%0 Journal Article %T Responses of CO2 Fluxes to Light Intensity and Temperature in Rice Paddy Field
稻田CO2通量对光强和温度变化的响应特征 %A ZHU Yong-li %A WU Jin-shui %A TONG Cheng-li %A WANG Ke-lin %A WANG Qin-xue %A
朱咏莉 %A 吴金水 %A 童成立 %A 王克林 %A 王勤学 %J 环境科学 %D 2008 %I %X CO2 fluxes in rice paddy ecosystem in subtropical hilly region were measured continuously using eddy covariance technique. The objectives were to investigate the responses of CO2 fluxes to light intensity and temperature in the paddy ecosystem. Results showed a rectangular hyperbolic light-response function could be used to describe the relationship of CO2 flux and photosynthetic photon flux density (PPFD). The absolute values of CO2 fluxes increased with the increment of PPFD. When PPFD was higher than 1000 micromol/(m2 x s), the maximum was observed. CO2 fluxes responded differently to light between early and late rice. Values of quantum yield of late rice (0.0465-0.0999 micromol/micromol) were general higher than that of early rice (0.0176-0.0541 micromol/micromol). Moreover, the quantum yield and the maximum rate of photosynthesis assimilation in the blooming stage were higher than that in tillering and ripening stages. In nighttime, respiration from soil and plants (ecosystem respiration, Reco) changed exponentially with the increase of soil temperature at the depth of 5 cm (T5), 10 cm (T10), and 20 cm (T20), respectively. Whereas, T5 was more feasible than others to be considered as the temperature parameter for Reco calculation. During early rice growing season, Reco was more sensitive to temperature change than that during late rice growing season. %K CO2 flux %K light intensity %K temperature %K paddy ecosystem
CO2通量 %K 光强 %K 温度 %K 稻田生态系统 %U http://www.alljournals.cn/get_abstract_url.aspx?pcid=3FF3ABA7486768130C3FF830376F43B398E0C97F0FF2DD53&cid=A7CA601309F5FED03C078BCE383971DC&jid=64CD0AA99DD39F69401C615B85F123EF&aid=44C3BF41B0FB013697FE41558ED14E80&yid=67289AFF6305E306&vid=771469D9D58C34FF&iid=E158A972A605785F&sid=FC27EB98080C89E6&eid=3F10405738B4D004&journal_id=0250-3301&journal_name=环境科学&referenced_num=5&reference_num=20