References
- J. Ren, H. Liang, F.T.S. Chan, Urban sewage sludge, sustainability,
and transition for eco-city: multi-criteria sustainability
assessment of technologies based on best-worst method, Technol.
Forecast. Social Change, 116 (2017) 29–39.
- M. Kacprzak, E.Neczaj, K. Fijałkowski, A. Grobelak, A. Grosser,
M. Worwag, A.Rorat, H. Brattebo, A. Almas, B.R. Singh, Sewage
sludge disposal strategies for sustainable development,
Environ. Res., 156 (2017) 39–46.
- O. Nowak, Optimizing the use of sludge treatment facilities at
municipal wastewater treatment plants, J. Environ. Sci. Health
Part A, 41 (2006) 1807–1817.
- G. Barberio, L. Cutaia, V. Librici, Treatment and disposal of
sewage sludge: comparative life cycle assessment on Italian
case study, Environ. Eng. Manage. J., 12 (2013) 7–10.
- A.H. Tamimi, C.P Gerba, B. Hayek, C.Y. Choi, R. J Freitas, Characterization
of the quality of drying bed treated biosolids in
Jordan, J. Resid. Sci. Technol., 4 (2007)109–115.
- W. Sulieman, C.P. Gerba, A.H. Tamimi, A. Al Sheraideh, B.
Hayek, Management practices of sludge and biosolids treatment
and disposal in Jordan, J. Resid. Sci. Technol., 7 (2010)
63–67.
- O. Hassouneh, A. Jamrah, K. Qaisi, Sludge stabilization by
composting: a Jordanian case study, Bioprocess Eng., 20 (1999)
413–421.
- A. Jiries, H. Hussain, J. Linetelmann, Determination of polycyclic
aromatic hydrocarbons in wastewater, sediments, sludge
and plants in Karak Province, Jordan, Water Air Soil Pollut.,
121 (2000) 217–228.
- M. Batarseh, Sustainable use of wastewater and sludge in
Jordan: Residues of persistent organic pollutants: A Review,
Advanced Water Supply and Wastewater Treatment: A Road
to Safer Society and Environment, P. Halvinek et al., eds.,
Springer Science Media, 2011, pp. 219–226.
- M. Egan, Biosolids management strategies: an evaluation of
energy production an alternative to land application, Environ.
Sci. Pollut. Res., 20 (2013) 4299–4310.
- G. Bertanza, P. Baroni, M. Canato, Ranking sewage sludge
management strategies by means of decision support systems:
a case study, Resour. Conserv. Recycl., 110 (2016) 1–15.
- M. Garrido-Baserba, M. Molinos-Senante, J.M. Abelleira-Pereira, M. Fades-Guelfo, L.A. Poch, F. Hernandez-Sancho,
Selecting sewage sludge treatment alternatives in modern
wastewater treatment plants using environmental decision
support systems, J. Cleaner Prod., 107 (2015) 410–419.
- M.D. Gomez-Lopez, J. Bayo, M.S. Garcip-Cascales, J.M.
Angosto, Decision support in disinfection technologies for
treated wastewater reuse, J. Cleaner Prod., 17 (2009) 1504–1511.
- J. Comas, M. Alemany, M. Poch, A. Torrens, M. Salgot, J. Bou,
Development of a knowledge-based decision support system
for identifying adequate wastewater treatment for small communities,
Water Sci. Technol., 48 (2003) 393–400
- A. Castillo, J. Porro, M. Garrido-Basbera, D. Ross, D. Renzi, F.
Fatone, D. Gomez, M. Poch, Validation of a decision support
tool for wastewater treatment selection, J. Environ. Manage.,
184 (2016) 409–418.
- X. Ouyang, F. Guo, Intuitionistic fuzzy analytical hierarchical
processes for selecting the paradigms of mangroves in
municipal wastewater treatment, Chemosphere, 197 (2018)
634–642.
- X. Ouyang, F. Guo, D. Shan, H. Yu, J. Wang, Development of
the integrated fuzzy analytical hierarchy process with multidimensional
scaling in selection of natural wastewater treatment
alternatives, Ecol. Eng., 74 (2015) 438–447.
- USAI, Water Reuse and Environmental Conservation Project
Kingdom-Wide Biosolids Management Strategy July 2014. Prepared
By AECOM.
- A.H. Tamimi, R.J. Freitas, W. Suleiman, Developing a manual
for management of sludge and biosolids at Jordanian wastewater
treatment plants, technical report prepared for the sustainable
development of dry lands project, the Jordan component
international arid lands consortium, University of Arizona,
2010.
- L. Pecchia, P.A. Bath, N. Pendelton, M. Bracle, Analytical hierarchy
process (AHP) for examining healthcare professionals’
assessments of risk factors, Inf. Med., 50 (2011) 435–444.
- K. Dussan, R. Monghan, Integrated thermal conversion and
anaerobic digestion for sludge management in wastewater
treatment plants, Waste Biomass Valor., 9 (2018) 65–85.
- V. Mema, P. Hlabela, S. Marx, Assessing electric power potential
of municipal wastewater sludge, J. Clean Energy Technol.,
5 (2017) 60–63.
- M.F. Hamoda, H. Abu Qdais, J. Newham, Evaluation of municipal
solid waste composting kinetics, Resour. Conserv. Recycl.,
23 (1998) 209–223.
- H. Abu Qdais, M. Al-Widyan, Evaluating composting and
co-composting kinetics of various agro-industrial wastes, Int.
J. Recycl. Organ. Waste Agricult., 5 (2016) 273–280.
- P.N. Krishna, J.M. Vivek, K. Shibu, Suitability of sludge as a
building material, Int. J. Scient. Eng. Res., 4 (2013) 23–28.
- O.A. Johnson, M. Napiah, I. Kamaruddin, Potential uses of
waste sludge in construction industry: a review, Res. J. Appl.
Sci. Eng. Technol., 8 (2014) 565–570.