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March 7, 2026Recycling1 citationsOpen Access

Utilizing Industrial Waste to Enhance Mechanical Strength and Cost-Effectiveness of Dredged Soil

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JLJinzhao LiXZXin ZuoCXChangchun Xin

Key Points

  • The research aims to utilize industrial wastes to stabilize dredged soil and improve its mechanical properties while being cost-effective.
  • Added 100 g of curing agent to 1 kg of dredged soil.
  • Utilized various formulations including activator, fly ash, mineral powder, and desulfurization gypsum.
  • Measured unconfined compressive strength to evaluate mechanical performance at 28 days.
  • Achieved an unconfined compressive strength of 0.794 MPa with optimal formulation.
  • Modified binder blend attained a strength of 0.63 MPa at 28 days.
  • Found that strength increases with industrial wastes, but solidification strength gain slows over time.

Abstract

The large-scale dredging activities in port areas generate substantial quantities of dredged soil, leading to land occupation and disposal challenges, while industrial wastes such as fly ash and desulfurization gypsum remain underutilized. In this study, industrial wastes were employed as a curing agent to stabilize dredged soil, aiming to achieve both mechanical performance improvement and cost-effective recycling. In total, 100 g of curing agent was added to 1 kg of sludge. The optimal strength-maximizing formulation comprised 4.5% activator 1 #, 4.5% fly ash, 4.5% mineral powder, and 0.5% desulfurization gypsum. It achieved an unconfined compressive strength of 0.794 MPa. For enhanced cost-effectiveness, a modified binder blend (1.88% activator 1 #, 4.5% fly ash, 4.5% mineral powder, and 0.5% desulfurization gypsum) delivered 0.63 MPa at 28 days, satisfying mechanical construction specifications. Results demonstrate that unconfined compressive strength increases with solid wastes; however, with the extension of solidification time, the unconfined compressive strength of dredged soil gradually slows down.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69abc1c65af8044f7a4eaca2https://doi.org/10.3390/recycling11030055
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Hydromechanical behavior of dredged slurry modified with industrial waste composite curing agents2026
  2. 2Strength enhancement and microstructural evolutions of dredged slurry stabilized with waste-modified composite binder2026
  3. 3Synergetic Mechanism of Multiple Industrial Solid Waste-Based Geopolymer Binder for Soil Stabilization: Optimization Using D-Optimal Mixture Design2024 · 13 citations
  4. 4Effect of multi-source solid waste synergistic activation on strength evolution and micro-mechanism of dredged sludge stabilized with low-carbon curing agent2026
  5. 5Recycling and potential use of industrial cementitious waste in expansive soil stabilization: A review2026