The pharmaceutical industry is one of the most important industries in the world, offering new medicines, vaccines, and cures to a global population. It is a massive industry, worthy of a deep and thorough examination of its processes and chemistry, with a view toward sustainability. The authors describe what is and isn't truly sustainable, offering a new approach and a new definition of the sustainability of pharmaceutical and chemical engineering and the science behind it. This is a cutting-edge work, aimed at engineers, scientists, researchers, chemists, and students.
This is the second volume in a four-volume series aimed at guiding the pharmaceutical industry toward sustainability. After analyzing and exposing some of the backward and ill-conceived notions that guide the present state of the industry, this volume presents key theories and new, groundbreaking solutions for re-thinking the processes involved in the engineering of pharmaceuticals and offers a fundamental paradigm shift. The 4 volumes in this ambitious project are: • Volume 1: Practice, Analysis, and Methodology • Volume 2: Theories and Solutions • Volume 3: Applications for Mental Disorder Treatments • Volume 4: Applications for Physical Disorder Treatments This ground-breaking set of books is a unique and state-of-the-art study that only appears here, within these pages. A fascinating study for the engineer, scientist, and pharmacist working in the pharmaceutical industry and interested in sustainability, it is also a valuable textbook for students and faculty studying these subjects.
Based on groundbreaking new ideas, this treatise signals a return to a rebuilding and reshaping of the curriculum as the primary tool for education This book presents a new definition of "curriculum" and what it should consist of, with a view toward creating a more ethical, educated, and thinking person. Rather than treating students as "products" for society, this approach returns to a view of the curriculum as a tool for educating students to reason through problems, be bold in creating new solutions, and contribute to a more vibrant, just world. The university curriculum introduced in the post-Renaissance era, dominated by doctrinal philosophy, is based on "learning" or "skill development," suitable for creating a "learned" society that would eventually serve the establishment. This curriculum has been promoted as the only form suitable for the modern education system. It has introduced a tremendous amount of tangible advancement in all fields of the structured education system. These tangible gains are often promoted as "knowledge." This has created confusion between education (acquiring knowledge) and learning, training or skill development. This book seeks to clarify the difference between these two divergent views of education. It has been shown that the current curriculum is not conducive to increasing a student's knowledge because it is based on consolidating preconceived ideas that have been either passed on from previous generations or gained through personal experience. In most cases, this mode of cognition will not create a pathway for gaining knowledge that brings one closer to discovery. The term "education," on the other hand, is always meant to be a process of "bringing forth" one's inherent qualities and unique traits, necessary and sufficient for increasing one's knowledge.
This third volume in a four-volume set offers new theories and applications for the diagnosis and treatment of mental disorders. Having laid the groundwork in the first two volumes, the authors now embark on significant, real-life scenarios that apply their philosophy to mental disorder treatments. The goal of the project is to take the industry toward sustainability, not just in terms of the chemical engineering used to create medicines, but also environmentally, economically, and personally. Their unique approach uses a more holistic and philosophically cohesive method for treating mental disorders, making the industry "greener" and the patient healthier. The four volumes in "The Greening of Pharmaceutical Engineering" are: Volume 1: Practice, Analysis, and Methodology Volume 2: Theories and Solutions Volume 3: Applications for Mental Disorder Treatments Volume 4: Applications for Physical Disorder Treatments This ground-breaking set of books is a unique and state-of-the-art study that only appears here, within these pages. A fascinating study for the engineer, scientist, and pharmacist working in the pharmaceutical industry and interested in sustainability, it is also a valuable textbook for students and faculty studying these subjects.
Taking a fresh new look at the energy industry and how the Earth's resources are being developed, the aim of this book is to aid engineers and scientists in attaining sustainability in this field, both from an economic and environmental perspective. The author herein presents engineering research and practice that is focused on achieving energy sustainability from a global perspective, as is also outlined in other Scrivener books, such as The Greening of Petroleum Operations and the author's own recently published book, Sustainable Energy Pricing, the companion volume to this book. The author applies the principles of economic sustainability developed there to re-examine actual engineering practices in fossil fuel and alternative energy (such as wind and tidal power) exploration and development. One of the book’s unique features is its analysis of what is deficient in the thinking and analytical frameworks that inform engineering work done in the field. The book addresses the complex issues surrounding our quest for sustainability and the key causes of the challenges that face the energy industry and its resource development. From this standpoint, the book challenges the reasoning and conclusions drawn from the often-quoted theory of "peak oil".
This is the first book to address the issues of affordable power, sustainable energy, and reduced environmental impact through the science of energy pricing. Looking at the availability of natural resources from an engineering perspective, and determining how they can be priced to achieve sustainability in the energy sector, is the aim of this groundbreaking new work. Most current models used in energy pricing are based on linear analyses. While these models work well for targeted scenarios within a short time frame, they do not provide one with a scientific tool that can include many facets of the information age. The existing models do not include environmental sustainability in an integrated fashion. This is mainly because environmental costs are still considered to be intangible, and intractable with conventional economic analysis tools. Though one existing model acknowledges some possible theoretical truth to concerns expressed about the onset of 'peak oil'—the period in which new oil production must begin a decline of unknown and indefinite duration —this model has little or nothing to say about continuing practices in the extraction and production of fossil fuel that are themselves based on denying any significance or role for such thinking in the immediate future. A serious limitation of that discourse is its insistence on polarizing opinions "for" or "against" environmental sustainability, peak oil, and affordable energy prices. This book proceeds instead to isolate the absence of any agreed criteria for what would constitute inherently sustainable development and examines the main outlines of the history and political economy of energy resource exploration and development since the 1850s from this standpoint. It proposes specific directions in which to take some of the leading alternatives and amendments to current energy pricing practices (as well as some of the most promising energy development alternatives) in order to fulfill the time criteria required for an inherently sustainable trend. The author shows how, and why, identifying unsustainable practices and consequences can make a case for closing down particular oil and gas production operations, while averting the time-wasting approach of trying to fix what really has gone beyond fixing. However, it is possible, necessary, and actually far better to replace these methods with newer, scientifically based methods for achieving overall energy sustainability.
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