References
- R. Kiani, F. Mirzaei, F. Ghanbari, R. Feizi, F. Mehdipour, Real
textile wastewater treatment by a sulfate radicals-advanced
oxidation process: peroxydisulfate decomposition using
copper oxide (CuO) supported onto activated carbon, J. Water
Process Eng., 38 (2020) 101623, doi: 10.1016/j.jwpe.2020.101623.
- N. Badadur, P. Das, N. Bhargava, Improving energy efficiency
and economic feasibility of photocatalytic treatment of synthetic
and real textile wastewater using bagasse fly ash modified
TiO2, Chem. Eng. J. Adv., 2 (2020) 100012, doi: 10.1016/j.ceja.2020.100012.
- B. Saba, B.V. Kjellerup, A.D. Christy, Eco-friendly bioelectro-
degradation of textile dyes wastewater, Bioresour.
Technol. Rep., 15 (2021) 100734, doi: 10.1016/j.biteb.2021.100734.
- F. Li, Y. Dong, W. Kang, B. Cheng, G. Cui, Enhanced removal
of azo dye using modified PAN nanofibrous membrane Fe
complexes with adsorption/visible-driven photocatalysis
bifunctional roles, Appl. Surf. Sci., 404 (2017) 206–215.
- D.T. Moussa, M.H. El-Naas, M. Nasser, M.J. Al-Marri,
A comprehensive review of electrocoagulation for water
treatment: potentials and challenges, J. Environ. Manage.,
186 (2017) 24–41.
- A. Tahreen, M.S. Jami, F. Ali, Role of electrocoagulation in
wastewater treatment: a developmental review, J. Water Process
Eng., 37 (2020) 101440, doi: 10.1016/j.jwpe.2020.101440.
- J.N. Hakizimana, B. Gourich, M. Chafi, Y. Stiriba, C. Vial,
P. Drogui, J. Naja, Electrocoagulation process in water treatment:
a review of electrocoagulation modeling approaches,
Desalination, 404 (2017) 1–21.
- L. Zhou, H. Zhou, X. Yang, Preparation and performance of a
novel starch-based inorganic/organic composite coagulant for
textile wastewater treatment, Sep. Purif. Technol., 2010 (2019)
93–99.
- R. Bouchareb, K. Derbal, Y. Özay, Z. Bilici, N. Dizge, Combined
natural/chemical coagulation and membrane filtration for
wood processing wastewater treatment, J. Water Process Eng.,
37 (2020) 101521, doi: 10.1016/j.jwpe.2020.101521.
- M.S.S. Abujazar, S.U. Karaağaç, S.S. Abu Amr, M.Y.D. Alazaiza,
M.J.K. Bashir, Recent advancement in the application of
hybrid coagulants in coagulation-flocculation of wastewater:
a review, J. Cleaner Prod., 345 (2022) 131133, doi: 10.1016/j.jclepro.2022.131133.
- C.Y. Yin, Emerging usage of plant-based coagulants for
water and wastewater treatment, Process Biochem., 45 (2010)
1437–1444.
- E.M. Mercado-Silva, Pitaya—Hylocereus undatus (Haw),
S. Rodrigues, E. de Oliveira Silva, E.S. de Brito, Eds., Exotic
Fruits Reference Guide, Academic Press, 2018, pp. 339–349.
- N. Uslu, M.M. Özcan, The effect of ultrasound-vacuum-assisted
extraction on bioactive properties of pitaya (Hylocereus
undatus), J. Food Sci. Technol., 56 (2021) 618–6625.
- F.C.O. Santana, K. Panato, M. Angonese, C.M.O. Müller,
Effect of separation methods on the drying kinetics of organic
pitaya (Hylocereus undatus [Haw.] Britton & Rose) seed, LWT,
153 (2022) 112353, doi: 10.1016/j.lwt.2021.112353.
- K. Muhammad, N.I. Mohd Zahari, S.P. Gannasin, N. Mohd
Adazahan, J. Bakar, High methoxyl pectin from dragon fruit
(Hylocereus polyrhizus) peel, Food Hydrocolloids, 42 (2014)
289–297.
- E. Sepúlveda, C. Sáenz, E. Aliga, C. Aceituno, Extraction and
characterization of mucilage in Opuntia spp., J. Arid Environ.,
68 (2007) 534–545.
- K. Anastasakis, D. Kalderis, E. Diamadopoulos, Flocculation
behavior of mallow and okra mucilage in treating wastewater,
Desaliantion, 249 (2009) 786–791.
- T.K.F.S. Freitas, V.M. Oliveira, M.T.F. Souza, H.C.L. Geraldino,
V.C. Almeida, S.L. Fávaro, J.C. Garcia, Optimization of
coagulation-flocculation process for treatment of industrial
textile wastewater using okra (A. esculentus) mucilage as
natural coagulant, Ind. Crops Prod., 7 (2015) 538–544.
- H. Hisada, Y. Kawase, Mucilage extracted from wasted natto
(fermented soybeans) as a low-cost poly-γ-glutamic acid based
biosorbent: removal of rare-earth metal Nd from aqueous
solutions, J. Environ. Chem. Eng., 5 (2017) 6061–6069.
