Biogeochemical Cycles

July 16, 2026
Earth’s Memory, Part One Abstract Every rock carries a fragment of Earth’s memory. Collectively, these fragments preserve an extraordinary geological record spanning more than 4.5 billion years of planetary evolution. This article traces that record through the deep-time history of our planet—from the formation of Earth’s earliest crust and the Great Oxidation Event, when microbial life transformed the planet’s atmosphere, to the five great mass extinctions that repeatedly reset the trajectory of life, and the Snowball Earth episodes, when our planet experienced its most extreme glaciation. Drawing on more than two decades of fieldwork across Himalaya and Peninsular India, among ancient rocks, minerals, and fossils that bear direct witness to these planetary transformations, it explores how geologists reconstruct Earth’s early history from evidence preserved in the geological archives. Taken together, these geological events reveal a recurring pattern: Earth is a dynamic system in which every major crisis has also created the conditions for new and often more complex forms of life to evolve. That pattern, written into rocks billions of years old, continues to shape the planet today.    I first learned to listen to rocks long before I had the words to describe what that meant.  It began in the Himalaya, the youngest mountain range on Earth, still rising, still deforming, and still recording the ongoing collision between continents. During my early fieldwork, I spent long days mapping folded strata, tracing fault scarps, and trying to understand how landscapes preserve evidence of processes operating across vastly different geological timescales. At that time, I often felt that the mountains were trying to say something in a language I had not yet learned. Over time, through fieldwork, mapping, and countless hours spent among rocks and sediments, I began to decipher that silent language.  The lesson deepened across many other landscapes of India....
Jai
Jaishri Sanwal Bhatt
Contributors
May 21, 2026
Jaishri Sanwal Bhatt is an Indian geologist and paleoclimatologist based at the Jawaharlal Nehru Centre for Advanced Scientific Research in Bangalore, where she combines scientific research with a strong commitment to public outreach, advocacy, and science communication. For more than twenty years, Sanwal’s work has centered on reconstructing past climate change and active tectonic processes through the study of cave records and other geological proxies, especially paleolakes and speleothems. Her research has spanned the Indian and Nepalese Himalayas, the Andaman Islands, and both the eastern and western coasts of India, engaging major questions related to earth systems, water security, and natural hazards. In this wide-ranging and engaging InterDialogue, we discuss deep geological time, the proposed nuclear energy transition in India, the value of interdisciplinarity and clearer scientific communication, Sanwal’s efforts to organize science outreach initiatives in rural India, and much more. Timestamps 2:22 – Sanwal’s background and introduction to geology 8:43 – Big History and the evolution of the Earth through geology 14:25 – Sanwal’s research 16:45 – Tracking historical precipitation patterns through sediment 21:10 – Connecting paleoclimatology to contemporary climate science 25:53 – Tracking and analyzing extreme events through rocks 29:07 – Comparing chronological dating systems 32:52 – Sanwal’s work with lake cores 37:34 – Tracking tsunami episodes in the Andamans 44:09 – Evidence of tsunamis in mangrove forests 49:00 – Local knowledge and community collaborations 52:32 – Nuclear energy transition in India and waste disposal 57:18 – Risks of geological repositories for nuclear waste 1:00:16 – Sanwal’s rural science outreach and education initiatives
Jai
Jaishri Sanwal Bhatt
March 24, 2026
Omar Prias is an electrical engineer, professor at the National University of Colombia, and former president of the Colombian Energy and Gas Regulatory Commission (CREG). He has decades of experience in the energy sector working at the intersection between the academy, planning, and politics. This InterDialogue addresses the importance of decentralized energy technologies for sustainable development, the role of intercultural dialogue, national and global energy transition, and the possibilities of introducing advanced nuclear technologies, both new and projected, in non-nuclear countries such as Colombia. We begin by talking about the fundamental role of energy in all sectors of society. Timestamps 00:00 – Introduction 1:50 – Prias’s Background in Energy 7:57 – Industry and Energy Systems in Colombia 15:13 – Historical Development of the Energy Sector in Colombia; Energy and Conflict 22:06 – Geopolitics of Colombian Energy 26:32 – Hydroelectric Power in Colombia 44:40 – Intercultural Considerations and Energy Communities 53:15 – Intercultural Dialogue and Decision-Making 1:03:43 – Energy Transition in Colombia 1:13:41 – Nuclear Energy in Colombia 1:20:11 – Opening Spaces for Adopting New Technologies
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Omar Prias
January 23, 2026
Mariana Gómez Soto is a Colombian social anthropologist, environmentalist, and activist. She holds a BA in social anthropology with minors in geography and biology, a master’s degree in social anthropology, and a second master’s degree in holistic sciences from Schumacher College. Gómez has worked closely with Indigenous communities for many years and has led key intercultural initiatives through her roles at the Gaia Amazonas Foundation and as a leader within the North Amazon Alliance. She is the lead author of a recent chapter on socio-bioeconomics and connectivity published in an assessment report by the Science Panel for the Amazon. Gómez also played a central role in founding the Amazonia Conectada coalition, which brings together the North Amazon Alliance, the Science Panel for the Amazon, RAISG, and Aguas Amazónicas—organizations with distinct areas of expertise united by a shared commitment to sustaining the Amazon’s terrestrial, biocultural, hydrological, and climatic interconnectivity. This wide-ranging InterDialogue opens with a discussion on dynamic, context-based frameworks for building and scaling a sustainable, circular bioeconomy in the Amazon. The conversation then turns to the importance of Amazonian connectivity, the evolving priorities of the North Amazon Alliance and Amazonia Conectada, and the critical role of interdisciplinary and intercultural education and collaboration in safeguarding the region’s future. Timestamps 0:00 – Introduction 1:42 – Defining Bioeconomics and Socio-Bioeconomy 5:44 – Envisioning a Circular Bioeconomy in the Amazon 9:52 – Developing Socio-Bioeconomic Trade Infrastructure 12:09 – Challenges of Modeling Bioeconomy in Practice 14:45 – Consequences of 2026 Elections for the Amazon 16:10 – Bioeconomic Product Identification and Market Integration 22:47 – Experiences Coordinating the North Amazon Alliance 24:27 – Analyzing Connectivity in the Amazon 31:47 – Hydrological-Terrestrial Interconnectivity 34:24 – Developing a New Methodology for Measuring Forest Connectivity 37:26 – Coordinating with Policymakers and the Public 44:11 – Experiences at COP30 49:49...
