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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Inlandsvatten som en del i den terrestra kolcykeln – uppskattningar och osäkerheter / Inland Waters as a Part of the Terrestrial Carbon Cycle – Estimations and Uncertainties

Smeds, Jacob January 2018 (has links)
Inlandsvatten, exempelvis sjöar och floder, har en betydande roll för den globala kolcykeln. Förutom att dessa vatten transporterar kol mellan kontinenterna och havet så förekommer en mängd processer som påverkar kolomsättningen i dessa system. Inlandsvatten kan fånga in (fixera) koldioxid från atmosfären via fotosyntes, men en stor del av kolet i inlandsvatten transporteras från land. Detta kol kan antingen emitteras till atmosfären som koldioxid eller metan, lagras på botten av sjöar och reservoarer eller transporteras (exporteras) till havet genom floder och grundvatten. Genom att sammanställa litteratur som i huvudsak publicerats mellan 2007 och 2017 konkluderas att 3,6 Pg C y-1 transporteras till inlandsvatten från världens kontinenter. Av detta emitteras 2,3 Pg C y-1 till atmosfären innan det når havet, 0,15 Pg C y-1 sedimenteras i sjöar och dammar medan 1,1 Pg C-1 exporteras till havet. För att förstå hur människan påverkar kolomsättningen globalt krävs en korrekt beskrivning av de naturliga flödena av kol mellan hav, land och atmosfär. Förbättringspotential och osäkerheter gällande den kvantitativa uppskattningen om inlandsvatten som en del i den terrestra kolcykeln finns bland annat kopplat till små vattenansamlingar, då dessa inte är fullständigt kartlagda. En bättre geografisk spridning för den data som ligger till grund för globala uppskattningar krävs också för att förbättra förståelsen för inlandsvattens roll i den terrestra kolcykeln. / Inland waters, for example lakes and rivers, play a considerable role in the global carbon cycle. In addition to transport carbon between the continents and the oceans, a number of processes occur during the transport along the hydrological chain. Inland water could directly take up carbon dioxide from the atmosphere though photosynthesis, but a vast amount of the carbon origins from land. The carbon could either be emitted to the atmosphere as carbon dioxide or methane, stored at the bottom of lakes or reservoirs and/or transported (exported) to the ocean through rivers or groundwater. In this study, publications from 2007 to 2017 were reviewed, and the conclusion is drawn that 3,6 Pg C y-1 are exported to inland waters from land. 2,3 Pg C y-1 are emitted to the atmosphere, 0,15 Pg C y-1 is buried in the sediments of lakes and reservoirs and 1,1 Pg C y-1 is exported to the ocean. To understand how human affects the global carbon budget, a correct description of the natural migration of carbon between the ocean, the continents and the atmosphere is needed. Potential of improvement and uncertainties related to the quantitative estimates of emission, sedimentation and export are to a large extent connected to the poor surveys of small lakes and ponds. A more representative global distribution of the data is also needed for a better understanding of the role of inland waters in the terrestrial carbon cycle.
2

Parameterization of bio-optical models for estimating chlorophyll-a concentration in a tropical eutrophic reservoir / Parametrização de modelos bio-ópticos para estimação da concentração de clorofila-a em um reservatório eutrófico tropical

