7 resultados para Energy consumption pattern, Rural energy consumption pattern in Kerala

em Universitätsbibliothek Kassel, Universität Kassel, Germany


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We calculate the energy and lifetime of the ground state hyperfine structure transition in one-electron Bi^82+ . The influence of various distributions of the magnetic moment and the electric charge in the nucleus ^209_83 Bi on energy and lifetime is studied.

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Agro-ecological resource use pattern in a traditional hill agricultural watershed in Garhwal Himalaya was analysed along an altitudinal transect. Thirty one food crops were found, although only 0.5% agriculture land is under irrigation in the area. Fifteen different tree species within agroforestry systems were located and their density varied from 30-90 trees/ha. Grain yield, fodder from agroforest trees and crop residue were observed to be highest between 1200 and 1600 m a.s.l. Also the annual energy input- output ratio per hectare was highest between 1200 and 1600 m a.s.l. (1.46). This higher input- output ratio between 1200-1600 m a.s.l. was attributed to the fact that green fodder, obtained from agroforestry trees, was considered as farm produce. The energy budget across altitudinal zones revealed 95% contribution of the farmyard manure and the maximum output was in terms of either crop residue (35%) or fodder (55%) from the agroforestry component. Presently on average 23%, 29% and 41% cattle were dependent on stall feeding in villages located at higher, lower and middle altitudes respectively. Similarly, fuel wood consumption was greatly influenced by altitude and family size. The efficiency and sustainability of the hill agroecosystem can be restored by strengthening of the agroforestry component. The approach will be appreciated by the local communities and will readily find their acceptance and can ensure their effective participation in the programme.

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The use of renewable primary products as co-substrate or single substrate for biogas production has increased consistently over the last few years. Maize silage is the preferential energy crop used for fermentation due to its high methane (CH4) yield per hectare. Equally, the by-product, namely biogas slurry (BS), is used with increasing frequency as organic fertilizer to return nutrients to the soil and to maintain or increase the organic matter stocks and soil fertility. Studies concerning the application of energy crop-derived BS on the carbon (C) and nitrogen (N) mineralization dynamics are scarce. Thus, this thesis focused on the following objectives: I) The determination of the effects caused by rainfall patterns on the C and N dynamics from two contrasting organic fertilizers, namely BS from maize silage and composted cattle manure (CM), by monitoring emissions of nitrous oxide (N2O), carbon dioxide (CO2) and CH4 as well as leaching losses of C and N. II) The investigation of the impact of differences in soil moisture content after the application of BS and temperature on gaseous emissions (CO2, N2O and CH4) and leaching of C and N compounds. III) A comparison of BS properties obtained from biogas plants with different substrate inputs and operating parameters and their effect on C and N dynamics after application to differently textured soils with varying application rates and water contents. For the objectives I) and II) two experiments (experiment I and II) using undisturbed soil cores of a Haplic Luvisol were carried out. Objective III) was studied on a third experiment (experiment III) with disturbed soil samples. During experiment I three rainfall patterns were implemented including constant irrigation, continuous irrigation with periodic heavy rainfall events, and partial drying with rewetting periods. Biogas slurry and CM were applied at a rate of 100 kg N ha-1. During experiment II constant irrigation and an irrigation pattern with partial drying with rewetting periods were carried out at 13.5°C and 23.5°C. The application of BS took place either directly before a rewetting period or one week after the rewetting period stopped. Experiment III included two soils of different texture which were mixed with ten BS’s originating from ten different biogas plants. Treatments included low, medium and high BS-N application rates and water contents ranging from 50% to 100% of water holding capacity (WHC). Experiment I and II showed that after the application of BS cumulative N2O emissions were 4 times (162 mg N2O-N m-2) higher compared to the application of CM caused by a higher content of mineral N (Nmin) in the form of ammonium (NH4+) in the BS. The cumulative emissions of CO2, however, were on the same level for both fertilizers indicating similar amounts of readily available C after composting and fermentation of organic material. Leaching losses occurred predominantly in the mineral form of nitrate (NO3-) and were higher in BS amended soils (9 mg NO3--N m-2) compared to CM amended soils (5 mg NO3--N m-2). The rainfall pattern in experiment I and II merely affected the temporal production of C and N emissions resulting in reduced CO2 and enhanced N2O emissions during stronger irrigation events, but showed no effect on the cumulative emissions. Overall, a significant increase of CH4 consumption under inconstant irrigation was found. The time of fertilization had no effect on the overall C and N dynamics. Increasing temperature from 13.5°C to 23.5°C enhanced the CO2 and N2O emissions by a factor of 1.7 and 3.7, respectively. Due to the increased microbial activity with increasing temperature soil respiration was enhanced. This led to decreasing oxygen (O2) contents which in turn promoted denitrification in soil due to the extension of anaerobic microsites. Leaching losses of NO3- were also significantly affected by increasing temperature whereas the consumption of CH4 was not affected. The third experiment showed that the input materials of biogas plants affected the properties of the resulting BS. In particular the contents of DM and NH4+ were determined by the amount of added plant biomass and excrement-based biomass, respectively. Correlations between BS properties and CO2 or N2O emissions were not detected. Solely the ammonia (NH3) emissions showed a positive correlation with NH4+ content in BS as well as a negative correlation with the total C (Ct) content. The BS-N application rates affected the relative CO2 emissions (% of C supplied with BS) when applied to silty soil as well as the relative N2O emissions (% of N supplied with BS) when applied to sandy soil. The impacts on the C and N dynamics induced by BS application were exceeded by the differences induced by soil texture. Presumably, due to the higher clay content in silty soils, organic matter was stabilized by organo-mineral interactions and NH4+ was adsorbed at the cation exchange sites. Different water contents induced highest CO2 emissions and therefore optimal conditions for microbial activity at 75% of WHC in both soils. Cumulative nitrification was also highest at 75% and 50% of WHC whereas the relative N2O emissions increased with water content and showed higher N2O losses in sandy soils. In summary it can be stated that the findings of the present thesis confirmed the high fertilizer value of BS’s, caused by high concentrations of NH4+ and labile organic compounds such as readily available carbon. These attributes of BS’s are to a great extent independent of the input materials of biogas plants. However, considerably gaseous and leaching losses of N may occur especially at high moisture contents. The emissions of N2O after field application corresponded with those of animal slurries.

