典型文献
Migration of organic carbon and trace elements in the system glacier-soil in the Central Caucasus alpine environment
文献摘要:
Rapid deglaciation is one of the most important challenges in the Earth science today.One reason of this is specific supraglacial sediments-cryoconites,which represent carbon-containing dust with organomineral matter and living organisms.Investigation of physical and chemical characteristics of cryoconites in the Central Caucasus is necessary in order to understand their influence on alpine territories biogeochemical cycles,pollution and development in conditions of intensive glacial melting and active anthropogenic influence.For this research cryoconites as well as moraines,soil-like bodies and soils have been sampled from the alpine Bezengi Glacier and adjacent Khulamo-Bezengi Gorge.Key physicochemical features(pH values,total organic carbon content,microbial respiration,particle-size distribution)as well as content of trace elements have been defined in sampled materials and several pollution indices(Geoaccumulation index,Contamination factor and Degree of pollution)have been calculated.Results obtained show low values of total organic carbon in cryoconites(max.0.23%)but high values(max.7.54%)in top horizon of soils located in floodplain,indicating its active fluvioglacial transfer which may further accelerate the development of soils.Microbiological activity in the studied soils was mostly influenced by additional input of labile organic carbon from cryoconites with water flows.Particle-size distribution was similar among the studied cryoconites,indicating dominance of sand fraction(up to 85.28%)while studied soils showed higher variability due to influence of weathering.Among the trace elements,cryoconites were mostly polluted by Zn(max.85.70 mg·kg-1)which corresponds to high pollution according to pollution indices;Pb(max.24.90 mg·kg-1)and Cu(max.17.40 mg·kg-1),up to moderate pollution level.Redistribution of polluted cryoconite material as well as local anthropogenic activities increased pollution of periglacial soils by Zn(max.89.20 mg·kg-1),Pb(max.15.00 mg·kg-1)and Cu(max.12.80 mg·kg-1),which was also proven by the pollution indices with up to high level of pollution.
文献关键词:
中图分类号:
作者姓名:
Ivan KUSHNOV;Evgeny ABAKUMOV;Rustam TEMBOTOV;Timur NIZAMUTDINOV
作者机构:
Saint Petersburg State University,7/9 University Embankment,St Petersburg 199034,Russia;Tembotov Institute of Ecology of Mountain Territories of Russian Academy of Sciences,7a I.Armand Street,Nalchik,360051,Russia
文献出处:
引用格式:
[1]Ivan KUSHNOV;Evgeny ABAKUMOV;Rustam TEMBOTOV;Timur NIZAMUTDINOV-.Migration of organic carbon and trace elements in the system glacier-soil in the Central Caucasus alpine environment)[J].山地科学学报(英文版),2022(12):3458-3474
A类:
supraglacial,cryoconites,organomineral,Bezengi,Khulamo,Geoaccumulation,fluvioglacial,cryoconite,periglacial
B类:
Migration,organic,carbon,trace,elements,system,glacier,Central,Caucasus,alpine,environment,Rapid,deglaciation,one,important,challenges,Earth,science,today,One,reason,this,specific,sediments,which,represent,containing,dust,matter,living,organisms,Investigation,physical,characteristics,necessary,order,understand,their,territories,biogeochemical,cycles,pollution,development,conditions,intensive,melting,active,anthropogenic,For,research,well,moraines,like,bodies,soils,have,been,sampled,from,Glacier,adjacent,Gorge,Key,physicochemical,features,values,total,content,microbial,respiration,particle,size,defined,materials,several,indices,Contamination,Degree,calculated,Results,obtained,max,top,horizon,located,floodplain,indicating,its,transfer,may,further,accelerate,Microbiological,activity,studied,was,mostly,influenced,by,additional,input,labile,water,flows,Particle,similar,among,dominance,sand,fraction,while,showed,higher,variability,due,weathering,Among,were,polluted,corresponds,according,Pb,moderate,level,Redistribution,local,activities,increased,also,proven
AB值:
0.463721
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