Use of Humic Substances to Remediate Polluted Environments From Theory to Practice

Use of Humic Substances to Remediate Polluted Environments  From Theory to Practice
Author: Irina V. Perminova,Kirk Hatfield,Norbert Hertkorn
Publsiher: Springer Science & Business Media
Total Pages: 544
Release: 2005-03-24
Genre: Science
ISBN: 1402032501

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Effective remediation of polluted environments is a priority in both Eastern and Western countries. In the U.S. and Europe, remediation costs generally exceed the net economic value of the land. As a result, scientists and engineers on both sides of the Atlantic have aggressively tried to develop novel technologies to meet regulatory standards at a fraction of the costs. In situ remediation shows considerable promise from both technical and economic perspectives. In situ technologies that deploy natural attenuating agents such as humic substances (HS) may be even more cost effective. Numerous studies have shown humics capable of altering both the chemical and the physical speciation of the ecotoxicants and in turn attenuate potential adverse environmental repercussions. Furthermore, the reserves of inexpensive humic materials are immense. Which suggests HS portend great promise as inexpensive amendments to mitigate the environmental impacts of ecotoxicants and as active agents in remediation. To elucidate emerging concepts of humics-based remediation technologies, we organized the NATO Advanced Research Workshop (ARW), entitled "Use of humates to remediate polluted environments: from theory to practice", held on September 23-29, 2002 in Zvenigorod, Russia (see the web-site http://www.mgumus.chem.msu.ru/arw).

Use of Humic Substances to Remediate Polluted Environments From Theory to Practice

Use of Humic Substances to Remediate Polluted Environments  From Theory to Practice
Author: Irina V. Perminova,Kirk Hatfield,Norbert Hertkorn
Publsiher: Springer Science & Business Media
Total Pages: 506
Release: 2006-03-30
Genre: Science
ISBN: 9781402032523

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Effective remediation of polluted environments is a priority in both Eastern and Western countries. In the U.S. and Europe, remediation costs generally exceed the net economic value of the land. As a result, scientists and engineers on both sides of the Atlantic have aggressively tried to develop novel technologies to meet regulatory standards at a fraction of the costs. In situ remediation shows considerable promise from both technical and economic perspectives. In situ technologies that deploy natural attenuating agents such as humic substances (HS) may be even more cost effective. Numerous studies have shown humics capable of altering both the chemical and the physical speciation of the ecotoxicants and in turn attenuate potential adverse environmental repercussions. Furthermore, the reserves of inexpensive humic materials are immense. Which suggests HS portend great promise as inexpensive amendments to mitigate the environmental impacts of ecotoxicants and as active agents in remediation. To elucidate emerging concepts of humics-based remediation technologies, we organized the NATO Advanced Research Workshop (ARW), entitled "Use of humates to remediate polluted environments: from theory to practice", held on September 23-29, 2002 in Zvenigorod, Russia (see the web-site http://www.mgumus.chem.msu.ru/arw).

Use of Humic Substances to Remediate Polluted Environments

Use of Humic Substances to Remediate Polluted Environments
Author: Irina V. Perminova,Kirk Hatfield,Norbert Hertkorn
Publsiher: Unknown
Total Pages: 506
Release: 2005
Genre: Humates
ISBN: 6610308187

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This is the first book aimed at the development of a common language among scientists working in the field of humic research and environmental engineers specialized in remediation technologies. In pursuing this goal, the engineer is provided with sufficient information on the basics and state of the art of humic research pertinent to remediation. For the interested scientist, this text provides sufficient information on the methods, needs, and limitations of existing remediation technologies, and on the latest developments in applied humic research. A novel approach is undertaken to categorizing the interactions encountered between humics, ecotoxicants, and living organisms in a polluted environment in the context of remediation chemistry. The volume pays particular attention to in situ remediation as the most viable option for the application of humics. The content of this book is of interest to scientists and engineers.

Soil and Water Pollution Monitoring Protection and Remediation

Soil and Water Pollution Monitoring  Protection and Remediation
Author: Irena Twardowska,Sebastian Stefaniak,Herbert E. Allen,Max M. Häggblom
Publsiher: Springer Science & Business Media
Total Pages: 638
Release: 2007-04-30
Genre: Science
ISBN: 9781402047282

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This book details the state-of-the art in early warning monitoring of anthropogenic pollution of soil and water. It is unique with regard to its complex, multidisciplinary, mechanistic approach. Top scientists establish links and strengthen weak connections between specific fields in biology, microbiology, chemistry, biochemistry, toxicology, sensoristics, soil science and hydrogeology.

