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A time series of benthic flux measurements from Monterey Bay, CA

机译:加利福尼亚蒙特利湾底栖通量测量的时间序列

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摘要

In situ incubation chamber measurements of benthic nutrient recycling rates were made on the Monterey Bay shelf at 100 m during various years and seasons. Variability in nutrient (Si, PO42+, NH3, NO3-) and trace metal (Mn, Fe (11), Cu) fluxes correlate with variability in the amount of organic carbon oxidized on the sea floor. Patterns of primary productivity show a mid-year maxima, consistent with the timing of increased rates of benthic C-org and opal recycling. High rates Of C-org rain to the shelf promote nitrate consumption at a rate that equals or exceeds ammonia efflux. Low rates of C-org rain promote greater efflux of DIN; thus these margin sediments provide a negative feedback to local productivity cycles. The efflux of iron (11) from shelf sediments is sufficient to support >100% of new production, yet Fe flux is positively correlated with C-org recycling which lags the maximum in new production. On account of this time lag,. diagenetically recycled Fe is not likely a micro-nutrient trigger of new production, but could serve as a positive feedback. Bio-irrigation rates are seasonally variable by 30% but maximal during the maximum productivity months. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 76]
机译:在不同的年份和季节,在蒙特利湾架子上100 m处对底栖营养物回收率进行原位孵化室测量。营养物(Si,PO42 +,NH3,NO3-)和痕量金属(Mn,Fe(11),Cu)通量的变化与海底氧化的有机碳量的变化相关。初级生产力的模式显示出年中最大值,与底栖C-org和蛋白石回收率增加的时间一致。架子上大量的C-org雨水以等于或超过氨外排的速率促进硝酸盐的消耗。较低的C-org雨量会促进DIN的外排;因此,这些边缘沉积物对当地生产力周期提供了负面反馈。架子沉积物中铁(11)的流出量足以支持超过100%的新产量,但铁的通量与C-org再循环正相关,后者落后于新产量的最大值。由于这个时间差,双向磁化铁不太可能是新产品中微量营养元素的触发因素,但可以起到积极的反馈作用。生物灌溉速率在季节性上有30%的变化,但在最高生产力的月份中最大。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:76]

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