Sub 2 Nm Particle Characterization in Systems with Aerosol Formation and Growth

Sub 2 Nm Particle Characterization in Systems with Aerosol Formation and Growth PDF Author: Yang Wang
Publisher:
ISBN:
Category : Electronic dissertations
Languages : en
Pages : 256

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Book Description
Aerosol science and technology enable continual advances in material synthesis and atmospheric pollutant control. Among these advances, one important frontier is characterizing the initial stages of particle formation by real time measurement of particles below 2 nm in size. Sub 2 nm particles play important roles by acting as seeds for particle growth, ultimately determining the final properties of the generated particles. Tailoring nanoparticle properties requires a thorough understanding and precise control of the particle formation processes, which in turn requires characterizing nanoparticle formation from the initial stages. The knowledge on particle formation in early stages can also be applied in quantum dot synthesis and material doping. This dissertation pursued two approaches in investigating incipient particle characterization in systems with aerosol formation and growth: (1) using a high-resolution differential mobility analyzer (DMA) to measure the size distributions of sub 2 nm particles generated from high-temperature aerosol reactors, and (2) analyzing the physical and chemical pathways of aerosol formation during combustion. Part. 1. Particle size distributions reveal important information about particle formation dynamics. DMAs are widely utilized to measure particle size distributions. However, our knowledge of the initial stages of particle formation is incomplete, due to the Brownian broadening effects in conventional DMAs. The first part of this dissertation studied the applicability of high-resolution DMAs in characterizing sub 2 nm particles generated from high-temperature aerosol reactors, including a flame aerosol reactor (FLAR) and a furnace aerosol reactor (FUAR). Comparison against a conventional DMA (Nano DMA, Model 3085, TSI Inc.) demonstrated that the increased sheath flow rates and shortened residence time indeed greatly suppressed the diffusion broadening effect in a high-resolution DMA (half mini type). The incipient particle size distributions were discrete, suggesting the formation of stable clusters that may be intermediate phases between initial chemical reactions and downstream particle growth. The evolution of incipient cluster size distributions further provided information on the gaseous precursor reaction kinetics, which matched well with the data obtained through other techniques. Part 2. The size distributions and their evolution measured by the DMAs help explain the physical pathways of aerosol formation. The chemical analysis of the incipient particles is an important counterpart to the existing characterization method. The chemical compositions of charged species were measured online with an atmospheric pressure interface time-of-flight mass spectrometer (APi-TOF). The tandem arrangement of the high-resolution DMA and the APi-TOF realized the simultaneous measurement of the mobility and the mass of combustion-generated natively charged particles, which enabled their chemical and physical formation pathways to be derived. The results showed that the initial stages of particle formation were strongly influenced by chemically ionized species during combustion, and that incipient particles composed of pure oxides did not exist. The effective densities of the incipient particles were much lower than those of bulk materials, due to their amorphous structures and different chemical compositions. Measuring incipient particles with high-resolution DMAs is limited because a DMA classifies charged particles only, while the charging characteristics of sub 2 nm particles are not well understood. The charge fraction of combustion-generated incipient particles was measured by coupling a charged particle remover and a condensation particle counter. A high charge fraction was observed, confirming the strong interaction among chemically ionized species and formed particles. The combustion system was modeled by using a unimodal aerosol dynamics model combined with Fuchs' charging theory, and showed that the charging process indeed affected particle formation dynamics during combustion.

Fine Particles

Fine Particles PDF Author: Benjamin Y. H. Liu
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 852

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Particle Characterization of Particulate Systems - Vocabulary

Particle Characterization of Particulate Systems - Vocabulary PDF Author:
Publisher:
ISBN:
Category : Nanoparticles
Languages : en
Pages : 0

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Growth and Characterization of Nano-structured Aerosol Produced by Diffusion Flame and Spray Pyrolysis Methods

Growth and Characterization of Nano-structured Aerosol Produced by Diffusion Flame and Spray Pyrolysis Methods PDF Author: Soo Hyung Kim
Publisher:
ISBN:
Category :
Languages : en
Pages : 346

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Aerosols and Atmospheric Chemistry

Aerosols and Atmospheric Chemistry PDF Author: Milton Kerker
Publisher: Elsevier
ISBN: 0323153941
Category : Science
Languages : en
Pages : 367

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Book Description
Aerosols and Atmospheric Chemistry is a collection of papers presented at the American Chemical Society Kendall Award Symposium honoring Professor Milton Kerker, held in Los Angeles, California, on March 28-April 2, 1971. Contributors focus on the physical chemistry of aerosols and their relationship to atmospheric chemistry. Topics covered range from the optical and dynamical properties of aerosols to the kinetics of growth of an aerosol in a flow reactor. The formation and chemical reactions of atmospheric particles are also discussed. This book is comprised of 30 chapters and begins with an overview of some of the optical and dynamical properties of aerosols, along with the preparation of submicron aerosols by condensation. The discussion then turns to the formation and properties of neutral ultrafine particles and small ions conditioned by gaseous impurities of the air; preparation of ultrafine metal oxide particles in a hydrogen-oxygen flame; production of aerosols by X-rays; and condensational growth of atmospheric aerosols. A comparison of synthetic and smog aerosols is also presented. The final section is devoted to the Los Angeles (Pasadena) Smog Project—its genesis, objectives, and scope—and provides a detailed description of the Minnesota Aerosol Analyzing System used in the project. This monograph will be a useful resource for chemists as well as students and researchers interested in aerosol and atmospheric chemistry.

Development and Validation of a System for the Generation, Characterization and Subsequent Air- Liquid Interface Studies of Aerosol Particles

Development and Validation of a System for the Generation, Characterization and Subsequent Air- Liquid Interface Studies of Aerosol Particles PDF Author:
Publisher:
ISBN: 9789176236222
Category :
Languages : en
Pages : 30

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Particle Characterization of Particulate Systems. Vocabulary

Particle Characterization of Particulate Systems. Vocabulary PDF Author: British Standards Institute Staff
Publisher:
ISBN: 9780580596247
Category :
Languages : en
Pages : 62

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Book Description
Particle size distribution, Production planning, Quality, Performance, Health and safety requirements, Environmental management, Vocabulary

Particle Formation and Characterization

Particle Formation and Characterization PDF Author: Aibing Yu
Publisher: Springer
ISBN: 9789812876386
Category : Science
Languages : en
Pages :

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Book Description
The aim of this handbook is to provide a comprehensive summary of the field of Particle Science and Technology which includes most updated research findings and their applications in different industries. It is hoped that the consolidated knowledge described by this handbook will inspire more innovative ideas to bring the field forward. The size of the particles may range from nanometer scale, as in pigments or aerosols, to that of mined or quarried materials. The handbook will cover the topics ranging from the formation and synthesis, packing and flow, and application of these particles. Each part is explored in great details in different sections and chapters, it is written by a pool of international well known scholars, as well as industrial experts. The handbook fully reflects the state of the art in Particle Science and Technology

Preprints

Preprints PDF Author: World Congress Particle Technology
Publisher:
ISBN:
Category :
Languages : en
Pages : 409

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Experimental and Theoretical Characterization on the Sublimation Kinetics of Fine Aerosol Particles

Experimental and Theoretical Characterization on the Sublimation Kinetics of Fine Aerosol Particles PDF Author: Haomin Ding
Publisher:
ISBN: 9783941438101
Category :
Languages : en
Pages : 133

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