References
- D. Grasso. Hazardous Waste Site remediation, Source Controls
Lewis, 1993, 20–30.
- E.F. Barth. An overview of the history, present status and
future direction of solidification/stabilization technologies
for hazardous waste treatment, J. Hazard. Mater., 24 (1990)
103–109.
- H.N. Cho, J.H. Shim, J.Y. Park. Performance evaluation of solidification/stabilization of dredged sediment using alkali-activated
slag, Desal. Water Treat., 57(22) (2016) 10159–10168.
- E. Lombi, R.E. Hamon, S.P. McGrath, M.J. McLaughlin. Lability
of Cd, Cu, and Zn in polluted soils treated with lime, beringite,
and red mud and identification of a non-labile colloidal fraction
of metals using isotopic techniques, Environ. Sci. Technol.,
37 (2003) 979–984.
- F.Q. Deng, G.G. Qian, MSWI fly ash based novel solidification/stabilization matrices for heavy metals, J. Wuhan Univ. Technol.
Mater., 23 (2008) 955–960.
- M.L.D. Gougar, B.E. Scheetz, D.M. Roy, Ettringite and C-S-H
Portland cement phases for waste ion immobilization: A
review, Waste Manage., 16 (1996) 295–303.
- I. Buj, J. Torras, D. Cassellas, M. Rovira, J. de Pablo. Effect of
heavy metals and water content on the strength of magnesium
phosphate cements, J. Hazard. Mater., 170 (2009) 345–350.
- I. Buj, J. Torras, M. Rovira, J. de Pablo. Leaching behaviour of
magnesium phosphate cements containing high quantities of
heavy metals, J. Hazard. Mater., 175 (2010) 789–794.
- F. Jin, F. Wang, A. Al-Tabbaa, Three-year performance of in-situ
solidified/stabilised soil using novel
MgO-bearing binders,
Chemosphere, 144 (2016) 681–687.
- J.L. Ma, Y.C. Zhao, J.M. Wang, Effect of magnesium oxychloride
cement on stabilization/solidification of sewage sludge,
Construct. Build. Mater., 24 (2010) 79–83.
- Y.B. Wang, L. Huang, R. Lau, Conversion of municipal solid
waste incineration bottom ash to sorbent material for pollutants
removal from water, J. Taiwan Inst. Chem. Eng., 60 (2016)
275–286.
- J. Yang, S.G. Zhang, D.A. Pan, B. Liu, C.L. Wu, A.A. Volinsky,
Treatment method of hazardous pickling sludge by reusing as
glass-ceramics nucleation agent, Rare Metals, 3 (2016) 269–274.
- J. Yliniemi, J. Pesonen, M. Tiainen, M. Illikainen, Alkali activation
of recovered fuel-biofuel fly ash from fluidized-bed combustion:
stabilization/solidification of heavy metals, Waste
Manage., 43 (2015) 273–282.
- B.R. Zhang, W.X. Zhou, H.P. Zhao, Z.P. Tian, F.T. Li, Y.N. Wu,
Stabilization/solidification of lead in MSWI fly ash with mercapto
functionalized dendrimer chelator, Waste Manage., 2016,
DOI: 10.1016/j.wasman. 2016. 02. 001.
- J.W. Beak, S.R. Mallampati, H.S. Park, Novel synthesis and
applications of Thiomer solidification for heavy metals immobilization
in hazardous ASR/ISW thermal residue, Waste
Manage., 49 (2016) 181–187.
- F.H. Wang, B. Zhao, F. Zhang, J. Gao, H.T. Hao, S.T. Zhang, A
novel heavy metal chelating agent sixthio guanidine acid for
in situ remediation of solis contaminated with multielements:
its synthesis, solidification, biodegradability, and leachability,
J. Soils Sedim., 2 (2016) 371–381.
- Y.J. Du, M.L. Wei, K.R. Reddy, H.L. Wu, Effect of carbonation
on leachability, strength and microstructural characteristics of
KMP binder stabilized Zn and Pb contaminated soils, Chemosphere,
144 (2016) 1033–1042.
