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Chemical characteristics of rainwater in the tropical rainforest region in northwestern Borneo

机译:西北北部热带雨林地区雨水的化学特征

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摘要

A comprehensive study of the chemical composition of rainwater was carried out from October 2016 to September 2017 in the equatorial tropical rainforest region of northwestern Borneo. Monthly cumulative rainwater samples were collected from different locations in the Limbang River Basin (LRB) and were later categorized into seasonal samples representing northeast monsoon (NEM), southwest monsoon (SWM), and inter-monsoon (IM) periods. Physical parameters (pH, EC, TDS, DO, and turbidity), major ions (HCO3-, Cl-, Ca2+, Mg2+, Na+, and K+) and trace metals (Co, Ni, Cd, Fe, Mn, Pb, Zn, and Cu) were analyzed from collected rainwater samples. Rainwater is slightly alkaline with mean pH higher than 5.8. Chloride and bicarbonate are the most abundant ions, and the concentration of major ions in seasonal rainwater has shown slight variation which follows a descending order of HCO3-> Cl-> Na+> Ca2+> Mg2+> K(+)in NEM and Cl-> HCO3-> Na+> Ca2+> K+> Mg(2+)in SWM and Cl-> HCO3-> Na+> Ca2+> Mg2+> K(+)in IM period. Trace metals such as Fe and Ni have shown dominance in seasonal rainwater samples, and all the metals have shown variation in concentration in different seasons. Variation in chemical characteristic of seasonal rainwater samples identified through piper diagram indicates dominance of Ca2+-Mg2+-HCO(3)(-)and mixed Ca2+-Mg2+-Cl(-)facies during NEM, SWM, and IM periods. Statistical analysis of the results through two-way ANOVA and Pearson's correlation also indicates significant variation in physico-chemical characteristics. This suggests a variation in contributing sources during the monsoon seasons. Factor analysis confirmed the source variation by explaining the total variance of 79.80%, 90.72%, and 90.52% with three factor components in NEM, SWM, and IM rainwater samples with different loading of parameters. Enrichment factor analysis revealed a combined contribution of marine and crustal sources except K(+)which was solely from crustal sources. Sample analysis of backward air mass trajectory supports all these findings by explaining seasonal variation in the source of pollutants reaching the study area. Overall, the results show that the chemical composition of seasonal rainwater samples in LRB was significantly influenced by natural as well as anthropogenic processes. These include (long-range and local) industrial activities, fossil fuel combustion, forest burning, transportation activities including road transport and shipping activities, and land-derived soil dust along with chemical constituents carried by seasonal wind.
机译:2016年10月至2017年9月在西北北京赤道热带雨林地区进行了全面研究。每月累积雨水样本从林邦河流域(LRB)的不同地点收集,后来分为代表东北季风(NEM),西南季风(SWM)和季风(IM)时期的季节性样品。物理参数(pH,EC,TDS,DO和浊度),主要离子(HCO3-,CL-,CA2 +,Mg2 +,Na +,和K +)和痕量金属(CO,Ni,Cd,Fe,Mn,Pb,Zn从收集的雨水样品分析和Cu)。雨水略微碱性,平均pH高于5.8。氯化物和碳酸氢盐是最丰富的离子,并且季节性雨水的主要离子浓度显示出稍微的变化,其在NEM和CL->中的HCO3-> Cl-> Na +> Ca2 +> Mg2 +> K(+)的降序HCO 3-> Na +> Ca2 +> k +> Mg(2+)在SWM和C1-> HCO3-> Na +> Ca2 +> Mg2 +> K(+)中。诸如Fe和Ni的痕量金属在季节性雨水样品中显示出优势,所有金属在不同季节中表现出浓度的变化。通过吹笛式图所识别的季节性雨水样品的化学特性的变化表明了NEM,SWM和IM期间CA2 + -MG2 + -HCO(3)( - )和混合CA2 + -MG2 + -CL( - )相的优势。通过双向ANOVA和Pearson相关结果的统计分析也表明了物理化学特性的显着变化。这表明在季风季节期间贡献来源的变化。因子分析通过在NEM,SWM和IM雨水样本中解释具有三种因子组分的79.80%,90.72%和90.52%的总方差来证实了源变化。富集因子分析揭示了海洋和地壳源的综合贡献,除了K(+)仅来自地壳源。后向空气质量轨迹的样本分析通过解释到达研究区域的污染物来源的季节变化来支持所有这些发现。总体而言,结果表明,LRB中的季节性雨水样品的化学成分受到自然和人为过程的显着影响。这些包括(远程和当地)工业活动,化石燃料燃烧,森林燃烧,运输活动,包括公路运输和运输活动,以及季节性风的化学成分以及陆地焚烧。

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