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The radiation budget of planets substantially determines their climates. For the terrestrial planets having their own imperceptible heat source compared to the solar radiation, the radiation budget supplies energy that can be transformed and used in their atmospheres and at their surfaces. The crucial role of the radiation budget for the Earth's climate is manifested in current international programs like the World Climate and Global Change Programs. The intercomparison and analysis of the radiation budget of the terrestrial planets, due to quite different atmospheric compositions and external conditions, provide a deeper insight into the relations of the different components of the radiation budget.  相似文献   
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Interdisciplinary scientific knowledge is necessary but not sufficient when it comes to addressing sustainable transformations, as science increasingly has to deal with normative and value-related issues. A systems perspective on coupled human–environmental systems (HES) helps to address the inherent complexities. Additionally, a thorough interaction between science and society (i.e., transdisciplinarity = TD) is necessary, as sustainable transitions are sometimes contested and can cause conflicts. In order to navigate complexities regarding the delicate interaction of scientific research with societal decisions these processes must proceed in a structured and functional way. We thus propose HES-based TD processes to provide a basis for reorganizing science in coming decades.  相似文献   
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Environmental Science and Pollution Research - Aquatic pollution resulting from anthropogenic activities requires adequate environmental monitoring strategies in sentinel organisms. Thus,...  相似文献   
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A straightened stream stretch with poor habitat heterogeneity was divided into a “control” section with a low amount of submerged woody debris and an experimentally “wood-enriched” downstream section to study the effect of enhanced habitat diversity on the benthic invertebrate community. The downstream section was enriched by fixing 25 wood packages constructed from 9–10 branches on the stream bottom. Succession processes occurring in the two stream sections were compared by chironomid exuviae drift from July to November 2000 and from April to August 2001. During the first sampling period, more drifting chironomid exuviae (medians of control vs. wood-enriched: 446 vs. 331, no significant difference) and total number of taxa (44 vs. 36, Wilcoxon signed-rank test P = 0.019) were recorded for the control section. Although species compositions of both stream sections were highly similar (Sørensen index: 0.83) the diversity in the wood-enriched section was distinctly lower compared to the control section (Shannon–Weaver index: 1.19 vs. 1.50). During the second sampling period, exuviae numbers remained higher in the control section (median: 326 vs. 166), but total numbers of taxa were nearly equal (51 vs. 49), as well as species diversity (Shannon–Weaver index: 1.67 vs. 1.64). The lower chironomid diversity observed during the first sampling period coincided with a gradual but significant change of the streambed morphology in the wood-enriched section. There, the initially more U-shaped profile (V/U = 0.81 ± 0.37) had turned into a pronounced V shape (V/U = 1.14 ± 0.21), whereas the control section retained its unaltered U shape (V/U = 0.62–0.75). This small-scale study on experimental of woody debris in sandy lowland streams showed that the negative impact of increased hydraulic disturbance of the existing streambed more than outweighed any positive impact resulting from the increase in woody debris.  相似文献   
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Journal of Material Cycles and Waste Management - A correction to this paper has been published: https://doi.org/10.1007/s10163-021-01211-w  相似文献   
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Zusammenfassung  POPs (persistente organische Schadstoffe), die an aquatischen Sedimenten binden, k?nnen zurück in Nahrungsnetze gelangen und so zu einem Risiko für aquatische Organismen werden. Dabei kann die Bioakkumulation solcher Substanzen in endobenthischen, sedimentfressenden Invertebraten (z.B. aquatische Oligochaeten) eine gro?e Rolle spielen. Diese Würmer dienen vielen benthivoren Fischen als Nahrung. Letztere nehmen über diesen Weg sedimentgebundene Chemikalien auf und k?nnen hierbei deutlich h?here K?rperkonzentrationen (body residues) erreichen als durch die Anreicherung aus der Wasserphase. Die angereicherten Rückst?nde k?nnen im weiteren Verlauf der Nahrungskette an Glieder h?herer trophischer Ebenen weitergegeben werden. Zur standardisierten Bestimmung der Bioakkumulation und — magnifikation wurde eine einfache, zwei trophische Stufen umfassende Labornahrungskette etabliert. Diese bestand aus dem endobenthischen Oligochaeten Tubifex tubifex und dem Dreistachligen Stichling (Gasterosteus aculeatus) als Pr?dator. Die Experimente wurden mit 14C-markiertem Hexachlorbenzol in dotiertem künstlichem Sediment und rekonstituiertem Wasser durchgeführt. Um den Einfluss benthischer Beuteorganismen zu quantifizieren, wurden die Fische gegenüber dotiertem Wasser bzw. Sediment (Biokonzentration), vorexponierten Würmern (Biomagnifikation) und Kombinationen dieser Aufnahmepfade exponiert. HCB wurde entlang der Labornahrungskette deutlich angereichert. Es konnte gezeigt werden, dass die Exposition gegenüber der Kombination s?mtlicher Aufnahmepfade zu deutlich h?herer Anreicherung in den Fischen führte als im Falle einzelner Expositionspfade. Der Vergleich der Einzelergebnisse lie? den Schluss zu, dass neben dem freien Wasserk?rper die kontaminierte Nahrung der Hauptaufnahmeweg für den Fisch war. Bei der Bewertung von POPs wie HCB hinsichtlich Biomagnifikation und ‘secondary poisoning’ sollten daher Nahrung und Sediment als Expositionspfade unter Verwendung von Nahrungsketten-modellen und/oder Labortests st?rker berücksichtigt werden. Reter Spr?rlein war bis Januar 2000 als Ingenieur für Umweltverfahrenstechnik bei der ECT Oekotoxikologie GmbH besch?ftigt und für die HPLC-analytische Aufarbeitung der experimentellen Proben verantwortlich.  相似文献   
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POPs (persistent organic pollutants) associated with aquatic sediments can pose a risk to aquatic food chains, since they can be re-introduced to the food web. One major pathway is the bioaccumulation of POPs by endobenthic, sedimentingesting invertebrates (especially tubificid oligochaetes). These worms serve as food for benthivorous fish, which thereby ingest the sediment-borne chemicals and may accumulate contaminant concentrations far higher than from water exposure alone, and consequently transfer them to organisms of higher trophic levels. In order to evaluate such a potential biomagnification, a laboratory test was developed. It consisted of a two-step food chain including the sediment dwelling freshwater oligochaete Tubifex tubifex (Müller) and the three-spined stickleback (Gasterosteus aculeatus, Linné), a small teleost fish which often feeds primarily on benthic invertebrates. Artificial sediment and reconstituted water were used. To examine the influence of benthic prey on the bioaccumulation of a POP in the predator, fish were exposed to 14C-labelled hexachlorobenzene via spiked water, spiked sediment, pre-contaminated prey organisms, and to combinations of these exposure routes. Summarising the results of these experiments, it could be shown that the exposure to HCB via different routes resulted in a significantly higher accumulation in fish than an exposure to single pathways. It was concluded that the major uptake routes for fish were the overlying water and the food, whereas the contribution of spiked sediment itself was relatively small. HCB was biomagnified in the rested laboratory food chain. Therefore, concerning secondary poisoning, the environmental risk assessment of POPs like HCB should not be based on existing bioaccumulation tests alone, since they focus only on exposure via the water pathway. Instead, the influence of food and sediment as exposure routes should be considered as well, using comprehensive food chain modelling and/or laboratory studies.  相似文献   
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