979 resultados para pollution accidents
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The production and productivity of a water body is largely dependent on its quality. One major source of water pollution is from the agrochemicals from nearby farmlands. The quality of water in the Obafemi Awolowo University Teaching and Research Farm Reservoir (Ile-Ife, Nigeria) was monitored between October, 1993 and March, 1994. Structured questionnaires were administered to obtain information on the types of agrochemicals in use on the farm. Water samples were collected fortnightly for analyses of the physico-chemical parameters and ionic content of the water. Investigation revealed that 21 agrochemicals had been in use on the farm. The physico-chemical parameters of the water showed that the water was very poor in nutrient. The high concentration of ammonium ion contents of the water shows an indication that the residues of certain agrochemicals got into the water to pollute it. Agrochemicals should be used with great caution on farmlands especially in areas close to water bodies from which man obtains fish and other proteinous foods. This paper also suggests a regular monitoring of water quality of reservoirs in order to pick the earliest signs of pollution
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River Kubanni, a major tributary of River Galma, receives both organic and inorganic wastes through run-offs and seepage from residential and agricultural areas of Tundun-Wada, Zaria. Water and phytoplankton samples were collected once a month from three stations on a stretch of the river, for eight months (February, 1994-0ctober, 1994). The physico-chemical parameters and phytoplankton composition were determined and correlated to one another. The distribution and composition of phytoplankton species are affected by variations through fluctuations in environmental variables such as temperature, velocity, transparency, pH, dissolved Oxygen, total alkalinity, total hardness, electrical conductivity and total dissolved matter. Highest dissolved oxygen concentration in February coincided with the minimum water temperature due to the cool harmattan winds. Low alkalinity resulted in low phytoplankton productivity while a rise in total dissolved matter resulted in increase in electrical conductivity and high phytoplankton productivity. The presence of Oscillatoria sp and Euglena sp in station 2 and 3 are indicative of organic pollution in these stations. However, the river stretch is suitable for fish production with respect to water hardness and pH
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This work concerns itself with the possibility of solutions, both cooperative and market based, to pollution abatement problems. In particular, we are interested in pollutant emissions in Southern California and possible solutions to the abatement problems enumerated in the 1990 Clean Air Act. A tradable pollution permit program has been implemented to reduce emissions, creating property rights associated with various pollutants.
Before we discuss the performance of market-based solutions to LA's pollution woes, we consider the existence of cooperative solutions. In Chapter 2, we examine pollutant emissions as a trans boundary public bad. We show that for a class of environments in which pollution moves in a bi-directional, acyclic manner, there exists a sustainable coalition structure and associated levels of emissions. We do so via a new core concept, one more appropriate to modeling cooperative emissions agreements (and potential defection from them) than the standard definitions.
However, this leaves the question of implementing pollution abatement programs unanswered. While the existence of a cost-effective permit market equilibrium has long been understood, the implementation of such programs has been difficult. The design of Los Angeles' REgional CLean Air Incentives Market (RECLAIM) alleviated some of the implementation problems, and in part exacerbated them. For example, it created two overlapping cycles of permits and two zones of permits for different geographic regions. While these design features create a market that allows some measure of regulatory control, they establish a very difficult trading environment with the potential for inefficiency arising from the transactions costs enumerated above and the illiquidity induced by the myriad assets and relatively few participants in this market.
It was with these concerns in mind that the ACE market (Automated Credit Exchange) was designed. The ACE market utilizes an iterated combined-value call market (CV Market). Before discussing the performance of the RECLAIM program in general and the ACE mechanism in particular, we test experimentally whether a portfolio trading mechanism can overcome market illiquidity. Chapter 3 experimentally demonstrates the ability of a portfolio trading mechanism to overcome portfolio rebalancing problems, thereby inducing sufficient liquidity for markets to fully equilibrate.
With experimental evidence in hand, we consider the CV Market's performance in the real world. We find that as the allocation of permits reduces to the level of historical emissions, prices are increasing. As of April of this year, prices are roughly equal to the cost of the Best Available Control Technology (BACT). This took longer than expected, due both to tendencies to mis-report emissions under the old regime, and abatement technology advances encouraged by the program. Vve also find that the ACE market provides liquidity where needed to encourage long-term planning on behalf of polluting facilities.
