標(biāo)題: Titlebook: Concepts and Controversies in Tidal Marsh Ecology; Michael P. Weinstein,Daniel A. Kreeger Book 2000 Springer Science+Business Media B.V. 2 [打印本頁] 作者: audiogram 時間: 2025-3-21 16:58
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作者: 針葉樹 時間: 2025-3-21 23:11 作者: 向下五度才偏 時間: 2025-3-22 01:14
Role of Salt Marshes as Part of Coastal Landscapesadjoining ecosystems. Salt marshes tend to export materials to deeper waters, as shown by mass balance and stable isotopic studies. Salt marshes also intercept land-derived nutrients, and thus modify the potential response of phytoplankton, macroalgae, and seagrasses in the receiving estuarine water作者: 使出神 時間: 2025-3-22 05:12
Spatial Variation in Process and Pattern in Salt Marsh Plant Communities in Eastern North America based on experimental studies conducted at just a handful of study sites. How general are these results and how far can we extrapolate from them to understand other marsh systems? In this paper, we argue that the zonation of eastern North American marsh plant communities may be strongly influenced 作者: FLASK 時間: 2025-3-22 12:08
Eco-Physiological Controls on the Productivity of , Loiselarshes in which this species dominates has been extensively investigated because of the documented biogeochemical functions that these ecosystems perform and the resulting societal values they provide. Since many of the salt marsh-derived values originate, either directly or indirectly, from the pre作者: 珊瑚 時間: 2025-3-22 14:15
Community Structure and Functional Dynamics of Benthic Microalgae in Salt Marshess. Diatoms, cyanobacteria, and green algae are the dominant groups. Of these, diatoms are universally present and abundant, exhibit migratory rhythms driven mainly by light, and are by far the taxonomically most diverse group. Dense mats of cyanobacteria and secondarily green algae frequently develo作者: 珊瑚 時間: 2025-3-22 19:38
Structure and Productivity of Microtidal Mediterranean Coastal Marshesabundant but there are relatively few studies of coastal wetland primary productivity in the Mediterranean. These tidal marshes are poorly flushed because of the low tidal range and freshwater tidal marshes are rare. Most marshes are found in deltas and fringing coastal lagoons. Recent studies carri作者: 受人支配 時間: 2025-3-23 00:39 作者: 脖子 時間: 2025-3-23 01:24 作者: 恃強凌弱的人 時間: 2025-3-23 06:10
Trophic Complexity Between Producers and Invertebrate Consumers in Salt Marshese of the lignocellulosic structure of this angiosperm, invertebrates utilize C from these plants with very low efficiency, if at all. This is true for both living cordgrass and post-senescent plant detritus. To balance their C demands, invertebrate consumers living in salt marshes must utilize a wid作者: Pessary 時間: 2025-3-23 10:25
Trophic Linkages in Marshes: Ontogenetic Changes in Diet for Young-of-the-Year Mummichog, Fundulus Hs. The common mummichog, . has been proposed as an important link in trophic transfer, however little is known about the role of small young-of-the-year (YOY) in this process. To address this lack of information, YOY were collected from the flooded salt marsh surfaces at a lower Delaware Bay site ov作者: DRAFT 時間: 2025-3-23 15:03 作者: 割公牛膨脹 時間: 2025-3-23 20:12
Salt Marsh Ecoscapes and Production Transfers by Estuarine Nekton in the Southeastern United States, and depend on, a variety of habitats. The problem might best be viewed from the perspective of a tidal marsh ecoscape, which relates variation in ecological interactions or processes to spatial patterns that emerge when associated marsh habitats are viewed together as a functional unit. Vegetated 作者: 眼界 時間: 2025-3-23 23:16 作者: 競選運動 時間: 2025-3-24 05:51 作者: sleep-spindles 時間: 2025-3-24 07:35
Salt Marsh Ecosystem Support of Marine Transient Specieson (fish and crustaceans). Yet, there is a surprising level of uncertainty among scientists regarding the role of salt marshes in supporting secondary production. The emphasis has been on “marine transient” species (in earlier literature often referred to as “estuarine dependent”) because they have 作者: 松軟 時間: 2025-3-24 11:27 作者: 后天習(xí)得 時間: 2025-3-24 18:28