Watanabe, Fernanda Sayuri Yoshino [UNESP] 15 March 2016 (has links)
Submitted by Fernanda Sayuri Yoshino Watanabe null (fernandasyw@yahoo.com.br) on 2016-04-28T12:54:41Z No. of bitstreams: 1 Watanabe_tese.pdf: 3879331 bytes, checksum: f393ffe1bbc36d214f1bed6945d9dedd (MD5) / Approved for entry into archive by Felipe Augusto Arakaki (arakaki@reitoria.unesp.br) on 2016-05-02T12:36:43Z (GMT) No. of bitstreams: 1 watanabe_fsy_dr_prud.pdf: 3879331 bytes, checksum: f393ffe1bbc36d214f1bed6945d9dedd (MD5) / Made available in DSpace on 2016-05-02T12:36:43Z (GMT). No. of bitstreams: 1 watanabe_fsy_dr_prud.pdf: 3879331 bytes, checksum: f393ffe1bbc36d214f1bed6945d9dedd (MD5) Previous issue date: 2016-03-15 / Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq) / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) / The aim of this research was to parameterize and calibrate models based on remote sensing data in order to estimate accurately the chlorophyll-a concentration, [Chl-a], in a tropical eutrophic reservoir. Firstly, a bio-optical characterization was conducted to identify particularities in the study area. Thus, existing empirical models and quasi-analytical algorithms (QAA) were tested and, after, parameterized and calibrated for the investigated environment. Such models derive [Chl-a] and inherent optical properties (IOPs), respectively, from remote sensing reflectance (Rrs). This research was developed in the Barra Bonita hydroelectric reservoir (BBHR), lies in Tietê River (Brazil). Reservoirs are artificial environments which change severely the hydrodynamic of rivers and the biogeochemical balance of aquatic systems. Such alterations can lead to unique bio-optical status and, consequently, models developed for rivers and lakes are not suitable to explain the processes which happen in reservoirs. The trophic state is an important water quality parameter and can be determined based on Chl-a concentration, photosynthetically active pigment present in all the phytoplankton species and detected by remote sensors. Therefore, the use of orbital and aerial images is a viable alternative to monitoring of trophic state in these environments. Results showed that bio-optical status in BBHR is remarkable different compared to other aquatic systems found in literature, corroborated by inaccurate performance of models proposed to other areas. The parameterization and calibration proposed in this research estimated accurately Chl-a concentration, mainly, adopting absorption coefficients derived by QAA. The fitted models can be used in mapping trophic state and frequent monitoring of water quality in BBHR by environmental agency and hydroelectric plant managers. In addition, it is likely that the parameters proposed in this research are suitable for other inland waters. / O objetivo do presente trabalho foi parametrizar e calibrar modelos baseado em dados de sensoriamento remoto para estimar acuradamente a concentração da clorofila-a, [Chl-a], em um reservatório tropical e eutrofizado. Primeiramente, uma caracterização bio-óptica da área estudo foi realizada para identificar particularidades do ambiente. Então, modelos empíricos e algoritmos quase-analíticos (QAA) existentes foram testados e, posteriormente parametrizados e calibrados para o ambiente investigado. Tais modelos derivam a [Chl-a] e propriedades ópticas inerentes (POIs), respectivamente, a partir da reflectância de sensoriamento remoto (Rrs). Esta pesquisa foi desenvolvida no reservatório da hidroelétrica de Barra Bonita (RHBB), localizado no Rio Tietê (Brasil). Reservatórios são ambientes artificiais que modificam severamente a hidrodinâmica de rios e o equilíbrio biogeoquímico do ecossistema aquático. Tais alterações podem proporcionar características bio-ópticas únicas ao ambiente e modelos para rios e lagos podem não ser adequados para explicar os processos que ocorrem em reservatórios. O grau de eutrofização é um importante parâmetro de qualidade da água e pode ser determinado com base na [Chl-a], pigmento fotossiteticamente ativo presente em todas as espécies de fitoplâncton, detectado por sensores remotos. Portanto, o uso de imagens orbitais e aerotransportadas é uma alternativa viável para o monitoramento do estado trófico desses ambientes. Resultados mostram que as características bio-ópticas em RHBB são consideravelmente diferentes de outros ambientes pesquisados na literatura, corroborado com desempenho não acurado de modelos propostos para outros ambientes. A parametrização e calibração propostas nesta pesquisa estimaram acuradamente a [Chl-a], principalmente, adotando os coeficientes de absorção derivados do QAA. Os modelos ajustados podem ser utilizados no mapeamento do estado trófico e monitoramento periódico da qualidade da água em RHBB por agências ambientes e gestores de usinas hidroelétricas. Além disso, é provável que os parâmetros propostos nesta pesquisa sejam adequados para outras águas continentais. / CNPq: 200157/2015-9
3

From oligo to eutrophic inland waters: advancements and challenges for bio-optical modeling

