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Vegetated Ditch Habitats Provide Net Nitrogen Sink and Phosphorus Storage Capacity in Agricultural Drainage Networks Despite Senescent Plant Leaching

机译:尽管衰老植物浸出,但植被的沟渠栖息地提供农业排水网络中的氮气水槽和磷储存能力

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摘要

The utility of vegetated ditch environments as nutrient sinks in agricultural watersheds is dependent in part on biogeochemical transformations that control plant uptake and release during decomposition. We investigated nitrogen (N) and phosphorus (P) uptake and release across four P enrichment treatments in ditch mesocosms planted with rice cutgrass (Leersia oryzoides) during the summer growing and winter decomposition seasons. Measured N retention and modeled denitrification rates did not vary, but P retention significantly increased with P enrichment. At the end of the growing season, root biomass stored significantly more N and P than aboveground stem and leaf biomass. Decomposition rates were low (<10% organic matter loss) and not affected by P enrichment. Nitrogen and P export during winter did not vary across the P enrichment gradient. Export accounted for <10% of observed summer N uptake (1363 mg m−2), with denitrification potentially accounting for at least 40% of retained N. In contrast, net P retention was dependent on enrichment; in unenriched mesocosms, P uptake and release were balanced (only 25% net retention), whereas net retention increased from 77% to 88% with increasing P enrichment. Our results indicate that vegetated ditch environments have significant potential to serve as denitrification sinks, while also storing excess P in agricultural watersheds.
机译:植物沟区作为农业流域营养水池的效用部分依赖于控制植物摄取和分解过程中的生物地球化学转化。在夏季生长和冬季分解季节,我们调查了氮气(N)和磷(P)的吸收和释放在夏季Cutgrass(Leersia Oryzoides)的沟中养殖中的四种浓缩治疗。测量的n保留和建模的脱硝率没有变化,但P浓缩,P保留显着增加。在生长季节结束时,根生物量储存比地上茎和叶生物质储存明显更多N和P.分解率较低(有机质损失<10%),不受P富集的影响。冬季氮气和P出口不会因P浓缩梯度而异。出口占观察到的夏季注水(1363毫克M-2)的10%,脱氮可能占保留N的至少40%。相比之下,净P保留依赖于富集;在未成分的中科科学中,P吸收和释放平衡(仅净保留25%),而净保留从增长的PRICHMENT增加到88%。我们的结果表明,植被的沟渠环境具有巨大的潜力,作为脱硝下沉,同时还在农业流域中储存过量的P.

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