925 resultados para municipal wastewater
Resumo:
Solid waste generation is a natural consequence of human activity and is increasing along with population growth, urbanization and industrialization. Improper disposal of the huge amount of solid waste seriously affects the environment and contributes to climate change by the release of greenhouse gases. Practicing anaerobic digestion (AD) for the organic fraction of municipal solid waste (OFMSW) can reduce emissions to environment and thereby alleviate the environmental problems together with production of biogas, an energy source, and digestate, a soil amendment. The amenability of substrate for biogasification varies from substrate to substrate and different environmental and operating conditions such as pH, temperature, type and quality of substrate, mixing, retention time etc. Therefore, the purpose of this research work is to develop feasible semi-dry anaerobic digestion process for the treatment of OFMSW from Kerala, India for potential energy recovery and sustainable waste management. This study was carried out in three phases in order to reach the research purpose. In the first phase, batch study of anaerobic digestion of OFMSW was carried out for 100 days at 32°C (mesophilic digestion) for varying substrate concentrations. The aim of this study was to obtain the optimal conditions for biogas production using response surface methodology (RSM). The parameters studied were initial pH, substrate concentration and total organic carbon (TOC). The experimental results showed that the linear model terms of initial pH and substrate concentration and the quadratic model terms of the substrate concentration and TOC had significant individual effect (p < 0.05) on biogas yield. However, there was no interactive effect between these variables (p > 0.05). The optimum conditions for maximizing the biogas yield were a substrate concentration of 99 g/l, an initial pH of 6.5 and TOC of 20.32 g/l. AD of OFMSW with optimized substrate concentration of 99 g/l [Total Solid (TS)-10.5%] is a semi-dry digestion system .Under the optimized condition, the maximum biogas yield was 53.4 L/kg VS (volatile solid).. In the second phase, semi-dry anaerobic digestion of organic solid wastes was conducted for 45 days in a lab-scale batch experiment for substrate concentration of 100 g/l (TS-11.2%) for investigating the start-up performances under thermophilic condition (50°C). The performance of the reactor was evaluated by measuring the daily biogas production and calculating the degradation of total solids and the total volatile solids. The biogas yield at the end of the digestion was 52.9 L/kg VS for the substrate concentration of 100 g/l. About 66.7% of volatile solid degradation was obtained during the digestion. A first order model based on the availability of substrate as the limiting factor was used to perform the kinetic studies of batch anaerobic digestion system. The value of reaction rate constant, k, obtained was 0.0249 day-1. A laboratory bench scale reactor with a capacity of 36.8 litres was designed and fabricated to carry out the continuous anaerobic digestion of OFMSW in the third phase. The purpose of this study was to evaluate the performance of the digester at total solid concentration of 12% (semi-dry) under mesophlic condition (32°C). The digester was operated with different organic loading rates (OLRs) and constant retention time. The performance of the reactor was evaluated using parameters such as pH, volatile fatty acid (VFA), alkalinity, chemical oxygen demand (COD), TOC and ammonia-N as well as biogas yield. During the reactor’s start-up period, the process is stable and there is no inhibition occurred and the average biogas production was 14.7 L/day. The reactor was fed in continuous mode with different OLRs (3.1,4.2 and 5.65 kg VS/m3/d) at constant retention time of 30 days. The highest volatile solid degradation of 65.9%, with specific biogas production of 368 L/kg VS fed was achieved with OLR of 3.1 kg VS/m3/d. Modelling and simulation of anaerobic digestion of OFMSW in continuous operation is done using adapted Anaerobic Digestion Model No 1 (ADM1).The proposed model, which has 34 dynamic state variables, considers both biochemical and physicochemical processes and contains several inhibition factors including three gas components. The number of processes considered is 28. The model is implemented in Matlab® version 7.11.0.584(R2010b). The model based on adapted ADM1 was tested to simulate the behaviour of a bioreactor for the mesophilic anaerobic digestion of OFMSW at OLR of 3.1 kg VS/m3/d. ADM1 showed acceptable simulating results.