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The principal objective of this paper is to develop a methodology for the formulation of a master plan for renewable energy based electricity generation in The Gambia, Africa. Such a master plan aims to develop and promote renewable sources of energy as an alternative to conventional forms of energy for generating electricity in the country. A tailor-made methodology for the preparation of a 20-year renewable energy master plan focussed on electricity generation is proposed in order to be followed and verified throughout the present dissertation, as it is applied for The Gambia. The main input data for the proposed master plan are (i) energy demand analysis and forecast over 20 years and (ii) resource assessment for different renewable energy alternatives including their related power supply options. The energy demand forecast is based on a mix between Top-Down and Bottom-Up methodologies. The results are important data for future requirements of (primary) energy sources. The electricity forecast is separated in projections at sent-out level and at end-user level. On the supply side, Solar, Wind and Biomass, as sources of energy, are investigated in terms of technical potential and economic benefits for The Gambia. Other criteria i.e. environmental and social are not considered in the evaluation. Diverse supply options are proposed and technically designed based on the assessed renewable energy potential. This process includes the evaluation of the different available conversion technologies and finalizes with the dimensioning of power supply solutions, taking into consideration technologies which are applicable and appropriate under the special conditions of The Gambia. The balance of these two input data (demand and supply) gives a quantitative indication of the substitution potential of renewable energy generation alternatives in primarily fossil-fuel-based electricity generation systems, as well as fuel savings due to the deployment of renewable resources. Afterwards, the identified renewable energy supply options are ranked according to the outcomes of an economic analysis. Based on this ranking, and other considerations, a 20-year investment plan, broken down into five-year investment periods, is prepared and consists of individual renewable energy projects for electricity generation. These projects included basically on-grid renewable energy applications. Finally, a priority project from the master plan portfolio is selected for further deeper analysis. Since solar PV is the most relevant proposed technology, a PV power plant integrated to the fossil-fuel powered main electrical system in The Gambia is considered as priority project. This project is analysed by economic competitiveness under the current conditions in addition to sensitivity analysis with regard to oil and new-technology market conditions in the future.

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In rural areas of the Mekong Countries, the problem of electricity supplying rural communities is particularly alarming. Supplying power to these areas requires facilities that are not economically viable. However, government programs are under way to provide this product that is vital to community well being. A nation priority of Mekong Countries is to provide electrical power to people in rural areas, within normal budgetary constraints. Electricity must be introduced into rural areas in such a way that maximize the technical, economic and social benefit. Another consideration is the source of electrical generation and the effects on the natural environment. The main research purpose is to implement field tests, monitoring and evaluation of the PV-Diesel Hybrid System (PVHS) at the Energy Park of School of Renewable Energy Technology (SERT) in order to test the PVSH working under the meteorological conditions of the Mekong Countries and to develop a software simulation called RES, which studies the technical and economic performance of rural electrification options. This software must be easy to use and understand for the energy planner on rural electrification projects, to evaluate the technical and economic performance of the PVHS based on the renewable energy potential for rural electrification of the Mekong Country by using RES. Finally, this project aims to give guidance for the possible use of PVHS application in this region, particularly in regard to its technical and economic sustainability. PVHS should be promoted according to the principles of proper design and adequate follow up with maintenance, so that the number of satisfied users will be achieved. PVHS is not the only possible technology for rural electrification, but for the Mekong Countries it is one of the most proper choices. Other renewable energy options such as wind, biomass and hydro power need to be studied in future.

