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An Assessment of the Tea Bag Index Method as a Proxy for Organic Matter Decomposition in Intertidal Environments

机译:茶叶指数法评估界京环境中有机质分解代理

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Intertidal wetlands capture and store carbon (C) for long periods of time, helping to reduce the concentration of CO_2 in the atmosphere. Yet the processes, which govern the decomposition and subsequent long-term storage of organic matter (OM) and C in these habitats, remain poorly understood. The Tea Bag Index (TBI) uses a standardized OM (green and Rooibos tea) and has the potential to shed light on OM decomposition across habitats, including saltmarshes. Here, we apply the TBI method at two saltmarshes within the same estuary with the aim of (i) reducing the influence of climatic variables and (ii) determining the role of the environment, including the soil characteristics, in the decomposition of OM. We extended the standard (3 months) incubation period over a full year in order to investigate the longer-term decomposition processes at each site. The initial results partially support previous studies that the early stages of decomposition (leaching of the water-soluble fraction) is governed by climatic conditions, but may be further enhanced by tidal flushing in saltmarshes. By extending the incubation period, we observed the initiation of midstage OM decomposition (cellulose degradation) upon which the soil characteristics appear to be the dominant control. These results highlight the importance of long-term TBI incubations to understand early-stage OM decomposition. The relationship between tea mass (OM) loss and C loss in these intertidal environments is not straightforward, and we would caution the use of the TBI as a direct universal proxy for soil C degradation in such intertidal wetlands.
机译:跨境湿地捕获和储存碳(C)长时间,有助于降低大气中CO_2的浓度。然而,治理分解和随后在这些栖息地中的有机物质(OM)和C的长期储存的过程仍然很清楚。茶袋指数(TBI)使用标准化的OM(绿色和罗西贝斯茶),并且有可能在栖息地的患病症中脱落,包括Saltmarshes。在这里,我们在同一河口中的两个盐场应用TBI方法,目的是(i)降低气候变量的影响和(ii)确定环境的作用,包括土壤特性,在OM的分解中。我们将标准(3个月)延长了全年的潜伏期,以调查每个网站的长期分解过程。初始结果部分支持先前的研究表明,分解的早期阶段(水溶性分数的浸出)受气候条件治理,但在盐渣氏盐中的冲洗可能进一步增强。通过延长潜伏期,我们观察到中间舞剧OM分解(纤维素降解)的发起,其中土壤特征似乎是主导控制。这些结果突出了长期TBI孵化来了解早期OM分解的重要性。这些跨境环境中茶肿块(OM)损失和C损失的关系并不简单,我们将注意到TBI在这种潮湿地中使用TBI作为土壤C降解的直接通用代理。

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