首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Contribution of aboveground plants, the rhizosphere and root-free-soils to total COS and DMS fluxes at three key growth stages in rice paddies.
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Contribution of aboveground plants, the rhizosphere and root-free-soils to total COS and DMS fluxes at three key growth stages in rice paddies.

机译:稻田三个关键生长阶段地上植物,根际土壤和无根土壤对总COS和DMS通量的贡献。

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Carbonyl sulfide (COS) and dimethyl sulfide (DMS) are trace sulfur gases that contribute substantially to sulfate aerosols or cloud condensation nuclei in the upper and lower atmosphere and therefore play great roles in the earth's radiative balance. COS and DMS fluxes in rice (Oryza sativa L.) have been measured previously in rice paddies, and this study was designed to further investigate the role of aboveground plants, the rhizosphere and the root-free-soils in the exchange of COS and DMS by comparing COS and DMS fluxes among planted plots (PP), non-planted plots (NPP), plots with aboveground plants just cut before test (plants-cut plots, PCP) at three key growth stages (tillering, jointing-booting and mature stage). The average COS fluxes in NPP, PCP, and PP were 10.5+or-3.8, 6.1+or-4.6, and -12.3+or-5.0 pmol m-2 s-1, suggesting that COS emission from root-free-soils (10.5 pmol m-2 s-1) was surpassed by uptake of the rhizosphere (-4.4 pmol m-2 s-1) and aboveground plants (-18.4 pmol m-2 s-1). DMS emission rates were 60.5+or-25.2, 20.2+or-7.3 and 30.8+or-10.8 pmol m-2 s-1 in PP, NPP and PCP, respectively. Calculated DMS emission from the aboveground plants, rhizosphere and the root-free-soils were 29.7, 10.6 and 20.2 pmol m-2 s-1, accounting respectively for 49.0%, 17.6% and 33.4% of total DMS emission. Directly measured COS and DMS fluxes from aboveground plants averaged -14.2+or-7.2 and 22.3+or-10.6 pmol m-2 s-1, approximating that of -18.4 and 29.7 pmol m-2 s-1 calculated by subtracting fluxes in PP and PCP, respectively. Preliminary diurnal flux observation at jointing-booting stage revealed significant linear correlation between COS uptake rates by above ground plants (MFCOS) and photosynthesis rates (Pn) with a MFCOS/Pn slope of 0.48 pmol micro mol-1. DMS emission from the aboveground plants was also found to be significantly increased with temperature.
机译:羰基硫化物(COS)和二甲基硫醚(DMS)是微量的硫气体,在上层和下层大气中对硫酸盐气溶胶或云凝结核有重大贡献,因此在地球辐射平衡中起着重要作用。以前已经在稻田中测量了水稻(Oryza sativa L.)中的COS和DMS通量,本研究旨在进一步研究地上植物,根际土壤和无根土壤在COS和DMS交换中的作用。通过比较种植地(PP),非种植地(NPP),试验前刚切割的地上植物的地块(植物切割地块,PCP)在三个关键生长阶段(分iller,拔节和成熟期)的COS和DMS通量阶段)。 NPP,PCP和PP中的平均COS通量为10.5+或-3.8、6.1+或-4.6和-12.3+或-5.0 pmol m -2 s -1 ,这表明根际吸收量(-4.4 pmol m s -1 )的COS排放量。 sup> -2 s -1 )和地上植物(-18.4 pmol m -2 s -1 )。 PP,NPP和PCP中DMS的排放速率分别为60.5+或-25.2、20.2+或-7.3和30.8+或-10.8 pmol m -2 s -1 。地上植物,根际土壤和无根土壤的DMS排放量分别为29.7、10.6和20.2 pmol m -2 s -1 ,分别占49.0%, DMS总排放量的17.6%和33.4%。直接测量的地上植物的COS和DMS通量平均为-14.2 + or-7.2和22.3 + or-10.6 pmol m -2 s -1 ,约为-18.4和通过减去PP和PCP中的通量分别计算得出29.7 pmol m -2 s -1 。拔节期的初步昼夜通量观察表明,地上植物的MF吸收率(MF COS )和光合速率(Pn)与MF COS / Pn斜率为0.48 pmol micro mol -1 。还发现地上植物的DMS排放随温度显着增加。

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