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首页> 外文期刊>Soil Science Society of America Journal >Total Soil Carbon and Water Quality: An Implication for Carbon Sequestration
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Total Soil Carbon and Water Quality: An Implication for Carbon Sequestration

机译:土壤总碳和水质量:对碳固存的影响

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Carbon sequestration in soil has been suggested as a means of reducing the rate of increase of atmospheric CO2. Most soil science research has been on soil organic carbon (SOC) sequestration but in arid and semiarid climates, soil inorganic carbon (SIC) may offer another option for C sequestration. A field study was conducted in Bakersfield, CA, to determine if irrigation water quality (fresh water [FW] vs. treated effluent [TE]) affected the distribution and amount of SIC and SOC in the upper 4 m of soil and parent material compared to a nonirrigated (NI) field. Significant carbonate depletions were found in the upper 2 m in both irrigated fields compared with the NI. Differences in carbonate content between irrigated fields were also related to soil texture. Total carbonate and clay-size carbonate were more abundant at the sites irrigated with TE than at the sites irrigated with FW, indicating that the TE had inhibited carbonate dissolution. Based on stable isotope analyses (13C and 18O) and radiocarbon dating, we estimated that irrigation for >75 yr sequestered about 7.15 kg m–2 (4 m)–1 of SIC under FW and between 0.9 and 2.4 kg m–2 (4 m)–1 under TE, if carbonate dissolution is C sequestration. Adding C loss due to SOC decomposition to the SIC sequestration, the fields may be a source for 8.8 and 17.4 to 15.9 kg m–2 (4 m)–1 of C under FW and TE, respectively. This study provides some of the first evidence of how water quality affects the C budget in an arid region.
机译:碳固存被认为是减少大气中CO 2 增加速率的一种手段。大多数土壤科学都是针对土壤有机碳(SOC)隔离的研究,但在干旱和半干旱气候下,土壤无机碳(SIC)可能会提供以下信息: C隔离的另一种选择。在加利福尼亚州贝克斯菲尔德进行了一项田间研究 ,以确定灌溉 的水质(淡水[FW]相对于处理后的污水[TE])是否影响了 田地相比,土壤和母体上部4 m 中SIC和SOC的分布和数量。与NI相比,在两个灌溉区的上部 2 m处均发现了明显的碳​​酸盐枯竭。灌溉田间碳酸盐含量的差异 也与土壤质地有关。 TE灌溉部位的碳酸盐总量和粘土碳酸盐含量 比FW灌溉部位的 丰富,表明TE抑制了碳酸盐含量 溶解。根据稳定的同位素分析( 13 C和 18 O) 和放射性碳测年,我们估计灌溉> 75 FW下,SIC的SIC 隔离了约7.15 kg m –2 (4 m) –1 如果碳酸盐溶解是C固存,则在TE下–2 (4 m) –1 。将由于SOC分解导致的 C损失增加到SIC隔离中, 字段可能是8.8和17.4至15.9 kg m –2 <分别在FW和TE下C的sup> (4 m) –1 。这项研究 提供了一些有关干旱地区水质如何影响C预算的最初证据。

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