Soil Remediation Guidelines For Barite
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Author | : |
Publisher | : |
Total Pages | : 52 |
Release | : 2009-01-01 |
Genre | : Barite |
ISBN | : 9780778576907 |
This report compiles and summarizes applicable background information and develops soil remediation guidelines for barite (barium sulphate). The barite soil remediation guidelines follow Alberta Environment 2009 protocols wherever applicable and appropriate, and only deviate from these protocols where dictated by particular issues relevant to barite.--Document.
Author | : L. E. Deuel |
Publisher | : Pennwell Books |
Total Pages | : 280 |
Release | : 1997 |
Genre | : Business & Economics |
ISBN | : |
This book is designed as a guide for professionals involved with the day-to-day management of exploration and production operations. It develops the concept of limiting constituents, spill remediation, and exploration and production waste disposal on-site. It provides a thorough discussion of soil chemistry, sampling, analyses, and conditions, and presents calculation techniques for determining soil amendments based on soil type and contaminants present.
Author | : Alberta. Alberta Environment |
Publisher | : |
Total Pages | : 51 |
Release | : 2004 |
Genre | : Barite |
ISBN | : 9780778531630 |
Author | : |
Publisher | : |
Total Pages | : 52 |
Release | : 2009-01-01 |
Genre | : Barite |
ISBN | : 9780778576914 |
This report compiles and summarizes applicable background information and develops soil remediation guidelines for barite (barium sulphate). The barite soil remediation guidelines follow Alberta Environment 2009 protocols wherever applicable and appropriate, and only deviate from these protocols where dictated by particular issues relevant to barite.--Document.
Author | : |
Publisher | : |
Total Pages | : |
Release | : 2004 |
Genre | : Barite |
ISBN | : 9780778531661 |
Author | : |
Publisher | : DIANE Publishing |
Total Pages | : 132 |
Release | : 2002 |
Genre | : Arsenic wastes |
ISBN | : 1428900209 |
Author | : Peter Ryan |
Publisher | : John Wiley & Sons |
Total Pages | : 387 |
Release | : 2019-12-16 |
Genre | : Science |
ISBN | : 1119568587 |
Environmental and Low-Temperature Geochemistry presents conceptual and quantitative principles of geochemistry in order to foster understanding of natural processes at and near the earth’s surface, as well as anthropogenic impacts and remediation strategies. It provides the reader with principles that allow prediction of concentration, speciation, mobility and reactivity of elements and compounds in soils, waters, sediments and air, drawing attention to both thermodynamic and kinetic controls. The scope includes atmosphere, terrestrial waters, marine waters, soils, sediments and rocks in the shallow crust; the temporal scale is present to Precambrian, and the spatial scale is nanometers to local, regional and global. This second edition of Environmental and Low-Temperature Geochemistry provides the most up-to-date status of the carbon cycle and global warming, including carbon sources, sinks, fluxes and consequences, as well as emerging evidence for (and effects of) ocean acidification. Understanding environmental problems like this requires knowledge based in fundamental principles of equilibrium, kinetics, basic laws of chemistry and physics, empirical evidence, examples from the geological record, and identification of system fluxes and reservoirs that allow us to conceptualize and understand. This edition aims to do that with clear explanations of fundamental principles of geochemistry as well as information and approaches that provide the student or researcher with knowledge to address pressing questions in environmental and geological sciences. New content in this edition includes: Focus Boxes – one every two or three pages – providing case study examples (e.g. methyl isocyanate in Bhopal, origins and health effects of asbestiform minerals), concise explanations of fundamental concepts (e.g. balancing chemical equations, isotopic fractionation, using the Keq to predict reactivity), and useful information (e.g. units of concentration, titrating to determine alkalinity, measuring redox potential of natural waters); Sections on emerging contaminants for which knowledge is rapidly increasing (e.g. perfluorinated compounds, pharmaceuticals and other domestic and industrial chemicals); Greater attention to interrelationships of inorganic, organic and biotic phases and processes; Descriptions, theoretical frameworks and examples of emerging methodologies in geochemistry research, e.g. clumped C-O isotopes to assess seawater temperature over geological time, metal stable isotopes to assess source and transport processes, X-ray absorption spectroscopy to study oxidation state and valence configuration of atoms and molecules; Additional end-of-chapter problems, including more quantitatively based questions. Two detailed case studies that examine fate and transport of organic contaminants (VOCs, PFCs), with data and interpretations presented separately. These examples consider the chemical and mineralogical composition of rocks, soils and waters in the affected system; microbial influence on the decomposition of organic compounds; the effect of reduction-oxidation on transport of Fe, As and Mn; stable isotopes and synthetic compounds as tracers of flow; geological factors that influence flow; and implications for remediation. The interdisciplinary approach and range of topics – including environmental contamination of air, water and soil as well as the processes that affect both natural and anthropogenic systems – make it well-suited for environmental geochemistry courses at universities as well as liberal arts colleges.
Author | : K. J. Schulz |
Publisher | : Geological Survey |
Total Pages | : 868 |
Release | : 2017 |
Genre | : Business & Economics |
ISBN | : 9781411339910 |
As the importance and dependence of specific mineral commodities increase, so does concern about their supply. The United States is currently 100 percent reliant on foreign sources for 20 mineral commodities and imports the majority of its supply of more than 50 mineral commodities. Mineral commodities that have important uses and face potential supply disruption are critical to American economic and national security. However, a mineral commodity's importance and the nature of its supply chain can change with time; a mineral commodity that may not have been considered critical 25 years ago may be critical today, and one considered critical today may not be so in the future. The U.S. Geological Survey has produced this volume to describe a select group of mineral commodities currently critical to our economy and security. For each mineral commodity covered, the authors provide a comprehensive look at (1) the commodity's use; (2) the geology and global distribution of the mineral deposit types that account for the present and possible future supply of the commodity; (3) the current status of production, reserves, and resources in the United States and globally; and (4) environmental considerations related to the commodity's production from different types of mineral deposits. The volume describes U.S. critical mineral resources in a global context, for no country can be self-sufficient for all its mineral commodity needs, and the United States will always rely on global mineral commodity supply chains. This volume provides the scientific understanding of critical mineral resources required for informed decisionmaking by those responsible for ensuring that the United States has a secure and sustainable supply of mineral commodities.
Author | : |
Publisher | : |
Total Pages | : 498 |
Release | : 2005 |
Genre | : Combustion |
ISBN | : |
Author | : Food and Agriculture Organization of the United Nations |
Publisher | : Food & Agriculture Org. |
Total Pages | : 156 |
Release | : 2018-04-30 |
Genre | : Technology & Engineering |
ISBN | : 9251305056 |
This document presents key messages and the state-of-the-art of soil pollution, its implications on food safety and human health. It aims to set the basis for further discussion during the forthcoming Global Symposium on Soil Pollution (GSOP18), to be held at FAO HQ from May 2nd to 4th 2018. The publication has been reviewed by the Intergovernmental Technical Panel on Soil (ITPS) and contributing authors. It addresses scientific evidences on soil pollution and highlights the need to assess the extent of soil pollution globally in order to achieve food safety and sustainable development. This is linked to FAO’s strategic objectives, especially SO1, SO2, SO4 and SO5 because of the crucial role of soils to ensure effective nutrient cycling to produce nutritious and safe food, reduce atmospheric CO2 and N2O concentrations and thus mitigate climate change, develop sustainable soil management practices that enhance agricultural resilience to extreme climate events by reducing soil degradation processes. This document will be a reference material for those interested in learning more about sources and effects of soil pollution.