Keyword search (4,164 papers available)

"Li X" Authored Publications:

Title Authors PubMed ID
1 Development of an evaporation-driven sampling system for the in situ long-term monitoring of heavy metals in surface water Li X; Ma H; Shi S; Tian X; Nie L; Han X; Sun J; Chen Z; Li J; Chen K; 41886856
ENCS
2 An active bifunctional natural dye for stable all-solid-state organic batteries Yu Q; Hu Y; Deng S; Shakouri M; Chen J; Martins V; Nie HY; Huang Y; Zhao Y; Zaghib K; Sham TK; Li X; 40993135
PHYSICS
3 Solid solvation structure design improves all-solid-state organic batteries Hu Y; Su H; Fu J; Luo J; Yu Q; Zhao F; Li W; Deng S; Liu Y; Yuan Y; Gan Y; Wang Y; Kim JT; Chen N; Shakouri M; Hao X; Gao Y; Pang T; Zhang N; Jiang M; Li X; Zhao Y; Tu J; Wang C; Sun X; 40759737
ENCS
4 Exon junction complexes regulate osteoclast-induced bone resorption by influencing the NFATc1 m6A distribution through the "shield effect" Sun B; Yang JG; Wang Z; Wang Z; Feng W; Li X; Liu SN; Li J; Zhu YQ; Zhang P; Wang W; 40051055
ENCS
5 Exosome-targeted delivery of METTL14 regulates NFATc1 m6A methylation levels to correct osteoclast-induced bone resorption Yang JG; Sun B; Wang Z; Li X; Gao JH; Qian JJ; Li J; Wei WJ; Zhang P; Wang W; 37957146
ENCS
6 Roles of inter- and intramolecular tryptophan interactions in membrane-active proteins revealed by racemic protein crystallography Lander AJ; Mercado LD; Li X; Taily IM; Findlay BL; Jin Y; Luk LYP; 37464011
CHEMBIOCHEM
7 A pH-Responsive phosphoprotein washing fluid for the removal of phenanthrene from contaminated peat moss in the cold region Yue R; An C; Ye Z; Li X; Li Q; Zhang P; Qu Z; Wan S; 36455665
ENCS
8 Screening of novel fungal Carbohydrate Esterase family 1 enzymes identifies three novel dual feruloyl/acetyl xylan esterases Dilokpimol A; Verkerk B; Li X; Bellemare A; Lavallee M; Frommhagen M; Nørmølle Underlin E; Kabel MA; Powlowski J; Tsang A; de Vries RP; 35187647
CSFG
9 Flame-Retardant and Polysulfide-Suppressed Ether-Based Electrolytes for High-Temperature Li-S Batteries He M; Li X; Holmes NG; Li R; Wang J; Yin G; Zuo P; Sun X; 34370436
ENCS

 

Title:Development of an evaporation-driven sampling system for the in situ long-term monitoring of heavy metals in surface water
Authors:Li XMa HShi STian XNie LHan XSun JChen ZLi JChen K
Link:https://pubmed.ncbi.nlm.nih.gov/41886856/
DOI:10.1016/j.jhazmat.2026.141863
Publication:Journal of hazardous materials
Keywords:Evaporation-Driven SamplerHeavy MetalsTime-Weighted Average ConcentrationWater Contaminants
PMID:41886856 Category: Date Added:2026-03-27
Dept Affiliation: ENCS
1 Key Laboratory of Resources Conversion and Pollution Control of the State Ethnic Affairs Commission, College of Resources and Environment, South-Central MinZu University, Wuhan 430074, PR China.
2 Key Laboratory of Catalysis and Energy Materials Chemistry of Ministry of Education & Hubei Key Laboratory of Catalysis and Materials Science, School of Chemistry and Materials Science, South-Central MinZu University, Wuhan 430074, PR China.
3 Department of Building, Civil, and Environmental Engineering, Concordia University, Montreal H3G1M8, Canada.
4 Shenzhen Key Laboratory of Environmental Chemistry and Ecological Remediation, College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen 518060, PR China.
5 Key Laboratory of Resources Conversion and Pollution Control of the State Ethnic Affairs Commission, College of Resources and Environment, South-Central MinZu University, Wuhan 430074, PR China; Department of Building, Civil, and Environmental Engineering, Concordia University, Montreal H3G1M8, Canada. Electronic address: kechen@mail.scuec.edu.cn.

Description:

Non-electrically driven samplers, commonly known as passive samplers, are widely used in surface water monitoring to determine the Time-Weighted Average Concentration (CTWA) of contaminants. In this study, we developed an evaporation-driven sampling system and methodology, comprising an Evaporation-Driven Sampler (EDS) for sampling and its standard version (Std-EDS) for measuring the sampling rate (RS). The EDS consists of a filter, tubes, a SPE-like (Solid Phase Extraction) device, a central pipe, towels, and floats. Sampling in this system is driven by the continuous evaporation from the towels. The Std-EDS incorporates the same key structure as the EDS, enabling the RS to be measured through straightforward weight change. In a 14-day experiment, the device demonstrated an RS of 281 mL/d, which is about tenfold higher than that of the Diffusive Gradients in Thin films (DGT) method. RS can be easily adjusted, from tens to hundreds of mL per day by varying the area of towels, highlighting the system's versatility and broad applicability to environmental condition. Additionally, RS is dominantly controlled by ambient evaporation, as confirmed by a strong linear correlation (R2 = 0.98, n = 30). This establishes evaporation as the key environmental factor governing the sampling process. Field validation confirmed that the EDS/Std-EDS accurately tracked heavy metal concentrations in surface water, yielding an average recovery of 70.7%. Further study demonstrated stability and performance comparable to grab sampling and conventional passive methods like DGT. In summary, the EDS and Std-EDS is a flexible and reliable sampling system, showing potential for environmental monitoring.





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