Monitoring Sediment and Water Chemistry in Small Remote Aquatic Systems in East Sepik Province, Papua New Guinea

被引:0
作者
Pei Sun Loh
Chen-Tung Arthur Chen
Ting-Hsuan Huang
Hon-Kit Lui
Jiann-Yuh Lou
Hong-Wei Yuan
Long-Xiu Cheng
Xue-Gang Chen
Jianfang Chen
机构
[1] Zhejiang University,Department of Marine Sciences, Ocean College
[2] National Sun Yat-Sen University,Department of Oceanography
[3] Naval Academy,Department of Marine Science
[4] Second Institute of Oceanography,Key Laboratory of Marine Ecosystem Dynamics
[5] Ministry of Natural Resources,undefined
来源
Water, Air, & Soil Pollution | 2021年 / 232卷
关键词
Remote aquatic systems; Water chemistry; Particulate organic matter; Sediment; Papua New Guinea;
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学科分类号
摘要
Small rivers are complex ecosystems facing threats from human activities and climate change. Therefore, studying the sediment and water chemistry of several streams in the East Sepik Province of Papua New Guinea will enhance our understanding of the characteristics of remote aquatic systems. We found high total organic carbon (OC) and vanillic acid to vanillin ratio, (Ad/Al)v, and high dissolved CH4, indications of methanogenesis, at some locations. High sediments inorganic carbon and high total alkalinity (TA) and SiO2 in the water were characteristic of carbonate minerals at other locations. Some locations showed high dissolved oxygen (DO), and low dissolved CH4, dissolved inorganic carbon (DIC), and partial pressure of CO2 (pCO2), indicating autotrophic condition. Other sites showed remarkably low DO and high pCO2, dissolved CH4, nutrient, and DIC, indicating heterotrophy and possibly anoxic condition. These findings reveal that even small remote aquatic systems of the areas sampled exhibit high variability in their sediment and water chemistries, probably due to human activities and different watershed morphology. Furthermore, higher dissolved NO3−, NO2−, N2O, PO43−, SiO2, TA, DIC, pCO2, DOC, particulate OC, and nitrogen were found at lower salinity, and vice versa, indicating the importance of mixing from seawater in diluting materials and affecting the autotrophy/heterotrophy in these systems.
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