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Novel Materials and Water Purification introduces recent approaches to the fabrication of novel materials for water purification and discusses several significant applications including removal of heavy metals and pharmaceuticals.
Handbook of Curatives and Crosslinkers, Second Edition presents the mechanisms of action of these additives, methods of their use, their effects on the properties of transformed products, as well as their applications. The book outlines the most-recent information on additives that convert soluble monomers, prepolymers, or polymers to insoluble polymer networks commonly known as thermosetting polymers. Chapters cover the common use of curatives in many industrial products manufactured in large scale, such as adhesives, sealants, coatings, inks, explosives, propellants and foams, and in emerging products such as optoelectronics, light-emitting diodes, shape memory polymers, and more. In addition, crosslinkers used in typical industrial processing methods, such as solar cells, vulcanization, adhesives, foams, and roofing are covered. Each section presents the effect of the additive, including an evaluation of its chemical and physical properties. Also available is the complementary Databook of Curatives and Crosslinkers, Second Edition, which provides information on both the commercial and generic chemical products used as curatives and crosslinkers.
Databook of Curatives and Crosslinkers, Second Edition provides expanded coverage of the latest curative and crosslinker product data, including detailed reviews and evaluations of these product categories with key considerations, benefits, and applications highlighted. Forty groups of curatives and crosslinkers are included in the book, including the following chemical groups of additives: acids, acrylamides, aldehydes, amides, amidoamines, amines, anhydrides, aziridines, borates, epoxy-functionalized polymers, carbamides, carbodiimides, chitosan derivatives, cyanamides, diols, glutarates, glycols, graphene oxide derivatives, hydantoin glycols, hydrazides, hydroxides, hydroxyl-containing moieties, imidazoles, isocyanates, isocyanurates, ketimines, maleimides, melamines, novolacs, peroxides, peroxyketals, phenols, polyols, salts, silanes, siloxanes, thiols, titanates, and ziconium derivatives. The additives discussed in the handbook have been suggested for use in over 60 polymers and rubbers, as well as in close to 100 groups of products. Information on each additive is divided into 5 sections: General Information which covers name, CAS #, active matter, amine nitrogen, chemical class, cure schedule, and more; Physical Properties which covers odor, color, density, freezing point, gel time, particle size, thin film set time, and more; Health and Safety covering autoignition temperature, dermal LD50, exposure limits, flash point, and more; Ecological Properties covering toxicity to algae, bacteria, and fish, sewage treatment, and more, and lastly, Use and Performance which offers information on manufacturers, outstanding properties, and more.
This detailed volume explores a wide range of evidence-based complementary medicine and various bio-analytical techniques used to define botanical products. Collecting recent work and current developments in the field of contemporary phytomedicine as well as their future possibilities in human health care, the book includes unique contributions in the form of chapters on phytomedicine and screening biological activities explained with diverse hyphenated techniques, as well as issues related to herbal medications, such as efficacy, adulteration, safety, toxicity, regulations, and drug delivery. Written for the Springer Protocols Handbooks series, chapters feature advice from experts on how to best conduct future experiments. Extensive and practical, Natural Product Experiments in Drug Discovery serves as an ideal reference for students, professors, and researchers in universities, R&D institutes, pharmaceutical and herbal enterprises, and health organizations.
This updated volume provides stepwise instructions for the analysis of numerous clinically important analytes by mass spectrometry. Mass spectrometry offers clinical laboratory scientists a number of advantages including increased sensitivity and specificity, multiple component analysis, and limited need for specialized reagents. These techniques are essential in laboratory fields including endocrinology, biochemical genetics, drug analysis, proteomics, and pathogen identification. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. Cutting-edge and practical, Clinical Applications of Mass Spectrometry in Biomolecular Analysis: Methods and Protocols, Second Edition is an ideal resource for clinical laboratory scientists who are already using or thinking of bringing mass spectrometry to their laboratories.
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