
Ms Penrose was joined by the Institute’s subject matter experts who were available to answer questions:
Chris Consoli: CO2 Storage
Ian Havercroft: CCS Laws and Regulations
Lawrence Irlam: CCS Policy and Economics
Jessica Morton: CCS Public Engagement
Tony Zhang: CO2 Capture
Using recycled concrete aggregates (RCA) for pavements is crucial to achieving sustainability. Implementing RCA for new pavement can minimize carbon footprint, conserve natural resources, reduce harmful emissions, and lower life cycle costs. Compared to natural aggregate (NA), RCA pavement has fewer comprehensive studies and sustainability assessments.
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)MdTanvirMahtab2
This presentation is about the working procedure of Shahjalal Fertilizer Company Limited (SFCL). A Govt. owned Company of Bangladesh Chemical Industries Corporation under Ministry of Industries.
Cosmetic shop management system project report.pdfKamal Acharya
Buying new cosmetic products is difficult. It can even be scary for those who have sensitive skin and are prone to skin trouble. The information needed to alleviate this problem is on the back of each product, but it's thought to interpret those ingredient lists unless you have a background in chemistry.
Instead of buying and hoping for the best, we can use data science to help us predict which products may be good fits for us. It includes various function programs to do the above mentioned tasks.
Data file handling has been effectively used in the program.
The automated cosmetic shop management system should deal with the automation of general workflow and administration process of the shop. The main processes of the system focus on customer's request where the system is able to search the most appropriate products and deliver it to the customers. It should help the employees to quickly identify the list of cosmetic product that have reached the minimum quantity and also keep a track of expired date for each cosmetic product. It should help the employees to find the rack number in which the product is placed.It is also Faster and more efficient way.
Student information management system project report ii.pdfKamal Acharya
Our project explains about the student management. This project mainly explains the various actions related to student details. This project shows some ease in adding, editing and deleting the student details. It also provides a less time consuming process for viewing, adding, editing and deleting the marks of the students.
Immunizing Image Classifiers Against Localized Adversary Attacksgerogepatton
This paper addresses the vulnerability of deep learning models, particularly convolutional neural networks
(CNN)s, to adversarial attacks and presents a proactive training technique designed to counter them. We
introduce a novel volumization algorithm, which transforms 2D images into 3D volumetric representations.
When combined with 3D convolution and deep curriculum learning optimization (CLO), itsignificantly improves
the immunity of models against localized universal attacks by up to 40%. We evaluate our proposed approach
using contemporary CNN architectures and the modified Canadian Institute for Advanced Research (CIFAR-10
and CIFAR-100) and ImageNet Large Scale Visual Recognition Challenge (ILSVRC12) datasets, showcasing
accuracy improvements over previous techniques. The results indicate that the combination of the volumetric
input and curriculum learning holds significant promise for mitigating adversarial attacks without necessitating
adversary training.
NUMERICAL SIMULATIONS OF HEAT AND MASS TRANSFER IN CONDENSING HEAT EXCHANGERS...ssuser7dcef0
Power plants release a large amount of water vapor into the
atmosphere through the stack. The flue gas can be a potential
source for obtaining much needed cooling water for a power
plant. If a power plant could recover and reuse a portion of this
moisture, it could reduce its total cooling water intake
requirement. One of the most practical way to recover water
from flue gas is to use a condensing heat exchanger. The power
plant could also recover latent heat due to condensation as well
as sensible heat due to lowering the flue gas exit temperature.
Additionally, harmful acids released from the stack can be
reduced in a condensing heat exchanger by acid condensation. reduced in a condensing heat exchanger by acid condensation.
Condensation of vapors in flue gas is a complicated
phenomenon since heat and mass transfer of water vapor and
various acids simultaneously occur in the presence of noncondensable
gases such as nitrogen and oxygen. Design of a
condenser depends on the knowledge and understanding of the
heat and mass transfer processes. A computer program for
numerical simulations of water (H2O) and sulfuric acid (H2SO4)
condensation in a flue gas condensing heat exchanger was
developed using MATLAB. Governing equations based on
mass and energy balances for the system were derived to
predict variables such as flue gas exit temperature, cooling
water outlet temperature, mole fraction and condensation rates
of water and sulfuric acid vapors. The equations were solved
using an iterative solution technique with calculations of heat
and mass transfer coefficients and physical properties.
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdffxintegritypublishin
Advancements in technology unveil a myriad of electrical and electronic breakthroughs geared towards efficiently harnessing limited resources to meet human energy demands. The optimization of hybrid solar PV panels and pumped hydro energy supply systems plays a pivotal role in utilizing natural resources effectively. This initiative not only benefits humanity but also fosters environmental sustainability. The study investigated the design optimization of these hybrid systems, focusing on understanding solar radiation patterns, identifying geographical influences on solar radiation, formulating a mathematical model for system optimization, and determining the optimal configuration of PV panels and pumped hydro storage. Through a comparative analysis approach and eight weeks of data collection, the study addressed key research questions related to solar radiation patterns and optimal system design. The findings highlighted regions with heightened solar radiation levels, showcasing substantial potential for power generation and emphasizing the system's efficiency. Optimizing system design significantly boosted power generation, promoted renewable energy utilization, and enhanced energy storage capacity. The study underscored the benefits of optimizing hybrid solar PV panels and pumped hydro energy supply systems for sustainable energy usage. Optimizing the design of solar PV panels and pumped hydro energy supply systems as examined across diverse climatic conditions in a developing country, not only enhances power generation but also improves the integration of renewable energy sources and boosts energy storage capacities, particularly beneficial for less economically prosperous regions. Additionally, the study provides valuable insights for advancing energy research in economically viable areas. Recommendations included conducting site-specific assessments, utilizing advanced modeling tools, implementing regular maintenance protocols, and enhancing communication among system components.