- F.H. Wang, F. Zhang, Y.J. Chen, J. Gao, B. Zhao, A comparative
study on the heavy metal solidification/stabilization performance
of four chemical solidifying agents in municipal
solid waste incineration fly ash, J. Hazard. Mater., 300 (2012)
451–458.
- H.P. Lu, P.L. Wang, N.X. Jiang, Design of additives for water-resistance
magnesium oxychloride cement using pattern recognition,
Mater. Lett., 20 (1994) 217–223.
- C.K. Chau, Z.J. Li, Accelerated reactivity assessment of light
burn magnesium oxide, J. Amer. Ceram. Soc., 91 (2008)
1640–1645.
- Z.J. Li, C.K. Chau, Influence of molar on properties of magnesium
oxychloride cement, Cement Concrete Res., 37 (2007)
866–870.
- G. Kakali, S. Tsivilis, A. Tsialtas, Hydration of ordinary Portland
cement made from raw mix containing transition element
oxides, Cement Concrete Res., 28(3) (1998) 335–340.
- D.R. Lide, Handbook of Chemistry and Physics, 78th ed.,
1997–1998.
- C. Belebchouche, K. Moussaceb, A. Tahakourt, A. Ait-Mokhtar,
Parameters controlling the release of hazardous waste (Ni2+,
Pb2+ and Cr3+) solidified/stabilized by cement-CEM I, Mater.
Structure, 48(7) (2015) 2323–2328.
- J.M. Dong, H.F. Yu, L.M. Zhang, Study on experimental condition
of hydration methods of determining active magnesium
oxide content, J. Salt Lake Res., 18 (2010) 38–41.
- USEPA, Method 1311: Toxicity Characteristic Leaching Procedure,
in: Response, Office of Solid Waste and Emergency (Ed.),
Test Methods for Evaluating Solid Waste, SW-846, U.S. Environmental
Protection Agency, Washington, DC, 1992.
- D. Hall, R. Stevens, B. EI-Jazairi. The effect of retarders on
the microstructure and mechanical properties of magnesia-phosphate cement mortar, Cement Concrete Res., 31
(2001) 455–465.
- D.H. Deng, C.M. Zhang, The formation mechanism of the
hydrate phase in magnesium oxychloride cement, Cement
Concrete Res., 29 (1999) 1365–1371.
- H.F Yu, Magnesium magnesium oxychloride cement and its
application, Build. Mater. Industry China, (1993) 180–190.
- GB 14569.1–2001. Characteristic requirements for solidified
waste of low and intermediate level radioactive waste—
Cement solidified waste in China.
- C.K. Chau, Z.J. Li. Microstructures of magnesium oxychloride
cement, Mater. Structures, 41 (2008) 853–862.
- S.P. Xia, P.F. Xing, S.Y. Gao, Studies on the basic compounds of
magnesia cement: the thermal behaviour of magnesium oxychlorides,
Thermochim. Acta, 183 (1991) 349–363.
- W.F. Cole, T. Demediuk, X-ray, thermal and dehydration studies
on magnesium oxychloride, Austral. J. Chemistry, 8 (1955)
234–235.
- C.K. Chau, J. Chau, Z.J. Li, Influences of fly ash on magnesium
oxychloride motar, Cement Concrete Compos.,
31 (2009) 250–254.
- H.Q. Li, G.Z. Li, Y.Z. Yu, The influence of compound additive
on magnesium oxychloride cement/urban refuse floor tile,
Construct. Build. Mater., 22 (2008) 521–525.
- Q.Q. Liu, Durability, failure mechanism and life prediction
method of glass fiber reinforced magnesium oxychloride
cement siding. Nanjing University of Aeronautics and
Astronautics, 2010.
- E.R. Nightingale. Phenomenological theory of ion solvation-effective
radii of hydrated ions, J. Phys. Chem.,
9 (1959) 1381–1387.