988 resultados para Secondary Forest
Resumo:
Trace volatile organic compounds emitted by biogenic and anthropogenic sources into the atmosphere can undergo extensive photooxidation to form species with lower volatility. By equilibrium partitioning or reactive uptake, these compounds can nucleate into new aerosol particles or deposit onto already-existing particles to form secondary organic aerosol (SOA). SOA and other atmospheric particulate matter have measurable effects on global climate and public health, making understanding SOA formation a needed field of scientific inquiry. SOA formation can be done in a laboratory setting, using an environmental chamber; under these controlled conditions it is possible to generate SOA from a single parent compound and study the chemical composition of the gas and particle phases. By studying the SOA composition, it is possible to gain understanding of the chemical reactions that occur in the gas phase and particle phase, and identify potential heterogeneous processes that occur at the surface of SOA particles. In this thesis, mass spectrometric methods are used to identify qualitatively and qualitatively the chemical components of SOA derived from the photooxidation of important anthropogenic volatile organic compounds that are associated with gasoline and diesel fuels and industrial activity (C12 alkanes, toluene, and o-, m-, and p-cresols). The conditions under which SOA was generated in each system were varied to explore the effect of NOx and inorganic seed composition on SOA chemical composition. The structure of the parent alkane was varied to investigate the effect on the functionalization and fragmentation of the resulting oxidation products. Relative humidity was varied in the alkane system as well to measure the effect of increased particle-phase water on condensed-phase reactions. In all systems, oligomeric species, resulting potentially from particle-phase and heterogeneous processes, were identified. Imines produced by reactions between (NH4)2SO4 seed and carbonyl compounds were identified in all systems. Multigenerational photochemistry producing low- and extremely low-volatility organic compounds (LVOC and ELVOC) was reflected strongly in the particle-phase composition as well.
Resumo:
Our understanding of the processes and mechanisms by which secondary organic aerosol (SOA) is formed is derived from laboratory chamber studies. In the atmosphere, SOA formation is primarily driven by progressive photooxidation of SOA precursors, coupled with their gas-particle partitioning. In the chamber environment, SOA-forming vapors undergo multiple chemical and physical processes that involve production and removal via gas-phase reactions; partitioning onto suspended particles vs. particles deposited on the chamber wall; and direct deposition on the chamber wall. The main focus of this dissertation is to characterize the interactions of organic vapors with suspended particles and the chamber wall and explore how these intertwined processes in laboratory chambers govern SOA formation and evolution.
A Functional Group Oxidation Model (FGOM) that represents SOA formation and evolution in terms of the competition between functionalization and fragmentation, the extent of oxygen atom addition, and the change of volatility, is developed. The FGOM contains a set of parameters that are to be determined by fitting of the model to laboratory chamber data. The sensitivity of the model prediction to variation of the adjustable parameters allows one to assess the relative importance of various pathways involved in SOA formation.
A critical aspect of the environmental chamber is the presence of the wall, which can induce deposition of SOA-forming vapors and promote heterogeneous reactions. An experimental protocol and model framework are first developed to constrain the vapor-wall interactions. By optimal fitting the model predictions to the observed wall-induced decay profiles of 25 oxidized organic compounds, the dominant parameter governing the extent of wall deposition of a compound is identified, i.e., wall accommodation coefficient. By correlating this parameter with the molecular properties of a compound via its volatility, the wall-induced deposition rate of an organic compound can be predicted based on its carbon and oxygen numbers in the molecule.
Heterogeneous transformation of δ-hydroxycarbonyl, a major first-generation product from long-chain alkane photochemistry, is observed on the surface of particles and walls. The uniqueness of this reaction scheme is the production of substituted dihydrofuran, which is highly reactive towards ozone, OH, and NO3, thereby opening a reaction pathway that is not usually accessible to alkanes. A spectrum of highly-oxygenated products with carboxylic acid, ester, and ether functional groups is produced from the substituted dihydrofuran chemistry, thereby affecting the average oxidation state of the alkane-derived SOA.
The vapor wall loss correction is applied to several chamber-derived SOA systems generated from both anthropogenic and biogenic sources. Experimental and modeling approaches are employed to constrain the partitioning behavior of SOA-forming vapors onto suspended particles vs. chamber walls. It is demonstrated that deposition of SOA-forming vapors to the chamber wall during photooxidation experiments can lead to substantial and systematic underestimation of SOA. Therefore, it is likely that a lack of proper accounting for vapor wall losses that suppress chamber-derived SOA yields contribute substantially to the underprediction of ambient SOA concentrations in atmospheric models.
Resumo:
From research carried, out on a section of the Levriere, concretions (granules, nodules, which were sometimes joined together) partly covering the river ”bottom” were observed. The authors propose to make besides a petrographic examination of the calcareous precipitations and to see if their origin is connected to a biological activity, or if it is purely a case of a physical-chemical precipitation. The hydrological background of the Levriere, a small river of the Normandy Vexin, is given and conditions of the formation of the concretions studied.
Resumo:
Gaseous nitrogen and argon were injected into a primary stream of air moving at Mach 2.56. The gases were injected at secondary to primary total pressure ratios from 3.2 to 28.6 through four different nozzles. Two nozzles, one sonic and one supersonic (M = 3.26), injected normal to the primary stream; and two sonic nozzles injected at 45° angles to the primary flow, one injecting upstream and the other downstream. Data consisted of static pressure measurements on the wall near the injector, total pressure profiles in the wake of the injectant plume, and concentration measurements downstream of the flow. Scale parameters were calculated based upon an analytical model of the flow field and their validity verified by experimental results. These scale heights were used to compare normalized wall side forces for the different nozzles and to compare the mixing of the two streams.