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1. MINISTRY OF INDUSTRY AND TRADE
INSTITUTE OF ENERGY
HA NOI – 7/2021 1
GREEN HYDROGEN DEVELOPMENT IN
VIET NAM - WHY AND HOW?
Prepared and presented by:
Mr. Le Viet Cuong MSc.
Deputy Director General
2. 2
TABLE OF CONTENTS
1. Identification and Definition
2. Basic background
3. Current situation and readiness
4. IE’s action and orientation
5. Ideas & Recommendations
3. 3
Identification and Definition
1. Hydrogen includes hydrogen in molecular form (pure hydrogen) and other
hydrogen derivatives such as synthetic methane (CH4), ammonia (NH3)…
2. Classification of hydrogen:
Grey hydrogen: produced by splitting natural gas into hydrogen and CO2, but
the CO2 is not being captured and is released into the atmosphere.
Blue hydrogen: produced by splitting natural gas into hydrogen and CO2, but
the CO2 is captured and then stored.
Green hydrogen: produced by splitting water by electrolysis this process to
make green hydrogen is powered by renewable energy sources, such as wind
or solar.
Brown hydrogen, Pink hydrogen, yellow hydrogen, multi-colored
hydrogen…
-> Blue hydrogen and green hydrogen are mentioned
4. BASIC BACKGROUND
4
1. Politburo’s Resolution 55-NQ/TW dated 11/02/2020 on the Orientation of the Viet
Nam’s National Energy Development Strategy to 2030 and outlook to 2045 “Conduct
technology research and develop plans for piloting electricity generation using
hydrogen and encouraging the use of hydrogen consistent with the global trends”
2. Goverment’s Resolution 140-NQ/TW dated 02/10/2020 for implementing
Resolution No 55:
Making Law on Renewable Energy
Studying technologies, develop some pilot projects for producing and incentivizing
to use hydrogen energy in line with the general trend of the world
3. Global trends:
Over 30 countries have released hydrogen roadmaps,
Many up-to-date reports on hydrogen by Europe, IEA, Hydrogen Council (109
members are global leading companies)…
Hydrogen plays more and more important role in energy transition in the future
5. CURRENT SITUATION AND READINESS
5
1. Infrastructure:
Port & storage, pipeline system for hydrogen: N/a at present but based on Draft
of master plan on development of Vietnam's seaport system in the period of 2021-
2030, with a vision to 2050, LNG port storage system will be developed to meet
growth in the period 2025-2035.
Power source: Draft of PDP VIII, share of renewable energy (solar & wind)
increase in power generation structure to 2030, 2045 to exploit the abundant
primary resources.
Power grid: Ensure fulfillment the development of power source and load demand.
2. Legal framework: Not from energy point of view but chemical industry only, tax
incentives from high-technology legal (Decision 38/2020/QĐ-TTg dated 30/12/2020)
3. Human resources: Moderate R&D in fuel cells only at lab scale but very limited in
other sectors.
6. IE’S ACTION AND ORIENTATION
6
1. R&D activities: Building hydrogen team to conduct R&D projects on
Green hydrogen production in the power system (generation side and
consumption side)
Infrastructure development for hydrogen;
Legal framework for hydrogen development;
Green hydrogen production in consistent with renewable power source
development…
2. Consultation service to private sector
Studies on opportunities to invest in the green hydrogen
Provide Pre F/S studies on green hydrogen in Viet Nam
3. Contribution to the governor’s making on legal framework: Taking advantage
of outcomes from R&D activities and consultation service on law making process.
7. IDEAS & RECOMMENDATIONS
7
1. Government’s agencies
Establish a role for hydrogen in long-term energy strategies on making legal
framework: inter-ministerial & multi sector but single door methods.
Eliminate unnecessary regulatory barriers and harmonise standards: “Gain no
pain”.
Key sectors include refining, chemicals, iron and steel, freight and long-distance
transport, buildings, and power generation and storage.
2. International agencies
International co-operation is vital to accelerate the growth of clean hydrogen
around the world
8. IDEAS & RECOMMENDATIONS
8
3. Domestic universities and institutions
Enhance link among universities and institutions
Awareness arising
4. Enterprise and private sector:
Should set-up clear long-term goals
9. GIỚI THIỆU CHUNG
9
THANK YOU FOR YOUR
ATTENTION!
MINISTRY OF INDUSTRY AND TRADE
INSTITUTE OF ENERGY