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Qinglin Liu

Researcher at Zhejiang University

Publications -  10
Citations -  235

Qinglin Liu is an academic researcher from Zhejiang University. The author has contributed to research in topics: Environmental remediation & Salinity. The author has an hindex of 5, co-authored 9 publications receiving 136 citations.

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Fate and Transformation of CuO Nanoparticles in the Soil–Rice System during the Life Cycle of Rice Plants

TL;DR: CuO NPs were found to be translocated from soil to plant especially to the chaff and promoted the Cu accumulation in the aleurone layer of rice using micro X-ray fluorescence technique, but could not reach the polished rice.
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Investigation of lead bioimmobilization and transformation by Penicillium oxalicum SL2.

TL;DR: Partial mechanisms of Pb immobilization and speciation transformation of this strain are elucidated, providing an alternative biomaterial in the bioremediation of P b-contaminated wastewater.
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Characterization of Penicillium oxalicum SL2 isolated from indoor air and its application to the removal of hexavalent chromium

TL;DR: The results significantly expand the knowledge on potential application of Penicillium oxalicum SL2, a species that has not been extensively studied regarding Cr(VI) tolerance and reduction abilities, and represents a promising new candidate for Cr( VI) removal.
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Simultaneous removal of multiple heavy metals from soil by washing with citric acid and ferric chloride

TL;DR: In this article, a combination of Citric acid (CA) and ferric chloride (FeCl3) exhibited an obvious synergistic effect on the removal of heavy metals and the concentration of heavy metal in different soil particle size fractions was closely related to the soil element concentrations.
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Dynamic influence of S fertilizer on Cu bioavailability in rice (Oryza sativa L.) rhizosphere soil during the whole life cycle of rice plants

TL;DR: In this article, the dynamic influence of S fertilizer applied in paddy soils on Cu bioavailability in rice rhizosphere soil during the life cycle of rice plants was explored by traditional chemical extraction methods and advanced synchrotron-based X-ray absorption nearedge spectroscopy (XANES) techniques.