Rodrigues, Thanan Walesza Pequeno [UNESP] 09 March 2017 (has links)
Submitted by THANAN WALESZA PEQUENO RODRIGUES null (twalesza@gmail.com) on 2017-04-18T13:46:33Z No. of bitstreams: 1 Tese_Final2017.pdf: 5871584 bytes, checksum: 622c90a26db9966bfc3a2c9aaf97e829 (MD5) / Approved for entry into archive by Luiz Galeffi (luizgaleffi@gmail.com) on 2017-04-18T19:10:58Z (GMT) No. of bitstreams: 1 rodrigues_twp_dr_prud.pdf: 5871584 bytes, checksum: 622c90a26db9966bfc3a2c9aaf97e829 (MD5) / Made available in DSpace on 2017-04-18T19:10:58Z (GMT). No. of bitstreams: 1 rodrigues_twp_dr_prud.pdf: 5871584 bytes, checksum: 622c90a26db9966bfc3a2c9aaf97e829 (MD5) Previous issue date: 2017-03-09 / Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq) / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) / O presente trabalho teve como objetivo realizar um levantamento detalhado das características bio-ópticas nos reservatórios de Barra Bonita (BB) e Nova Avanhandava (Nav) com o intuito de avaliar o desempenho de uma única abordagem voltada para a estimativa das propriedades ópticas inerentes (POIs), assim como, a concentração de totais sólidos suspensos (TSS). A investigação foi realizada utilizando dados coletados no campo entre 2014 e 2016, incluindo, as POIs, componentes opticamente significativos (COSs) e reflectância de sensoriamento remoto (R_rs). Os dados apresentados dos COSs confirmaram que BB é um ambiente mais túrbido que Nav por apresentar maior produção fitoplanctônica em função do recebimento de altas cargas de nutrientes provenientes da bacia de drenagem. Por outro lado, Nav é um ambiente mais transparente e com maior influência de material inorgânico, o que favorece o surgimento de macrófitas submersas. A concentração de clorofila-a (Chl-a) em BB alcançou máximo de 797.8 µg l-1 em outubro/2014, enquanto Nav apresentou máximo de 38.6 µg l-1 em maio/2016. A variabilidade nos COS esteve altamente vinculada a frequência de chuvas, sendo que no ano de 2014, ocorreu um evento extremo de seca alterando as características biogeoquímicas dos ambientes. BB reagiu de forma mais abrupta que Nav por apresentar um sistema de operação do tipo acumulação e por estar mais próxima das regiões potencialmente poluidoras, diferente de Nav que apresenta um sistema fio-d’água em que não há acumulação e sim fluxo constante da água. Além disso, no âmbito óptico, a absorção em Nav apresentou maior influência do particulado não-algal (NAP) enquanto que em BB, a absorção foi dominada por fitoplâncton. Com base nesses resultados pode-se concluir que os dois ambientes apresentam não só diferenças na qualidade da água, mas também nas propriedades ópticas, o que leva a afirmação de que um modelo único baseado nos dois ambientes pode não ter um bom resultado quando se pretende utilizar uma abordagem empírica. Um algoritmo quase-analítico (QAA) parametrizado para as condições de Nav (QAAOMR) apresentou resultados significativos com erros (erro médio percentual absoluto – MAPE) inferiores a 17% para o coeficiente de absorção total (a_t), 19% para o coeficiente de absorção orgânico detrital (a_CDM) e 47% para o coeficiente de absorção do fitoplâncton (a_ϕ). O respectivo modelo foi utilizado para verificar seu desempenho em um ambiente eutrofizado como BB e a versão parametrizada por Watanabe et al. (2016) e denominada QAABBHR foi aplicada aos dados de Nav. Como resultado, observamos que as duas versões foram adequadas para estimar a_t com erros inferiores a 40%, no entanto, existe ainda a necessidade de melhorar as etapas para estimativa de a_CDM e a_ϕ. No caso de se aplicar um modelo empírico de única abordagem