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Effects of soluble organic carbon addition on CH4 and CO2 emissions from paddy soils regulated by iron reduction processes

机译:可溶性有机碳添加对铁还原过程调控下稻田CH4和CO2排放的影响

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An incubation experiment with the addition of glucose was conducted to evaluate the effects of carbon and iron (Fe(III)) reduction on methane (CH4) and carbon dioxide (CO2) emissions from paddy soils. Soils of a rice-rapeseed (Brassica napus) rotation and rice-fallow/flooded rotation were collected from Qianjiang (QR and QF, respectively) and Xianning (XR and XF). Incubation was conducted under flooding at 25 degrees C +/- 1 degrees C with or without (CK) glucose over 40 days. With glucose addition, cumulative CH4-C emissions from QR, QF, XR and XF soils were 5.31, 35.26, 13.92 and 27.58mgkg(-1), respectively, and cumulative CO2-C emissions were 594.33, 620.49, 549.42 and 792.46mgkg(-1). Compared with CK, glucose addition significantly (P<0.05) increased cumulative CH4 fluxes in QR and QF soils 11.07-fold and 1.39-fold, respectively, and cumulative CO2 fluxes 0.41-fold and 0.44-fold, whereas the effects of glucose addition on CH4 and CO2 fluxes in XR and XF soils were negligible. In addition, the soil Fe(II)/(Fe(II)+Fe(III)) fraction correlated positively with CH4 fluxes during the major emission period (P<0.05), and the Fe(II) production rate was positively correlated with the CO2 flux during the whole incubation period. Furthermore, Fe(III) reduction strongly competed with CH4 emission, especially in XR and XF soils, which derived from quaternary red clay. The results suggest that Fe(III) reduction plays a key role in mediating the carbon cycle of paddy soils.
机译:进行了添加葡萄糖的培养实验,以评估碳和铁(Fe(III))还原对稻田土壤甲烷(CH4)和二氧化碳(CO2)排放的影响。分别从钱江(QR和QF)和咸宁(XR和XF)收集了水稻-油菜(Brassica napus)轮作和稻米/淹水轮作的土壤。在25℃+/- 1℃的水浸条件下,在40天内添加或不添加(CK)葡萄糖,进行孵育。添加葡萄糖后,QR,QF,XR和XF土壤的累积CH4-C排放分别为5.31、35.26、13.92和27.58mgkg(-1),累积CO2-C排放为594.33、620.49、549.42和792.46mgkg(-1)。 -1)。与CK相比,添加葡萄糖显着(P <0.05)使QR和QF土壤中的累积CH4通量分别增加11.07倍和1.39倍,累积CO2通量增加0.41倍和0.44倍,而添加葡萄糖对XR和XF土壤中的CH4和CO2通量可以忽略不计。此外,在主要排放期内,土壤Fe(II)/(Fe(II)+ Fe(III))分数与CH4通量呈正相关(P <0.05),Fe(II)的产生速率与CH4通量呈正相关。在整个孵化期间的二氧化碳通量。此外,Fe(III)的还原与CH4的排放有很强的竞争性,特别是在XR和XF土壤中,这些土壤是从季红粘土中提取的。结果表明,Fe(III)的还原在介导水稻土的碳循环中起关键作用。

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