References
- S.Y. Choy, K.M.N. Prasad, T.Y. Wu, R.N. Ramanan, A review
on common vegetables and legumes as promising plant-based
natural coagulants in water clarification, Int. J. Environ. Sci.
Technol., 12 (2015) 367–390.
- N.M. Mahmoodi, B. Hayati, M. Arami, Textile dye removal
from single and ternary systems using date stones: kinetic,
isotherm, and thermodynamic studies, J. Chem. Eng. Data,
55 (2010) 4638–4649.
- M. Rafatullah, S.Z. Abbas, A. Ahmad, D. Lokhat, A Review of
Agricultural Solid Waste Materials as Potential Adsorbents
for Copper Ions from Water and Wastewater, In: Air, Gas, and
Water Pollution Control Using Industrial and Agricultural
Solid Wastes Adsorbents, 1st ed., CRC Press, 2017, pp. 197–222.
- B.I. Gandiwa, L.B. Moyo, S. Ncube, T.A. Mamvura, L.L. Mguni,
N. Hlabangana, Optimization of using a blend of plant-based
natural and synthetic coagulants for water treatment: (Moringa
oleifera-Cactus opuntia-alum blend), S. Afr. J. Chem. Eng.,
34 (2020) 158–164.
- N.M. Mahmoodi, Synthesis of core–shell magnetic adsorbent
nanoparticle and selectivity analysis for binary system dye
removal, J. Ind. Eng. Chem., 20 (2014) 2050–2058.
- M. Mariana, H.P.S. Abdul Khalil, E.M. Mistar, E.B. Yahya,
T. Alfatah, M. Danish, M. Amayreh, Recent advances in
activated carbon modification techniques for enhanced heavy
metal adsorption, J. Water Process Eng., 43 (2021) 102221,
doi: 10.1016/j.jwpe.2021.102221.
- M. Oveisi, N.M. Mahmoodi, M.A. Asli, Facile and green
synthesis of metal-organic framework/inorganic nanofiber
using electrospinning for recyclable visible-light photocatalysis,
J. Cleaner Prod., 222 (2019) 669–684.
- N.M. Mahmoodi, Dendrimer functionalized nano architecture:
synthesis and binary system dye removal, J. Taiwan Inst.
Chem. Eng., 45 (2014) 2008–2020.
- A. Nath, A. Mishra, P.P. Pande, A review natural polymeric
coagulants in wastewater treatment, Mater. Today Proc.,
46 (2021) 6113–6117.
- A. Bahadori, M. Clark, B. Boyd, Essentials of Water Systems
Design in the Oil, Gas, and Chemical Processing Industries,
Springer, New York, NY, 2013.
- K. Gurumath, S. Suresh, Cicer arietinum is used as natural
coagulant for water treatment, Int. Res. J. Eng. Technol. (IRJET),
6 (2019) 2930–2931.
- R. Sudoh, M.S. Islam, K. Sazawa, T. Okazaki, N. Hata,
S. Taguchi, H. Kuramitz, Removal of dissolved humic acid from
water by coagulation method using polyaluminum chloride
(PAC) with calcium carbonate as neutralizer and coagulant aid,
J. Environ. Chem. Eng., 3 (2015) 770–774.
- M. Faraji, A. Ebrahimi, H. Nourmoradi, A. Nikoonahad,
A. Abdolahnejad, R. Ghanbari, A. Mohammadi, Optimizing
the removal of humic acid with polyaluminum chloride and
polyaluminum
ferric chloride as green coagulants using
response surface methodology, Desal. Water Treat., 139 (2019)
297–304.
- H. Kristianto, The potency of Indonesia native plants as natural
coagulant: a mini review, Water Conserv. Sci. Eng., 2 (2017)
51–60.
- A.S. Taiwo, K. Adenike, O. Aderonke, Efficacy of a natural
coagulant protein from Moringa oleifera (Lam) seeds in
treatment of Opa reservoir water, Ile-Ife, Nigeria, Heliyon,
6 (2020) e03335, doi: 10.1016/j.heliyon.2020.e03335.
