2013Ganhanqu diliRequires access

Differentiating the soil inorganic CO_2 flux of saline and alkaline soils

Wang Zhong-yua

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Abstract

The soil inorganic CO_2 flux in saline/alkaline soil of the arid land is a unique and brand-new phenomenon, which breaks the assumption that soil CO_2 fluxes are purely organic in origin.However,due to lack differentiation standard and quantitative data,the significance of soil inorganic CO_2 flux to soil CO_2 flux and global carbon cycle is still uncertainty.The experiment was carried out from August to October in 2009 at the Fukang Station of Desert Ecology.To determine the potential contribution of soil inorganic CO_2 flux to total soil CO_2 flux,the soil inorganic CO_2 flux was differentiated by sterilization treatment(121 ℃,24 h) with pressure steam chamber.The results showed that soil properties had little change before and after sterilization treatment.Having its differentiation effect validated by the relationship between soil organic CO_2 flux and temperature,it showed that the sterilization was a reliable and valid method to differentiate soil inorganic CO_2 flux.The effect of soil inorganic CO_2 flux was larger than that of soil organic CO_2 flux,which could dominate the saline/alkaline soil CO_2 flux both in direction and magnitude. As a significant component of soil CO_2 flux in saline/alkaline soil,the differentiation and quantification of soil inorganic CO_2 flux are necessary to advance understanding of carbon cycle in arid land.Therefore,the non-negligible role of soil inorganic CO_2 flux as potential contribution to the arid land ecosystem carbon cycle requires further investigation towards a better understanding of arid land soil CO_2 flux and global soil carbon cycle.

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What this paper is about

The soil inorganic CO_2 flux in saline/alkaline soil of the arid land is a unique and brand-new phenomenon, which breaks the assumption that soil CO_2 fluxes are purely organic in origin.However,due to lack differentiation standard and quantitative data,the significance of soil inorganic CO_2 flux to soil CO_2 flux and global carbon cycle is still uncertainty.The experiment was carried out from August to October in 2009 at the Fukang Station of Desert Ecology.To determine the potential contribution of soil inorganic CO_2 flux to total soil CO_2 flux,the soil inorganic CO_2 flux was differentiated by sterilization treatment(121 ℃,24 h) with pressure steam chamber.The results showed that soil properties had little change before and after sterilization treatment.Having its differentiation effect validated by the relationship between soil organic CO_2 flux and temperature,it showed that the sterilization was a reliable and valid method to differentiate soil inorganic CO_2 flux.The effect of soil inorganic CO_2 flux was larger than that of soil organic CO_2 flux,which could dominate the saline/alkaline soil CO_2 flux both in direction and magnitude. As a significant component of soil CO_2 flux in saline/alkaline soil,the differentiation and quantification of soil inorganic CO_2 flux are necessary to advance understanding of carbon cycle in arid land.Therefore,the non-negligible role of soil inorganic CO_2 flux as potential contribution to the arid land ecosystem carbon cycle requires further investigation towards a better understanding of arid land soil CO_2 flux and global soil carbon cycle.

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Available abstract

The soil inorganic CO_2 flux in saline/alkaline soil of the arid land is a unique and brand-new phenomenon, which breaks the assumption that soil CO_2 fluxes are purely organic in origin.However,due to lack differentiation standard and quantitative data,the significance of soil inorganic CO_2 flux to soil CO_2 flux and global carbon cycle is still uncertainty.The experiment was carried out from August to October in 2009 at the Fukang Station of Desert Ecology.To determine the potential contribution of soil inorganic CO_2 flux to total soil CO_2 flux,the soil inorganic CO_2 flux was differentiated by sterilization treatment(121 ℃,24 h) with pressure steam chamber.The results showed that soil properties had little change before and after sterilization treatment.Having its differentiation effect validated by the relationship between soil organic CO_2 flux and temperature,it showed that the sterilization was a reliable and valid method to differentiate soil inorganic CO_2 flux.The effect of soil inorganic CO_2 flux was larger than that of soil organic CO_2 flux,which could dominate the saline/alkaline soil CO_2 flux both in direction and magnitude. As a significant component of soil CO_2 flux in saline/alkaline soil,the differentiation and quantification of soil inorganic CO_2 flux are necessary to advance understanding of carbon cycle in arid land.Therefore,the non-negligible role of soil inorganic CO_2 flux as potential contribution to the arid land ecosystem carbon cycle requires further investigation towards a better understanding of arid land soil CO_2 flux and global soil carbon cycle.

Key concepts: Alkali soil, Soil water, Environmental science, Flux (metallurgy), Soil science, Soil carbon, Soil fertility, Environmental chemistry

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