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This paper presents the impact of integrating interventions like nutrition gardening, livestock rearing, product diversification and allied income generation activities in small and marginal coconut homesteads along with nutrition education in improving the food and nutritional security as well as the income of the family members. The activities were carried out through registered Community Based Organizations (CBOs) in three locations in Kerala, India during 2005-2008. Data was collected before and after the project periods through interviews using a pre-tested questionnaire containing statements indicating the adequacy, quality and diversity of food materials. Fifty respondents each were randomly selected from the three communities, thereby resulting in a total sample size of 150. The data was analysed using SPSS by adopting statistical tools like frequency, average, percentage analysis, t – test and regression. Participatory planning and implementation of diverse interventions notably intercropping and off-farm activities along with nutrition education brought out significant improvements in the food and nutritional security, in terms of frequency and quantity of consumption as well as diet diversity. At the end of the project, 96%of the members became completely food secure and 72% nutritionally secure. The overall consumption of fruits, vegetables and milk by both children and adults and egg by children recorded increase over the project period. Consumption of fish was more than the Recommended Dietary Intake (RDI) level during pre and post project periods. Project interventions like nutrition gardening could bring in surplus consumption of vegetables (35%) and fruits (10%) than RDI. In spite of the increased consumption of green leafy vegetables and milk and milk products over the project period, the levels of consumption were still below the RDI levels. CBO-wise analysis of the consumption patterns revealed the need for location-specific interventions matching to the needs and preferences of the communities.

