Projects/Assets related to | Description /Examples | SDGs Mapping |
Carbon Emission Reduction | Assets such as climate-resilient energy systems and low-carbon infrastructure reduce vulnerability by ensuring stable, clean energy supply during extreme weather events. Carbon emission reduction assets like energy-efficient technologies, renewable energy installations, and carbon capture systems enable countries to meet their Nationally Determined Contributions (NDCs) under the Paris Agreement. Implementing and demonstrating carbon reduction technologies raises awareness of practical solutions and builds institutional capacity for climate mitigation. |
![]() Target 13.1 Strengthen resilience and adaptive capacity to climate-related hazards and natural disasters in all countries. Target 13.2 Integrate climate change measures into national policies, strategies and planning. Target 13.3 Improve education, awareness-raising and human and institutional capacity on climate change mitigation, adaptation, impact reduction and early warning. |
Renewable Energy | Operation and maintenance of renewable energy plant. Generation and transmission of energy from renewable energy sources. Renewable energy sources including Hydro, Solar, Fuel Cell, Wind, Kinetic, Biomass and combustible waste. |
![]() Target 7.2 By 2030, increase substantially the share of renewable energy in the global energy mix Target 7a By 2030, enhance international cooperation to facilitate access to clean energy research and technology, including renewable energy, energy efficiency and advanced and cleaner fossil-fuel technology, and promote investment in energy infrastructure and clean energy technology. |
Energy Efficiency Technology | Development and production of products or technologies that reduce industrial energy consumption, such as improved chillers, improved lighting technology and enhanced battery capacity. Improved efficiency in the delivery of bulk energy services such as district heating/cooling systems, smart grids, energy recovery technology, and the storage, transmission and distribution of energy that results in reduced energy losses. |
![]() Target 7.3 By 2030, double the global rate of improvement in energy efficiency. Target 7a Refer to description of Target 7a above. |
Sustainability Infrastructure | Modernised operations with improved energy performance and reducing reliance on carbon-intensive energy sources. This fosters a more sustainable industrial base, helping reduce greenhouse gas emissions and operational costs, while improving productivity and competitiveness. Financing energy-efficient retrofits and smart infrastructure solutions (e.g., automated controls, energy-efficient lighting and Heating, Ventilation, and Air Conditioning (HVAC), advanced metering), Unity Green Sukuk supports resilient and resource-efficient infrastructure. Incorporate cutting-edge technologies such as Internet of Things (IoT)-based energy management systems, AI-driven analytics, and renewable energy integration. innovation and environmental stewardship. |
![]() Target 9.2 Promote inclusive and sustainable industrialization and, by 2030, significantly raise industry’s share of employment and gross domestic product, in line with national circumstances, and double its share in least developed countries. Target 9.4 By 2030, upgrade infrastructure and retrofit industries to make them sustainable, with increased resource-use efficiency and greater adoption of clean and environmentally sound technologies and industrial processes, with all countries taking action in accordance with their respective capabilities Target 9.5 Enhance scientific research, upgrade the technological capabilities of industrial sectors in all countries, in particular developing countries, including, by 2030, encouraging innovation and substantially increasing the number of research and development workers per 1 million people and public and private research and development spending. |
Efficient Consumption and Production | Provides a sustainable, local solution to food security, offering year-round production of fresh, nutritious crops in urban environments. By using cutting-edge lighting technology to optimise plant growth in controlled environments, the system maximises land use efficiency, reduces the need for arable land, and minimises the reliance on traditional agricultural methods that may be constrained by climate change or limited resources. Sustainable farming practices which exemplifies responsible consumption and production by reducing food waste and the environmental impact of traditional farming methods. It minimises the need for extensive water use, pesticide reliance, and long-distance transportation, significantly lowering carbon emissions associated with food production and distribution. The controlled environment also reduces waste and resource usage, contributing to a more sustainable and circular food production model. |
![]() Target 2.4 By 2030, ensure sustainable food production systems and implement resilient agricultural practices that increase productivity and production, that help maintain ecosystems, that strengthen capacity for adaptation to climate change, extreme weather, drought, flooding and other disasters and that progressively improve land and soil quality. ![]() Target 12.2 By 2030, achieve the sustainable management and efficient use of natural resources Target 12.4 By 2020, achieve the environmentally sound management of chemicals and all wastes throughout their life cycle, in accordance with agreed international frameworks, and significantly reduce their release to air, water and soil in order to minimise their adverse impacts on human health and the environment. |