Environmental Engineering Reference
In-Depth Information
Friess DA, Krauss KW, Horstman EM, Balke T, Bouma TJ, Galli D, Webb EL(2012). Are all
intertidal wetlands naturally created equal? Bottlenecks, thresholds and knowledge gaps
to mangrove and saltmarsh ecosystems. Biological Reviews , 87(2): 346-366.
Han N, Shao Q, Lu CM, Wang BS (2005). The leaf tonoplast VH + -ATPase activity of a C 3
halophyte Suaeda salsa is enhanced by salt stress in a Ca-dependent mode. Journal of
plant physiology , 162(3): 267-274.
Hao Q, Wang Y, Song C, Wang Y, Wang M(2004). Primary study on CO 2 and CH 4
emissions from wetland soils in the Sanjiang Plain. Journal of Agro-Environment
Science , 23(5): 846-851.
Hirota M, Senga Y, Seike Y, Nohara S, Kunii H (2007). Fluxes of carbon dioxide, methane
and nitrous oxide in two contrastive fringing zones of coastal lagoon, Lake Nakaumi,
Japan. Chemosphere, 68(3): 597-603.
Jiang HH (2012), Study on the flux characteristics and influence mechanisms of carbon
dioxide and methane emission of tidal wetland ecosystem in the Yellow River estuary.
Yantai institude of coastal zone research, Chinese academy of science.
Jin YF, Hu ZQ, Tong C (2012). Diurnal Variations of Methane Emission Flux from A Marsh
Dominated by Cyperus malaccensis and Phragmites australis during Neap and Spring
Tidal Days in Min River Estuary. Wetland Science , 10(2): 228-234.
Kotsyurbenko OR (2005). Trophic interactions in the methanogenic microbial community of
low temperature terrestrial ecosystems. FEMS Microbiology Ecology , 53(1): 3-13.
Krasakopoulou E, Rapsomanikis S, Papadopoulos A, Papathanassiou E (2009). Partial
pressure and air-sea CO 2 flux in the Aegean Sea during February 2006. Continental Shelf
Research , 29(11): 1477-1488.
Laanbroek HJ (2010). Methane emission from natural wetlands: interplay between emergent
macrophytes and soil microbial processes. A mini-review. Annals of Botany , 105(1): 141-
153.
Li MF, Dong YS, Qi YC, Geng YB (2004), Impact of extreme drought on the fluxes of CO 2 ,
CH 4 , N 2 O from temperate steppe ecosystems. Resourses Science 26(3): 89-95.
Liu F, Li TA, Fan XL (2013). Methane emission and its relationship with soil temperature
and moisture during rice growth in film mulching upland rice field in South China.
Transactions of the Chinese Society of Agricultural Engineering, 29(2): 110-116.
Livesley SJ, Andrusiak SM (2011). Temperate mangrove and salt marsh sediments are a
small methane and nitrous oxide source but important carbon store. Estuarine, Coastal
and Shelf Science , 97(20): 19-27.
Lv YH, Bai H, Jiang Y, Yu J (2008). Study of nitrification activity and impact factors of
wetland in Yellow River Delta. Transaction of Oceanol Limno, 2: 61-66.
Magenheimer J, Moore T, Chmura G, Daoust R(1996). Methane and carbon dioxide flux
from a macrotidal salt marsh, Bay of Fundy. New Brunswick. Estuaries, 19(1): 139-145.
Marton JM, Herbert ER, Craft CB (2012). Effects of salinity on denitrification and
greenhouse gas production from laboratory-incubated tidal forest soils. Wetlands, 32(2):
347-357.
Neubauer S, Franklin R, Berrier D (2013). Saltwater intrusion into tidal freshwater marshes
alters the biogeochemical processing of organic carbon. Biogeosciences Discussions ,
10(7): 10685-10720.
Search WWH ::




Custom Search