This course explores how Environmental, Social, and Governance (ESG) and climate considerations are reshaping public market investment strategies. Students will learn how institutional investors use ESG signals and climate-related data to assess risk, identify opportunity, and support real-world outcomes—all while meeting fiduciary obligations.
The class introduces the concept of the “Double Bottom Line,” or double materiality, where financial performance and sustainability impact are jointly pursued. Students will examine active and index-based approaches to climate and ESG investing, review emerging academic research, and hear from guest speakers on the evolving landscape of sustainable finance.
A key course deliverable is a student-designed investment strategy that applies the Double Bottom Line framework to a climate or ESG theme, demonstrating how it could drive financial returns and measurable impact.
This course is intended for students planning careers in asset management, policy, sustainability, or ESG advisory roles. It focuses exclusively on public markets and complements SIPA courses covering private finance and regulatory approaches.
Students should know basic finance concepts like beta, the Capital Asset Pricing Model, equilibrium, active and passive management, and portfolio risk and return. Students should be familiar with some basic knowledge of statistics, like the concepts of statistical significance and regressions. At least one semester of statistics is required. We recommend that students have taken some previous classes in finance, management, sustainability, or quantitative analysis.
This course explores the financing structures that underpin the development and transformation of global energy and power markets. Students will examine how asset-based, project, and tax-driven financing mechanisms have evolved to meet the growing demands for conventional and clean energy, and how these tools can be leveraged to support the transition to a low-carbon economy. Through case studies and lectures, the course introduces the financial, regulatory, and policy frameworks that shape energy markets, with an emphasis on U.S. practices and instruments. Topics include reserve-based lending in oil and gas, project financing for power generation, Master Limited Partnerships in midstream infrastructure, and renewable energy finance strategies. Special focus is placed on aligning commercial viability with sustainable development objectives, addressing greenhouse gas emissions, and ensuring affordable access to energy. Students will develop applied skills in evaluating financing approaches, assessing project risks, and reconciling financial structures with physical energy system requirements.
This course provides a rigorous introduction to renewable energy project finance modeling, focusing on the concepts, structures, and financial mechanisms that underpin investment in renewable energy projects such as wind and solar. Through lectures, demonstrations, and guided analysis of actual project documents and contracts, students will develop a comprehensive understanding of the key drivers of renewable energy economics and financing.
Students will examine debt structuring, cash flow analysis, revenue modeling, risk assessment, tax incentives, and the impact of policies such as the Inflation Reduction Act. The course emphasizes the development of best practices in financial modeling and the critical evaluation of project structures, with particular attention to the challenges and considerations unique to renewable energy assets.
Participants will learn to analyze project agreements, assess project risks, build robust financial models, and evaluate project viability from the perspective of developers, lenders, and investors. The curriculum integrates lectures on technical and contractual fundamentals, discussion of policy implications, and instruction on modeling techniques, culminating in the creation of a detailed project finance model.
Pre-reqs: CEEN IA7200: Fundamentals of Environmental Economics and Policy,
or
CEEN IA7300: Energy Systems Fundamentals,
or
SUMA PS5155: Energy Markets and Innovation. Instructor permission is also required for registration. Join the waitlist in Vergil to request registration.
Artificial intelligence (AI) is a hot topic. More than 800 million people now use ChatGPT each week, trillions of dollars are being invested in data centers globally, and policymakers around the world are considering how best to respond to the growth in AI.
Meanwhile countries around the world are struggling to respond to climate change. Based on global average temperatures, July 22, 2024 was the warmest day ever recorded; 2024 was the warmest year ever recorded; and the 10 warmest years on record are the past 10 years. Yet despite encouraging developments, including the dramatic drop in the price of renewable energy in the past decade, global emissions of greenhouse gases continue to climb.
Can AI help reduce emissions of greenhouse gases? Will increased power demand for AI lead to greenhouse gas emission increases, outweighing any benefits? Can AI help with adaptation to climate change? Should policymakers encourage the use of AI to help fight climate change and discourage AI applications that may increase greenhouse gas emissions? If so, how?