Twenty More Years of Marsh and Estuarine Flux Studies: Revisiting Nixon (1980)ing of “The Outwelling Hypothesis” (Odum, 1980). Nixon (1980) signaled a crucial turning point in the direction of estuarine flux studies conducted since then. In this review we revisit Nixon (1980), focusing on research and thinking that has been guided by The Outwelling Concept in the last two dec作者: NUL 時間: 2025-3-24 20:57
The Role of Oligohaline Marshes in Estuarine Nutrient Cyclingt can limit the production of planktonic communities, high nutrient concentrations and regular tidal inundation results in highly productive macrophyte and algal communities. Despite potentially important water quality values, relatively few detailed studies of N and P cycling in oligohaline marshes作者: 恩惠 時間: 2025-3-25 02:46
Book 2000slim volume published in 1959 by the University of Georgia and edited by R. A. Ragotzkie, L. R. Pomeroy, J. M. Teal, and D. C. Scott, entitled “Proceedings of the Salt Marsh Conference” held in 1958 at the Marine Institute, Sapelo Island, Ga. Now forty years later, the Sapelo Island conference has b作者: 保全 時間: 2025-3-25 06:53
iscover a slim volume published in 1959 by the University of Georgia and edited by R. A. Ragotzkie, L. R. Pomeroy, J. M. Teal, and D. C. Scott, entitled “Proceedings of the Salt Marsh Conference” held in 1958 at the Marine Institute, Sapelo Island, Ga. Now forty years later, the Sapelo Island confer作者: palliative-care 時間: 2025-3-25 08:58
Unitary Rational Matrix Functions, that the extent of the latter depends on the level of production within the estuary, the tidal amplitude and the geomorphology of the estuarine landscape and 2) the outwelling from tidal marshes where it occurs is often intermittent and largest during rain storms and storm tides.作者: 生命層 時間: 2025-3-25 12:53
Design of Integrated Inductors,we ask “what is the relative impact of abiotic factors on growth in different marsh types?” Based on data from four NERR sites representing a spectrum of marsh hydrotypes and latitudes, we conclude that abiotically-forced variation in growth could explain much of the variation in secondary production in marshes.作者: vasospasm 時間: 2025-3-25 16:06
Tidal Marshes as Outwelling/Pulsing Systems that the extent of the latter depends on the level of production within the estuary, the tidal amplitude and the geomorphology of the estuarine landscape and 2) the outwelling from tidal marshes where it occurs is often intermittent and largest during rain storms and storm tides.作者: contrast-medium 時間: 2025-3-25 20:28 作者: auxiliary 時間: 2025-3-26 00:49 作者: 壓艙物 時間: 2025-3-26 05:56
https://doi.org/10.1007/0-306-47534-0Ecology; Fauna; Sediment; algae; benthic; biogeochemical cycles; ecosystem; ecosystems; environment; fisherie作者: hemorrhage 時間: 2025-3-26 11:20
978-94-017-4080-7Springer Science+Business Media B.V. 2000作者: Chromatic 時間: 2025-3-26 13:39 作者: 果核 時間: 2025-3-26 20:40
Unusual, Large-Scale, Motions in HII Regionst in combating both these problems. A paradigm for salt marsh function: marshes import inorganic nutrients and export organic nutrients and, as a result, grow fish. As ground and tidal water flow through salt-water wetlands, plants, bacteria and algae produce or transform the organic matter of the f作者: 離開 時間: 2025-3-26 21:09 作者: 逃避現(xiàn)實 時間: 2025-3-27 01:56
Progress in Interstellar Molecule Formation based on experimental studies conducted at just a handful of study sites. How general are these results and how far can we extrapolate from them to understand other marsh systems? In this paper, we argue that the zonation of eastern North American marsh plant communities may be strongly influenced 作者: hermitage 時間: 2025-3-27 08:41 作者: enflame 時間: 2025-3-27 12:10
https://doi.org/10.1007/BFb0083499s. Diatoms, cyanobacteria, and green algae are the dominant groups. Of these, diatoms are universally present and abundant, exhibit migratory rhythms driven mainly by light, and are by far the taxonomically most diverse group. Dense mats of cyanobacteria and secondarily green algae frequently develo作者: 爆米花 時間: 2025-3-27 13:55 作者: 上下連貫 時間: 2025-3-27 19:25 作者: inspiration 時間: 2025-3-27 22:11