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Mariana Gómez Soto
December 15, 2025
In the context of risk management and in the face of environmental and economic challenges such as climate change, coastal erosion, water insecurity, and the accelerated loss of biodiversity, among others, the concept of Nature-based Solutions (NbS) has emerged. Over the past decade, this appealing concept has been consolidated as an integrative approach that seeks to address socio-environmental challenges through the sustainable management of socio-ecological systems.  The United Nations Environment Assembly defines NbS as “actions that protect, sustainably manage, and restore natural or modified ecosystems to effectively and adaptively address societal challenges, simultaneously providing benefits for human well-being and biodiversity.” In this way, NbS represents a paradigm shift from traditional solutions based exclusively on grey infrastructure, which are now insufficient in facing many large and complex contemporary challenges. The relevance of NbS resides in their capacity to generate multiple, synergistic benefits through ecosystem services and the strengthening of socio-ecological resilience. This approach recognizes the interdependence of nature and culture, and much of its success depends on how communities perceive and acknowledge the multiple benefits socio-ecological systems provide for human well-being. Therefore, NbS must emphasize the need for participatory, equitable, and inclusive processes to ensure their legitimacy and long-term sustainability. NbS encompass actions for the protection, restoration, and sustainable management of ecosystems. Although they offer multifunctional and cost-effective benefits, their implementation faces diverse challenges. Several international frameworks acknowledge NbS as priority strategies to confront climate change and biodiversity loss, promoting guidelines for their adoption at different scales. Among these frameworks are the United Nations Framework Convention on Climate Change (1992), the Convention on Biological Diversity (1992), the Sendai Framework (2015–30), and the Paris Agreement (2015). However, it is not enough to only secure financing or display technical feasibility. It is also necessary to establish a coherent legal framework, generate open and...
PeriodicoUNAL-090623-03-am - Mancera-cut
Jose Ernesto Mancera Pineda
Contributors
November 24, 2025
Investment in science is a pillar for any dynamic, equitable modern society, and promoting scientific literacy across all levels of society can help foster innovation, dialogue, and consensus that crosses disciplinary and cultural boundaries. Science also helps to uncover answers to foundational questions that have captivated, confounded, and divided our species for millennia. But what is “science,” and what kind of “evidence” ensures that an approach is scientific? If we take “science” to broadly mean, in its purest sense, a “dynamic search for the truth,” or more explicitly, “the pursuit and application of knowledge and understanding of the natural and social world following a systematic methodology based on evidence,” as the Science Council aptly defines it, then science extends beyond the established, highly specialized disciplines of reductionist natural sciences (physics, chemistry, biology, geoscience, and space science) that have been so successful in fostering our understanding of our planet and the cosmos. Under this definition, science also includes the rigorous data-driven (qualitative and quantitative) social sciences, the inherently non-reductionist “holistic” sciences such as ecological and Earth system sciences, and the budding interdisciplinary field of complex systems science, as well as robust traditional knowledge systems based on multi-generational experiences, observations, and reasoning. As with science, “evidence” can mean a lot of things as well, including primary research, pre-existing data, past and planned experiments, and the referencing of peer-reviewed publications and primary sources. It can also include local and traditional knowledge, thought experiments, theoretical proofs, contemplation, verifiable personal experience, and empirical observation. Broadening and weaving together these forms of scientific evidence holds the potential to address complex, interconnected global challenges and explain deep mysteries that could help unify our polarized societies around foundational understandings. Foundational Questions Foundational questions can transcend the divides of generations and cultures: Cosmology, physics, and evolutionary biology have shed...
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Daniel Henryk Rasolt
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