PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 15, 2026Environments0 citationsOpen Access

An Innovative Technical Solution for the Extraction and Disposal of Hazardous Industrial Waste for Landfill Decommissioning

View Full Paper
NVNadejda G. VurdovaNational Research University of Electronic TechnologyTOTatyana I. OvchinnikovaNational Research University of Electronic TechnologySTSvetlana V. TertychnayaNational Research University of Electronic Technology

Key Points

  • This study aims to create efficient technological solutions for safely extracting and processing hazardous liquid waste from old industrial landfills.
  • Designed an integrated treatment chain including extraction, multi-barrier water treatment, vacuum evaporation, and lithification.
  • Identified optimal compositions for lithification of hazardous waste.
  • Conducted biotesting to assess the safety of lithified waste.
  • Achieved a non-hazardous geocomposite (Hazard Class V) from treated waste, compared to untreated waste classified as moderately hazardous (Class III).
  • Optimal lithification ratios were established for both salt concentrate and oil-containing waste, enabling effective waste transformation.

Abstract

The problem of industrial waste disposal is becoming increasingly pressing. For a long time, one of the primary methods of managing hazardous industrial waste was to dispose of it for long periods (decades) in engineered landfills. However, over time, due to various climatic, geological, and other changes, landfills begin to cause significant harm to the environment and human health. Old landfills, many built in the mid-20th century, pollute the air, soil, and groundwater. Therefore, the issue of decommissioning “old” landfills is becoming increasingly pressing. This study aimed to develop technological solutions for the safe extraction and processing of hazardous liquid waste from an aged industrial landfill. An integrated treatment chain was designed, comprising extraction, multi-barrier water treatment, vacuum evaporation, and lithification. Optimal lithification compositions were identified: for the salt concentrate–sludge–spent media mixture, a ratio of 68.2% sorbent D, 28.0% salt concentrate, and 3.8% dewatered sludge/spent media yielded a loose granular geocomposite; for oil-containing waste, the optimal ratio using lime and opoka was 1:0.9:0.5 (bottom sediments/CaO/opoka). Biotesting confirmed that the lithified waste is Hazard Class V (non-hazardous), whereas the untreated waste is Class III (moderately hazardous). The resulting geocomposite is suitable for on-site technical reclamation, closing the material cycle.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Vurdova et al. (2026) studied this question.

synapsesocial.com/papers/6a06b8f8e7dec685947ab7d2https://doi.org/10.3390/environments13050272
Ask AI
Helpful
Bookmark
Share
View Full Paper