Bulletin of the Chinese Ceramic Society, Volume. 43, Issue 10, 3765(2024)
Mechanical Properties and Toxic Leaching Characteristics of Alkali-Activated Chelated Municipal Solid Waste Incinerator Fly Ash
[2] [2] TIAN Z P, ZHANG B R, HE C J, et al. The physiochemical properties and heavy metal pollution of fly ash from municipal solid waste incineration[J]. Process Safety and Environmental Protection, 2015, 98: 333-341.
[4] [4] LIU Y Q, ZHU W P, YANG E H. Alkali-activated ground granulated blast-furnace slag incorporating incinerator fly ash as a potential binder[J]. Construction and Building Materials, 2016, 112: 1005-1012.
[5] [5] ZHANG X, WANG B M, CHANG J, et al. Effect of zeolite contents on mineral evolution and heavy metal solidification in alkali-activated MSWI fly ash specimens[J]. Construction and Building Materials, 2022, 345: 128309.
[6] [6] REN J, HU L, DONG Z J, et al. Effect of silica fume on the mechanical property and hydration characteristic of alkali-activated municipal solid waste incinerator (MSWI) fly ash[J]. Journal of Cleaner Production, 2021, 295: 126317.
[7] [7] WANG Q, YAN J H, CHI Y, et al. Application of thermal plasma to vitrify fly ash from municipal solid waste incinerators[J]. Chemosphere, 2010, 78(5): 626-630.
[9] [9] CLAVIER K A, PARIS J M, FERRARO C C, et al. Opportunities and challenges associated with using municipal waste incineration ash as a raw ingredient in cement production-a review[J]. Resources, Conservation and Recycling, 2020, 160: 104888.
[10] [10] YANG Z Z, TIAN S C, JI R, et al. Effect of water-washing on the co-removal of chlorine and heavy metals in air pollution control residue from MSW incineration[J]. Waste Management, 2017, 68: 221-231.
[11] [11] LAN T, MENG Y, JU T Y, et al. Manufacture of alkali-activated and geopolymer hybrid binder (AGHB) by municipal waste incineration fly ash incorporating aluminosilicate supplementary cementitious materials (ASCM)[J]. Chemosphere, 2022, 303: 134978.
[12] [12] YE N, CHEN Y, YANG J K, et al. Co-disposal of MSWI fly ash and Bayer red mud using an one-part geopolymeric system[J]. Journal of Hazardous Materials, 2016, 318: 70-78.
[13] [13] TIAN X, RAO F, LI C X, et al. Solidification of municipal solid waste incineration fly ash and immobilization of heavy metals using waste glass in alkaline activation system[J]. Chemosphere, 2021, 283: 131240.
[14] [14] TIAN X, RAO F, LEN-PATIO C A, et al. Effects of aluminum on the expansion and microstructure of alkali-activated MSWI fly ash-based pastes[J]. Chemosphere, 2020, 240: 124986.
[16] [16] XU D D, HUANG Y, JIN X, et al. Synergistic treatment of heavy metals in municipal solid waste incineration fly ash with geopolymer and chemical stabilizers[J]. Process Safety and Environmental Protection, 2022, 160: 763-774.
[17] [17] KIM M S, JUN Y B, LEE C H, et al. Use of CaO as an activator for producing a price-competitive non-cement structural binder using ground granulated blast furnace slag[J]. Cement and Concrete Research, 2013, 54: 208-214.
[20] [20] LI Y C, MIN X B, KE Y, et al. Preparation of red mud-based geopolymer materials from MSWI fly ash and red mud by mechanical activation[J]. Waste Management, 2019, 83: 202-208.
[23] [23] LIU J, XIE G M, WANG Z D, et al. Manufacture of alkali-activated cementitious materials using municipal solid waste incineration (MSWI) ash: immobilization of heavy metals in MSWI fly ash by MSWI bottom ash[J]. Construction and Building Materials, 2023, 392: 131848.
Get Citation
Copy Citation Text
LU Shilin, DING Xiuming, LUO Qi, YE Weikai, DONG Faxin, WU Peixi, MA Jun, WANG Junfeng. Mechanical Properties and Toxic Leaching Characteristics of Alkali-Activated Chelated Municipal Solid Waste Incinerator Fly Ash[J]. Bulletin of the Chinese Ceramic Society, 2024, 43(10): 3765
Category:
Received: Apr. 26, 2024
Accepted: Jan. 17, 2025
Published Online: Jan. 17, 2025
The Author Email: Junfeng WANG (drjunfengwang2010@163.com)
CSTR:32186.14.