University of Minnesota, St.Paul, MN, USA.
J Environ Qual. 2012 Nov-Dec;41(6):1874-83. doi: 10.2134/jeq2012.0045.
Carbon is cycled to and from large reservoirs in the atmosphere, on land, and in the ocean. Movement of organic carbon from the terrestrial reservoir to the ocean plays an important role in the global cycling of carbon. The transition from natural to agricultural vegetation can change the storage and movement of organic carbon in and from a watershed. Samples were collected from 13 streams located in hydrologically and agriculturally diverse watersheds, to better understand the variability in the concentrations and loads of dissolved organic carbon (DOC) and particulate organic carbon (POC) in the streams, and the variability in watershed yields. The overall annual median concentrations of DOC and POC were 4.9 (range: 2.1-6.8) and 1.1 (range: 0.4-3.8) mg C L, respectively. The mean DOC watershed yield (± SE) was 25 ± 6.8 kg C ha yr. The yields of DOC from these agricultural watersheds were not substantially different than the DOC yield from naturally vegetated watersheds in equivalent biomes, but were at the low end of the range for most biomes. Total organic carbon (DOC + POC) annually exported from the agricultural watersheds was found to average 0.03% of the organic carbon that is contained in the labile plant matter and top 1 m of soil in the watershed. Since the total organic carbon exported from agricultural watersheds is a relatively small portion of the sequestered carbon within the watershed, there is the great potential to store additional carbon in plants and soils of the watershed, offsetting some anthropogenic CO emissions.
碳在大气、陆地和海洋中的大型储库之间循环。有机碳从陆地储库向海洋的迁移对全球碳循环起着重要作用。从自然植被向农业植被的转变可以改变流域内和流域外有机碳的储存和迁移。从 13 条溪流中采集了样本,这些溪流位于水文和农业多样化的流域,以便更好地了解溪流中溶解有机碳 (DOC) 和颗粒有机碳 (POC) 的浓度和负荷以及流域产量的变化。DOC 和 POC 的年中值浓度分别为 4.9(范围:2.1-6.8)和 1.1(范围:0.4-3.8)mg C L。DOC 流域产量的平均值(± SE)为 25 ± 6.8 kg C ha yr。这些农业流域的 DOC 产量与等效生物群落中自然植被流域的 DOC 产量没有实质性差异,但在大多数生物群落中处于较低水平。从农业流域每年输出的总有机碳(DOC + POC)平均占流域中易分解植物物质和 1 米表土中有机碳的 0.03%。由于农业流域输出的总有机碳只是流域内封存碳的一小部分,因此有很大的潜力在流域的植物和土壤中储存更多的碳,从而抵消一些人为 CO 排放。