Resumo:
EL proyecto estudia y analiza la estructura de cuatro bosques en el monte Chortiatis, Grecia.
Resumo:
The primary and secondary threshold intensities of ultraviolet-laser-induced preferential domain nucleation in nearly stoichiometric LiTaO3 is observed. The primary threshold is the minimum intensity to achieve the instantaneous preferential domain nucleation within the focus by the combined action of irradiation and electric fields. The secondary threshold is the minimum intensity to achieve the memory effect without any irradiation within the original focus. The space charge field created by the photoionization carriers is thought to be responsible for the instantaneous effect. The explanation based on the formation and transformation of extrinsic defect is presented for the memory effect. (c) 2008 American Institute of Physics.
Resumo:
Since 1989, intensive studies have been made on a relatively new (1983-84) oligotrophic reservoir and its pre-reservoir in the Black Forest. This paper briefly reports on the hydrochemistry, especially annual variations in phosphorus loadings, and the seasonal development of phytoplankton in 1989 and 1990.
Resumo:
A conservação dos ecossistemas e dos recursos ambientais neles inclusos é uma condição básica e essencial para o desenvolvimento sustentado de uma dada região. A degradação faz com que a possibilidade dele retornar ao seu estado original seja ínfima pois, sua dinâmica de restauração não seria a mesma do que antes foi sua colonização. A recuperação de áreas degradadas é dificultada devido à complexidade estrutural dos ecossistemas, exemplo das restingas ambientes sujeitos as condições bastante adversas (altas temperaturas, períodos de seca, vento constante, alta salinidade e escassez de nutrientes), por isso demandam de alta tecnologia para o desenvolvimento e produção de mudas, além de alto custo associado. O objetivo deste estudo é a criação de uma proposta para uso socioeconômico das áreas degradadas por plantios de cocos, em formações vegetais de restinga, município de Caravelas, e criar um modelo para que essas áreas sejam mais produtivas economicamente, a médio e longo prazo, a partir da geração de trabalho e renda e, conseqüentemente, inclusão social voltada para o uso sustentável de espécies nativas de restinga, através do extrativismo, considerando-se o potencial e a vocação natural do ecossistema de restinga. Nesse contexto, as categorias de análise desta tese basearam-se nos conflitos e vulnerabilidade socioambiental, etnobotânica, fitofisionomias, bens e serviços associados, tecnologia social, desenvolvimento local, gestão costeira, sustentabilidade ambiental e democrática, produtos florestais não madeiráveis e inclusão social. Os procedimentos metodológicos utilizados neste estudo foram apresentados em cada capítulo desta tese, estando inserido em pesquisas qualitativas (técnicas de observação participante e análise do discurso coletivo) associada aos levantamentos bibliográficos (dados secundários) e as pesquisas quantitativas, por entrevistas semiestruturadas. Os resultados deste estudo subsidiaram a formação de uma rede interativa para implantação de empreendimentos sustentáveis no processo produtivo local, no que se refere à utilização de espécies nativas de restingas com reflorestamento de áreas degradadas por plantios de coco, para fins de geração de trabalho e renda com base no movimento de tecnologia social.
Resumo:
Os estudos anatômicos do xilema secundário têm contribuído com a botânica sistemática na segregação de grupos taxonômicos. Desta forma, podendo se tornar muito importante na aplicação para identificação de espécies, o que adquire maior conotação em grupos de comprovada importância econômica. O gênero Stryphnodendron apresenta uma ampla distribuição no Brasil e as espécies que o compõem são muito utilizadas com finalidades farmacológicas, no entanto existem espécies que são morfologicamente muito semelhantes neste gênero. Sendo assim, este trabalho teve como objetivos descrever a estrutura anatômica do lenho de sete espécies do gênero Stryphnodendron, identificar os caracteres que poderão ser utilizados na segregação do grupo e verificar se a anatomia do lenho corrobora a proposta de delimitação de S. polyphyllum, feitas no último trabalho de revisão taxonômica do gênero. Foram selecionadas duas espécies paucifolioladas e cinco espécies multifolioladas, o material botânico foi obtido por coleta in situ para as espécies de ocorrência na Mata Atlântica e a partir de coleções de madeira de referência para as espécies de Cerrado e Floresta Amazônica. Foram utilizadas as metodologias usuais para anatomia do lenho e as descrições seguiram em linhas gerais as recomendações a IAWA Committee. Os resultados demonstraram que as espécies apresentam características anatômicas em comum, que podem ser diagnósticas para o gênero Stryphnodendron como: camada de crescimento distinta, raios homogêneos, cristais formando séries cristalíferas no parênquima axial e nas fibras, pontoações ornamentadas e parênquima axial paratraqueal. Os resultados das análises de agrupamento e de componentes principais evidenciaram a segregação das espécies em dois grupos, um com as espécies multifolioladas e outro com espécies paucifolioladas. As espécies paucifolioladas foram segregadas por apresentarem diâmetro tangencial dos vasos superior a 200 μm e parênquima axial difuso em agregados. Os resultados também evidenciaram um conjunto de caracteres que permitiram a individualização das espécies estudadas. As características qualitativas do lenho mais importantes para segregação das espécies em questão foram: tipos de parênquima axial e de demarcação da camada de crescimento; arranjo e agrupamento dos elementos de vasos; presença de fibras gelatinosas, de fibras septadas e de espessamento helicoidal em fibras. As características quantitativas foram: frequência de vasos; comprimento das fibras; número de células na largura dos raios; altura e largura dos raios e diâmetro das pontoações parênquimo-vasculares.