Overall SDG Alignment Evaluation:
The Doctor of Philosophy Program in Biological Science and Bio-innovation for Sustainability is holistically designed to produce researchers and innovators who can create new knowledge and solutions based on the principles of the Bio-Circular-Green (BCG) Economy. The program's core mission is to conduct interdisciplinary research that leverages biological resources for sustainable development, making it a powerful contributor across a wide range of SDGs. Its profound focus on biorefinery technology, sustainable agriculture, and bioremediation directly aligns with SDG 2 (Zero Hunger), SDG 7 (Affordable and Clean Energy), SDG 9 (Industry, Innovation, and Infrastructure), and SDG 12 (Responsible Consumption and Production). By addressing health challenges through bio-innovation, the curriculum also has significant relevance to SDG 3 (Good Health and Well-being). The program's emphasis on ecosystem management and pollution control is central to achieving SDG 6 (Clean Water and Sanitation), SDG 13 (Climate Action), SDG 14 (Life Below Water), and SDG 15 (Life on Land). As a doctoral-level program, it is a flagship for SDG 4 (Quality Education) and fosters the global collaborations essential for SDG 17 (Partnerships for the Goals).
Alignment Summary: This program supports the goal of achieving zero hunger by advancing sustainable agricultural practices and food security. The curriculum provides knowledge in soil management and bio-fertilizer technology, which are essential for enhancing agricultural productivity while maintaining ecosystem health and ensuring long-term food production.
Course Code | Course Title | Alignment Rationale |
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355 704 | Sustainable Agricultural Management | Directly contributes to ensuring sustainable food production systems (Target 2.4) by focusing on agricultural practices that are environmentally sound and economically viable. |
Alignment Summary: The program contributes to good health and well-being through its focus on bio-innovation for health. The curriculum equips graduates to conduct research on natural compounds and biomaterials that can be used for disease treatment and prevention, supporting the development of new healthcare solutions.
Course Code | Course Title | Alignment Rationale |
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355 706 | Bio-innovations for Health | Supports research and development of new medicines and treatments (Target 3.B) by exploring biological resources for novel therapeutic applications. |
Alignment Summary: As a doctoral program, this curriculum is the epitome of quality education. It is designed to cultivate expert researchers and innovators by providing advanced training in research methodologies and fostering a culture of lifelong learning, thereby contributing to the creation of new knowledge for sustainable development.
Course Code | Course Title | Alignment Rationale |
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355 791 | Seminar in Biological Science and Bio-innovation for Sustainability I | Enhances lifelong learning opportunities (Target 4.3) by providing a platform for critical analysis and discussion of current research, fostering the skills to create new knowledge. |
355 99X | Dissertation | Represents a capstone lifelong learning opportunity (Target 4.3), where students conduct original research, thereby acquiring superior technical and professional skills for employment and innovation (Target 4.4). |
Alignment Summary: The program is central to ensuring the availability and sustainable management of water by training experts in bioremediation. This knowledge is crucial for developing and applying biological processes to treat contaminated water and restore the health of aquatic ecosystems.
Course Code | Course Title | Alignment Rationale |
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355 707 | Bioremediation | Directly supports Target 6.3 by studying the use of biological organisms to remove pollutants from water, which is a key technology for improving water quality. |
Alignment Summary: The program is a major driver for the transition to affordable and clean energy. It offers deep expertise in biorefinery technology, which is fundamental to converting biomass into biofuels and other forms of renewable energy, directly contributing to clean energy research and technology.
Course Code | Course Title | Alignment Rationale |
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355 702 | Advanced Biorefinery Technology | Directly supports clean energy research and technology (Target 7.A) by focusing on the advanced processes used to convert biomass into biofuels and other renewable energy products. |
Alignment Summary: This program is a catalyst for innovation in the bio-based industries. By providing advanced training in biorefinery technology, bio-innovations, and sustainable management, it enhances scientific research and upgrades the technological capabilities of sectors focused on the Bio-Circular-Green (BCG) Economy.
