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This book applies system theory to analyze the operation and structure of the complex earth surface system, including the interactions between society and nature that cause environmental degradation and threats to human populations. The possible ways to harmonize the operation of a global society as a complex system using the United Nation sustainable development goals are investigated, as well as the major efforts currently implemented to achieve this objective and why many are unsuccessful. Readers will learn this material through case studies that assess the essential conditions required to occupy a planet sustainably, and examine the complex interactions between society and nature in the atmosphere, hydrosphere, biosphere, and outer layers of the lithosphere. The book is written for undergraduate students in geography, earth sciences, environmental sciences, and ecology, and will also appeal to environmental agency employees, nature protection representatives, teachers, and researchers.
This book applies system theory to analyze the operation and structure of the complex earth surface system, including the interactions between society and nature that cause environmental degradation and threats to human populations. The possible ways to harmonize the operation of a global society as a complex system using the United Nation sustainable development goals are investigated, as well as the major efforts currently implemented to achieve this objective and why many are unsuccessful. Readers will learn this material through case studies that assess the essential conditions required to occupy a planet sustainably, and examine the complex interactions between society and nature in the atmosphere, hydrosphere, biosphere, and outer layers of the lithosphere. The book is written for undergraduate students in geography, earth sciences, environmental sciences, and ecology, and will also appeal to environmental agency employees, nature protection representatives, teachers, and researchers.
Global Change and the Earth System describes what is known about the Earth system and the impact of changes caused by humans. It considers the consequences of these changes with respect to the stability of the Earth system and the well-being of humankind; as well as exploring future paths towards Earth-system science in support of global sustainability. The results presented here are based on 10 years of research on global change by many of the world's most eminent scholars. This valuable volume achieves a new level of integration and interdisciplinarity in treating global change.
Here is a comprehensive introductory discussion of Earth, energy, and the environment in an integrated manner that will lead to an appreciation of our complex planet. The book looks at Earth from the perspective of a livable planet and elaborates on the surface and subsurface processes and the various energy cycles where energy is transformed and stored in the planet’s various spheres. The chapters discuss the interactions between the different parts of Earth—how energy is exchanged between the atmosphere, hydrosphere, biosphere, and geosphere, and how they impact the environment in which we live.
The National Science Foundation (NSF) has played a key role over the past several decades in advancing understanding of Earth's systems by funding research on atmospheric, ocean, hydrologic, geologic, polar, ecosystem, social, and engineering-related processes. Today, however, those systems are being driven like never before by human technologies and activities. Our understanding has struggled to keep pace with the rapidity and magnitude of human-driven changes, their impacts on human and ecosystem sustainability and resilience, and the effectiveness of different pathways to address those challenges. Given the urgency of understanding human-driven changes, NSF will need to sustain and expand its efforts to achieve greater impact. The time is ripe to create a next-generation Earth systems science initiative that emphasizes research on complex interconnections and feedbacks between natural and social processes. This will require NSF to place an increased emphasis on research inspired by real-world problems while maintaining their strong legacy of curiosity driven research across many disciplines ? as well as enhance the participation of social, engineering, and data scientists, and strengthen efforts to include diverse perspectives in research.
Humans have difficulty thinking at the global scale. Yet as we come to understand our planet as a single, interconnected, complex system and encounter compelling evidence of human impact on Earth’s climate and biosphere, the need for a truly global effort is increasingly urgent. In this concise and accessible text, David P. Turner presents an overview of global environmental change and a synthesis of research and ideas from the rapidly evolving fields of earth system science and sustainability science that is suitable for anyone interested in humanity’s current predicaments and what we can do about them. The Green Marble examines Earth’s past, contemporary human disruption, and the prospects for global environmental governance. Turner emphasizes the functioning of the biosphere—the totality of life on Earth—including its influence on geologic history, its sensitivity to human impacts, and its possible role in ameliorating climate change. Relying on models of the earth system that synthesize vast amounts of monitoring information and recent research on biophysical processes, The Green Marble describes a range of scenarios for our planetary home, exploring the effects of anthropogenic greenhouse gas emissions and factors such as economic globalization. Turner juxtaposes cutting-edge ideas from both the geosciences and the social sciences to illustrate how humanity has arrived upon its current dangerous trajectory, and how we might pull back from the brink of civilization-challenging environmental change. Growing out of the author’s popular course on global environmental change, The Green Marble is accessible to non-science majors and provides a framework for understanding the complex relationship of humanity to the global environment.