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Angesichts der Geschichte der Entwicklungspolitik, ist diese Arbeit darauf ausgerichtet, einige Beobachtungen in Bezug auf die so genannte Entwicklung hervorzuheben; insbesondere auf die andauernde prekäre Situation und Armut in ländlichen afrikanischen Gebieten. Armut ist nach Amartya SEN – weiter präzisiert von J.L. Dubois – die Deprivation von „Fähigkeiten“, die Individuen und lokale Gemeinschaften zu ausgeschlossenen und vergessenen Akteuren des Systems machen. Das nennt Paulo Freire, das Menschen zu „Objekten“ gemacht werden. Es rechtfertigt die starke Annahme, die in dieser Studie getroffen wird, dass vielmehr die Menschen als „Subjekte“ ihrer Veränderung und Entwicklung im Mittelpunkt stehen. Die Arbeit zeigt und erklärt in historischer Chronologie, wie die Entwicklungspolitiken und unterschiedliche Beteiligte auf allen Ebenen diese Situation verursachen. Trotz alledem bleiben die Individuen und lokalen Gemeinschaften, die in Symbiose mit ihrer natürlichen Umwelt leben, die reich an verschiedenen Ressourcen und Potentialen ist, als Reaktion darauf und gleichzeitig als Überlebensstrategie zutiefst verbunden mit dem, was sie vor Ort haben, womit sie eine tiefere und intensive Beziehung besitzen, wenn man von ihrer Geschichte, ihrer Kultur und der Handlungslogik ausgeht. Für externe Akteure, die sie über das vorhandene System dominieren und beeinflussen bleiben sie „Objekte“, aber in der Vielzahl ihrer endogenen Initiativen, zeigen sie die Fähigkeit und Substanz, die beweisen, dass sie auf ihrer Ebene das eigentliche Subjekt sind, die dynamischen Akteure. Aber isolierte Initiativen auf spezifische reale Bedürfnisse bei gleichzeitiger Dominierung durch das System mit seiner Marktlogik, führt dies langfristig nur zu dem Zirkulus Vitiosus der Armut. Daher ist eine ganzheitliche Sicht entscheidend für nachhaltige Entwicklung und für die notwendige Veränderung. Es geht nicht nur um die Veränderung des Systems und die Wahl politischer Maßnahmen, sondern genau genommen um das Verhalten der Akteure auf allen Ebenen und die Art der Beziehungen zwischen ihnen allen. Es ist eine Frage des erneuten Überdenkens des Entwicklungspfades, der andere Logik, Visionen, Interessen und Strategien aller Beteiligten, unserer so genannten Akteure einschließt. Ob dies von endogenen Initiativen oder neuen gemeinsamen Projekten ausgeht: man wird in einen Prozess kollektiven Lernens eintreten, den Paul Singer und Clarita Müller-Plantenberg erläutern und entwickeln in dem Konzept der Inkubation und Solidarischen Ökonomie, die Eigeninitiative, Selbstbestimmung und Selbstverwaltung von lokalen Gemeinschaften und die Öffnung für eine Neu-Konzeptualisierung und Institutionalisierung einschließt. So ein Prozess ist nur mit einem interdisziplinären Rahmen möglich. Dieser Rahmen soll auf einer zusätzlicher Kommunikation zwischen den Akteuren und Sozialwissenschaften beruhen und mit jenen, die auf dem Feld der Technologie arbeiten. So können dann technische „Experten“ angesichts eines technischen Projektfehlers, der aufgrund von bestimmten sozialen und kulturellen Realitäten zustande kam sagen, „es ist kein Scheitern ; es war ein Schritt innerhalb eines Lernprozesse der in die technischen Projekte und Studien einbezogen werden muss“. Wir haben das Energiethema gewählt; und insbesondere, Energie für eine nachhaltige ländliche Entwicklung in Subsahara-Afrika, um den Weg von der Theorie in die Praxis zu illustrieren und experimentell auszuprobieren, den Weg von den Beobachtungen zu der Veränderung, wobei Fragen, Annahmen, Strategien und konkrete Aktionen für den Wandel behandelt werden. Wir nennen unseren experimentellen Weg: DRIEE, das heißt auf Deutsch Ländliche Entwicklung und Inkubation von Energieunternehmen. Dabei gehen wir davon aus, dass: - Energie im Allgemeinen auf der internationalen Ebene fast gleichbedeutend mit Elektrizität ist. Heute bestehen die wichtigsten Bedürfnisse nach Energie dort wo die agro-pastorale Produktion, das Kochen, die Nahrungsmittelkonservierung und Verarbeitung …etc. stattfindet. - Diese ländliche Bevölkerung zu etwa 80% der nationalen Wirtschaft ausmacht. Dass sie gleichzeitig aber nur zu weniger als 5% der Energieproduktion Zugang hat, was oft auf Licht reduziert ist und nicht einmal ihrer Produktion zugute kommen kann. - Die Projekte für Energie und Elektrizität vor allem auf die Technologischen Fragen konzentriert sind und weniger auf die Bedürfnisse. Fast die Gesamtheit der Fonds für Energie wird in Bezug auf die Investitionen Infrastruktur der Produktion und Verteilung durch die konventionellen zentralisierten Netze geplant. Angesichts dieser Analysen gehen die in dieser Arbeit vorgenommenen Studien in Gambia und Kamerun von Bestandsaufnahmen und / oder beschreibenden regionalen Analysen aus: - von Bedürfnissen, von Praktiken und lokalen Initiativen von Fragen der Energie, für einzelne Professionen, Haushalte, Gruppen, spezifische Gruppen, wie Frauen, ländliche Gemeinden mit ihren spezifischen Charakteristika. - Von Potentialen: natürliche lokale Energieressourcen, soziokulturelle Ressourcen – so z.B. die empirisch feststellbaren menschliche Ressourcen wie endogenes Wissen und praktische organisatorische Fähigkeiten gegenüber den Problemen der Energie. Dieser experimentelle Schritt von Handlungsforschung (DRIEE) in Kamerun führte zu der Gründung einer Organisation, über die und mit der wir die Logik der Inkubation und Solidarischen Ökonomie einführen. Das ist FERDEDSI, das heißt auf Deutsch „Forum für Erneuerbare Energie – Nachhaltige Entwicklung und Internationale Solidarität“. Zunächst war dies eine Energiegenossenschaft und dann (im Prozess) wurde es zu einer institutionellen Nische von mehreren Mikro Initiativen in ländlichen Gebieten. FERDEDSI ist ein Prozess der Inkubation und ein Inkubator ist also gleichzeitig ein inkubiertes Energieunternehmen aber auch ein Inkubator für lokale Organisationen. Die ersten Aktionen finden in den Departments von Noun und Ménoua in der westlichen Provinz von Kamerun statt. Während der Forschungsperiode findet akademische Austausch statt (Nord-Süd und Süd-Süd), diese ist dabei zu formalen Partnerschaften zu werden, nicht nur zwischen Universitäten sondern genauer lokale Organisationen und Universitäten. Dieser letzte Typ von Partnerschaften, die die solidarische Ökonomie ausmachen ist auch eine Innovation des Prozesses für die afrikanischen Fälle, die dem Beispiel dessen, was in Lateinamerika geschieht, folgen. So kommt es zu gegenseitiger sinnvoller Ausbildung in den internationalen Arbeitsgruppen und Seminaren der Universität.