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首页> 外文期刊>Archives of Agronomy and Soil Science >Organic carbon mineralization and sequestration as affected by Zn availability in a calcareous loamy clay soil amended with wheat straw: a short-term case study
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Organic carbon mineralization and sequestration as affected by Zn availability in a calcareous loamy clay soil amended with wheat straw: a short-term case study

机译:小麦秸秆改良钙质壤土中锌有效性影响的有机碳矿化和固存:短期案例研究

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Increasing soil organic carbon (SOC) is a widely accepted strategy to offset greenhouse gases and improve soil quality. Straw return can modify SOC dynamics and increase its stock, which are also influenced by soil clay content and metals (i.e. Zn) availability. We conducted a short-term (42 d) incubation study to evaluate SOC dynamics in a calcareous loamy clay soil where available Zn (DTPA extractable) was modified by adding high-Zn straw (HZ-St), low-Zn straw alone (LZ-St) or combined with Zn fertilizer (LZ-St+ZF). Results showed that the DTPA-Zn concentration in soil with LZ-St was similar to the control receiving no straw return or Zn, but it increased by 24.3 in the soil receiving HZ-St and 1.46-fold in the soil receiving LZ-St+ZF. The increased Zn availability enhanced microbial biomass C and N, but did not increase SOC mineralization due to the higher microbial entropy and lower respiration entropy. Greater Zn availability enhanced SOC sequestration probably by promoting the organo-Zn-mineral interactions and thus chemical stabilization. Therefore, adding HZ-St or LZ-St+ZF increases both Zn availability and SOC sequestration in calcareous loamy clay soil. However, long-term and field-based research is necessary to confirm the practical effects of this approach.
机译:增加土壤有机碳(SOC)是一种被广泛接受的抵消温室气体和改善土壤质量的策略。秸秆还田可以改变土壤有机碳动态并增加其储量,这也受到土壤粘土含量和金属(即锌)可用性的影响。我们进行了一项短期(42 d)培养研究,以评估石灰质壤土土壤中的SOC动态,其中有效Zn(DTPA可提取)通过添加高锌秸秆(HZ-St)、单独低锌秸秆(LZ-St)或与锌肥(LZ-St+ZF)结合来改性。结果表明,LZ-St土壤中DTPA-Zn浓度与未还田秸秆或Zn的对照相似,但HZ-St对照土壤DTPA-Zn浓度增加24.3%,LZ-St+ZF土壤DTPA-Zn浓度增加1.46倍。Zn有效性的增加增强了微生物生物量C和N,但由于微生物熵较高,呼吸熵较低,SOC矿化度不增加。锌可用性的提高可能通过促进有机-锌-矿物相互作用从而增强了SOC封存,从而促进了化学稳定性。因此,添加HZ-St或LZ-St+ZF可提高钙质壤土中锌的可用性和SOC固存量。然而,需要长期和实地研究来证实这种方法的实际效果。

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