Keyword search (4,163 papers available)

"recovery" Keyword-tagged Publications:

Title Authors PubMed ID
1 Using an insect for sustainable waste management of a superabundant bird López-Manzano C; Mahdjoub H; Arce-Valdés LR; Khelifa R; 41719861
BIOLOGY
2 Toward a Sustainable Future: A Holistic Environmental, Social, and Economic Assessment of Industrial Recycling for All-Solid-State Batteries with Oxide-Based Electrolytes Wang Z; Tian X; Zhao S; Zhang P; An C; 41073076
ENCS
3 Feasibility analysis of recycling and repurposing end-of-life vehicle batteries in isolated island areas: A case study in British Columbia, Canada Wang Z; Lyu L; Huang G; An C; 40795495
ENCS
4 Electro-washing of pipelines spills: On-site strategies for different soil matrices Rajaei E; Elektorowicz M; 40614426
ENCS
5 Sustainable Recovery of Critical Minerals from Wastes by Green Biosurfactants: A Review Deravian B; Mulligan CN; 40509347
ENCS
6 Recyclability and recovery of carbon from waste printed circuit boards within a circular economy perspective: A review Wang Z; Huang G; An C; 39862821
ENCS
7 The Effects of Weekly Levels of Supervisor Support and Workload on Next Week Levels of Well-Being, Satisfaction, and Performance as Mediated by Weekend Work Recovery Cheyroux P; Morin AJS; Colombat P; Blechman Y; Gillet N; 39676703
CONCORDIA
8 Electroacupuncture Reduces Heart Rate and Perceived Exertion During a Bike Test: A Preliminary Analysis Gaudet E; Castonguay T; Fortin M; Dover G; 39457342
HKAP
9 A unified stochastic SIR model driven by Lévy noise with time-dependency Easlick T; Sun W; 39027117
MATHSTATS
10 A longitudinal person-centered investigation of the multidimensional nature of employees' perceptions of challenge and hindrance demands at work Gillet N; Morin AJS; Fernet C; Austin S; Huyghebaert-Zouaghi T; 38425154
CONCORDIA
11 Developing a collaborative and sustainable return to work program for employees with common mental disorders: a participatory research with public and private organizations Corbière M; Mazaniello-Chézol M; Lecomte T; Guay S; Panaccio A; 34086528
PSYCHOLOGY
12 A person-centered perspective on the factors associated with the work recovery process. Gillet N, Morin AJS, Mokounkolo R, Réveillère C, Fouquereau E 33380222
PSYCHOLOGY

 

Title:Electro-washing of pipelines spills: On-site strategies for different soil matrices
Authors:Rajaei EElektorowicz M
Link:https://pubmed.ncbi.nlm.nih.gov/40614426/
DOI:10.1016/j.jhazmat.2025.139112
Publication:Journal of hazardous materials
Keywords:Electro-washingMulti-components polluted soilOil recoveryPetroleum spillsWater reuseZwitterionic surfactant
PMID:40614426 Category: Date Added:2025-07-05
Dept Affiliation: ENCS
1 Department of Building, Civil and Environmental Engineering, Concordia University, Montréal, Quebec H3G 1M8, Canada. Electronic address: elnaz.rajaei@concordia.ca.
2 Department of Building, Civil and Environmental Engineering, Concordia University, Montréal, Quebec H3G 1M8, Canada. Electronic address: maria.elektorowicz@concordia.ca.

Description:

Crude oil remains a dominant global energy source but spills from pipelines, and reservoirs pose significant environmental and health risks. Remediating petroleum hydrocarbon (PHC)-contaminated soils is critical yet challenging, especially in fine-grained matrices where conventional methods underperform. In this context, electro-washing (EW), either in-situ or ex-situ with surfactant enhancement, offers a tunable, energy-efficient solution that is adaptable to varying soil textures and voltage gradients. This study demonstrates a low-voltage EW methodology for PHC-polluted soils containing 0-5 % bentonite clay, utilizing a zwitterionic surfactant. Laboratory-scale EW cells treated 1 kg soil samples under 1-3 V/cm for four days. Results show that increasing both the clay fraction and voltage gradient significantly improved PHC removal, achieving up to 88 % reduction in soils with 5 % clay at 3 V/cm. Electroosmotic flow transported pore fluid toward the cathode, while negatively charged surfactant micelles migrated toward the anode via electrophoresis, facilitating the delivery of heavier oil fractions. Additionally, in-situ electro-demulsification enabled oil recovery and clean water separation. A polynomial empirical model correlating clay content and voltage to removal efficiency was developed, yielding an excellent fit (R² ˜ 0.93, p < 0.01) and indicating that both factors significantly influence PHC reduction. This work highlights a novel low-energy electrokinetic-surfactant system capable of overcoming the limitations of conventional washing, especially in clayey soils. The method demonstrates near-regulatory cleanup within days, with the added benefit of resource recovery. A preliminary scale-up analysis confirms the feasibility of EW as a sustainable and field-adaptable remediation strategy.





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