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Chemical fixation and solidification of hazardous wastes

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The article was published on 1990-01-01 and is currently open access. It has received 661 citations till now. The article focuses on the topics: Inert waste & Fixation (surgical).

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Mineral-Based Amendments for Remediation

TL;DR: Although mineral amendments have been used for decades in agriculture, new applications with a variety of natural and reprocessed materials are emerging, and amendments can reduce the risk of exposure to humans or biota.
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Microbial community changes in TNT spiked soil bioremediation trial using biostimulation, phytoremediation and bioaugmentation

TL;DR: A 28-day laboratory pot experiment was carried out applying bioaugmentation using laboratory selected bacterial strains as inoculum, biostimulation with molasses and cabbage leaf extract, and phytoremediation using rye and blue fenugreek to study the effect of these treatments on TNT removal and changes in soil microbial community responsible for contaminant degradation as discussed by the authors.
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Reuse of municipal solid wastes incineration fly ashes in concrete mixtures

TL;DR: Experimental results showed a remarkable reduction of metal leaching in comparison with raw waste and in some cases, similar behavior was observed in "natural" concrete (produced with natural aggregates) and in "waste containing" concrete.
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Solidification/stabilization of arsenic salts: Effects of long cure times

TL;DR: In this paper, the toxicity characteristic leaching procedure (TCLP) leachability of As III and As V from various solidification-stabilization (S S ) binders has been studied over a period of four years.
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Investigation into the stabilization/solidification performance of Portland cement through cement clinker phases.

TL;DR: The influence of heavy metal hydroxide on the hydration of C3S and C3A can be used to predict the S/S performance of Portland cement.