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Transition to Renewables Calls for New Approach to Energy Security

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Transition to Renewables Calls for New Approach to Energy Security

 

 

 

 

 

 

Evolving concept of energy security must address energy demand, system flexibility, technology access and infrastructure development, says IRENA

 

The transition away from fossil fuels to renewables requires a new interpretation of the concept of energy security, according to a new report by the International Renewable Energy Agency (IRENA) published today.

 

Geopolitics of the energy transition: Energy security outlines a multi-dimensional energy security concept for the 21st century. The systemic nature of the ongoing transition and its wide-ranging social and economic impacts warrant holistic thinking that encompasses technology and its value chains, system flexibility, climate change effects, energy demand, and human security among other things.

 

IRENA Director-General, Francesco La Camera, said: “The energy system is undergoing a profound transformation, and renewables are bound to bring greater resilience through decentralisation and greater reliance on domestic sources. It is vital to proactively shape this resilience with foresighted policies and investments. While lessons from the fossil fuel era can inform some aspects of the transition, a holistic approach that considers the unique attributes of renewables and modernises economic, social, and diplomatic strategies is necessary.”

 

He added, “The evolving energy system calls for a security strategy that integrates environmental concerns, economic trends, and social ramifications. Technologies, not fuels, are the centerpiece of the new energy system. By revisiting traditional security approaches and identifying emerging factors, this report seeks to equip policy makers with a better understanding of energy security in the era of renewables.”

 

Under IRENA’s World Energy Transitions Outlook, renewables would comprise three-quarters of the global energy mix by 2050. Electricity would become the main energy carrier, meeting more than 50% of consumption by 2050. The renewables-based system is characterised by high electrification and efficiency, complemented by green hydrogen and sustainable biomass.

 

IRENA also estimates that 11 terawatts of installed renewable power capacity will be needed by 2030, requiring a tripling of renewable power and a doubling of energy efficiency, as affirmed at COP28.

 

As a result, major geopolitical shifts are set to profoundly influence energy trade dynamics, alter international dependencies, and reshape the geopolitical landscape. Cross-border trade in electricity will rise in prominence, fostering mutual benefits, in contrast to the asymmetric dependencies of the oil and gas sector.

 

IRENA’s new report indicates that energy security in a renewables-based era will need to evolve in several key areas.

 

It states that resilient technology supply chains will be vital to support the transition, for both developed and developing countries. Furthermore, security and political considerations will hold the key to the successful deployment of the infrastructure required to support flexible renewables-based energy systems. This infrastructure must he highly resilient to extreme weather events, while cyber threats, physical attacks or, a combination of both, rains prominence in highly electrified and digitilised systems.

 

Human security will be equally important, according to the report, particularly for energy end-users, including in the areas of water and food insecurity, disease, economic marginalisation, inequality and energy poverty.

 

In addition, energy demand, particularly in Africa and Asia, has profound geopolitical implications for global energy markets, trade patterns and strategic alliances, the report states. Managing it through energy efficiency policies and investments can help mitigate competition over resources and markets.

 

Finally, the report calls for climate change effects to enter energy security considerations and indicates that renewables should be leveraged to provide cost-efficient, integrated and reliable solutions for climate adaptation.

 

The report is part of a series of IRENA publications examining geopolitical dimensions of the energy transition, including the hydrogen and critical materials.

 

Read the report here: Geopolitics of the energy transition: Energy security.

 

 

About the International Renewable Energy Agency (IRENA)

 

IRENA is the lead intergovernmental agency for the renewables-based energy transition in pursuit of a systemic change across the energy sectors. A global energy agency comprised of 168 countries and the EU, with 15 additional countries in accession, IRENA provides knowledge, technical assistance and capacity building, project and investment facilitation. The Agency enables international cooperation and partnerships to fight climate change and promote sustainable development, energy access, energy security and resilient economies and societies.

