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High-resolution distributions of O 2 ?/?Ar on the northern slope of the South China Sea and estimates of net community production

机译:O 2的高分辨率分布?/?南海北坡上的北坡和净社区生产估计

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The dissolved oxygen-to-argon ratio (O2/Ar) in the oceanic mixed layer has been widely used to estimate net community production (NCP), which is the difference between gross primary production and community respiration; it is a measure of the strength of the biological pump. In order to obtain the high-resolution distribution of NCP and improve our understanding of its regulating factors in the slope region of the northern South China Sea (SCS), we conducted continuous measurements of dissolved O2, Ar, and CO2 with membrane inlet mass spectrometry (MIMS) during two cruises in October 2014 and June 2015. An overall autotrophic condition was observed in the study region in both cruises with an average 1(O2/Ar) of 1.1 % ± 0.9 % in October 2014 and 2.7 % ± 2.8 % in June 2015. NCP was on average 11.5 ± 8.7 mmol C m?2 d ?1 in October 2014 and 11.6 ± 12.7 mmol C m?2 d ?1 in June 2015. Correlations between dissolved inorganic nitrogen (DIN), 1(O2/Ar), and NCP were observed in both cruises, indicating that NCP is subject to the nitrogen limitation in the study region. In June 2015, we observed a rapid response of the ecosystem to the episodic nutrient supply induced by eddies. Eddy-entrained shelf water intrusion, which supplied large amounts of terrigenous nitrogen to the study region, promoted NCP in the study region by potentially more than threefold. In addition, upwelling brought large uncertainties to the estimation of NCP in the core region of the cold eddy (cyclone) in June 2015. The deep euphotic depth in the SCS and the absence of correlation between NCP and the average photosynthetically available radiation (PAR) in the mixed layer in the autumn indicate that light availability may not be a significant limitation on NCP in the SCS. This study helps us to understand the carbon cycle in the highly dynamic shelf system.
机译:海洋混合层中溶解的氧 - 氩气比(O2 / Ar)已广泛用于估计净社区生产(NCP),这是总初级生产和社区呼吸之间的差异;它是生物泵强度的衡量标准。为了获得NCP的高分辨率分配,提高南海(SCS)坡地地区的坡地地区的监管因素的认识,我们对膜入口质谱法进行了溶解O2,Ar和CO2的连续测量(MIMS)在2014年10月和2015年6月的两次巡航期间。在2014年10月的平均1(O2 / AR)的平均1(O2 / AR)的巡航中的研究区中观察到了整体肌肤状况,2.7%±2.8% 2015年6月。NCP平均为11.5±8.7mmol C m?2 d?1在2014年10月和11.6±12.7mmol C m-2 d?2 d?2 d?1。溶解无机氮(DIN)之间的相关性,1(O2 / AR),并在两个巡航中观察到NCP,表明NCP受研究区域中的氮限制。 2015年6月,我们观察了生态系统的快速反应,以漩涡诱导的兴高采烈营养供应。向研究区提供大量的氮的涡旋架水侵入,通过潜在的多于三倍促进研究区域中的NCP。此外,Uppelling于2015年6月估算了CORD涡流(Cyclone)的核心区估计NCP的大不确定性.SCS中的深度Euphotic深度以及NCP之间没有相关性和平均光合作用辐射(PAR)在秋季的混合层中,表明光可用性可能不是SCS中NCP的显着限制。本研究有助于我们了解高度动态架系统中的碳循环。

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