[HTML][HTML] Advances in using municipal solid waste incineration (MSWI) bottom ash as precursor for alkali-activation materials: A critical review

B Chen, P Perumal, F Aghabeyk, A Adediran… - Resources …, 2024 - Elsevier
The pursuit of low-carbon binders as alternatives to Portland cement has sparked interest in
develo** alkali-activated materials (AAM). 1 Using municipal solid waste incineration …

Revolutionizing soil heavy metal remediation: Cutting-edge innovations in plant disposal technology

Y Hu, J Wang, Y Yang, S Li, Q Wu… - Science of The Total …, 2024 - Elsevier
Soil contamination with heavy metals has emerged as a global environmental threat,
compromising agricultural productivity, ecosystem integrity, and human health. Conventional …

Enforced carbonation of cementitious materials

M Zajac, I Maruyama, A Iizuka, J Skibsted - Cement and Concrete …, 2023 - Elsevier
CO 2 mineralization of cement materials utilizes reaction of calcium or magnesium with
carbonate ions forming insoluble carbonates. Recent research has demonstrated that this …

The effects and solidification characteristics of municipal solid waste incineration fly ash-slag-tailing based backfill blocks in underground mine condition

S Zhang, T Zhao, Y Li, Z Li, H Li, B Zhang, J Li… - … and Building Materials, 2024 - Elsevier
Currently, there is a limited understanding of the material performance effects and hydration
mechanisms of solidified waste-based binder filling materials containing municipal solid …

[HTML][HTML] Comparing the quantity and quality of glass, metals, and minerals present in waste incineration bottom ashes from a fluidized bed and a grate incinerator

D Blasenbauer, F Huber, J Mühl, J Fellner, J Lederer - Waste Management, 2023 - Elsevier
Bottom ash is the primary solid residue arising from municipal solid waste incineration. It
consists of valuable materials such as minerals, metals and glass. Recovering these …

The physical encapsulation and chemical fixation of Zn during thermal treatment process of municipal solid waste incineration (MSWI) fly ash

Z Yuan, G Cai, L Gao, M Wu, L Kong, J Bai, Z Bai… - Waste Management, 2023 - Elsevier
Thermal treatment is a promising treatment technology of municipal solid waste incineration
(MSWI) fly ash because of its detoxication and volume reduction. However, the relationship …

[HTML][HTML] Recovery of aluminum, magnetic ferrous metals and glass through enhanced industrial-scale treatment of different MSWI bottom ashes

J Mühl, S Hofer, D Blasenbauer, J Lederer - Waste Management, 2024 - Elsevier
To foster a circular economy, the EU will increase recycling targets for packaging materials,
including aluminum, ferrous metals and glass. Recovery of packaging metals from …

[HTML][HTML] Glass recovery and production of manufactured aggregate from MSWI bottom ashes from fluidized bed and grate incineration by means of enhanced …

J Mühl, S Skutan, G Stockinger, D Blasenbauer… - Waste Management, 2023 - Elsevier
Enhanced treatment of incineration bottom ashes (IBA) from municipal solid waste
incineration can contribute to a circular economy since not only metals can be recovered but …

Immobilization of heavy metals with chlorine and liquid phase formation during thermal treatment of MSWI fly ash

Z Yuan, Q Xu, X Chen, L Kong, K Li, C Wu, J Bai, J Guo… - Fuel, 2024 - Elsevier
Due to effective detoxification, thermal treatment is a preferred treatment technology of
municipal solid waste incineration (MSWI) fly ash. However, immobilization behavior of …

A comparative study of wet-mix vs. dry-mix to prepare geopolymer artificial aggregates utilizing municipal solid waste incineration bottom ash (IBA) via crushing …

Y Alrefaei, OA Refaat, S Xue, KM Liew… - Journal of Building …, 2024 - Elsevier
The demand for sustainable alternatives to utilize incinerator bottom ash (IBA) alongside the
current scarcity of natural aggregates drives the construction industry to seek innovative …