Keyword search (4,163 papers available)

"calcium" Keyword-tagged Publications:

Title Authors PubMed ID
1 A synergistic approach to rapid stabilization and immobilization of crude oil-contaminated clayey sand using calcium chloride and sodium silicate Rajaei E; Elektorowicz M; Baker MB; 41391286
ENCS
2 Pitavastatin Calcium Confers Fungicidal Properties to Fluconazole by Inhibiting Ubiquinone Biosynthesis and Generating Reactive Oxygen Species Li W; Feng Y; Feng Z; Wang L; Whiteway M; Lu H; Jiang Y; 38929106
BIOLOGY
3 The caleosin RD20/CLO3 regulates lateral root development in response to abscisic acid and regulates flowering time in conjunction with the caleosin CLO7 Brunetti SC; Arseneault MKM; Gulick PJ; 37812854
BIOLOGY
4 Evaluation of Increasing Dairy Intake on Bone Density in Postpubertal Youth: A Randomized Controlled Trial Using Motivational Interviewing Slim M; Vanstone CA; Morin SN; Rahme E; Bacon SL; Weiler HA; 36967160
HKAP
5 Overview of Sigma-1R Subcellular Specific Biological Functions and Role in Neuroprotection Véronik Lachance 36768299
CSBN
6 Calcium activity is a degraded estimate of spikes Hart EE; Gardner MPH; Panayi MC; Kahnt T; Schoenbaum G; 36368324
PSYCHOLOGY
7 Atorvastatin lowers serum calcium levels in lithium-users: results from a randomized controlled trial Soh JF; Bodenstein K; Yu OHY; Linnaranta O; Renaud S; Mahdanian A; Su CL; Mucsi I; Mulsant B; Herrmann N; Rajji T; Beaulieu S; Sekhon H; Rej S; 36153583
PSYCHOLOGY
8 Evaluation of Increasing Dairy Intake on Bone Density in Post-pubertal Youth: A Randomized Controlled Trial Using Motivational Interviewing Slim M; Vanstone CA; Morin SN; Rahme E; Bacon SL; Weiler HA; 35015862
HKAP
9 The stress induced caleosin, RD20/CLO3, acts as a negative regulator of GPA1 in Arabidopsis Brunetti SC; Arseneault MKM; Wright JA; Wang Z; Ehdaeivand MR; Lowden MJ; Rivoal J; Khalil HB; Garg G; Gulick PJ; 34599731
BIOLOGY
10 Bioprinting of Adult Dorsal Root Ganglion (DRG) Neurons Using Laser-Induced Side Transfer (LIST) Roversi K; Ebrahimi Orimi H; Falchetti M; Lummertz da Rocha E; Talbot S; Boutopoulos C; 34442487
ENCS
11 All-optical approaches to studying psychiatric disease Lafferty CK; Christinck TD; Britt JP; 34314828
CSBN
12 Calcium-calcineurin signaling pathway in Candida albicans: A potential drug target Li W; Shrivastava M; Lu H; Jiang Y; 33989979
BIOLOGY
13 Transendothelial Perforations and the Sphere of Influence of Single-Site Sonoporation. Helfield B, Chen X, Watkins SC, Villanueva FS 32402675
BIOLOGY
14 RNA sequencing reveals an additional Crz1-binding motif in promoters of its target genes in the human fungal pathogen Candida albicans. Xu H, Fang T, Omran RP, Whiteway M, Jiang L 31900175
BIOLOGY
15 Cue-Evoked Dopamine Neuron Activity Helps Maintain but Does Not Encode Expected Value. Mendoza JA, Lafferty CK, Yang AK, Britt JP 31693885
CSBN

 

Title:A synergistic approach to rapid stabilization and immobilization of crude oil-contaminated clayey sand using calcium chloride and sodium silicate
Authors:Rajaei EElektorowicz MBaker MB
Link:https://pubmed.ncbi.nlm.nih.gov/41391286/
DOI:10.1016/j.scitotenv.2025.181188
Publication:The Science of the total environment
Keywords:Calcium chlorideClayey soil immobilizationPetroleum pollutionShear strengthSodium silicateSynergistic soil stabilization
PMID:41391286 Category: Date Added:2025-12-15
Dept Affiliation: ENCS
1 Department of Building, Civil and Environmental Engineering, Concordia University, Montréal, Quebec, Canada. Electronic address: elnaz.rajaei@concordia.ca.
2 Department of Building, Civil and Environmental Engineering, Concordia University, Montréal, Quebec, Canada. Electronic address: maria.elektorowicz@concordia.ca.
3 Civil Engineering Program, Al Ain University, Al Ain, United Arab Emirates. Electronic address: mousa.banibaker@aau.ac.ae.

Description:

The immobilization and stabilization of crude oil-contaminated soils pose significant challenges in geotechnical engineering, particularly in clayey matrices prone to hydrocarbon adsorption and structural degradation. This study evaluates a two-step synergistic grouting technique using calcium chloride (CaCl2) and sodium silicate (Na2SiO3) to enhance strength recovery and immobilize contaminants simultaneously. Laboratory experiments simulated field conditions on sand and sand-clay mixtures containing 1 %, 3 %, and 5 % bentonite under both clean and crude-oil-polluted conditions. Direct shear results revealed strength improvements of 28-120 %, with polluted clayey soils showing the most substantial gains. Cohesion increased from 29 kPa to 64 kPa, and the friction angle rose by 4-7°. In some cases, treated polluted samples outperformed untreated clean soils. Morphometric analysis confirmed microstructural enhancement: average pore area decreased by 37-52 %, major-to-minor axis ratio fell by 13-35 %, and eccentricity dropped from 0.83 to 0.66. These changes reflected the formation of calcium silicate hydrate (C-S-H) gels, which bridged particles and reduced void spaces. They created denser, more isotropic fabrics, improving load-bearing capacity, lowering permeability and limiting further hydrocarbon migration. The results showed that oil-polluted soils, which typically suffer pronounced mechanical deterioration, can be effectively rehabilitated using this method, in some cases exceeding the performance of untreated clean soils. Cost and carbon analyses confirmed the sustainability of the CaCl2-Na2SiO3 system, indicating significant reductions of 56 % in cost and 97 % in carbon emissions compared with Portland cement stabilization. Furthermore, hydraulic conductivity and leakage tests on polluted sandy soils indicated reductions of more than 90 % in conductivity and nearly 100 % in leakage for soil containing 5 % clay, confirming the method's effectiveness as both a stabilizer and a barrier. The results demonstrate that a two-step synergistic chemical grouting technique is effective for stabilizing petroleum-affected foundations, slopes, and containment barriers. Field trials are recommended to evaluate the material's long-term durability and environmental performance.





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