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Geochemical distribution and fate of arsenic in water and sediments of rivers from the Hokusetsu area, Japan

机译:日本北月地区河流水和沉积物中砷的地球化学分布和归宿

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Study region Hokusetsu Region in Osaka, Japan. Study focus The As contamination was investigated through the geochemical mapping and analysis of river waters and bed sediments over an area of 440 km 2 . Sulfur from sulfides in rocks and dissolved sulfates in water were compared via isotopic analysis to assess their origin and the subsequently released As. The fate of As (transport, binding on settling particles) was evaluated through the total and dissolved fractions of As and trace metals Fe, Mn and Al in river waters. New hydrological insights for the region The geochemical mapping showed that As in river water exceeded the maximum limit concentration of 10 ppb in several places. The highest As levels (waters and sediments) correlated well with the surface geologies, concentrating in a halo around granitic intrusion and nearby faults. The isotopic analysis of sulfur revealed the occurrence of two kinds of sulfide mineralizations responsible for As contamination: one from Late Paleozoic submarine volcanism in sedimentary rocks, and one from Late Cretaceous igneous activities in contact-metamorphosed rocks disseminated with sulfides. The transport of As along river courses occurred mainly as a dissolved species rather than absorbed on Fe/Mn/Al particles, signifying the least role of iron oxy-hydroxides in As adsorption.
机译:研究区域日本大阪的Hokusetsu地区。研究重点通过对440 km 2的河流水和床底沉积物进行地球化学测绘和分析,对砷污染进行了调查。通过同位素分析比较了岩石中硫化物中的硫和水中溶解的硫酸盐,以评估其起源和随后释放的砷。通过在河水中砷和痕量金属Fe,Mn和Al的总含量和溶解分数评估了As的命运(运输,结合在沉降颗粒上)。该地区的新水文见识地球化学图谱显示,河水中的砷在几个地方超过了最大极限浓度10 ppb。最高的砷含量(水和沉积物)与地表地质密切相关,集中在花岗岩侵入体和附近断层周围的光晕中。硫的同位素分析表明,造成砷污染的有两种硫化物矿化作用:一种是沉积岩中的晚古生代海底火山活动,一种是由硫化物传播的接触变质岩中的晚白垩纪火成岩活动。砷在河道中的运输主要是作为一种溶解物,而不是被吸收在Fe / Mn / Al颗粒上,这表明氢氧化铁在As吸附中的作用最小。

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