Inoculation of Cd-contaminated paddy soil with biochar-supported microbial cell composite: A novel approach to reducing cadmium accumulation in rice grains
Yuling Liu(Hunan Agricultural University), Huihui Du(Shenzhen Second People's Hospital), Haiyan Luo(Farmland Irrigation Research Institute), Xiaoli Liu(Ministry of Agriculture and Rural Affairs), Shoutao Liu(Farmland Irrigation Research Institute), Ou Peng(Farmland Irrigation Research Institute), Danyang Li(Xi'an University of Science and Technology), Ming Lei(Hunan Agricultural University), Xiangdong Wei(Zhengzhou University), Boqing Tie(Hunan Agricultural University)
Cited by 61
Related Papers
Silicate-modified oiltea camellia shell-derived biochar: A novel and cost-effective sorbent for cadmium removal
|Journal of Cleaner Production|2020|212
Arsenite and arsenate binding to ferrihydrite organo-mineral coprecipitate: Implications for arsenic mobility and fate in natural environments
|Chemosphere|2019|166
Binding of Cd by ferrihydrite organo-mineral composites: Implications for Cd mobility and fate in natural and contaminated environments
|Chemosphere|2018|164
Mitigating heavy metal accumulation into rice (Oryza sativa L.) using biochar amendment — a field experiment in Hunan, China
|Environmental Science and Pollution Research|2015|158
Conductive herringbone structure carbon nanotube/thermoplastic polyurethane porous foam tuned by epoxy for high performance flexible piezoresistive sensor
|Composites Science and Technology|2017|112