References
- T.H. Tietenberg, L. Lewis, Environmental and Natural Resource
Economics, 8th ed., Pearson/Addison Wesley, London, UK,
2009.
- N. Naeamikhah, T. Nasrabadi, Z.Z. Sirdari, Role of different
parameters in the quantification of generated sludge in the
oxylator unit of water treatment plants, using artificial neural
network model (case study of Jalalieh water treatment plant,
Tehran, Iran), Appl. Ecol. Environ. Res., 15 (2017) 129–142.
- C. Kostyla, R. Bain, R. Cronk, J. Bartram, Seasonal variation of
fecal contamination in drinking water sources in developing
countries: a systematic review, Sci. Total Environ., 514 (2015)
333–343.
- R.M. Pink, Water Rights in Southeast Asia and India, Palgrave
Macmillan, New York, NY, USA, 2016.
- I. Chirisa, E. Bandauko, A. Matamanda, G. Mandisvika,
Decentralized domestic wastewater systems in developing
countries: the case study of Harare (Zimbabwe), Appl. Water
Sci., 7 (2017) 1069–1078.
- O.P. Sahu, P.K. Chaudhari, The characteristics, effects, and
treatment of wastewater in sugarcane industry, Water Qual.
Exposure Health, 7 (2015) 435–444.
- L. Zhuo, M.M. Mekonnen, A.Y. Hoekstra, The effect of interannual
variability of consumption, production, trade, and
climate on crop-related green and blue water footprints and
inter-regional virtual water trade: a study for China (1978–
2008), Water Res., 94 (2016) 73–85.
- S.V. Mohan, N.C. Rao, P.N. Sarma, Simulated acid azo dye
wastewater treatment using suspended growth configured
sequencing batch reactor (SBR) under anoxic-aerobic-anoxic
microenvironment, Appl. Ecol. Environ. Res., 7 (2009) 25–34.
- Y. Hu, H. Cheng, Water pollution during China’s industrial
transition, Environ. Dev., 8 (2013) 57–73.
- R. Ramalho, Introduction to Wastewater Treatment Processes,
Academic Press, Inc., New York, NY, USA, 2012.
- V.V. Ranade, V.M. Bhandari, Industrial Wastewater Treatment,
Recycling and Reuse, Butterworth-Heinemann, Oxford, UK,
2014.
- K.V. Rajeshwari, M. Balakrishnan, A. Kansal, K. Lata, V.V.N.
Kishore, State-of-the-art of anaerobic digestion technology
for industrial wastewater treatment, Renewable Sustainable
Energy Rev., 4 (2000) 135–156.
- P. Aravind, H. Selvaraj, S. Ferro, M. Sundaram, An integrated
(electro-and bio-oxidation) approach for remediation of
industrial wastewater containing azo-dyes: understanding the
degradation mechanism and toxicity assessment, J. Hazard.
Mater., 318 (2016) 203–215.
- V.O. Abramov, A.V. Abramova, P.P. Keremetin, M.S. Mullakaev,
G.B. Vexler, T.J. Mason, Ultrasonically improved
galvanochemical technology for the remediation of industrial
wastewater, Ultrason. Sonochem., 21 (2014) 812–818.
- E. Margui, B. Zawisza, R. Sitko, Trace and ultratrace analysis
of liquid samples by X-ray fluorescence spectrometry, TrAC,
Trends Anal. Chem., 53 (2014) 73–83.
- X. Jin, E. Li, S. Lu, Z. Qiu, Q. Sui, Coking wastewater treatment
for industrial reuse purpose: combining biological processes
with ultrafiltration, nanofiltration and reverse osmosis,
J. Environ. Sci., 25 (2013) 1565–1574.
- M.P. Starr, H. Stolp, H.G. Trüper, A. Balows, H.G. Schlegel,
The Prokaryotes: A Handbook on Habitats, Isolation, and
Identification of Bacteria, Springer Science & Business Media,
Berlin/Heidelberg, Germany, 2013.