para estimar concentração de TSS para ambos os reservatórios, observamos que essa abordagem não apresentou resultados satisfatórios, portanto, modelos específicos baseados na banda do vermelho do MODIS foram utilizados para mapear TSS em cada um dos reservatórios. Pode-se concluir então, que o conhecimento acerca das propriedades ópticas da água se mostrou determinante para a modelagem bio-óptica, principalmente no que diz respeito aos ambientes altamente contrastantes como BB e Nav. / The objective of the present work was to perform a detailed survey of the bio-optical characteristics of the reservoirs of Barra Bonita (BB) and Nova Avanhandava (Nav) in order to evaluate the performance of a single approach aimed at estimating the inherent optical properties (IOPs), as well as the concentration of total suspended solids (TSS). The research was carried out using data collected in the field between 2014 and 2016, including the IOPs, optically significant components (OSCs) and remote sensing reflectance (R_rs). The data presented from the OSCs confirmed that BB is more turbid than Nav because it presents higher phytoplankton production due to the input of high nutrient loads from the drainage basin. On the other hand, Nav is more transparent with greater influence of inorganic matter, which favors the appearance of submerged macrophytes. The concentration of chlorophyll-a (Chl-a) in BB reached a maximum of 797.8 μg l-1 in October/2014, while Nav presented a maximum of 38.6 μg l-1 in May/2016. The variability in the COS was highly related to the frequency of rainfall, in the year 2014, an extreme drought event occurred, altering the biogeochemical characteristics. BB reacted more abruptly than Nav because it presented an accumulation type operation system and because it is closer to the potentially polluting region. Nav presents a water system in which there is no accumulation but constant flow of water. In addition, in the optical context, the absorption in Nav presented greater influence of the non-algal particulate (NAP) while in BB, the absorption was dominated by phytoplankton. Based on these results, it can be concluded that the two environments present not only differences in water quality but also in optical properties, which leads to the assertion that a single model based on the two environments may not have a good result when it is intended to use empirical approach. A quasi-analytical algorithm (QAA) parameterized for Nav conditions (QAAOMR) presented significant results with errors (mean absolute percentage error - MAPE) lower than 17% for the total absorption coefficient (a_t), 19% for the carbon detrital matter absorption coefficient (a_CDM) and 47% for the absorption coefficient of phytoplankton (a_ϕ). The respective model was used to verify its performance in a eutrophic environment such as BB and the version parameterized by Watanabe et al. (2016) and named QAABBHR was applied to the Nav data. Thus, we note that the two versions were suitable for estimating a_t with errors (MAPE) less than 40%, however, improvements must be carried out for estimating a_CDM and a_ϕ. In the case of applying a single empirical model to estimate TSS concentration for both reservoirs, we observed that it did not present satisfactory results, so specific models based on the MODIS red band were used to map TSS in each of the reservoirs. It can be concluded, therefore, that knowledge about the optical properties of water has proved to be determinant for the bio-optical modeling, especially with respect to highly contrasting environments such as BB and Nav. / CNPq: 200152/2015-7
4