 

Posted April 17, 2024

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New Break Resources Ltd. (CSE: NBRK) (OTCQB: NBRKF) (FSE: O91) has received results from the last four holes of a ten-hole, 1,996 metre summer drilling program in the Zavitz gold zone at the Company's 100% owned Moray gold project. In total, New Break has completed 5,372 metres of drilling in 32 drillholes in 2026. Moray is located 49 km southeast of Timmins, Ontario and 32 km northwest of the Young-Davidson gold mine operated by Alamos Gold Inc. Select results from the final four of ten holes drilled in the summer drilling program are presented below in Table 1, while drillhole collar locations are detailed in Table 2 in Appendix A. Table 1 – Moray Summer 2026 Final Drill Results Hole ID Length (m) From (m) To (m) Width (1) (m) Au Grade (2) (g/t) NBR-26-29 322.0 77.3 78.8 1.5 0.42 and 138.0 139.1 1.1 0.38 and 162.5 173.3 10.8 (3) 1.61 and 227.4 229.0 1.6 1.21 and 231.5 232.1 0.6 1.72 NBR-26-30 250.0 37.0 38.0 1.0 0.30 and 102.8 103.5 0.7 0.60 and 121.5 122.5 1.0 0.36 and 124.5 125.5 1.0 0.33 and 128.5 129.0 0.5 0.90 and 131.0 132.0 1.0 0.36 and 169.8 174.0 4.2 2.65 and 178.0 179.5 1.5 0.77 and 183.5 186.6 3.1 1.22 and 190.0 190.5 0.5 1.06 and 191.5 192.5 1.0 1.48 and 196.0 200.5 4.5 2.53 and 203.5 204.0 0.5 2.15 and 206.5 212.0 5.5 1.57 NBR-26-31 274.0 169.0 170.5 1.5 0.37 and 184.5 186.0 1.5 0.51 and 197.0 200.0 3.0 0.94 and 201.5 202.0 0.5 0.50 and 203.5 210.0 6.5 (3) 3.12 NBR-26-32 352.0 73.5 74.0 0.5 0.44 and 174.0 174.6 0.6 0.52 and 194.0 195.0 1.0 0.66 and 199.8 203.3 3.5 2.29 and 227.3 228.0 0.7 0.97 (1) Intervals are drill intersections and do not necessarily represent true widths. (2) All intervals are presented using a cut-off grade of 0.3 g/t Au and internal dilution of no more than 1.0 metres at grades less than 0.3 g/t Au and assays are not capped (see QA/QC Procedures). (3) Drill core photos shown in Appendix B. Figure 1 – Newly Reported Drillholes NBR-26-29, 30 Figure 2 – Newly Reported Drillholes NBR-26-30, 31, 32 Note: The bottom of NBR-26-30 deviated southeast and is represented in both sections. Figure 1: Section B-B1 incorporates drillholes NBR-26-06, 07, 08, 25, 26, 27, 28, 29 and part of 30. Gold mineralization extends southeast into the syenite as exhibited in NBR-26-29. NBR-26-30 is identified in both sections A-A1 and B-B1 as the drillhole was collared along section A-A1 but deviated southeast, intersecting gold mineralization in the mafic volcanics in section B-B1. Figure 2: A-A1 incorporates drillholes NBR-26-03, 04, 05, 23, 24, 30, 31 and 32. NBR-26-31 exhibits gold mineralization both within the syenite (at the contact) and within a "flow breccia" within the hematite altered mafic volcanic at the contact. NBR-26-32 is typified by blocky faulted ground with lamprophyre dykes and gold mineralization in the hematite altered mafic volcanics in a brecciated quartz vein with angular syenitic fragments. William Love, Chief Executive Officer of New Break commented, "Ongoing drilling this summer in the Zavitz gold zone continues to deliver significant gold values, with gold mineralization intercepted in every drillhole. As depicted in Figures 1 and 2, gold mineralization has been encountered predominantly within the mafic volcanics. Importantly, drillholes NR-26-29 and NR-26-32, the deepest drilled to date, demonstrate that gold mineralization extends into the syenite to the southeast at the contact with the mafic volcanics." He further noted, "The intrusive-mafic volcanic contact in the Zavitz gold zone has a distinctive magnetic high. This could be reflective of the higher proportion of iron in these mafic volcanics, which is associated with the higher gold values. This same magnetic and IP signature has been identified elsewhere in areas also believed to be along the intrusive-mafic volcanic contact. Drilling these never before tested targets with the goal of identifying gold mineralization similar to that encountered in the Zavitz zone represents the potential for significantly expanding the Moray gold discovery. There is also the belief that the Zavitz zone could represent the first of a series of stacked mineralized gold zones, which would point to the potential for a much larger gold system at depth. We plan to test this through deeper drilling directly into the Zavitz zone." About the Moray Gold Project The Moray property is located in the heart of the Ontario Abitibi greenstone belt, 49 km southeast of Timmins surrounded by a number of significant gold producing companies and existing mills (see Figure 3). The Young-Davidson gold mine operated by Alamos Gold Inc., with its 8,000 tonne per day mill is the closest and within a short trucking distance