- N. Ahmed, M.N. Islam, M.F. Hasan, T. Motahar, M. Sujauddin,
Understanding the political ecology of forced migration
and deforestation through a multi-algorithm classification
approach: the case of Rohingya displacement in the southeastern
border region of Bangladesh, Geol. Ecol. Landscapes,
3 (2019) 282–294.
- K. Kadharsha, S.A. Khan, S. Lyla, P. Mohanchander,
A. John, Checklist for commercially important food fishes of
Parangipettai, Southeast Coast of India, J. Clean WAS, 2 (2018)
16–19.
- C.S. Orji, E.D. Uko, I. Tamunobereton-ari, Permeability-porosity
trends in Cawc Reservoir sands in the Niger Delta Nigeria,
using well-log data, Malaysian J. Geosci., 3 (2019) 33–42.
- M.O. Eyankware, Hydrogeochemical assessment of chemical
composition of groundwater; a case study of the Aptian-Albian
aquifer within sedimentary basin (Nigeria), Water Conserv.
Manage., 3 (2019) 1–7.
- V.P. Govindan, P.M. Dhakate, A. Uniyal, Developmental human
interface due to train collision of Asian elephant (Elephas
Maximus) in Western circle forest division, Uttarakhand, India,
Environ. Ecosyst. Sci., 3 (2019) 17–19.
- L. Han, J. Wang, H. Shi, Y. Qian, Bioaugmentation for removal
of recalcitrant organics, Chin. J. Environ. Sci., 20 (1999) 100–102.
- Y. Liu, S. Chen, J. Liu, Application of bioaugmentation technique
to wastewater treatment, Chin. J. Environ. Eng., 3 (2002) 36–40.
- J. Wang, Q. Zhao, J. Lin, W. Jin, Bioaugmentation technology
and its application in biological wastewater treatment, Chin.
J. Environ. Eng., 1 (2007) 40–45.
- L. Kang, H.L. Du, X. Du, H.T. Wang, W.L. Ma, M.L. Wang,
F.B. Zhang, Study on dye wastewater treatment of tunable
conductivity solid-waste-based composite cementitious
material catalyst, Desal. Water Treat., 125 (2018) 296–301.
- H. Liu, Z. Liu, Recycling utilization patterns of coal mining
waste in China, Resour. Conserv. Recycl., 54 (2010) 1331–1340.
- H. Wang, H. Zhong, G. Bo, Existing forms and changes of
nitrogen inside of horizontal subsurface constructed wetlands,
Environ. Sci. Pollut. Res., 25 (2018) 771–781.
- H. Wang, X. An, Z. Zhang, Effect of advanced treatment on
ammonia nitrogen contained in secondary effluent from
wastewater treatment plant, Fresenius Environ. Bull., 27 (2018)
2043–2050.
- Q. Xiao, D. Li, R. Guo, L. Zheng, X. An, Z. Zeng, In vivo and in
vitro toxicities of diethyl phthalate to flounder fish Paralichthys
olivaceus and its gill cell line (FG cells), J. Environ. Biol., 39 (2018)
73–81.
- W. Zhang, C. Wei, C. Feng, B. Yan, N. Li, P. Peng, J. Fu, Coking
wastewater treatment plant as a source of polycyclic aromatic
hydrocarbons (PAHS) to the atmosphere and health-risk
assessment for workers, Sci. Total Environ., 432 (2012) 396–403.
- X. Du, X. Yue, X. Wang, J. Liu, J. Mi, Denitrification dynamics
of treating analog coking wastewater in upflow blanket filter,
J. Chem. Ind. Eng., 64 (2013) 2650–2655.
- P. Lai, H. Zhao, C. Wang, J. Ni, Study on advanced treatment
of coking wastewater by iron-carbon micro-electrolysis process,
Chin. J. Environ. Eng., 1 (2007) 15–20.
- X. Zhu, J. Ni, P. Lai, Advanced treatment of biologically
pretreated coking wastewater by electrochemical oxidation
using boron-doped diamond electrodes, Water Res., 43 (2009)
4347–4355.