Cycles du carbone et de l’azote et émissions de gaz à effet de serre (CH4, CO2 et N2O) du lac de barrage de Petit Saut et du fleuve Sinnamary en aval du barrage (Guyane Française) / Carbon and nitrogen cycles and greenhouse gases emissions (CH4, CO2, N2O) of the Petit Saut reservoir and the Sinnary river downstream of the dam (French Guiana)

Cailleaud, Emilie 01 December 2015 (has links)
Les eaux continentales sont des sources de méthane (CH4), de dioxyde de carbone (CO2)et de protoxyde d’azote (N2O). Dans le but de préciser leur importance dans le bilan global des émissions de gaz à effet de serre (GES), de nombreuses études ont été réalisées afin de quantifier les différents flux de carbone et d’azote les parcourant. Ces flux sont perturbés par la mise en place de barrages sur le lit des fleuves. Peu d’études présentent des bilans de carbone et d’azote complets (apports, exports, flux vers l’atmosphère et enfouissement) pour les lacs de barrages, et elles concernent uniquement des écosystèmes boréaux et tempérés. Suite à la création d’un barrage, de la matière organique (MO) est mise en eau (sols et forêts), elle se dégrade rapidement les premières années suivant la mise en eau puis plus lentement par la suite. L’état de dégradation de la MO et la principale source de GES dans un lac de barrage près de 20 ans après la mise en eau sont souvent méconnus. L’étude réalisée 18 ans après la mise en eau du lac de Petit Saut (Guyane Française) est la première étude où les principaux éléments des cycles du carbone et de l’azote d’un lac de barrage hydroélectrique, et de son fleuve en aval, situé en climat équatorial et dont la création a entraîné la mise en eau de forêt primaire, sont étudiés près de 20 ans après la mise en eau. Cette étude se base sur (i) la mesure mensuelle de la qualité des eaux et des concentrations en carbone et azote en amont, dans, et en aval du lac de barrage, (ii) la mesure et/ou le calcul des différents flux de GES vers l’atmosphère, (iii) des données de la signature isotopique et de l’état de dégradation de la MO en amont, dans, et en aval du lac, (iv) des prélèvements de sédiments et de troncs d’arbres ennoyés en 1994 et (v) des incubations d’eau du fleuve, de sédiments et de troncs d’arbres du lac. L’ensemble des données collectées au cours des 12 mois de campagnes réalisées en 2012 - 2013 nous a permis de déterminer que (i) les sols inondés sont toujours des sources significatives de GES contrairement aux troncs d’arbres ennoyés, (ii) dans le lac 84 % des émissions de CH4 et 51 % des émissions de CO2 ont lieu dans la zone littorale (< 10 m de profondeur), (iii) 54 % du CO2 produit dans le fleuve en aval provient de la dégradation de la MO apportée par le lac. Cette étude nous a aussi permis de réaliser des bilans de carbone et d’azote à Petit Saut et un bilan des émissions de chacun des GES émis (CH4, CO2, N2O) près de 20 ans après la mise en eau. / Inland waters are sources of methane (CH4), carbon dioxide (CO2) and nitrous oxide (N2O). In order to define their importance in the global balance of greenhouse gases (GHG) emissions, numerous studies have been conducted to quantify the different fluxes of the carbon and nitrogen browsing them. These fluxes are modified by the creation of dams on river beds. Few studies present full carbon and nitrogen balances (inputs, outputs, fluxes to the atmosphere and sequestration) for reservoirs, and they concern only boreal and temperate ecosystems. The creation of a dam floods organic matter (OM) (soils and forests), which is rapidly degraded the first years following the impoundment and thereafter more slowly. The state of degradation of the OM and the main source of GHG in a reservoir nearly 20 years after impoundment are often unknown. The study conducted 18 years after the impoundment of the Petit Saut Reservoir (French Guiana) is the first study where the main elements of carbon and nitrogen cycles of an hydroelectric reservoir, and its river downstream, located in equatorial climate and which creation resulted in the flooding of primary forest, are studied nearly 20 years after impoundment. This study is based on (i) a monthly measurement of water quality and carbon and nitrogen concentrations upstream, in, and downstream of the reservoir, (ii) measurements and/or calculations of the different fluxes of GHG through the atmosphere, (iii) data of the isotopic signature and of the state of degradation of OM upstream, in, and downstream of the reservoir, (iv) sediments and 1994’s flooded tree trunks sampling and (v) incubations of downstream river water, sediments and tree trunks from the reservoir. All the data collected during the 12 months of campaigns carried out in 2012 - 2013 allowed us to determine that (i) flooded soils are still significant sources of GHG unlike flooded tree trunks, (ii) in the reservoir 84 % of CH4 emissions and 51 % of CO2 emissions occur in the littoral zone (< 10 m depth), (iii) 54 % of the CO2 produced in the river downstream of the dam come from the degradation of the OM provided by the reservoir. This study also allowed us to achieve carbon and nitrogen balances in Petit Saut and emission balance of each GHG emitted (CH4, CO2, N2O) nearly 20 years after impoundment.
5

A transferable bio-optical model for quantification of inland water caynobacterial pigments