This course will cover these questions. The course is an advanced seminar. After an initial class session covering core AI concepts, we will explore different ways AI could help reduce greenhouse gas emissions and adapt to climate change, as well as ways in which AI could lead to greenhouse gas emissions increases. We will explore barriers to the use of AI to respond to climate change, risks of using AI for that purpose, policy options for addressing these risks and barriers, and ways in which different stakeholders can work together in using AI tools to fight climate change.
This course examines the evolution and future of electricity markets worldwide in the context of liberalization, decarbonization, and technological change. As clean energy costs decline and electrification accelerates, the power sector faces increasing pressure to deliver reliable, affordable, and low-emission electricity. The course provides an interdisciplinary perspective on the structure and operation of electricity markets, exploring regulated and competitive models across advanced and emerging economies. Students will analyze how policy frameworks, regulatory structures, and market incentives shape investment, pricing, and dispatch decisions.
This course explores the opportunities and challenges presented by Europe’s efforts to lead the global transition to net-zero greenhouse gas energy systems. Centered on the European Union and its member states, the course also considers key geopolitical developments shaping the region’s energy future, including the war in Ukraine, transatlantic relations, and trade tensions with China.
Students will examine how climate goals intersect with energy security, affordability, and political feasibility. The course covers policy design, institutional dynamics, and market responses across power generation, transportation, and industrial energy systems. Topics include energy storage, electrification, decarbonization of hard-to-abate sectors, and the integration of renewables into power grids.
Through case studies and discussion, students will assess how EU energy and climate policies translate into real-economy investment and innovation. The course emphasizes critical engagement with required readings, active participation, and an understanding of the political and economic factors that shape Europe's transition agenda.
This intensive seven-week course is recommended for students already familiar with energy transition issues.
Oceans are critical to life on Earth. They supply more than half of the oxygen we breathe, regulate our climate, and connect peoples and continents.
The class will provide an overview of the most contentious and vexing issues and challenges regarding the ocean that are facing policy makers in the U.S. and across the globe today, and will examine their implications for global security and sustainable development of ocean resources.
The class will discuss policy, international institutions, governance models, scientific and economic issues, and potential solutions.
This course surveys the distinctive character of Asian energy security requirements, how they are changing over time, what political-economic forces are driving their transformation and what those requirements imply for broader economic and political-military relationships between Asia and the world. It gives specials attention to Asia’s energy dependence on the Middle East and the extent to which Russia and alternative sources, including nuclear power, provide a feasible and acceptable alternative. Cross-national comparisons among the energy security policies of China, India, Japan, Korea, and Western paradigms are used to explore distinctive features of Asian approaches to energy security.
Pre-req: Microeconomics.
This course is an introduction to the economics of energy markets. We will study the main sources of inefficiencies in energy markets—market power and externalities—and their implications for policymaking. We will cover, for example, how oil and natural gas prices are determined globally, deregulation and market power in electricity markets, and policy responses such as carbon permit trading.
We will also discuss recent challenges faced by policymakers in energy markets, such as the incorporation of renewables, transmission, transport, and the broader energy transition to net zero.
Students will work in groups to deliver a project and presentation focusing on a real-world energy policy question of their choice. The objective of the group project is to provide hands-on experience in energy policy analysis using the main economic concepts discussed in the class.
Pre-req: Microeconomics.
This course is an introduction to the economics of energy markets. We will study the main sources of inefficiencies in energy markets—market power and externalities—and their implications for policymaking. We will cover, for example, how oil and natural gas prices are determined globally, deregulation and market power in electricity markets, and policy responses such as carbon permit trading.
We will also discuss recent challenges faced by policymakers in energy markets, such as the incorporation of renewables, transmission, transport, and the broader energy transition to net zero.
Students will work in groups to deliver a project and presentation focusing on a real-world energy policy question of their choice. The objective of the group project is to provide hands-on experience in energy policy analysis using the main economic concepts discussed in the class.
How has the quest to produce enough food shaped societies, economies, and the environment in the United States and beyond? This course examines the powerful historical forces that have driven transformations in food production and policy over the past century, and how those forces continue to shape debates around sustainability, food security, and development today.
Students will explore the evolution of agricultural science and technology, the impact of government programs such as subsidies and rationing, and the ways ideas born in the U.S. have been adopted, adapted, or resisted globally. From the rise of large-scale production to the emergence of movements for organic and regenerative practices, we will trace how food systems reflect shifting values, power dynamics, and visions of progress.