Course Code | Course Title | Alignment Rationale |
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355 701 | BCG Economy Driven Research and Innovation | Drives innovation by focusing on research and development that aligns with the national BCG economic model, promoting sustainable industrialization (Target 9.2). |
355 702 | Advanced Biorefinery Technology | Supports the upgrading of industrial infrastructure (Target 9.4) by introducing clean and environmentally sound technologies for the processing of biological resources. |
355 703 | Innovation and Entrepreneurship | Enhances scientific research and innovation (Target 9.5) by equipping graduates with the skills to translate their research into commercially viable products and businesses. |
Alignment Summary: The curriculum is fundamentally aligned with ensuring sustainable consumption and production patterns. It trains experts to design and manage systems that achieve the sustainable management and efficient use of natural resources, reduce waste, and promote a circular economy through the principles of the BCG model.
Course Code | Course Title | Alignment Rationale |
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355 701 | BCG Economy Driven Research and Innovation | Directly contributes to the sustainable management and efficient use of natural resources (Target 12.2) by aligning research with the principles of the Bio-Circular-Green economy. |
355 702 | Advanced Biorefinery Technology | Supports Target 12.5 by developing technologies that can convert waste biomass into valuable products, thereby substantially reducing waste generation. |
Alignment Summary: The program contributes to climate action by promoting technologies and practices that reduce greenhouse gas emissions. The development of bio-based products and renewable energy through biorefineries helps to mitigate climate change by replacing fossil fuel-based alternatives and creating a more circular carbon economy.
Course Code | Course Title | Alignment Rationale |
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355 702 | Advanced Biorefinery Technology | Supports climate change mitigation (Target 13.2) by developing technologies for biofuels and bio-based products, which can reduce dependence on fossil fuels. |
Alignment Summary: The program is fundamentally aligned with the conservation and sustainable use of aquatic ecosystems. Through bioremediation and the study of ecosystem management, it provides the scientific foundation for preventing marine and freshwater pollution from land-based activities and protecting aquatic biodiversity.
Course Code | Course Title | Alignment Rationale |
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355 707 | Bioremediation | Directly contributes to preventing and reducing marine pollution (Target 14.1) by studying the use of biological organisms to remove pollutants from contaminated water and soil. |
355 708 | Ecosystems and Environmental Management | Supports the sustainable management and protection of marine and coastal ecosystems (Target 14.2) by providing an understanding of ecological principles and management strategies. |
Alignment Summary: The program is at the core of efforts to protect, restore, and promote the sustainable use of terrestrial ecosystems. The curriculum provides a deep understanding of ecosystem management and bioremediation, which are essential for combating land degradation and halting biodiversity loss.
Course Code | Course Title | Alignment Rationale |
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355 704 | Sustainable Agricultural Management | Supports efforts to combat desertification and restore degraded land and soil (Target 15.3) by promoting sustainable agricultural practices. |
355 707 | Bioremediation | Contributes to the restoration of degraded land (Target 15.3) by applying biological processes to clean up contaminated soil. |
355 708 | Ecosystems and Environmental Management | Provides the foundational knowledge for the conservation, restoration and sustainable use of terrestrial ecosystems (Target 15.1). |
Alignment Summary: As an international program with an interdisciplinary focus, this curriculum inherently builds partnerships for sustainable development. Through seminars and the dissertation process, students engage with the global scientific community and industry, promoting the knowledge-sharing and multi-stakeholder collaborations essential for achieving the SDGs.
Course Code | Course Title | Alignment Rationale |
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355 703 | Innovation and Entrepreneurship | Enhances partnerships (Target 17.17) by equipping students with the skills to collaborate with industry and commercialize their research for sustainable development. |
355 791 | Seminar in Biological Science and Bio-innovation for Sustainability I | Promotes the global partnership for sustainable development (Target 17.6) by requiring students to engage with and present on international research, fostering a culture of global knowledge-sharing. |
355 99X | Dissertation | Represents a significant contribution to global partnerships (Target 17.16) by creating new, publishable knowledge that is shared internationally to solve critical sustainability challenges. |