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Shaheen S.M
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全文
2022
Elucidating the redox-driven dynamic interactions between arsenic and iron-impregnated biochar in a paddy soil using geochemical and spectroscopic techniques
Yang X; Shaheen S.M; Wang J; Hou D; Ok Y.S; SHAN-LI WANG
; Wang H; Rinklebe J.
Journal of Hazardous Materials
58
43
2022
Hazardous enrichment of toxic elements in soils and olives in the urban zone of Lavrio, Greece, a legacy, millennia-old silver/lead mining area and related health risk assessment
Antoniadis V; Thalassinos G; Levizou E; Wang J; SHAN-LI WANG
; Shaheen S.M; Rinklebe J.
Journal of Hazardous Materials
18
14
2021
Mobilization, Methylation, and Demethylation of Mercury in a Paddy Soil under Systematic Redox Changes
Wang J; Shaheen S.M; Jing M; Anderson C.W.N; Swertz A.-C; SHAN-LI WANG
; Feng X; Rinklebe J.
Environmental Science and Technology
47
2021
Pedogeochemical distribution of gallium, indium and thallium, their potential availability and associated risk in highly-weathered soil profiles of Taiwan
Liu Y.-H; Shaheen S.M; Rinklebe J; ZENG-YEI HSEU
Environmental Research
13
11
2022
Pig carcass-derived biochar caused contradictory effects on arsenic mobilization in a contaminated paddy soil under fluctuating controlled redox conditions
Yang X; Hinzmann M; Pan H; Wang J; Bolan N; Tsang D.C.W; Ok Y.S; SHAN-LI WANG
; Shaheen S.M; Wang H; Rinklebe J.
Journal of Hazardous Materials
38
26
2021
Redox-induced mobilization of phosphorus in groundwater affected arable soil profiles
Shaheen S.M; Wang J; Baumann K; SHAN-LI WANG
; Leinweber P; Rinklebe J.
Chemosphere
16
15
2022
Reducing conditions increased the mobilisation and hazardous effects of arsenic in a highly contaminated gold mine spoil
Mensah A.K; Marschner B; Wang J; Bundschuh J; SHAN-LI WANG
; Yang P.-T; Shaheen S.M; Rinklebe J.
Journal of Hazardous Materials
9
7
2019
Release dynamics of As, Co, and Mo in a biochar treated soil under pre-definite redox conditions
El-Naggar A; Shaheen S.M; Rinklebe J.; Ok Y.S.; SHAN-LI WANG
; ZENG-YEI HSEU
Science of the Total Environment
2021
Soil acidification enhances the mobilization of phosphorus under anoxic conditions in an agricultural soil: Investigating the potential for loss of phosphorus to water and the associated environmental risk
Zhang S; Yang X; Hsu L.-C; Liu Y.-T; SHAN-LI WANG
; White J.R; Shaheen S.M; Chen Q; Rinklebe J.
Science of the Total Environment
32
2022
Stepwise redox changes alter the speciation and mobilization of phosphorus in hydromorphic soils
Shaheen S.M; Wang J; Baumann K; Ahmed A.A; Hsu L.-C; Liu Y.-T; SHAN-LI WANG
; K?hn O; Leinweber P; Rinklebe J.
Chemosphere
14