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Books > Professional & Technical > Agriculture & farming > Pest control > General
The authors of this book report up-to-date methodologies relating to isolation, identification and use of various enzymes and receptor systems that serve as targets for insecticide action or as sites for resistance development. Thus, this book serves as an indispensable tool for scientists in academia and industry research, investigating or developing new insecticides with selective properties for the benefit of the environment. Possible countermeasures for resistance to novel insecticides are discussed.
Methyl Bromide is a naturally occurring compound but also a man-made product, widely used as a fumigant in agriculture, horticulture and the preservation of structural materials. It is also believed to play a significant role in the depletion of the ozone layer. Since 1991, a fierce debate has raged on the relative merits of scientific, political, environmental and economic arguments for and against the use of this chemical. This book does not set out to convince the reader of a predetermined view point. Its purpose is to set out as much of the scientific debate as is possible to date and let the reader weigh up the available evidence. In this volume are covered the major relevant fields of science including agriculture, atmospheric chemistry, oceanography, environmental sciences, chemistry, biology and toxicology, as well as two chapters on potential alternatives to methyl bromide. The authors who have contributed to this book are international experts who have played pivotal roles in the international debate on methyl bromide.
This research aimed to identify and understand mechanisms thar underlie the beneficial effect of ozonation on removal of pesticides and other micropollutants by Granular Activated Carbon (GAC) filtration. This allows optimization of the combination of these two processes, termed Biological Activated Carbon filtration. The study concluded that ozonation significantly improves removal of atrazine by GAC filtration not only due to the wellknown effect of oxidation of atrazine, but also due to the effect of partical oxidation of Background Organic Matter (BOM) present in water. Ozone-induced oxidation of BOM was found to improve adsorption of atrazine in GAC filters. Biodegradation of atrazine in these filters wasnot demonstrated. Higher GAC's adsorption capacity for atrazine and faster atrazine's mass transfer in filters with ozonated rather than non-ozonated influent were explained as due to ozonated BOM. Both can be attributed to enhanced biodegradability and reduced adsorbsbility of partially ozidated BOM compounds, resulting in their increased biodegradation and decreased adsorption in GAC filters.
Insect pest control continues to be a challenge for agricultural producers and researchers. Insect resistance to commonly used pesticides and the removal of toxic pesticides from the market have taken their toll on the ability of agricultural producers to produce high quality, pest-free crops within economical means. In addition to this, they must not endanger their workers or the environment.
The Ecological Farm is a breakthrough resource for ecological fruit and vegetable growers at every scale who want to go beyond organic. Through a unique ecosystem-balancing approach focusing on reduced tillage, minimising farm and garden inputs and pest control, you’ll learn how to build higher soil quality and fertility by using fewer harmful inputs.  Farmer, consultant, and educator Helen Atthowe (along with her late husband, Carl Rosato) have decades of farming experience which is shared in this essential book. They guide readers on how to reduce or eliminate the use of outside inputs of fertiliser or pesticides – even those that are commonly used on certified organic orchards and market gardens. With clear, easy to action language and colour photography, charts, and graphs throughout, The Ecological Farm emphasizes the importance of managing the details of an entire growing system over the full life of an enterprise. The Ecological Farm features a crop-by-crop guide to growing more than 25 of the most popular and profitable vegetables and fruits, including specific management advice for dealing with pests and diseases. You’ll also learn how to: design a system that establishes a year-round root-in-soil system for microbial health strengthen the “immune system†of a farm or garden supply crop needs using only on-farm inputs such as cover crops and living mulch maximise the presence of beneficial insects and microbes minimise ecological impact in dealing with insect pest and disease problems The Ecological Farm makes complex, sometimes messy, ecological concepts and practices understandable to all growers, and makes healthy farming, in which nature is invited to participate, possible.