Resumo:
The term ‘water pollution’ broadly refers to the contamination of water and water bodies (e.g. lakes, rivers, oceans, groundwater etc). Water pollution occurs when pollutants are discharged directly or indirectly into water bodies without adequate treatment to remove the harmful contaminants. This affects not only the plants and organisms living in these bodies of water but also the entire natural biological communities and the biodiversity.Advanced Oxidation Processes (AOPs) have been tested as environment-friendly techniques for the treatment of contaminated water, in view of their ability to convert pollutants into harmless end products. These techniques refer to a set of treatment procedures designed to remove organic or inorganic contaminants in wastewater by oxidation. The contaminants are oxidized by different reagents such as air, oxygen, ozone, and hydrogen peroxide which are introduced in precise, preprogrammed dosages, sequences and combinations under appropriate conditions. The procedure when combined with light in presence of catalyst is known as photocatalysis. When ultrasound (US) is used as the energy source, the process is referred as sonication. Sonication in presence of catalyst is referred as sonocatalysis. Of late, combination of light and sound as energy sources has been tested for the decontamination of wastewater in the presence of suitable catalyst. In this case, the process is referred as sonophotocatalysis. These AOPs are specially advantageous in pollution control and waste water treatment because unlike many other technologies, they do not just transfer the pollutant from one phase to another but completely degrade them into innocuous substances such as CO2 and H2O.
Resumo:
The ongoing depletion of the coastal aquifer in the Gaza strip due to groundwater overexploitation has led to the process of seawater intrusion, which is continually becoming a serious problem in Gaza, as the seawater has further invaded into many sections along the coastal shoreline. As a first step to get a hold on the problem, the artificial neural network (ANN)-model has been applied as a new approach and an attractive tool to study and predict groundwater levels without applying physically based hydrologic parameters, and also for the purpose to improve the understanding of complex groundwater systems and which is able to show the effects of hydrologic, meteorological and anthropogenic impacts on the groundwater conditions. Prediction of the future behaviour of the seawater intrusion process in the Gaza aquifer is thus of crucial importance to safeguard the already scarce groundwater resources in the region. In this study the coupled three-dimensional groundwater flow and density-dependent solute transport model SEAWAT, as implemented in Visual MODFLOW, is applied to the Gaza coastal aquifer system to simulate the location and the dynamics of the saltwater–freshwater interface in the aquifer in the time period 2000-2010. A very good agreement between simulated and observed TDS salinities with a correlation coefficient of 0.902 and 0.883 for both steady-state and transient calibration is obtained. After successful calibration of the solute transport model, simulation of future management scenarios for the Gaza aquifer have been carried out, in order to get a more comprehensive view of the effects of the artificial recharge planned in the Gaza strip for some time on forestall, or even to remedy, the presently existing adverse aquifer conditions, namely, low groundwater heads and high salinity by the end of the target simulation period, year 2040. To that avail, numerous management scenarios schemes are examined to maintain the ground water system and to control the salinity distributions within the target period 2011-2040. In the first, pessimistic scenario, it is assumed that pumping from the aquifer continues to increase in the near future to meet the rising water demand, and that there is not further recharge to the aquifer than what is provided by natural precipitation. The second, optimistic scenario assumes that treated surficial wastewater can be used as a source of additional artificial recharge to the aquifer which, in principle, should not only lead to an increased sustainable yield of the latter, but could, in the best of all cases, revert even some of the adverse present-day conditions in the aquifer, i.e., seawater intrusion. This scenario has been done with three different cases which differ by the locations and the extensions of the injection-fields for the treated wastewater. The results obtained with the first (do-nothing) scenario indicate that there will be ongoing negative impacts on the aquifer, such as a higher propensity for strong seawater intrusion into the Gaza aquifer. This scenario illustrates that, compared with 2010 situation of the baseline model, at the end of simulation period, year 2040, the amount of saltwater intrusion into the coastal aquifer will be increased by about 35 %, whereas the salinity will be increased by 34 %. In contrast, all three cases of the second (artificial recharge) scenario group can partly revert the present seawater intrusion. From the water budget point of view, compared with the first (do nothing) scenario, for year 2040, the water added to the aquifer by artificial recharge will reduces the amount of water entering the aquifer by seawater intrusion by 81, 77and 72 %, for the three recharge cases, respectively. Meanwhile, the salinity in the Gaza aquifer will be decreased by 15, 32 and 26% for the three cases, respectively.