The most important theme of the discourse on sustainable development and sustainability challenges concerns the relationship between innovation and sustainability. This book represents a realistic critical overview of the state of affairs of sustainable innovations, offering an accessible and comprehensive diagnostic point of reference for both the academic and practitioner worlds. In order for sustainable innovation to truly become mainstream practice in business it is necessary to find out how organizations can strategically and efficiently accommodate sustainability and innovation in such a manner that they accomplish value capturing (for firms, stakeholders, and for society), not merely creating a return on the social responsibility agenda. Addressing this challenge, the book draws together research from a range of perspectives in order to understand the potential shifts and barriers, benefits, and outcomes from all angles: inception, strategic process, and impact for companies and society. The book also delivers insights of (open) innovation in public sector organizations, which is not so much a process of invention as it is one of adoption and diffusion. It examines how the environmental pillar of the triple bottom line in private firms is often a by-product of thinking about the economic pillar, where cost reductions may be achieved through process innovation in terms of eliminating waste and reducing energy consumption. The impact of open innovation on process innovation, and sustainable process innovation in particular, is an underexplored area but is examined in this book. It also considers the role of the individual entrepreneur in bringing about sustainable innovation; entrepreneurs, their small- and medium-sized enterprises (SMEs), as well as the innovation ecosystems they build play a significant role in generating sustainable innovations where these smaller organizations are much more flexible than large organizations in targeting societal needs and challenges. The readership will incorporate PhD students and postgraduate researchers, as well as practitioners from organizational advisory fields.
This book identifies both the consistencies and disparities between Catholic Social Teaching and the United Nation’s (UN) Sustainable Development Goals (SDGs). With Pope Francis’ Laudato si’ encyclical, Catholicism seems to be engaging more than ever with environmental and developmental concerns. However, there remains the question of how these theological statements will be put into practice. The ongoing involvement of the Catholic Church in social matters makes it a significant potential partner in issues around development. Therefore, with the use of the comparative method, this book brings together authors from multiple disciplines to assess how the political and legal aspects of each of the UN’s 17 SDGs are addressed by Catholic Social Teaching. Chapters answer the question of how the Catholic Church evaluates the concept of sustainable development as defined by the Agenda 2030 Goals, as well as assessing how and if it can contribute to shaping the contemporary concept of global development. Examining the potential level of cooperation between the international community and the Catholic Church in the implementation of the Agenda 2030 Goals, this volume will be of keen interest to scholars of Catholic Studies, Religious Studies and the Sociology of Religion, as well as Environmental Studies and Development Studies.
Managing Complexity: Earth Systems and Strategies for the Future introduces and explores systems and complexity in relation to near-synchronous world and environmental problems. These relate to but are not limited to water, biological diversity, worldwide climate change, trade and conflict, global migration and the quest for sustainable development. Complemented by discussion of the new era of the Anthropocene, its many manifestations, and Earth system properties such as planetary boundaries and tipping points this book offers practical suggestions for how a sustainable future for humanity can be realised. Specifically discussed in Managing Complexity: Earth Systems and Strategies for the Future are innovation, education and capacity building, application of the natural and social sciences and new paths towards sustainability based on industrial development and engineering, as well as in diplomacy and foreign aid. The book’s conclusions discuss the ambitious yet vital reforms the authors propose as routes to a sustainable existence. This book will be of great interest to students and scholars of sustainability, sustainable development and complexity theory.
Humanity has so far failed to respect some essential compatibility limits to ensure sustainable development. Is it possible to change the course? This book revolves around this question, focusing on climate change. Averting Climate Catastrophe Together addresses the necessity of meeting the Paris Agreement temperature target and explores what framework could enable climate action in an effective, efficient and equitable manner that is consistent with that goal. It also looks at the contribution of technological change within the economic system, including the feasibility of a global energy transition. Whether humanity can avoid catastrophic climate change appears to depend not on the availability of technological solutions, but rather on international cooperation and coordination. Given the various sustainability issues, this book also discusses whether it is possible to derive a general approach to them. It argues that dealing with compatibility limits in complex systems requires a holistic change in the system structure. Therefore, systems science is discussed together with economics, technological change, and sustainable development. This book targets scientists and experts from different disciplines due to the interdisciplinary topic, but especially from environmental economics and energy technology; policy makers, as policy recommendations are provided to address climate change; as well as the general public due to the pressing common challenge of addressing climate change and comprehensive efforts for sustainable development. Provides evidence based on climate science research on the necessity of meeting the Paris Agreement temperature target Highlights the feasibility of the global energy transition as one major option to mitigate climate change, also going into detail about the process of technological change Brings together systems science with economics, technological change, and sustainable development Derives a framework to meet the Paris Agreement temperature target, enabling coordinated climate action in an effective and efficient manner while pursuing distributive justice