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Nanoparticle Measurement Methods in Internal Combustion Engines

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Release : 2001
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Book Synopsis Nanoparticle Measurement Methods in Internal Combustion Engines by : Thang Quoc Dam

Download or read book Nanoparticle Measurement Methods in Internal Combustion Engines written by Thang Quoc Dam. This book was released on 2001. Available in PDF, EPUB and Kindle. Book excerpt:

Nanoparticle Emissions From Combustion Engines

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Release : 2015-03-19
Genre : Science
Kind : eBook
Book Rating : 283/5 ( reviews)

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Book Synopsis Nanoparticle Emissions From Combustion Engines by : Jerzy Merkisz

Download or read book Nanoparticle Emissions From Combustion Engines written by Jerzy Merkisz. This book was released on 2015-03-19. Available in PDF, EPUB and Kindle. Book excerpt: This book focuses on particulate matter emissions produced by vehicles with combustion engines. It describes the physicochemical properties of the particulate matter, the mechanisms of its formation and its environmental impacts (including those on human beings). It discusses methods for measuring particulate mass and number, including the state-of-the-art in Portable Emission Measurement System (PEMS) equipment for measuring the exhaust emissions of both light and heavy-duty vehicles and buses under actual operating conditions. The book presents the authors’ latest investigations into the relations between particulate emission (mass and number) and engine operating parameters, as well as their new findings obtained through road tests performed on various types of vehicles, including those using diesel particulate filter regeneration. The book, which addresses the needs of academics and professionals alike, also discusses relevant European regulations on particulate emissions and highlights selected methods aimed at the reduction of particulate emissions from automobiles.

Characterization of Nanoparticles

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Release : 2019-10-05
Genre : Science
Kind : eBook
Book Rating : 832/5 ( reviews)

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Book Synopsis Characterization of Nanoparticles by : Ing. V.-D. Hodoroaba

Download or read book Characterization of Nanoparticles written by Ing. V.-D. Hodoroaba. This book was released on 2019-10-05. Available in PDF, EPUB and Kindle. Book excerpt: Characterization of Nanoparticles: Measurement Processes for Nanoparticles surveys this fast growing field, including established methods for the physical and chemical characterization of nanoparticles. The book focuses on sample preparation issues (including potential pitfalls), with measurement procedures described in detail. In addition, the book explores data reduction, including the quantitative evaluation of the final result and its uncertainty of measurement. The results of published inter-laboratory comparisons are referred to, along with the availability of reference materials necessary for instrument calibration and method validation. The application of these methods are illustrated with practical examples on what is routine and what remains a challenge. In addition, this book summarizes promising methods still under development and analyzes the need for complementary methods to enhance the quality of nanoparticle characterization with solutions already in operation. Helps readers decide which nanocharacterization method is best for each measurement problem, including limitations, advantages and disadvantages Shows which nanocharacterization methods are best for different classes of nanomaterial Demonstrates the practical use of a method based on selected case studies

Physico-chemical Characterization of Size-selected Internal Combustion Engine Nanoparticles and Original Method for Measuring Adsorption Energies on Carbonaceous Surfaces by Laser Mass Spectrometry

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Release : 2020
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Book Synopsis Physico-chemical Characterization of Size-selected Internal Combustion Engine Nanoparticles and Original Method for Measuring Adsorption Energies on Carbonaceous Surfaces by Laser Mass Spectrometry by : Dumitru Duca

Download or read book Physico-chemical Characterization of Size-selected Internal Combustion Engine Nanoparticles and Original Method for Measuring Adsorption Energies on Carbonaceous Surfaces by Laser Mass Spectrometry written by Dumitru Duca. This book was released on 2020. Available in PDF, EPUB and Kindle. Book excerpt: Emission of carbonaceous aerosols by combustion-powered ground transport vehicles has a major impact on both global climate and human health. Intensive research efforts are dedicated to the development of robust procedures able to reliably measure particles as small as 10 nm in real-driving conditions, as current European Union regulations are limited to 23 nm. Within the H2020 PEMS4Nano project, we performed detailed physico-chemical characterization of size-selected particulate matter emitted by a gasoline direct injection engine. This included chemical characterization performed with mass spectrometry as well as structural/morphology data obtained with electron and atomic force microscopy together with Tip-Enhanced Raman Spectroscopy. In addition, to gain insight into the interaction between the carbonaceous surface and adsorbed compounds, a novel laser-based method for determining the adsorption energy of chemical species on carbonaceous surfaces was developed.