Swathes of the human world are covered in ornamental grass lawns; they are the single most commonly encountered horticultural feature on the planet. Unfortunately, they are now often viewed as resource-draining green deserts due to the lack of plant and animal diversity, the need for frequent mowing and watering, and addition of lawn greening products to keep them looking at their best. It is a venerable horticultural feature that is essentially frozen in time, and with few alternatives to whet the appetite, the lawn has languished in its current grass-only format for decades. Until now. Tapestry lawns are a new, practically researched and timely development of the ornamental lawn format that integrates both horticultural practice and ecological science and re-determines the potential of a lawn. Mown barely a handful of times a year and with no need for fertilisers or scarifying, tapestry lawns are substantially richer in their diversity of plant and animal life compared to traditional grass-only lawns and see the return of flowers and colour to a format from which they are usually purposefully excluded. Tapestry Lawns: Freed from Grass and Full of Flowers traces the changes in the lawn format from its origins to the modern day and offers information on how and why the tapestry lawn construct is now achievable. It provides guidance on how to create and maintain a tapestry lawn of your own and champions the potential benefits for wildlife that can follow. Features Accessible and informative to all types of readers from academic to amateur Includes a refined and tested set of useful tapestry lawn plants Contains step-by-step instructions for creation and management methods of grass-free lawns Illustrated in full colour If you have ever thought about mowing your lawn much less, making it much more colourful and wildlife friendly, then this book will inform and guide you to create a perfect, grass-free lawn.
This book examines the chemistry and mode of action of herbicides, insecticides, fungicides and plant growth regulators. It follows crop protection strategies from early discoveries to the present day, emphasising the biochemical targets of the compounds discussed. Chemistry and Mode of Action of Crop Protection Agents provides an in-depth, yet easy to read and understand, review of the major classes of pesticides, explaining also the basis of their activity and selectivity. Throughout, there are many references to allow the reader to pursue areas of special interest, and each chapter contains questions to ensure that the text has been understood. This is the first book on the mode of action of pesticides to have been published in over ten years, and as such will have a very wide audience. It is aimed primarily at graduate level but will also be relevant to the needs of some sixth form and undergraduate courses, as well as to industrialists and advisors in the field of crop protection.
Worldwide, there are a vast array of agricultural pesticides and chemicals used to eliminate pests and to protect health, food, and fiber. The safe handling, usage, and disposal of these chemicals and pesticides is of vital importance. The Agrochemical and Pesticides Safety Handbook serves as a field resource on the hazards of these pesticides and chemicals.
This book presents a collection of known information on the insecticidal properties of constituents of higher plants, microorganisms, animals, and marine flora and fauna in order to assist researchers in selecting leads for further development.
The field of plant genetic engineering has arisen from the laboratory and into the market place as a technology to provide farmers and consumers with improved crops. 1996 marks a turning point as the first genetically engineered crops to control agronomically important pests are registered for commercial sale. In most cases it has taken over a decade to develop commercially viable products. This book serves both as an update of current technologies that have been proven successful for engineering insect tolerant crops and an overview of new technologies that are being pursued for the development of new genetically engineered crops in the future. The book includes an introductory chapter on the world wide importance of insect problems in crops and the advantages of genetically engineered crops over traditional breeding; reviews insect control principles that are being develpoed for genetically engineered crops; and provides an overview of many new areas that wil lead to new insect control agents in the next decade.
Due to the prohibitive cost of synthetic pesticides and the problems of environmental pollution caused by continuous use of these chemicals, there is a renewed interest in the use of botanicals for crop protection. Agricultural entomologists, nematologists, and pathologists the world over are now actively engaged in research into the use of plants to fight agricultural pests and diseases, and to reduce the losses caused by them. Botanical Pesticides in Agriculture reviews the research on botanical pesticides used to combat losses due to pests of agricultural importance, with special attention focused on the use of higher plants. This book will serve as the baseline reference work for future research, and many of the botanicals discussed, such as neem, bael, begonia, pyrethrum, tobacco, karanj, and mahuwa, may become integral parts of pest control programs currently being developed. It is believed that botanical pesticides will minimize the undesirable side effects of synthetic pesticides and help preserve the environment for future generations.
