Plant growth-promoting rhizobacteria: A good companion for heavy metal phytoremediation

Y Zhu, Y Wang, X He, B Li, S Du - Chemosphere, 2023 - Elsevier
Phytoremediation is an environment-friendly approach regarded as a potential candidate for
remediating heavy metal (HM)-contaminated soils. However, the low efficacy of …

Biochar as a potential strategy for remediation of contaminated mining soils: Mechanisms, applications, and future perspectives

Y Gao, P Wu, P Jeyakumar, N Bolan, H Wang… - Journal of environmental …, 2022 - Elsevier
Soil heavy metal contamination caused by mining activities is a global issue. These heavy
metals can be enriched in plants and animals through the food chain, and eventually …

Trifolium repens L. regulated phytoremediation of heavy metal contaminated soil by promoting soil enzyme activities and beneficial rhizosphere associated …

H Lin, C Liu, B Li, Y Dong - Journal of Hazardous Materials, 2021 - Elsevier
Rhizosphere soil physiochemical properties, enzyme activities and rhizosphere associated
microbial communities are of the central importance for modulating phytoremediation in …

Insights into growth-promoting effect of nanomaterials: using transcriptomics and metabolomics to reveal the molecular mechanisms of MWCNTs in enhancing …

X Chen, J Wang, R Wang, D Zhang, S Chu… - Journal of hazardous …, 2022 - Elsevier
Carbon nanotubes present potential applications in soil remediation, particularly in
phytoremediation. Yet, how multi-walled carbon nanotubes (MWCNTs) induced …

Effects of resource availability on the growth, Cd accumulation, and photosynthetic efficiency of three hyperaccumulator plant species

MO Adomako, FH Yu - Journal of Environmental Management, 2023 - Elsevier
Plants that hyperaccumulate heavy metals such as cadmium (Cd) are important agents of
phytoremediation. Availability of resources such as light, nutrients, and water can affect …

Emerging disposal technologies of harmful phytoextraction biomass (HPB) containing heavy metals: A review

S Jiang, J Sun, G Tong, H Ding, J Ouyang, Q Zhou… - Chemosphere, 2022 - Elsevier
Phytoextraction is an effective approach for remediation of heavy metal (HM) contaminated
soil. After the enhancement of phytoextraction efficiency has been systematically …

Cadmium removal potential of hyperaccumulator Solanum nigrum L. under two planting modes in three years continuous phytoremediation

X Dou, H Dai, L Skuza, S Wei - Environmental Pollution, 2022 - Elsevier
Solanum nigrum L. is a Cd hyperaccumulator, but the potential for continuous remediation,
or different planting methods have not been fully characterized. The potential for continuous …

ROS and NO phytomelatonin-induced signaling mechanisms under metal toxicity in plants: A review

M Pardo-Hernández, M López-Delacalle… - Antioxidants, 2021 - mdpi.com
Metal toxicity in soils, along with water runoff, are increasing environmental problems that
affect agriculture directly and, in turn, human health. In light of finding a suitable and urgent …

[HTML][HTML] Biosorption capacity of Mucor circinelloides bioaugmented with Solanum nigrum L. for the cleanup of lead, cadmium and arsenic

X Li, X Lan, X Feng, X Luan, X Cao, Z Cui - … and Environmental Safety, 2021 - Elsevier
The biosorption and bioaugmentation performances of Mucor circinelloides were
investigated under different contact time, initial metal (loid) concentration and species. The …

Abscisic acid-catabolizing bacteria: A useful tool for enhancing phytoremediation

Y Wang, Z Li, J Wu, H Liu, X Sun, L Liu, S Du - Science of The Total …, 2022 - Elsevier
Bacteria-facilitated phytoextraction has been gaining recognition for the phytoremediation of
heavy metal (HM)-contaminated soils. Nevertheless, it remains unclear whether catabolizing …