1 |
Effects of resuspension on the mobility and chemical speciation of zinc in contaminated sediments Xie MW, Alsina MA, Yuen J, Packman AI, Gaillard JF Journal of Hazardous Materials, 364, 300, 2019 |
2 |
Removal of polychlorinated biphenyl congeners in mixture Delor 103 from wastewater by ozonation vs/and biological method Dudasova H, Derco J, Sumegova L, Dercova K, Laszlova K Journal of Hazardous Materials, 321, 54, 2017 |
3 |
Mixture design and treatment methods for recycling contaminated sediment Wang L, Kwok JSH, Tsang DCW, Poon CS Journal of Hazardous Materials, 283, 623, 2015 |
4 |
An investigation on reuse of Cr-contaminated sediment: Cr removal and interaction between Cr and organic matter Hong XQ, Li RZ, Liu WJ, Zhang XS, Ding HS, Jiang H Chemical Engineering Journal, 189, 222, 2012 |
5 |
Binding strength-associated toxicity reduction by birnessite and hydroxyapatite in Pb and Cd contaminated sediments Lee S, An J, Kim YJ, Nam K Journal of Hazardous Materials, 186(2-3), 2117, 2011 |
6 |
Enhancement of metal bioleaching from contaminated sediment using silver ion Chen SY, Lin JG Journal of Hazardous Materials, 161(2-3), 893, 2009 |
7 |
Heavy metal contaminant remediation study of western Xiamen Bay sediment, China: Laboratory bench scale testing results Zhang LP, Feng H, Li XX, Ye X, Jing YH, Ouyang T, Yu XT, Liang RY, Chen WQ Journal of Hazardous Materials, 172(1), 108, 2009 |
8 |
Physical appearance of oil in oil-contaminated sediment Delvigne GAL Spill Science & Technology Bulletin, 8(1), 55, 2002 |
9 |
Effect of substrate concentration on bioleaching of metal-contaminated sediment Chen SY, Lin JG Journal of Hazardous Materials, 82(1), 77, 2001 |
10 |
Analysis of electrokinetic sedimentation of dredged Welland River sediment Mohamedelhassan E, Shang JQ Journal of Hazardous Materials, 85(1-2), 91, 2001 |