Improving Sensitivity and Specificity when Measuring Environmental Exposure to Engineered Nanoparticle Releases with the Use of Low-Background Techniques

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Release : 2013
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Book Synopsis Improving Sensitivity and Specificity when Measuring Environmental Exposure to Engineered Nanoparticle Releases with the Use of Low-Background Techniques by : Heather Laine Papinchak

Download or read book Improving Sensitivity and Specificity when Measuring Environmental Exposure to Engineered Nanoparticle Releases with the Use of Low-Background Techniques written by Heather Laine Papinchak. This book was released on 2013. Available in PDF, EPUB and Kindle. Book excerpt: As applications of nanotechnology expand, there is an increasing need to develop inexpensive, sensitive, and specific procedures to measure occupational exposures to engineered nanoparticles (ENPs). The use of hand-held direct reading instruments to screen for airborne ENPs is attractive due to the relatively low cost of such commercially available instruments and the immediate feedback provided. However, because ambient air typically contains thousands of non-engineered nanoparticles per cubic centimeter (pt/cm3), this background particle concentration must be accounted for in quantifying ENPs. Incidental nanoscale particles are present in many workplaces due to sources including internal combustion engines, grinding and welding, electric motors, office equipment, printers, and infiltration of contaminated outside air. Because ENP toxicity has not been investigated comprehensively, and because some studies suggest that certain ENPs may be highly toxic, the risk management philosophy of many organizations is that exposure to ENPs above background nanoparticle levels is not acceptable. Industrial hygienists have generally approached ENP sampling with the notion that if ENPs cannot be detected above background levels in the sampling environment, exposure to ENPs is not occurring. If there is a low signal-to-noise ratio, however, this approach underestimates ENP exposure intensity, and large fluctuations in background concentrations could make it difficult to measure actual releases of ENPs. Therefore, it is important to accurately discern between background non-engineered nanoparticle and ENP concentrations. The few ENP exposure studies that have been published tend to inadequately account for background nanoparticles. Tools and techniques were developed to improve the sensitivity and specificity of ENP exposure measurements in research laboratories based on direct reading instruments and filter-based sampling. These research facilities were located at the Lawrence Berkeley National Laboratory (LBNL). A portable fume-hood antechamber enclosure and a portable, bottomless glovebox enclosure were constructed. These enclosures are supplied with air passed through a high efficiency particulate air (HEPA) filter air, and ENP-handling tasks are performed within the enclosures. HEPA filtration greatly reduces the nanoparticle concentration in the supply air and thereby increases the ENP signal-to-noise ratio. Based on measurements made with a commercially available CPC, a 100- to 300-fold increase in sensitivity was achieved with the clean air enclosures. Combined with high-resolution microscopy analysis of particles collected on filter samples of air, employee exposures to ENPs that were previously not detectable using traditional sampling techniques were quantified. Three different monitoring studies are described in this dissertation. The first study characterized airborne metal-oxide LiNi0.45Mn0.45Co0.1-yAlyO2 ENP emissions associated with a nanomaterial synthesis comprised of three steps - heating a precursor solution, combustion, and harvesting - all conducted within a laboratory fume hood. With the use of the cleanroom enclosure, background particle concentration levels of 0-2 pt/cm3 were achieved. A CPC was located in the cleanroom enclosure at waist-level or near the personal breathing zone (PBZ) of the LBNL researcher, and a second CPC was located inside the laboratory fume hood. The maximum of 465,129 pt/cm3 (measured inside the fume hood) was the highest particle concentration recorded in this research. For all the combustion events, I observed plumes of black particles which corresponded in time with the highest particle measurements. To my knowledge, there are no published studies that have shown such high particle number concentrations from ENP synthesis. At the conclusion of the synthesis, ENM was found on fume hood surfaces and equipment, and on the CPC instrument located in the fume hood. ANOVA demonstrated that the mean particle number concentrations were not equal across the three steps (p

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