Li, Linhai 16 March 2012 (has links)
Indiana University-Purdue University Indianapolis (IUPUI) / Cyanobacterial blooms are currently one of the most important issues faced by environmental agencies, water authorities and public health organizations. Remote sensing provides an advanced approach to monitor cyanobacteria by detecting and quantifying chlorophyll-a (Chl-a) and phycocaynin (PC). In this thesis, an analytical bio-optical model, more typically applied to ocean waters, was modified to accommodate the complexity of inland waters. The newly developed models work well to estimate inherent optical properties, including absorption and backscattering coefficients, in eight different study sites distributed around the globe. Based on derived absorption coefficients, Chl-a and PC concentrations were accurately retrieved for data sets collected annually from 2006 to 2010, and the estimation accuracy exceeded that of currently used algorithms. An important advantage of the model is that low concentrations of Chl-a and PC can be predicted more accurately, enabling early warning of cyanobacterial blooms. In addition, the results also indicated good spatial and temporal transferability of the algorithms, since no specific calibration procedures were required for data sets collected in a different sites and seasons. The compatibility of the newly developed algorithm with MERIS spectra provides the possibility for routine surveillance of cyanobacterial growth in inland waters.
6

Oxic and anoxic transformations of leaf derived organic matter in freshwater systems

Conway, Carol Leza, n/a January 2005 (has links)
In Australia, significant effort goes into reducing the amount of nitrogen and phosphorus entering inland waters from point sources. However, little is known of the extent to which riparian organic matter may act as a source of these nutrients. Also, whilst the relationships between the nitrogen, phosphorus and carbon cycles are broadly known, there is little quantitative data regarding the release of these elements from Australian riparian organic matter and their subsequent microbial mineralisation within aquatic environments. In particular, comparatively little is known of their comparative role in nutrient and organic matter cycling within anoxic zones, and the influence that different riparian organic matter may have on stream water quality. This lack of such data presently hampers the ability of water managers to make educated decisions regarding the management of riparian zones in Australia. In order to improve understanding in this area, a combination of laboratory and in situ experiments were carried out in order to compare the abiotic release and aerobic/ anaerobic mineralisation of leaf derived dissolved organic carbon (DOC), dissolved nitrate/nitrite (NOx) and soluble reactive phosphorus (SRP) under different environmental conditions. Four plants common to Australian riparian zones were investigated: two native species, Eucalyptus camaldulensis (gum) and Phragmites australis (common reed), and two exotic species, Salix babylonica (willow) and Lolium multiflorum (rye grass). After 30 days, formaldehyde inhibited 1g willow and rye grass extracts contained the most SRP (0.7 mg/L), whilst gum extracts contained 0.3 mg/L and common reed 0.1 mg/L of SRP.Willow and rye grass abiotically released twice as much NOx than gum and common reed, although concentrations were only between 0.05-0.1 mg/L. Gum and common reed released the most DOC per gram of leaf matter (14 and 12 mmol/g of leaf matter respectively), but based on the initial carbon content of each leaf type, the largest percentage contributor of DOC under abiotic conditions was common reed and rye grass (both 38% mass/mass), with gum (33% mass/mass) and willow (30% mass/mass) being smaller contributors. The most bioavailable DOC was released by rye grass and common reed, with between 83 and 94% of this DOC microbially mineralised after 30 days in oxic conditions. When conditions were not inhibited, microbial growth was evident almost immediately in willow, rye grass and common reed leaf extracts. However, microbial growth was suppressed for the first 48 hours in gum leaf extracts. After this suppression period, the rate of DOC mineralisation was equal in willow and gum leaf extracts (0.1 day-1). Under anoxic conditions, the rate and extent of DOC mineralisation of willow and gum leaves depended on the type of electron acceptor provided. Added nitrate and iron III enhanced the mineralisation of both willow and gum leaves relative to no terminal electron acceptors (from zero to 0.01-0.04 and 0.002- 0.004 moles/day respectively), but added sulphate only enhanced the mineralisation of gum leaves (0.04 moles/day). When no additional electron acceptors were provided, particulate leaf mineralisation was more extensive under oxic than anoxic conditions. However, the mineralisation of leaf derived DOC were the same regardless of oxygen availability, and after 35 days in either condition the percentage of leaf DOC mineralised for each leaf type was of the order common reed > rye grass > willow > gum. All the leaf types tested were able to sustain the caddis fly larvae Triplectides australis under controlled laboratory conditions, and survival rates were high using all four leaf types as a food source. Triplectides australis did not significantly increase the amount of DOC released from each type of leaf matter, but they did consistently increase the proportion of simple carbohydrates present within the DOC fraction. The results of these experiments suggest that changes to riparian vegetation, particularly from the native to exotic species used in this study, will inherently alter in-stream concentrations of dissolved carbon and nutrients (particularly SRP). This potentially will affect in-stream, hyporheic and subsurface processes, particularly in areas where surface water flow is low and riparian leaf inputs are high.
7

