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温度对海洋富有机体系生物地球化学的影响:对全球变暖情景的启示。

Effect of temperature on biogeochemistry of marine organic-enriched systems: implications in a global warming scenario.

机构信息

Departamento de Ecología e Hidrología, Facultad de Biología, Universidad de Murcia, Campus de Espinardo, 30100 Murcia, Spain.

出版信息

Ecol Appl. 2011 Oct;21(7):2664-77. doi: 10.1890/10-2219.1.

Abstract

Coastal biogeochemical cycles are expected to be affected by global warming. By means of a mesocosm experiment, the effect of increased water temperature on the biogeochemical cycles of coastal sediments affected by organic-matter enrichment was tested, focusing on the carbon, sulfur, and iron cycles. Nereis diversicolor was used as a model species to simulate macrofaunal bioirrigation activity in natural sediments. Although bioirrigation rates of N. diversicolor were not temperature dependent, temperature did have a major effect on the sediment metabolism. Under organic-enrichment conditions, the increase in sediment metabolism was greater than expected and occurred through the enhancement of anaerobic metabolic pathway rates, mainly sulfate reduction. There was a twofold increase in sediment metabolism and the accumulation of reduced sulfur. The increase in the benthic metabolism was maintained by the supply of electron acceptors through bioirrigation and as a result of the availability of iron in the sediment. As long as the sediment buffering capacity toward sulfides is not surpassed, an increase in temperature might promote the recovery of organic-enriched sediments by decreasing the time for mineralization of excess organic matter.

摘要

预计全球变暖将影响沿海生物地球化学循环。本实验采用中观模型实验,测试了水温升高对受有机物富化影响的沿海沉积物生物地球化学循环的影响,重点关注碳、硫和铁循环。多毛环节动物沙蚕(Nereis diversicolor)被用作模型生物来模拟自然沉积物中大型底栖生物的生物扰动活动。尽管沙蚕的生物扰动速率与温度无关,但温度对沉积物代谢有重大影响。在有机物富化条件下,沉积物代谢的增加大于预期,这是通过增强主要是硫酸盐还原的无氧代谢途径速率来实现的。沉积物代谢和还原态硫的积累增加了一倍。底栖代谢的增加是通过生物扰动提供电子受体以及沉积物中铁的可用性来维持的。只要沉积物对硫化物的缓冲能力不被超越,增加温度可能会通过减少多余有机物矿化的时间来促进富含有机物沉积物的恢复。

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