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An economic air pollution control model, which determines the least cost of reaching various air quality levels, is formulated. The model takes the form of a general, nonlinear, mathematical programming problem. Primary contaminant emission levels are the independent variables. The objective function is the cost of attaining various emission levels and is to be minimized subject to constraints that given air quality levels be attained.
The model is applied to a simplified statement of the photochemical smog problem in Los Angeles County in 1975 with emissions specified by a two-dimensional vector, total reactive hydrocarbon, (RHC), and nitrogen oxide, (NOx), emissions. Air quality, also two-dimensional, is measured by the expected number of days per year that nitrogen dioxide, (NO2), and mid-day ozone, (O3), exceed standards in Central Los Angeles.
The minimum cost of reaching various emission levels is found by a linear programming model. The base or "uncontrolled" emission levels are those that will exist in 1975 with the present new car control program and with the degree of stationary source control existing in 1971. Controls, basically "add-on devices", are considered here for used cars, aircraft, and existing stationary sources. It is found that with these added controls, Los Angeles County emission levels [(1300 tons/day RHC, 1000 tons /day NOx) in 1969] and [(670 tons/day RHC, 790 tons/day NOx) at the base 1975 level], can be reduced to 260 tons/day RHC (minimum RHC program) and 460 tons/day NOx (minimum NOx program).
"Phenomenological" or statistical air quality models provide the relationship between air quality and emissions. These models estimate the relationship by using atmospheric monitoring data taken at one (yearly) emission level and by using certain simple physical assumptions, (e. g., that emissions are reduced proportionately at all points in space and time). For NO2, (concentrations assumed proportional to NOx emissions), it is found that standard violations in Central Los Angeles, (55 in 1969), can be reduced to 25, 5, and 0 days per year by controlling emissions to 800, 550, and 300 tons /day, respectively. A probabilistic model reveals that RHC control is much more effective than NOx control in reducing Central Los Angeles ozone. The 150 days per year ozone violations in 1969 can be reduced to 75, 30, 10, and 0 days per year by abating RHC emissions to 700, 450, 300, and 150 tons/day, respectively, (at the 1969 NOx emission level).
The control cost-emission level and air quality-emission level relationships are combined in a graphical solution of the complete model to find the cost of various air quality levels. Best possible air quality levels with the controls considered here are 8 O3 and 10 NO2 violations per year (minimum ozone program) or 25 O3 and 3 NO2 violations per year (minimum NO2 program) with an annualized cost of $230,000,000 (above the estimated $150,000,000 per year for the new car control program for Los Angeles County motor vehicles in 1975).
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The research was carried out to assess the trace metal concentration in sediments of ship breaking area in Bangladesh. The study areas were separated into Ship breaking Zone and Reference Site for comparative analysis. Metals like Iron ( Fe) was found at 11932 to 41361.71µg.g-1 in the affected site and 3393.37 µg.g-1 in the control site. Manganese (Mn) varied from 2.32 to 8.25 µg.g-1 in the affected site where as it was recorded as 1.8 µg.g-1 in the control area. Chromium(Cr), Nickel (Ni), Zinc(Zn) and Lead (Pb) were also varied from 22.89 to 86.72 µg.g-1; 23.12 to 48.6;83.78 to 142.85 and 36.78 to 147.83 µg.g-1 respectively in the affected site whereas these were recorded as 19; 3.98; 22.22 and 8.82 µg.g-1 in the control site. Copper (Cu); Cadmium (Cd) and Mercury (Hg) concentration were varied from 21.05 to 39.85; 0.57 to 0.94 and 0.05 to 0.11 µg.g-1 in the affected site and 33.0; 0.115 and 0.01 µg.g-1 in the control site. It may conclude that heavy metal pollution in sediments at ship breaking area of Bangladesh is at alarming stage.
