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JOURNAL OF CONTAMINANT HYDROLOGY

JOURNAL OF CONTAMINANT HYDROLOGY

污染物水文學(xué)雜志

期刊周期:Monthly
研究方向:環(huán)境科學(xué)與生態(tài)學(xué)
影響因子:2.65
通訊地址:ELSEVIER SCIENCE BV, PO BOX 211, AMSTERDAM, NETHERLANDS, 1000 AE
官網(wǎng):http://www.elsevier.com/wps/find/journaldescription.cws_home/503341/description#description
投稿地址:http://ees.elsevier.com/conhyd/
審稿速度:約3.0個月

  中文簡介

《污染物水文學(xué)雜志》是一份國際期刊,發(fā)表有關(guān)地下水資源污染的科學(xué)論文。重點是研究物理、化學(xué)和生物過程對不飽和(vadose)和飽和(地下水)帶以及地下水-地表水界面中有機和無機污染物的行為和命運的影響。污染物從含水層和向含水層運輸?shù)纳鷳B(tài)影響是令人感興趣的。只涉及地表水污染的文章,不涉及地下水的,不在范圍之內(nèi)。在確定感興趣的污染物時,允許有廣泛的范圍,包括遺留污染物和新出現(xiàn)的污染物、營養(yǎng)物質(zhì)、納米顆粒、致病微生物(如細(xì)菌、病毒、原生動物)、微塑料以及與能源生產(chǎn)有關(guān)的各種成分(如甲烷、二氧化碳、硫化氫)。該雜志的范圍包括廣泛的主題包括:實驗研究污染物吸附,擴(kuò)散,轉(zhuǎn)化,揮發(fā)和運輸在表面和地下;只有在土壤和含水層性質(zhì)影響污染物行為時才對它們進(jìn)行表征;污染物行為數(shù)學(xué)模型的開發(fā)與測試恢復(fù)受污染場址的創(chuàng)新技術(shù);開發(fā)監(jiān)測土壤和地下水污染程度的新工具或新技術(shù);低滲區(qū)污染物的轉(zhuǎn)化污染物通過低滲帶對地表水和地下水生態(tài)系統(tǒng)的影響;地下固碳和/或周轉(zhuǎn)量;以及與能源生產(chǎn)相關(guān)的流體向地下水的遷移。

  英文簡介

The Journal of Contaminant Hydrology is an international journal publishing scientific articles pertaining to the contamination of subsurface water resources. Emphasis is placed on investigations of the physical, chemical, and biological processes influencing the behavior and fate of organic and inorganic contaminants in the unsaturated (vadose) and saturated (groundwater) zones, as well as at groundwater-surface water interfaces. The ecological impacts of contaminants transported both from and to aquifers are of interest. Articles on contamination of surface water only, without a link to groundwater, are out of the scope. Broad latitude is allowed in identifying contaminants of interest, and include legacy and emerging pollutants, nutrients, nanoparticles, pathogenic microorganisms (e.g., bacteria, viruses, protozoa), microplastics, and various constituents associated with energy production (e.g., methane, carbon dioxide, hydrogen sulfide).The journal's scope embraces a wide range of topics including: experimental investigations of contaminant sorption, diffusion, transformation, volatilization and transport in the surface and subsurface; characterization of soil and aquifer properties only as they influence contaminant behavior; development and testing of mathematical models of contaminant behaviour; innovative techniques for restoration of contaminated sites; development of new tools or techniques for monitoring the extent of soil and groundwater contamination; transformation of contaminants in the hyporheic zone; effects of contaminants traversing the hyporheic zone on surface water and groundwater ecosystems; subsurface carbon sequestration and/or turnover; and migration of fluids associated with energy production into groundwater.

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