Evaporation and Droplet Growth in Gaseous Media

Evaporation and Droplet Growth in Gaseous Media
Title Evaporation and Droplet Growth in Gaseous Media PDF eBook
Author N.A. Fuchs
Publisher Elsevier
Pages 81
Release 2013-10-22
Genre Science
ISBN 1483225631

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Evaporation and Droplet Growth in Gaseous Media deals with the evaporation of droplets of liquid in gaseous media and the reverse process of droplet growth in a medium supersaturated with the vapor of the liquid. Thediscussion is restricted to the kinetics of evaporation and growth of droplets of pure liquids (and heat transfer to the same). Comprised of three chapters, this book first examines the quasi-stationary evaporation and growth of droplets that are motionless relative to the medium and the hydrodynamic factor is absent. The Maxwell equation, the basis of the theory of evaporation of droplets in a gaseous medium, is taken into account. The influence of the Stefan flow and the concentration change at the surface on the rate of evaporation are considered, along with the evaporation of droplets in a vessel with absorbing walls and the fall in temperature of both free evaporating droplets and supported evaporating droplets. The second chapter is devoted to the quasi-stationary evaporation of droplets in a stream of gas, that is, droplets moving relative to the medium. The last chapter focuses on non-stationary evaporation and growth of droplets that either motionless or moving relative to the medium. This monograph will be of interest to students, practitioners, and researchers in inorganic and structural chemistry.

Chemical Vapor Deposition for Nanotechnology

Chemical Vapor Deposition for Nanotechnology
Title Chemical Vapor Deposition for Nanotechnology PDF eBook
Author Pietro Mandracci
Publisher BoD – Books on Demand
Pages 166
Release 2019-01-10
Genre Technology & Engineering
ISBN 1789849608

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Chemical vapor deposition (CVD) techniques have played a major role in the development of modern technology, and the rise of nanotechnology has further increased their importance, thanks to techniques such as atomic layer deposition (ALD) and vapor liquid solid growth, which are able to control the growth process at the nanoscale. This book aims to contribute to the knowledge of recent developments in CVD technology and its applications. To this aim, important process innovations, such as spatial ALD, direct liquid injection CVD, and electron cyclotron resonance CVD, are presented. Moreover, some of the most recent applications of CVD techniques for the growth of nanomaterials, including graphene, nanofibers, and diamond-like carbon, are described in the book.

Radioactive Air Sampling Methods

Radioactive Air Sampling Methods
Title Radioactive Air Sampling Methods PDF eBook
Author Mark L. Maiello
Publisher CRC Press
Pages 602
Release 2010-10-18
Genre Nature
ISBN 1420009680

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Although the field of radioactive air sampling has matured and evolved over decades, it has lacked a single resource that assimilates technical and background information on its many facets. Edited by experts and with contributions from top practitioners and researchers, Radioactive Air Sampling Methods provides authoritative guidanc

The Airborne Microparticle

The Airborne Microparticle
Title The Airborne Microparticle PDF eBook
Author E. James Davis
Publisher Springer Science & Business Media
Pages 841
Release 2012-12-06
Genre Science
ISBN 3642561527

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It has been thirty years since one of the authors (EJD) began a collaboration with Professor Milton Kerker at Clarkson University in Potsdam, New York using light scattering methods to study aerosol processes. The development of a relatively short-lived commercial particle levitator based on a modification of the Millikan oil drop experiment attracted their attention and led the author to the study of single droplets and solid microparticles by levitation methods. The early work on measurements of droplet evaporation rates using light scattering techniques to determine the size slowly expanded and diversified as better instrumentation was developed, and faster computers made it possible to perform Mie theory light scattering calculations with ease. Several milestones can be identified in the progress of single microparticle studies. The first is the introduction of the electrodynamic balance, which provided more robust trapping of a particle. The electrodynamic levitator, which has played an important role in atomic and molecular ion spectroscopy, leading to the Nobel Prize in Physics in 1989 shared by Wolfgang Paul of Bonn University and Hans Dehmelt of the University of Washington, was easily adapted to trap microparticles. Simultaneously, improvements in detectors for acquiring and storing light scattering data and theoretical and experimental studies of the interesting optical properties of microspheres, especially the work on morphology dependent resonances by Arthur Ashkin at the Bell Laboratories, Richard Chang, from Yale University, and Tony Campillo from the Naval Research Laboratories in Washington D. C.

Superheated Drop Vaporization

Superheated Drop Vaporization
Title Superheated Drop Vaporization PDF eBook
Author John C. Edwards
Publisher
Pages 28
Release 1982
Genre Bromotrifluoromethane
ISBN

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Superheated Drop Vaporization

Superheated Drop Vaporization
Title Superheated Drop Vaporization PDF eBook
Author C. Melvin Lepper
Publisher
Pages 596
Release 1982
Genre Bromotrifluoromethane
ISBN

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Condensation Particle Counting Technology and Its Applications

Condensation Particle Counting Technology and Its Applications
Title Condensation Particle Counting Technology and Its Applications PDF eBook
Author Longfei Chen
Publisher CRC Press
Pages 171
Release 2024-09-20
Genre Technology & Engineering
ISBN 1040105963

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Condensation Particle Counting Technology and Its Applications introduces the principles, key components, calibration methods, and applications of condensation particle counting systems. This book delves into the adverse effects of fine particles on human health, along with the existing detection technologies for these particles. It discusses the theories and methods of optical measurement for fine particles and elaborates on the applicable conditions for each light scattering theory, providing a theoretical foundation for detecting particle-scattered light. This book concludes with an overview of the challenges posed by ongoing climate change and future research prospects in condensation particle counting (CPC). This book is intended for industry professionals and environmental researchers specializing in particle and aerosol measurement, detection methods, and technology.