Ecological impacts of dam removal in Swedish inland waters : Effects on water chemistry and fish demography / Ekologisk påverkan av dammutrivningar i svenska inlandsvatten : Effekter på vattenkemi och fiskdemografi

Ekman, Johanna January 2023 (has links)
Dams play an important role in our society, but their negative impacts on aquatic ecosystems have led to a need for conservation efforts to mitigate the negative effects. In some instances, dam removal has been suggested to be the most economically and ecologically beneficial restoration method to improve longitudinal connectivity. This, however, has increased the need of more research about the effects dam removal have on aquatic ecosystems, since the outcomes of this restoration method can be unpredictable. In this study, I investigated ecological impacts of dam removals in Swedish inland waters. I collected field data from five different lakes in Värmland and Dalarna, two lakes with dam removal in 2017/2018 and three without. I studied how dam removal affected different trophic levels of the aquatic ecosystem, where I predicted that a top-down effect would increase abundances of piscivorous European perch (Perca fluviatilis) and zooplankton, but decrease phytoplankton, whereas a bottom-up effect would lead to increases in biomass at all trophic levels (with most pronounced effects on nutrient concentration). If both top-down and bottom-up effects would operate in parallel, all the above mentioned effects could occur. I also predicted that if dam removal affected the fish community, there would be a change in species diversity and fish biomass. Moreover, if perch demography was affected, there would be a change in perch length and abundance of different age classes. To investigate this, I collected data on fish, plankton, nutrients (P, N), DOC, pH and conductivity in the five lakes and compared this with already existing historical data using a BACI design. Two-way ANOVAs were used to study the effects of dam removals on these variables. There were not enough historical data on P concentration or zoo-and phytoplankton to be analyzed statistically. I did, however, conduct correlation analyses with zoo- and phytoplankton. Contradictory to my prediction, the results showed no effect of dam removal on fish biomass or diversity, water chemistry or perch demography in the studied lakes. There was, however, a statistically significant effect of time on Tot-N, with lower values after the years of 2017/2018 (regardless of dam removal). There were also some differences between the lakes in species diversity, concentration of Tot-N, potentially piscivorous perch and perch length. The outcomes of dam removal are unpredictable, as are the expected time-lapse of the effects, which means that changes may yet occur in the studied lakes. Knowledge about ecosystem responses to dam removal enables managers to better predict the effects of dam removal, and thereby facilitate decision makings related to this restoration method. / Dammar spelar en viktig roll i vårt samhälle, men deras negativa påverkan på akvatiska ekosystem har ökat behovet av bevarandeinsatser för att minska de negativa effekterna. I somliga fall har dammutrivning föreslagits vara den mest ekonomiskt och ekologiskt gynnsamma bevarandemetoden för att förbättra longitudinell konnektivitet. Detta har dock ökat behovet av mer forskning gällande dammutrivningars effekter på akvatiska ekosystem, eftersom utfallen av denna bevarandemetod kan vara oförutsägbara. I denna studie undersökte jag dammutrivningars ekologiska effekter i svenska inlandsvatten. Jag samlade data i fält från fem olika sjöar i Värmland och Dalarna, två sjöar med dammutrivningar under 2017/2018 och tre utan. Jag undersökte hur dammutrivning påverkade olika trofiska nivåer i det akvatiska ekosystemet, med förväntningarna att en top-down-effekt skulle öka abundansen av fiskätande abborre (Perca fluviatilis) samt djurplankton, men minska växtplankton, medan en bottom-up-effekt skulle leda till ökad biomassa inom samtliga trofiska nivåer (men med mest effekter på näringskoncentration). Om både top-down- och bottom-up-effekter skulle verka parallellt kunde samtliga ovanstående nämnda effekter förekomma. Jag förväntade även att om dammutrivning påverkade fisksamhället skulle det ske en förändring i artdiversitet och fiskbiomassa. Därtill bör en effekt på demografi hos abborre leda till förändringar i abborrlängd- och abundans i olika åldersklasser. För att undersöka detta samlade jag in data över fisk, plankton, näringsämnen (P, N), DOC, pH och konduktivitet i de fem sjöarna och jämförde detta med redan existerande historiska data med en BACI design. Tvåvägs-ANOVAs användes för att studera effekterna av dammutrivningar på dessa variabler. Det fanns inte tillräckligt med historiska data över P-koncentration eller djur- och växtplankton för att analyseras statistiskt. Jag utförde dock korrelationsanalyser med djur- och växtplankton. I kontrast till min förväntan visade resultaten ingen effekt av dammutrivning på fiskbiomassa- eller diversitet, vattenkemi eller demografi hos abborre i de studerade sjöarna. Det var däremot en statistiskt signifikant effekt av tid på Tot-N, med lägre värden efter 2017/2018 (oberoende av dammutrivning). Det var även en del skillnader mellan sjöarna i artdiversitet, koncentration av Tot-N, potentiellt fiskätande abborre samt abborrlängder. Utfallen av damutrivningar är oförutsägbara, och detsamma gäller tidsintervallet för effekterna, vilket innebär att det fortfarande kan ske förändringar i de studerade sjöarna. Kunskap om ekosystemrespons till dammutrivning möjliggör för förvaltare att lättare bedöma effekter av dammutrivningar, och underlättar därav beslutsfattning relaterat till denna bevarandemetod.
8