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Fundamental changes in the management of water resources in Portugal are now evolving. Five regional organisations termed Administracaos de Regiao Hidrographic (ARH), will be created to manage water resources within their respective geographical areas. These areas will be catchment based. As a fore-runner to the implementation of the five ARH's a foundation project has been established within the Direcao-Geral do Recursos Naturais to examine the practical implications of the new system. This project has been divided into a number of sub-projects and complementary projects to include the Tejo complementary project. The Tejo complementary project is the focus of this report. The report is to advise on the role of biology in the proposed ARH, to establish priorities for biological studies within the present Projecto de Gestao Integrada dos Recursos Hidricos da Bacia Hidrografica do Rio Tejo (PGIRH/T) and to assist with the planning of laboratory facilities for biology at the new PGIRH/T laboratory at Alges, Lisboa.
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Organic contaminants are readily bioaccumulated by aquatic organisms. Exposure to and toxic effects of contaminants can be measured in terms of the biochemical responses of the organisms (i.e. molecular biomarkers). The hepatic biotransformation enzyme cytochrome P4501A (CYP1A) in vertebrates is specifically induced by organic contaminants such as aromatic hydrocarbons, PCBs and dioxins, and is involved in chemical carcinogenesis via catalysis of the covalent binding of organic contaminants to DNA (DNA-adducts). Hepatic CYP1A induction has been used extensively and successfully as a biomarker of organic contaminant exposure in fish. Fewer but equally encouraging studies in fish have used hepatic bulky, hydrophobic DNA-adducts as biomarkers of organic contaminant damage. Much less is known of the situation in marine invertebrates, but a CYPlA-like enzyme with limited inducibility and some potential for biomarker application is indicated. Stimulation of reactive oxygen species (ROS) production is another potential mechanism of organic contaminant-mediated DNA and other damage in aquatic organisms. A combination of antioxidant (enzymes, scavengers) and pro-oxidant (oxidised DNA bases, lipid peroxidation) measurements may have potential as a biomarker of organic contaminant exposure (particularly those chemicals which do not induce CYP1A) and/or oxidative stress, but more studies are required. Both CYP1A- and ROS-mediated toxicity are indicated to result in higher order deleterious effects, including cancer and other aspects of animal fitness.
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Apesar dos impactos ambientais ocasionados pela poluição e acidentes químicos, constata-se que algumas organizações ainda investem pouco na prevenção, redução ou eliminação de seus resíduos. Em algumas Instituições de Ensino e Pesquisa (IES) do Brasil, não é incomum o manejo inadequado dos resíduos perigosos gerados em laboratórios de ensino e pesquisa, aumentando tais riscos. Para minimizar ou eliminar tais riscos, há que se realizarem investimentos em processos tecnológicos de tratamento e na seleção de métodos adequados ao gerenciamento. O objetivo desta pesquisa foi modelar um Sistema de Gerenciamento Integrado de Resíduos Perigosos e validá-lo através de sua aplicação em estudo piloto nos laboratórios dos Institutos de Química e Biologia da Universidade do Estado do Rio de Janeiro. A pesquisa empírica e exploratória foi realizada através de revisão bibliográfica e coleta de dados sobre o estado da arte no gerenciamento de resíduos em algumas IES nacionais e internacionais, seguido da seleção do sistema adequado a ser modelado e aplicado nestes contextos. O trabalho de campo consistiu na coleta de dados através de observação direta e aplicação de questionário junto aos responsáveis pelos laboratórios. As etapas do estudo foram: levantamento das instalações dos laboratórios; observação do manejo e geração dos resíduos; elaboração do banco de dados; análise qualitativa e quantitativa dos dados; modelagem do Sistema de Gerenciamento Integrado de Resíduos Perigosos SIGIRPE; implantação do modelo; apresentação e avaliação dos resultados; elaboração do manual para uso do sistema. O monitoramento quantitativo de resíduos foi feito através de ferramentas do sistema para a sua análise temporal. Os resultados da pesquisa permitiram conhecer a dinâmica e os problemas existentes nos laboratórios, bem como verificar a potencialidade do modelo. Conclui-se que o SIGIRPE pode ser aplicado a outros contextos desde que seja adequado para tal fim. É imprescindível ter uma estrutura institucional que elabore o Plano de Gerenciamento Integrado de Resíduos e viabilize sua implementação. A universidade, enquanto formadora dos futuros profissionais, é um lócus privilegiado na construção e disseminação do conhecimento, tendo o dever de realizar boas práticas no trato das questões ambientais, em particular, com relação aos resíduos. Assim, elas devem estabelecer entre suas estratégias de ação, a inclusão de políticas ambientais em seus campi, onde a Educação Ambiental deve ser permanente. Espera-se que este trabalho contribua com o planejamento e o gerenciamento dos resíduos perigosos gerados em laboratórios e com as mudanças necessárias rumo à sustentabilidade ambiental. O SIGIRPE foi elaborado e testado, mas não foi possível verificar sua aplicação por outros usuários. É o que se espera com a continuidade desta pesquisa e no desenvolvimento de futuros trabalhos, tais como: teste do sistema em hospitais, laboratórios, clínicas; estudar outras aplicações na área de segurança química de laboratórios através da inclusão de roteiro de transporte interno de resíduos, rotas de fuga, mapas de risco, localização de equipamentos de proteção individual e coletiva; demonstrar a potencialidade de uso do sistema e sensibilizar os segmentos envolvidos através de palestras, mini-cursos e outras estratégias de informação em revistas científicas especializadas.