Nanomaterials for Environmental Protection

Nanomaterials for Environmental Protection
Author: Boris I. Kharisov,Oxana Vasilievna Kharissova,H. V. Rasika Dias
Publsiher: John Wiley & Sons
Total Pages: 592
Release: 2014-08-27
Genre: Technology & Engineering
ISBN: 9781118845547

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This book is divided into four main sections thoroughly analyzing the use of nanomaterials for water, air and soil solutions, and emphasizing environmental risks. Providing background on nanomaterials' two-decade study, it discusses the characterization and application of unconventional disinfectants, called antimicrobial nanomaterials, which fall into three categories and, while seemingly harmless, have potential hazards if applied improperly. Special attention is given to the process of remediation, synthetics techniques, and properties of nanomaterials, with examples to which new and trained readers in the field can relate and understand. an interdisciplinary approach, aimed at scientists in physical chemistry, nanotechnology, and environmental sciences includes applications of non-conventional techniques in environmental protection furthers the development of applied nanoscience and nanotechnology suggests new industrial projects and university courses addressing nanotechnology in and for the environment includes applications for water, air and soil protection

Sustainability of Agricultural Environment in Egypt Part II

Sustainability of Agricultural Environment in Egypt  Part II
Author: Abdelazim M. Negm,Mohamed Abu-hashim
Publsiher: Springer
Total Pages: 422
Release: 2019-01-07
Genre: Science
ISBN: 9783319953571

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This volume discusses the sustainability of Egypt’s agriculture and the challenges involved. It provides a comprehensive review and the latest research findings, and covers a variety of topics under the following themes: · Integrated natural resources management for sustainable production · Integrated biopesticides and biofertilizers for sustainable agriculture · Integrated plant and animal production for a sustainable food supply · Policies for sustainable agriculture in Egypt The volume closes with a summary of the key conclusions and recommendations from all chapters. Together with the companion volume Sustainability of Agricultural Environment in Egypt: Part I, it offers an essential source of information for postgraduate students, researchers, and stakeholders alike.

Simulation and Assessment of Chemical Processes in a Multiphase Environment

Simulation and Assessment of Chemical Processes in a Multiphase Environment
Author: Ian Barnes,Mykola M. Kharytonov
Publsiher: Springer Science & Business Media
Total Pages: 549
Release: 2008-10-21
Genre: Technology & Engineering
ISBN: 9781402088469

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The book reviews the current state of knowledge on the chemical and physical processes occurring in the environmental media (i) the atmosphere, (ii) the aqueous phase and (iii) soil and identifies the strengths and weaknesses of the chemical mechanisms (both explicit and condensed) currently available to simulate the multimedia environmental chemistry of volatile organic compounds (VOCs) and particulate matter in these media. Contributions examine how well this knowledge has been incorporated into different types of CT models and appraise the current status and significant issues in the development and usage of the models. Model simulations of some real world chemical perturbations to the Earth system are presented which appraise the performance of the models in relation to "real world" observations. Serious caveats in our understanding of chemical processes and their simulation in the various compartments of the Earth system are highlighted and areas are identified that need urgent improvement, in particular with respect to environmental security.

Toward a Sustainable Agriculture Through Plant Biostimulants

Toward a Sustainable Agriculture Through Plant Biostimulants
Author: Youssef Rouphael,Giuseppe Colla
Publsiher: MDPI
Total Pages: 708
Release: 2021-02-22
Genre: Science
ISBN: 9783036500287

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Over the past decade, interest in plant biostimulants has been on the rise, compelled by the growing interest of researchers, extension specialists, private industries, and farmers in integrating these products in the array of environmentally friendly tools to secure improved crop performance, nutrient efficiency, product quality, and yield stability. Plant biostimulants include diverse organic and inorganic substances, natural compounds, and/or beneficial microorganisms such as humic acids, protein hydrolysates, seaweed and plant extracts, silicon, endophytic fungi like mycorrhizal fungi, and plant growth-promoting rhizobacteria belonging to the genera Azospirillum, Azotobacter, and Rhizobium. Other substances (e.g., chitosan and other biopolymers and inorganic compounds) can have biostimulant properties, but their classification within the group of biostimulants is still under consideration. Plant biostimulants are usually applied to high-value crops, mainly greenhouse crops, fruit trees and vines, open-field crops, flowers, and ornamentals to sustainably increase yield and product quality. The global biostimulant market is currently estimated at about $2.0 billion and is expected to reach $3.0 billion by 2021 at an annual growth rate of 13%. A growing interest in plant biostimulants from industries and scientists was demonstrated by the high number of published peer-reviewed articles, conferences, workshops, and symposia in the past ten years. This book compiles several original research articles, technology reports, methods, opinions, perspectives, and invited reviews and mini reviews dissecting the biostimulatory action of these natural compounds and substances and beneficial microorganisms on crops grown under optimal and suboptimal growing conditions (e.g., salinity, drought, nutrient deficiency and toxicity, heavy metal contaminations, waterlogging, and adverse soil pH conditions). Also included are contributions dealing with the effect as well as the molecular and physiological mechanisms of plant biostimulants on nutrient efficiency, product quality, and modulation of the microbial population both quantitatively and qualitatively. In addition, identification and understanding of the optimal method, time, rate of application and phenological stage for improving plant performance and resilience to stress as well as the best combinations of plant species/cultivar × environment × management practices are also reported. We strongly believe that high standard reflected in this compilation on the principles and practices of plant biostimulants will foster knowledge transfer among scientific communities, industries, and agronomists, and will enable a better understanding of the mode of action and application procedures of biostimulants in different cropping systems.