Untersuchungen zum Auftreten von Myxosporidien bei Nutz- und Wildfischarten aus Binnengewässern der DDR

Sedlaczek, Jürgen 16 February 2016 (has links)
Die Arbeit verfolgt das Ziel, eine Übersicht über die bei verschiedenen Süßwasserfischarten festgestellten Myxosporidien zu geben. Aus Gewässern der DDR-Bezirke Potsdam, Berlin, Frankfurt (Oder), Cottbus und Dresden wurden 1.850 Fische (1.015 Karpfen, 258 Regenbogenforellen, 143 Silberkarpfen, 104 Plötzen sowie weitere 22 Fischarten in geringer Zahl untersucht. Es wurden 40 Myxosporidienarten folgender taxonomischer Gruppen nachgewiesen: Myxidiidae (7), Sphaerosporidae (6), Chloromyxidae (4) und Myxobolidae (23). In der Arbeit sind Maße, Fotos und Zeichnungen der Parasiten enthalten. Es wurden Angaben über die Taxonomie, Organspezifität, Saisondynamik, Epizootiologie und Auswirkungen auf die Fischgesundheit gemacht. Es erfolgte ein Vergleich mit früheren Arbeiten in der DDR auf diesem Gebiet. Der Artenbestand an Myxosporidien konnte um 39 Arten erweitert werden. Anhand faunistischer Arbeiten aus benachbarten Ländern wurden die Bedeutung und Perspektiven zum Auftreten von Myxosporidiosen in der DDR herausgestellt. / This work aims to give an overview about the detected Myxosporeans in different species of freshwater fishes. From inland waters of the GDR districts Potsdam, Berlin, Frankfurt (Oder), Cottbus and Dresden 1.850 fishes (1.015 carps, 258 rainbow trouts, 143 silver carps, 104 roach and more 22 Fish species in small numbers were studied. 40 Myxosporean species of following taxonomic groups were detected: Myxidiidae (7), Sphaerosporidae (6), Chloromyxidae (4) und Myxobolidae (23). In this work are presented dimensions, photos and drawings of the parasites. Details are given on taxonomy, organ specificity, season dynamics, epizootiology and the impact on fish health A comparison with previous work in the GDR on this subject was carried out. The species inventory on Myxosporidia could be extended to 39 species. Based on faunal work from neighboring countries the importance and prospects for occurrence of Myxosporidiosis in the GDR were highlighted.

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