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C:N:P stoichiometry of particulate and dissolved organic matter in river waters and changes during decomposition

机译:河流水中颗粒物和溶解有机物的C:N:P化学计量以及分解过程中的变化

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Stoichiometry plays an important role in understanding nutrient composition and cycling processes in aquatic ecosystems. Previous studies have considered C:N:P ratios constant for both DOM (dissolved organic matter) and POM (particulate organic matter). In this study, water samples were collected in the six major rivers in Korea and were incubated for 20?days. C:N:P ratios were determined during the time course of the incubations. This allowed us to examine the changes in N and P contents of organic matter during decomposition. POM and DOM showed significant differences in N and P content and the elemental ratios changed during the course of decomposition; DOM showed higher C:N and C:P ratios than POM, and the C:N and C:P ratios increased during decomposition, indicating the preferential mineralization of P over N and N over C. The N and P contents of organic matter in aquatic ecosystem are far from constant and vary significantly during decomposition. More detailed information on the changes in C:N:P ratios will provide improved understanding of decomposition processes and improved modeling of aquatic ecosystems.
机译:化学计量学在理解水生生态系统中的营养成分和循环过程中起着重要作用。先前的研究已经考虑到DOM(溶解有机物)和POM(颗粒有机物)的C:N:P比率是恒定的。在这项研究中,从韩国的六大河流中收集了水样,并孵育了20天。在孵育的时间过程中确定C:N:P比率。这使我们能够研究分解过程中有机质中N和P含量的变化。 POM和DOM在分解过程中氮和磷含量存在显着差异,元素比也发生了变化。 DOM的C:N和C:P比值高于POM,并且在分解过程中C:N和C:P比值增加,表明P优先于N和N优先于C矿化。水生生态系统远非恒定,在分解过程中变化很大。有关C:N:P比率变化的更详细信息将提供对分解过程的更好理解和对水生生态系统的更好建模。

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