Resumo:
The Palma Project is an experiment in the use of cultural identity as a social trigger to address ecological degradation. The research methodology draws from environmental, social and urban analyses to unveil the best strategy to address the ecological, river restoration and water treatment challenges in Berkeley, California’s “Sister City” in southeast Cuba, Palma Soriano. The objective is to provide a better quality of life and to create new opportunities for the local community to reconnect with natural cycles of water and the cultivation of their own land. The project aim is to promote the strength and capacity of local communities to protect their own environment based upon a master plan, which includes natural wastewater treatment, reforestation, urban agriculture and the facilitation and utilization of a public space bordering the major river which flows by Palma Soriano, the Cauto. This project will contribute and produce healthy water recycling for Palma, provide a potable water source for the city, encourage ecological restoration of the riparian zone of the Cauto, and provide new opportunities for food production. It is designed to preserve the cultural identity of the local community, and to restore the essential balance between the community’s need to sustain both itself and the natural environment.
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The role urban and peri-urban agriculture (UPA) plays in reducing urban poverty and ensuring environmental sustainability was recognized by the Millennium Development Goals (MGDs). India is the world’s largest democratic nation with a population of 1.2 billion. The rapid urbanization and high proportion of people below the poverty line along with higher migration to urban areas make India vulnerable to food crisis and urbanization of poverty. Ensuring jobs and food security among urban poor is a major challenge in India. The role of UPA can be well explained and understood in this context. This paper focuses on the current situation of UPA production in India with special attention to wastewater irrigation. This question is being posed about the various human health risks from wastewater irrigation which are faced by farmers and labourers, and, secondly by consumers. The possible health hazards involve microbial pathogens as well as helminth (intestinal parasites). Based on primary and secondary data, this paper attempts to confirm that UPA is one of the best options to address increasing urban food demand and can serve to complement rural supply chains and reduce ecological food prints in India. “Good practice urban and peri-urban agriculture” necessitates an integrated approach with suitable risk reduction mechanisms to improve the efficiency and safety of UPA production.
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Cuaderno de actividades dirigido a alumnos de Educación Primaria. El objetivo del cuaderno es formar y mejorar el comportamiento de los niños como peatones, viajeros y futuros conductores, con el fin de intentar disminuir los accidentes. Mediante la realización de actividades se pretende que los alumnos conozcan mejor todo lo relacionado con el tráfico (normas de circulación, señales de tráfico, etc.), a la vez que reflexionan sobre la conducta más adecuada y segura cuando circulan por las calles y carreteras, para modificarla si es necesario. El cuaderno incluye cinco fichas que tratan sobre el peatón en la ciudad, el peatón en carretera, el comportamiento del viajero, señales de circulación y la conducta en bicicleta. Las fichas van acompañadas de cuestionarios, selección de vocabulario básico y pasatiempos.