- A. Mishra, A. Yadav, M. Agarwal, M. Bajpai, Fenugreek
mucilage for solid removal from tannery effluent, React. Funct.
Polym., 59 (2004) 99–104.
- N. Adjeroud-Abdellatif, Y. Hammoui, A. Boudria, S. Agab,
F. Choulak, J.P. Lecrerc, Effect of a natural coagulant extract
from Opuntia ficus-indica cladode on electrocoagulationelectroflotation
water treatment process, Int. J. Environ. Anal.,
102 (2022) 5822–5846.
- N. Adjeroud-Abdellatif, F. Dahmoune, B. Merzouk, J.P. Leclerc,
K. Madani, Improvement of electrocoagulation–electroflotation
treatment of effluent by addition of Opuntia ficus indica pad juice, Sep. Purif. Technol., 144 (2015) 168–176.
- APHA, Standard Methods for the Examination of Water and
Wastewater, American Public Health Association, 20th ed.,
1999.
- T. Zheng, Treatment of oilfield produced water with
electrocoagulation: improving the process performance by
using pulse current, J. Water Reuse Desal., 7 (2017) 378–386.
- A. Bezerra, R.E. Snatelli, E.P. Oliveira, L.S. Villar, L.A. Escaleira,
Response surface methodology (RSM) as a tool for optimization
in analytical, Talanta, 7 (2008) 965–977.
- O.T.H. Le, L.N. Tran, V.T. Doan, Q. Pham, A. Ngo, A. Van,
H.H. Nguyen, Mucilage extracted from dragon fruit peel
(Hylocereus undatus) as flocculant for treatment of dye
wastewater by coagulation and flocculation process, Int. J.
Polym. Sci., 2020 (2020) 7468343, doi: 10.1155/2020/7468343.
- U. Kalapathy, A. Proctor, Effect of acid extraction and alcohol
precipitation conditions on the yield and purity of soy hull
pectin, Food Chem., 73 (2001) 393–396.
- A.Z. Hashim, Extraction and characterization
of pectin from dragon fruit (Hylocerens
polyrhizus) peel using different concentration
of ammonium oxalate, Basrah J. Agric. Sci., 31 (2018) 12–19.
- S. Rodrígues-Gonzáles, H.E. Martínez-Flores, C.K. Cháves-Moreno, L.I. Macías-Rodrígues, E. Zavala-Mendoza,
M.G. Garnica-Romo, L. Chacón-Garcia, Extraction and
characterization of mucilage from wild species of Opuntia,
J. Food Process Eng., 37 (2014) 285–292.
- S. Qian, X. Fang, D. Dan, E. Diao, Z. Lu, Ultrasonic-assisted
enzymatic extraction of a water soluble polysaccharide from
dragon fruit peel and its antioxidant activity, RSC Adv., 8 (2018)
42145–42152.
- A. Cárdenas, F.M. Goycoolea, M. Rinaudo, On the gelling
behaviour of ‘nopal’ (Opuntia ficus indica) low methoxyl pectin,
Carbohydr. Polym., 73 (2008) 211–222.
- M. Bayramoglu, M. Kobya, O.T. Can, M. Sozbi, Operating
cost analysis of electroagulation of textile dye wastewater,
Sep. Purif. Technol., 37 (2004) 117–125.
- C.-Y. Hu, S.-L. Lo, W.-H. Kuan, Y.-D. Lee, Treatment of high
fluoride-content wastewater by continuous electrocoagulation–flotation system with bipolar aluminum electrodes,
Sep. Purif. Technol., 60 (2008) 1–5.
- P.R. Kumar, S. Chaudhari, K.C. Klilar, S.P. Mahajan, Removal
of arsenic from water by electrocoagulation, Chemosphere,
55 (2004) 1245–1252.
- P.K. Holt, G.W. Barton, M. Wark, C.A. Mitchell, A quantitative
comparison between chemical dosing and electrocoagulation,
Colloids Surf., A, 211 (2002) 233–248.
- S. Bener, Ö. Bulca, B. Palas, G. Tekin, S. Atalay, G. Ersöz,
Electrocoagulation process for the treatment of real textile
wastewater: effect of operative conditions on the organic
carbon removal and kinetic study, Process Saf. Environ. Prot.,
129 (2019) 47–54.
- A. Shahedi, A.K. Darban, F. Taghipour, A. Jamshidi-Zanjani, Review on industrial wastewater treatment via
electrocoagulation processes, Curr. Opin. Electrochem.,
22 (2020) 154–169.
- G. Derringer, R. Suich, Simultaneous optimization of several
response variables, J. Qual. Technol., 12 (1980) 214–219.
- N. Djerroud, N. Adjeroud, L. Felkai-Haddache, Y. Hammoui,
H. Remini, F. Dahmoune, B. Merzouk, K. Madani, Enhanced
electrocoagulation-electroflotation for turbidity removal
by Opuntia ficus indica cladode mucilage, Water Environ. J.,
32 (2018) 321–332.
- K.P.Y. Shak, T.Y. Wu, Optimized use of alum together with
unmodified Cassia obtusifolia seed gum as a coagulant aid
in treatment of palm oil mill effluent under natural pH of
wastewater, Ind. Crops Prod., 76 (2015) 1169–1178.