Seeds provide an efficient means in disseminating plant virus and viroid diseases. The success of modern agriculture depends on pathogen free seed with high yielding character and in turn disease management. There is a serious scientific concern about the transmission of plant viruses sexually through seed and asexually through plant propagules. The present book provides the latest information along with the total list of seed transmitted virus and viroid diseases at global level including, the yield losses, diagnostic techniques, mechanism of seed transmission, epidemiology and virus disease management aspects. Additional information is also provided on the transmission of plant virus and virus-like diseases through vegetative propagules. It is also well known that seed transmitted viruses are introduced into new countries and continents during large-scale traffic movements through infected germplasm and plant propogules. The latest diagnostic molecular techniques in different virus-host combinations along with disease management measures have been included. The book shall be a good reference source and also a text book to the research scientists, teachers, students of plant pathology, agriculture, horticulture, life sciences, green house managers, professional entrepreneurs, persons involved in quarantines and seed companies. This book has several important features of seed transmitted virus diseases and is a good informative source and thus deserves a place in almost all university libraries, seed companies and research organizations.
This is a comprehensive textbook covering all aspects of entomology in the human environment. There is particular emphasis on control and biology of pests. The book provides students of entomology with a clear theoretical and practical foundation in household and structural insect pests.;This book should be of interest to senior undergraduates and masters students in entomology; pest control workers; researchers in the pesticide industry.
This work provides the fundamental information necessary for the development of weed management strategies for all the major US crops using concepts that can be applied worldwide. Weed management systems are provided for cotton, peanut, soybean, wheat, barley, oat, sorghum, rice, fruits, nut crops, and more. The dynamics involved in creating the best management approaches for specific types of crops are explained.
In Search of More Solutions provides material for chemical "egg race" competitions that help to put the fun back into chemistry, and gives students that "little bit extra" to motivate them to follow a scientific or technical career. Aimed at those following post-16 chemistry courses, the book encourages students to design their own experiments in relation to the tasks set, and as they overcome the obstacles within the tasks, their inventiveness and enthusiasm flourishes. Fifty activities are described, providing students with opportunities to develop their problem-solving skills and teachers with ideas for assignments and investigations. The tasks set in this book have been trialled in schools and colleges around the UK.
This work offers concise, detailed information on the toxicological properties of, and safe handling practices for, pesticides. It provides an overview of the registration process, registration procedures and supplemental registration. An alphabetic listing of over 800 chemicals, including their applications - from insecticides and growth regulators to herbicides, repellents and synergists - is provided.
This essential reference provides complete coverage of integrated pest management (IPM). With more than 40 recognized experts, the book thoroughly details the rationale and benefits of employing an IPM plan and provides technical information on each aspect from cultural practices to choosing when and how to use chemicals. It also brings together research work on pest problems with information on the practical implementation of the tools. Case studies of successful operations are provided as well.
Urban pests are common all over the world. These include cockroaches, flies, mosquitoes, bed bugs, ticks, fleas, ants, termites, rodents and others. These pests thrive in human structures, where there is food, warmth and places to hide. Urban pests are one of the leading causes of illnesses in humans due to allergies, bites, food contamination and phobias. They can also cause significant damage to property and structures. Knowledge and training in this field is vital for professional and trainee pest managers. This book is specifically intended to provide an aid to such candidates. The book contains 500 multiple-choice questions (and answers) grouped into the following major topic areas: * The history of urban entomology * Household pests * Cockroaches * Flies * Mosquitoes * Bed bugs * Termites * Sporadic pests * Stored product pests * Vertebrate pests * Pesticides and pesticide formulations * Handling pesticides * Integrated Pest Control Produced in a convenient format that can be used at any time in any place, the book allows the reader to learn and revise the subject and much more. Its structure allows the study of one topic area at a time, progressing through a simple introduction followed by key revision questions, many of which require students to use their practical knowledge. The answers to each of the questions are provided at the end with short explanations wherever appropriate.