https://doi.org/10.1007/BFb0082284mooth cordgrass (.). Recent research shows that this is also true for black needlerush (.). Ascomycetous fungi are the major initial secondary producers based on the dead shoots. There is no overlap between the species of the cordgrass (e.g., .) and needlerush (e.g., .) fungal-decay communities. Eve作者: 新陳代謝 時間: 2025-3-28 06:11 作者: UNT 時間: 2025-3-28 08:09 作者: Breach 時間: 2025-3-28 12:51 作者: Pcos971 時間: 2025-3-28 17:31 作者: 相容 時間: 2025-3-28 21:03
LC Oscillator Entrainment and Pulling, by large fishery catches of penaeid shrimps (., and . – 66% of U.S.) and blue crabs (. ?25% of U.S.). We believe that this production arises from coastal wetlands, and is driven by wetland geomorphology and hydrology resulting from the delta building and wetland loss cycles of the Mississippi River作者: semiskilled 時間: 2025-3-28 23:45 作者: 大氣層 時間: 2025-3-29 07:06 作者: maverick 時間: 2025-3-29 09:38
Themistocles M. Rassias,László Tóth engineered by dense populations of plants (marshes) or animals (beds and reefs) that use their organismic structure, i.e., bodies or shells, and functional processes, i.e., water pumping, suspension feeding, etc., to enhance the movement of materials between the two habitats. These adaptations to t作者: 大洪水 時間: 2025-3-29 14:02
https://doi.org/10.1007/978-3-319-65621-2ing of “The Outwelling Hypothesis” (Odum, 1980). Nixon (1980) signaled a crucial turning point in the direction of estuarine flux studies conducted since then. In this review we revisit Nixon (1980), focusing on research and thinking that has been guided by The Outwelling Concept in the last two dec作者: 全部 時間: 2025-3-29 16:14 作者: outrage 時間: 2025-3-29 21:00
Book 2000and John M. Teal – whose inspiration has been the starting place for a generation of coastal wetland and estuarine research. I do not mean to suggest that wetland research started at Sapelo Island. In 1899 H. C. Cowles described successional processes in Lake Michigan freshwater marsh ponds. There i作者: Diuretic 時間: 2025-3-30 00:25
e P. Odum and John M. Teal – whose inspiration has been the starting place for a generation of coastal wetland and estuarine research. I do not mean to suggest that wetland research started at Sapelo Island. In 1899 H. C. Cowles described successional processes in Lake Michigan freshwater marsh ponds. There i978-94-017-4080-7978-0-306-47534-4作者: Outwit 時間: 2025-3-30 07:59 作者: Systemic 時間: 2025-3-30 09:16 作者: 笨拙處理 時間: 2025-3-30 12:59 作者: 骯臟 時間: 2025-3-30 17:23
Observations of the Soft X-Ray Backgroundetermined by abiotic factors, particularly the interaction of soil anoxia, soluble sulfide, and salinity, with plant nitrogen uptake and assimilation. Also, . induce a positive feedback on productivity by enhancing substrate aeration. The growth enhancing effects of marsh infauna, e.g., fiddler crab作者: 樸素 時間: 2025-3-31 00:07 作者: amputation 時間: 2025-3-31 01:55 作者: 虛弱的神經(jīng) 時間: 2025-3-31 08:22 作者: Pantry 時間: 2025-3-31 13:04 作者: 傻瓜 時間: 2025-3-31 14:39
Roger Fenn,Colin Rourke,Brian Sandersonimate that ribbed mussels, ., in a Delaware marsh must rely on a variety of different food resources since no single food type can meet their nutritional demands for either C or N. To balance their C demands, mussels appear to rely mainly on microheterotrophs, followed by phytoplankton > microphytob作者: HAIRY 時間: 2025-3-31 20:52
2-Dimensional Braids and Chart Descriptions,ith the stomach contents of the smallest individuals (6.6 mm<20.4 mm SL) composed primarily of benthic fauna such as harpacticoid copepods and annelid worms. The stomach contents of larger YOY (20.5–30.4 mm SL) shifted to mostly . detritus and sediment aggregate. Thus, YOY . consume detritus both di作者: COLON 時間: 2025-3-31 22:28 作者: 與野獸博斗者 時間: 2025-4-1 03:52 作者: 巨頭 時間: 2025-4-1 09:39 作者: Connotation 時間: 2025-4-1 12:46 作者: 對手 時間: 2025-4-1 16:55
Themistocles M. Rassias,László Tóthte exchange mechanisms. Marsh mussels magnify benthic-pelagic coupling by their active pumping and filtration of water. The shells of bivalve beds form a rough benthic surface that enhances turbulent mixing and increases the width of the benthic boundary layer. These beds can remove, via sedimentati