This seminar invites students interested in sustainability and social change to critically engage with the past to better understand the urgent questions of the future.
Instructor permission required. Join the waitlist in Vergil to request registration.
Today’s most pressing challenges, including climate change, social inequities, and financial instability, are complex, global, and systemic. This course explores how investors can respond through system-level investing, an emerging approach that considers the deep interconnections among financial markets, the real economy, and long-term environmental, social, and governance (ESG) outcomes.
Building on traditional and sustainable finance principles, system-level investing expands beyond portfolio-level risk and return analysis to address the broader systems that support market performance. Students will explore how investors can influence and manage systemic risks to improve investment outcomes and support societal resilience. Topics include foundational finance theory, tools for system-level investing, real-world case studies, and evolving practices across asset classes.
Impact Investing II: Blended Finance'' equips students with a detailed understanding of the tools, strategies and innovative approaches being utilized by investors seeking both financial and impact returns, via blended finance transactions. Students in this course will study cases, dig into transactions and be prepared to be a professional contributor to a transaction at a future employer. Moreover, the course provides students with a further understanding of opportunities that blended transactions can provide impact investors as they aim to unlock capital markets' support to mitigate climate change, reverse biodiversity loss, address social inequality, reduce poverty, and generate other system-level challenges.
The field of responsible investment has grown rapidly over the last twenty years, with the climate crisis serving as the paradigmatic ESG issue for investors. In the private sector, investors pledge to decarbonize their portfolios, ask for carbon reporting to manage that task, join together to engage corporations on their transition plans. As activity has grown, questions about the effectiveness and limitations of climate finance approaches to the climate crisis have grown along with them. A narrow focus on decarbonization has begun to give way to broader considerations of the transition and the risks and opportunities it poses for affected workers and communities, on the belief that social cohesion is a precondition for successful transition. Private sector initiatives have been complemented with public policy and public investment efforts to shape environmental, social, and economic outcomes. Climate finance is in a moment of reflection, change, and doubt.
This course will survey and analyze the ways that public and private investment are being or could be directed in support of a Just Transition (i.e., a low-carbon transition that does not worsen social inequalities), and various ways to think about how effective climate finance can be. We will look at investors’ approaches to the decarbonization of the economy in political and social context, asking: how do or should investors integrate concerns for workers, communities, and environment into climate finance? what kinds of public policies are needed to ensure that investment points towards a Just Transition? The result, we hope, will lead both to a better understanding of the roles public and private investment in a Just Transition, climate policy, and an expanded critical capacity to analyze how well it’s working.
ESG and Corporate Political Strategy examines how organizations align environmental, social, and governance (ESG) priorities with corporate political strategies to shape policy, manage risk, and advance system-level change. As public expectations of corporate responsibility grow, firms must navigate both market and non-market arenas to sustain value, engage with stakeholders, and influence the rules by which they operate.
This course equips students with practical tools and analytical frameworks to understand and implement integrated strategies that align ESG goals with legislative, regulatory, and political engagement. Case studies and applied exercises explore how companies influence policy, respond to regulatory shifts, and act as stewards of systemic transformation. Topics include corporate lobbying, public positioning on social issues, regulatory influence, and the strategic use of litigation and partnerships.
Ideal for students pursuing careers in business, policy, nonprofit, or advocacy sectors, this course complements
Social Impact: Business, Society, and the Natural Environment
and is open to graduate students across SIPA, Columbia Business School, the Climate School, and other Columbia schools.
The Quantitative Valuation of the Environment course will explore theory and methods of economically valuing environmental benefits and disbenefits, and how they can be applied in decision-making processes to improve stated outcomes. Specifically, it examines model specification for stated preference valuation, generating awareness of the theoretical and empirical questions being investigated in the area, generating awareness of environmental and resource issues currently being debated, and practical issues such as how these welfare economics measures can be used in efficiency measures such as benefit cost analysis.
The Social Impact: Business, Society, and the Natural Environment course explores the relationship between corporations, society, and the natural environment. Specifically, it examines the ways in which governments, (for-profit and non-profit) organizations, and investors (fail to) have positive impact and manage issues where the pursuit of private goals is deemed inconsistent with the public interest.