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Short-Term Effects of Tillage Practices on Soil Organic Carbon Turnover Assessed by δ13C Abundance in Particle-Size Fractions of Black Soils from Northeast China

机译:耕作方式对δ评估土壤有机碳周转的短期影响东北黑土颗粒级分中的13C丰度

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摘要

The combination of isotope trace technique and SOC fractionation allows a better understanding of SOC dynamics. A five-year tillage experiment consisting of no-tillage (NT) and mouldboard plough (MP) was used to study the changes in particle-size SOC fractions and corresponding δ 13C natural abundance to assess SOC turnover in the 0–20 cm layer of black soils under tillage practices. Compared to the initial level, total SOC tended to be stratified but showed a slight increase in the entire plough layer under short-term NT. MP had no significant impacts on SOC at any depth. Because of significant increases in coarse particulate organic carbon (POC) and decreases in fine POC, total POC did not remarkably decrease under NT and MP. A distinct increase in silt plus clay OC occurred in NT plots, but not in MP plots. However, the δ 13C abundances of both coarse and fine POC increased, while those of silt plus clay OC remained almost the same under NT. The C derived from C3 plants was mainly associated with fine particles and much less with coarse particles. These results suggested that short-term NT and MP preferentially enhanced the turnover of POC, which was considerably faster than that of silt plus clay OC.
机译:同位素示踪技术与SOC分级分离相结合,可以更好地了解SOC动力学。通过免耕(NT)和模板犁(MP)组成的五年耕作试验,研究了粒径SOC分数的变化以及相应的δ 13 C自然丰度,以评估SOC的周转率在耕作方式下,在0–20 cm的黑色土壤层中。与初始水平相比,总SOC趋于分层,但在短期NT下整个犁耕层略有增加。 MP对SOC没有任何重大影响。由于粗颗粒有机碳(POC)的显着增加和细颗粒POC的减少,在NT和MP下总POC不会显着降低。在NT田中,淤泥加粘土OC明显增加,而在MP田中则没有。然而,粗粒和细粒POC的δ 13 C丰度都增加了,而粉砂和粘土OC的丰度在NT下几乎保持不变。源自C3植物的C主要与细颗粒有关,而与粗颗粒无关。这些结果表明,短期的NT和MP优先提高了POC的周转率,这比粉砂加粘土OC的周转率要快得多。

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