首页> 外文期刊>Estuaries and coasts >Sulfate Reduction and Sulfur Cycles at Two Seagrass Beds Inhabited by Cold Affinity Zostera marina and Warm Affinity Halophila nipponica in Temperate Coastal Waters
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Sulfate Reduction and Sulfur Cycles at Two Seagrass Beds Inhabited by Cold Affinity Zostera marina and Warm Affinity Halophila nipponica in Temperate Coastal Waters

机译:硫酸盐减少和硫循环在两种海底床上含有冷亲和Zostera小游艇船坞和温暖的亲和嗜睡菌在温带温带沿海水域

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摘要

To evaluate the impact of invading seagrass on biogeochemical processes associated with sulfur cycles, we investigated the geochemical properties and sulfate reduction rates (SRRs) in sediments inhabited by invasive warm affinity Halophila nipponica and indigenous cold affinity Zostera marina. A more positive relationship between SRR and below-ground biomass (BGB) was observed at the H. nipponica bed (SRR = 0.6809 x BGB - 4.3162, r(2) = 0.9878, p = 0.0006) than at the Z. marina bed (SRR = 0.3470 x BGB - 4.0341, r(2) = 0.7082, p = 0.0357). These results suggested that SR was more stimulated by the dissolved organic carbon (DOC) exuded from the roots of H. nipponica than by the DOC released from the roots of Z. marina. Despite the enhanced SR in spring-summer, the relatively lower proportion (average, 20%) of acid-volatile sulfur (AVS) in total reduced sulfur and the strong correlation between total oxalate-extractable Fe (Fe-(oxal)) and chromium-reducible sulfur (CRS = 0.2321 x total Fe-(oxal) + 1.8180, r(2) = 0.3344, p = 0.0076) in the sediments suggested the rapid re-oxidation of sulfide and precipitation of sulfide with Fe. The turnover rate of the AVS at the H. nipponica bed (0.13 day(-1)) was 2.5 times lower than that at the Z. marina bed (0.33 day(-1)). Together with lower AVS turnover, the stronger correlation of SRR to BGB in the H. nipponica bed suggests that the extension of H. nipponica resulting from the warming of seawater might provoke more sulfide accumulation in coastal sediments.
机译:为了评估入侵海草对与硫循环相关的生物地球化学过程的影响,我们研究了侵入式温暖亲和力嗜睡症患者的地球化学性质和硫酸盐还原率(SRRS),毒液温度嗜睡嗜毒疗法和土着冷亲和Zostera Marina。在H.Nipponica床上观察到SRR和地下生物量(BGB)之间的更正常关系(SRR = 0.6809×BGB - 4.3162,R(2)= 0.9878,P = 0.0006),而不是在Z.Marina床上( SRR = 0.3470 x BGB - 4.0341,R(2)= 0.7082,P = 0.0357)。这些结果表明,SR由来自H. nipponica的根部的溶解有机碳(DOC)更刺激,而不是由Z.Marina的根源释放的DOC。尽管春季夏季增强了SR,但总硫(AVS)的相对较低的比例(平均,20%)总硫(AVS)和总草酸盐可提取的Fe(Fe-(Oxal))和铬之间的强相关性 - 沉积物中的REFUIBLE硫(CRS = 0.2321 x总Fe-(OXAL)+ 1.8180,R(2)= 0.3344,p = 0.0076)表明硫化物的快速重新氧化和硫化物的沉淀与Fe。 H. nipponica床(0.13天(-1)床上的AVS的周转率比Z.Marina床(0.33天(-1))低2.5倍。与较低的AVS成交量一起,H.Nipponica床中SRR对BGB的相关性强烈表明,由于海水的变暖而导致的H. nipponica的延伸可能会引起沿海沉积物中的更多硫化物积累。

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