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Instituições de Ensino e Pesquisa possuem um papel fundamental na formação de seus profissionais considerando a ciência, tecnologia e o conhecimento que afetam toda a sociedade. A falta de um programa de gestão de resíduos, na maioria das instituições de ensino e pesquisa do país, tem levado, com certa frequência, a um descarte pouco responsável dos materiais residuais no ambiente, através das pias dos laboratórios ou do lixo comum, ou em muitos casos, resultando na geração de passivos ambientais acumulados precariamente por longo tempo à espera de um eventual tratamento. Entretanto, essas Instituições de Ensino Superior (IES), através de suas atividades de pesquisa, ensino e extensão, acabam gerando resíduos químicos perigosos, como os de laboratórios químicos. Nas Universidades, o volume de resíduos gerados é muito pequeno, porém a diversidade de resíduos é muito grande, o que dificulta o tratamento dos mesmos. Os resíduos químicos perigosos gerados no Instituto de Química situado no Pavilhão Reitor Haroldo Lisboa da Cunha da Universidade do Estado do Rio de Janeiro, necessitam de procedimentos seguros de manejo para a sua passivação e/ou disposição final, já que eles requerem um descarte distinto daquele dado ao lixo doméstico, conforme estabelecidos na legislação. Este trabalho objetiva estudar os aspectos de gestão, saúde e segurança do trabalho relacionado ao manejo de resíduos gerados em laboratórios químicos, potencialmente perigosos, enfocando ações preventivas de minimização dos resíduos e o seu tratamento, particularmente nas fontes geradoras, estudando o caso dos laboratórios de Química Geral e Inorgânica comparando-os com o laboratório de Engenharia e Tecnologia de Petróleo e Petroquímica. O trabalho classificou-se como pesquisa exploratória e empírica através do estudo de caso. A metodologia utilizada constituiu-se da aplicação de um questionário, dirigido aos técnicos dos laboratórios, e observações, para avaliação do manejo de resíduos químicos perigosos de forma a propor uma possível adequação dos laboratórios às legislações vigentes, como as resoluções NBR RDC 306/04, CONAMA 358/05, das Fichas de Informação de Segurança, das Normas Regulamentadoras e a OHSAS 18001/07. Os resultados obtidos demonstram que os dois laboratórios estudados de Química Geral e Inorgânica não atendem, ainda, o que preconiza a legislação RDC 306/04 da ANVISA. Observa-se que os resíduos químicos perigosos são manejados inadequadamente, expondo a graves riscos físicos, químicos e de acidentes para os usuários dos laboratórios, além da poluição ambiental gerado pelo lançamento dos efluentes nas redes de esgoto, sem tratamento. O estudo corrobora para a necessidade da implementação do Programa de Gerenciamento de Resíduos Químicos Perigosos, da criação de uma Coordenação de Gestão Ambiental presidida por um especialista da área, da construção de saídas de emergência, com escadas de escape externo para os laboratórios estudados e, sobretudo, de capacitação permanente dos funcionários e alunos.