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Las siete unidades didácticas se presentan en cuadernillos destinados al trabajo individual y grupal
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Este reglamento fue aprobado por el pleno del Consejo Escolar Municipal en resoluci??n de 29 de junio de 2000
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Como anexos figuran los distintos formularios normalizados (fichas) para la recogida de datos, cuestionarios y seguimiento
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Proposta de millora de gestió dels camins del municipi de Prades per tal de millorar la connexió a dins del municipi. L’estudi es basa en diferents apartats: inventari dels camins existents, recuperació dels antics camins ara en desús, disseny d’itineraris de natura (per a l’observació de la vegetació i fauna autòctona) i condicionament dels camins existents per permetre el pas de vehicles especials per a l’extinció d’incendis
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Estudi dels paràmetres més rellevants en la creació d'una empresa agropecuària (identificació del projecte, equip fundador, anàlisi del mercat, pla de marqueting, pla d'organització, pla jurídic - fiscal i pla econòmic- financer per tal de valorar la viabilitat de l'empresa "Xai pigallat" de Ridaura (La Garrotxa)
Resumo:
El proyecto nace con el objetivo de implantar una Infraestructura de Datos Espaciales para la gestión, análisis territorial y difusión de la Comunidad Valenciana, contemplando tanto el nivel autonómico como el municipal. A nivel autonómico, de partida, participan la “Conselleria de Infraestructuras y Transporte” y la “Conselleria de Empresa, Universidad y Ciencia”; a nivel municipal encontramos una primera fase con cuatro ayuntamientos piloto, a los que podrá sumarse cualquier otro de la Comunidad Valenciana en una segunda fase. La IDE tiene dos tipos de clientes como usuarios tipo, por un lado el ciudadano, que podrá acceder tanto al Geoportal autonómico como al de cualquiera de los ayuntamientos participes, por otro el técnico de la administración, que dispondrá de una serie de herramientas para la explotación de la IDE.El proyecto tiene como base la directiva INSPIRE y se estructura sobre una propuesta tecnológica libre, que permita abastecer a todos los municipios de herramientas de gestión territorial libres, manteniendo la autonomía tecnológica de cada uno de ellos. A nivel autonómico, como parte del proyecto, encontraremos un geoportal con los servicios mínimos recomendados por la IDEE, así como una plataforma de e-aprendizaje de las aplicaciones. En dicho portal se dispondrán tanto capas municipales como autonómicas. A nivel municipal, cada ayuntamiento dispondrá de aplicaciones que permitirán generar su geoportal y mantenerlo de manera sencilla. El geoportal dispondrá de herramientas de comunicación con la ciudadanía, que permitan transmitir al ayuntamiento – por medio de la cartografía – incidencias o solicitudes. Además, los técnicos dispondrán de herramientas libres, desarrolladas sobre gvSIG, para la explotación de la IDE, aplicaciones de urbanismo, mantenimiento de callejero y geoestadística
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La EOI de Avil??s es la coordinadora del proyecto europeo Grundtvig II, 'Los Idiomas a trav??s de la Cultura', en el que participa junto a socios de otros cuatro pa??ses: Inglaterra, Suecia, Rep??blica Checa y Eslovaquia. En este breve art??culo se presenta el centro de Sabinov.
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Aquest projecte tracta de la construcció d’una explotació cinegètica de perdiu roja (Alectoris rufa), a Navata, comarca de l’Alt Empordà, província de Girona. L’objectiu es produir aproximadament unes 15.000 perdius per any i cicle, aus de qualitat amb un valor cinegètic alt, amb destí a ser comercialitzades per repoblacions d’ecosistemes, increments de densitats de caça a vedats de cacera, venda vedats intensius, etc. L’objectiu d’aquest projecte és la construcció d’una explotació de cicle tancat, on les necessitats seran disposar de zona de reproducció, zona d’incubació i zona de cria. Després d’estudiar diferents alternatives, l’ explotació cinegètica estarà dividida en la nau de cria i parcs de vol annexes, nau de serveis, parc de reproductors i altres
Resumo:
L’objectiu del projecte és la construcció d’una nau industrial al terme municipal de Gualta, Baix Empordà (Girona), amb la finalitat de conservar i comercialitzar fruita dolça ( poma i pera). La nau disposarà de tres cambres d’atmosfera controlada, la capacitat de les quals serà de tres-centes tones de fruita l’any. L’edifici, de 1.000 m2, s’utilitzarà per emmagatzemar, manipular i comercialitzar la fruita però també hi haurà una part important de l’edifici destinat a ser utilitzat com a magatzem de les eines del camp i de diferents productes fitosanitaris i adobs