Environmental pollution resulting from widespread pesticide application has become a serious worldwide problem. Plant Pathogenesis and Disease Control is an important new reference that addresses this problem by exploring the biochemical and molecular mechanisms of plant pathogenesis and emphasizing the use of "pest control agents" rather than "pesticides" for plant disease control. Topics examined include pathogenicity, the resistance of plants against pathogens, the offensive and defensive struggle between hosts and parasites, methods for using natural defense mechanisms to develop environmentally sound disease control agents, and the use of modern biotechnology for plant disease control. The book will be an essential reference for phytopathologists, plant biochemists, pesticide chemists, mycologists, plant cell technologists, and agricultural researchers.
Since the publication of the original edition in 1982,
pesticide-related poisonings, both single cases and epidemic-scale
situations, have continued to occur unabated. This new edition of
Pesticides and Neurological Diseases reviews current literature
describing the effects of insecticides (chlorinated hydrocarbons,
organophosphorus and carbamate esters, and the pyrethroid esters),
fungicides (organomercurials, dithiocarbamates), and herbicides
(chlorophenoxy acids and esters) on the mammalian nervous system.
Acute and chronic exposures have resulted in both subtle and
serious neurological deficits in the peripheral and central nervous
systems, marked by transient effects preceding those of delayed
onset and of persistent duration. The chapters have been largely
revised and rewritten to introduce newer theories of mechanism(s)
of action studied at the laboratory bench. New findings and
observations on human intoxications are included as well.
Emphasizing the need for more integrated pest management programmes, this work presents the development and state-of-the-art technology of genetically-engineered microbes, viruses, bacterial toxins and plants. Throughout, both environmental and regulatory concerns are addressed.
Insects have evolved very unique and interesting tactics using chemical signals to survive. Chemical ecology illustrates the working of the biological network by means of chemical analyses. Recent advances in analytical technology have opened the way to a better understanding of the more complicated and abyssal interactions of insects with other organisms including plants and microbes. This book covers recent research on insects and chemical communications and presents the current status about challenges faced by chemical ecologists for the management of pests in agriculture and human health.
This title was first published in 2000: Pesticides and other agricultural chemicals are in use in virtually every country in the world. It is therefore useful and important to those involved with these chemicals to have a collection of data concerning the substances most commonly used for agricultural purposes. This Handbook includes data on over 1,800 substances, including a number of mixtures, which are important in agriculture. Almost all records describing pure chemicals carry the appropriate CAS Registry Number and the associated EINECS Number. All chemicals in this edition which also appear in the twelfth edition of the Merck Index have the Merck Index Number provided. Wherever possible, the following information is also provided for each entry: definitions, classifications, chemical composition, functions, applications, suppliers, melting point, boiling point, density or specific gravity, refractive index, optical rotation, ultraviolet absorption, solubility, and acute toxicity.
Reference to the design of new insecticides nontoxic to the environment and the public emphasizing optimal food production with greater safety. Some 30 international experts examine topics including new types of active molecules among natural products and animal toxins; insect metabolic and organ sy
This publication is based on the plant processes and reaction sites for which reliable knowledge on both their physiology and biochem-istry and the mode of herbicidal action is available. Targets of the agrochemical research, such as enzymes of biosynthetic pathways or herbicide-binding peptides in the photosynthetic membrane, are highlighted. Detailed knowledge about the target sites will allow bio-chemical model systems to evaluate the biological activity of newly synthesized compounds before their conventional screening in the greenhouse. Quantitative structure/activity relationships should be performed more reliably with simple biological species or enzymol-ogy assays, to aid in the rational design of pesticides. This text is highly valuable for plant physiologists, pathologists, and chemists in the agrochemical industry and universities. |
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