印尼三宝垄湾CO2分压和CO2通量

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摘要

研究了爪哇北部海岸三宝垄湾系统的CO2特征,以了解其在二氧化碳通量中的作用。海面上海水和大气之间的二氧化碳通量对于减少大气中的二氧化碳至关重要。本研究的目的是评估海水CO2分压(pCO2sea)和CO2通量的变化,并分析对三宝郎湾水域CO2通量影响较大的水质变量。本研究的变量为温度、pH、盐度和溶解氧。水样分析采用分光光度法测定叶绿素-a和磷酸盐,滴定法测定总碱度(TA)和溶解无机碳(DIC)。二氧化碳计被用来测量二氧化碳浓度。白天CO2通量最低(1.86 mmol CO2 m-2 day-1),夜间pCO2sea达到461.04 μatm, CO2通量为83.79 mmol CO2 m-2 day-1。随着温度升高,正午时段pCO2sea为461.04 μatm, CO2通量为83.79 mmol CO2 m-2 day-1。叶绿素-a的高浓度在3.55 ~ 4.11 mg.L-1之间。叶绿素-a浓度与CO2通量呈负相关,而TA和DIC浓度与CO2通量无关。基于PCA分析发现,三宝垄湾CO2通量的变异受pCO2sea、海温和kwa(受风速影响)的变异影响。
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The Partial Pressure of CO2 and Fluxes of CO2 in Semarang Bay, Indonesia
The CO2 characteristics of the Semarang Bay system on the Northern coast of Java were investigated to understand the roles in carbon dioxide flux. The flux of carbon dioxide at the sea surface between seawater and atmosphere is essential for mitigating atmospheric CO2.  The aims of this study were to assess the variation of CO2 partial pressure seawater (pCO2sea) and CO2 flux and to analyse the water quality variable which has the larger influence on CO2 flux in the waters of Semarang Bay. The variables in this study were temperature, pH, salinity, and DO. Different methods were adopted in the analysis of water samples: spectrophotometric to measure chlorophyll-a and phosphate and titration method to measure Total Alkalinity (TA) and Dissolved Inorganic Carbon (DIC). A CO2 meter was used to measure the CO2atm. The lowest CO2 flux value was (1.86 mmol CO2 m-2 day-1) during the morning period while the pCO2sea reached 461.04 μatm and CO2 flux 83.79 mmol CO2 m-2 day-1 at night. At noon time, with increased temperature, pCO2sea was 461.04 μatm, and CO2 flux was 83.79 mmol CO2 m-2 day-1. The high concentration of chlorophyll-a ranged between 3.55–4.11 mg.L-1.  This chlorophyll-a concentration has a negative correlation with CO2 flux, and it was found that TA and DIC concentrations have no relationship with CO2 flux. Based on PCA analysis, it was found that the variability of CO2 flux in Semarang Bay is influenced by the variability of pCO2sea, sea surface temperature and kwa (affected by wind speed).
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