of approximately 45 km by road from Moray. The understanding of gold mineralization at Moray continues to evolve with each round of drilling. The occurrence of gold mineralization extending into the syenite to the southeast of the Zavitz zone and in the deepest drillholes is noteworthy given the presence of syenite-hosted mineralization at Young-Davidison. More recent examination of the drill core also suggests that the gold mineralization discovered to date may resemble an intrusion related style of deposit like Agnico Eagle's Upper Beaver gold deposit east of Kirkland Lake, as opposed to a structurally hosted gold system. Both Young-Davidson and Upper Beaver host multi-million ounce gold deposits. Figure 3 – Moray Location Map: Surrounding Gold Producers and Upper Beaver Gold Project Technical Content and Qualified Person The scientific and technical information contained in this news release has been reviewed and approved by Peter C. Hubacheck, P. Geo, consulting geologist to New Break, and an independent Qualified Person as defined by National Instrument 43-101. Mr. Hubacheck certifies that this news release fairly and accurately reflects the technical information and data presented. New Break conducts its exploration activities in accordance with CIM Best Practices Guidelines. QA/QC Procedures QA/QC procedures were executed to ensure all work is conducted in accordance with best practices. All drill core was sawn in half with one half of the core prepared for shipment and the other half retained for future verification. All core is under watch from the drill site to the core processing facility. Drill core is BQTK size and sample intervals range from 0.5 metres to 1.0 metres in length. Commercially prepared certified reference material ("CRM") standards and blanks were inserted with each shipment at a rate of 1 QAQC sample in every 12 core samples. Samples from New Break's 2026 Moray drilling program were analyzed at Activation Laboratories in Timmins, Ontario, which is ISO 17025 certified, by 30-gram fire assay with atomic absorption finish. Any sample assaying greater than 10.0 g/t Au was re-assayed with fire assay gravimetric analysis. Grade composite intervals over core lengths are calculated using a weighted average grade with a cut-off grade of 0.3 g/t Au. Up to 1.0 m of internal dilution (consecutive interval below cut-off grade) are included within specific geologic domains and alteration assemblages, except as otherwise noted. The composites are constrained geologically by metasomatic alteration processes sourcing from the Fiset syenite intrusion and contact mafic volcanic rocks. Elevated gold values are coincident with hematite, silica, sericite and pyrite mineralization within structurally prepared brecciated corridors flanking the intrusion. Intervals are not true widths and no top cutting has been applied to the higher gold values. About New Break Resources Ltd. New Break is a Canadian mineral exploration company focused on its Moray gold project located 49 km southeast of Timmins, Ontario, in a well-established mining camp within proximity to existing infrastructure, and 32 km northwest of the Young-Davidson gold mine, operated by Alamos Gold Inc. Shareholders are also leveraged to exploration success in Nunavut, Canada, through New Break's 20% carried interest in the Sundog gold project and ownership of 6.0 million shares of Guardian Exploration Inc. (TSXV: GX). The Company is supported by a highly experienced team of mining professionals. Appendix A – Drillhole Data and Locations Table 2 – Moray Summer 2026 Drillhole Collar Locations Hole ID Length (m) UTM Easting UTM Northing UTM Elevation Azimuth (degrees) Dip (degrees) NBR-26-29 322.0 492703 5320285 363 220 -70 NBR-26-30 250.0 492708 5320329 363 220 -47 NBR-26-31 274.0 492708 5320329 363 220 -60 NBR-26-32 352.0 492708 5320329 363 220 -70 Total 1,198.0 Coordinates are reported in UTM Zone 17 North, with units in metres. Figure 4 – Zavitz Gold Zone – Surface Traces of 2025 and 2026 Drillholes. All of the drilling at Moray has been completed by Enviro North Exploration Inc. out of Sturgeon Falls, Ontario. Drilling in the Zavitz gold zone is shown in figure 4, with the 1,996 metres in 10 holes drilled this summer depicted in red, the 2,807 metres in 20 holes drilled from January to April 2026 shown in blue and the 1,817 metres in 8 holes drilled in 2025 shown in black. In total, 6,620 metres in 38 drillholes have been completed in the Zavitz gold zone, while New Break has completed a total of 5,372 metres in 32 drillholes of our planned 2026, 10,000 metre drilling program. Appendix B – Drill Core Photos From NBR-26-29 and NBR-26-31

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