- B.L.C. Lek, A.P. Peter, K.H.Q. Chong, P. Ragu, V. Sethu,
A. Selvarajoo, S.K. Arumugasamy, Treatment of palm oil mill
effluent (POME) using chickpea (Cicer arietinum) as a natural
coagulant and flocculant: evaluation, process optimization and
characterization of chickpea powder, J. Environ. Chem. Eng.,
6 (2018) 6243–6255.
- A. Daverey, N. Tiwari, K. Dutta, Utilization of extracts of Musa
paradisica (banana) peels and Dolichos lablab (Indian bean)
seeds as low-cost natural coagulants for turbidity removal
from water, Environ. Sci. Pollut. Res., 26 (2019) 34177–34183.
- M. Levi, J. Thachil, T. Iba, J.H. Levy, Coagulation abnormalities
and thrombosis in patients with COVID-19, The Lancet
Haematology, 7 (2020) e438–e440.
- S.N. Ugwu, A.F. Umuokoro, E.A. Echiegu, B.O. Ugwuishiwu,
C.C. Enweremadu, Comparative study of the use of natural
and artificial coagulants for the treatment of sullage
(domestic wastewater), Cogent Eng., 4 (2017) 1365676,
doi: 10.1080/23311916.2017.1365676.
- N.M. Mahmoodi, U. Sadeghi, A. Maleki, B. Hayati, F. Najafi,
Synthesis of cationic polymeric adsorbent and dye removal
isotherm, kinetic and thermodynamic, J. Ind. Eng. Chem.,
20 (2014) 2745–2753.
- K. Mohajershojaei, N.M. Mahmoodi, A. Khosravi,
Immobilization of laccase enzyme onto titania nanoparticle
and decolorization of dyes from single and binary systems,
Biotechnol. Bioprocess Eng., 20 (2015) 109–116.
- N.M. Mahmoodi, M. Arabloo, J. Abdi, Laccase immobilized
manganese ferrite nanoparticle: synthesis and LSSVM
intelligent modeling of decolorization, Water Res., 67 (2014)
216–226.
- J.V.M. Ribeiro, P.V. Andrade, A.G.D. Reis, Moringa oleifera
seed as a natural coagulant to treat low-turbidity water by
in-line filtration, Rev. Ambiente Agua, 14 (2019), doi: 10.4136/ambi-agua.2442.
- H. Kristianto, M.A Kurniawan, J.N. Soetedjo, Utilization of
papaya seeds as natural coagulant for synthetic textile coloring
agent wastewater treatment, Int. J. Adv. Sci. Eng. Inf. Technol.,
8 (2018) 2071–2077.
- A. Baharin, N.A. Fattah, A.A. Bakar, Z.M. Ariff, Production
of laminated natural fibre board from banana tree wastes,
Procedia Chem., 19 (2016) 999–1006.
- M. Kandeeban, M. Malarkodi, Assessment of the farmers
attitude towards banana cultivation and export in Coimbatore
and Erode districts of Tamil Nadu, Int. J. Farm Sci., 9 (2019)
49–51.
- S.A. Aida, A. Noriza, M.M. Haswani, S.M.Y. Mya, A study
on reducing fat content of fried banana chips using a sweet
pretreatment technique, Int. Food Res. J., 23 (2016) 68–71.
- N.A. Oladoja, Headway on natural polymeric coagulants in
water and wastewater treatment operations, J. Water Process
Eng., 6 (2015) 174–192.
- S.D. Parvatham, N.R. Asha Rani, Evaluation of wastewater
treatment using banana fruit peel powder as natural
coagulant, Int. Res. J. Innovations Eng. Technol., 5 (2021) 58–65.
- K.R. Gunaratna, B. Garcia, S. Andersson, G. Dalhammar,
Screening and evaluation of natural coagulants for water
treatment, Water Sci. Technol. Water Supply, 7 (2007) 19–25.
- R. Musselman, Sampling Procedure for Lake or Stream Surface
Water Chemistry, Res. Note RMRS-RN-49, Fort Collins,
CO: US Department of Agriculture, Forest Service, Rocky
Mountain Research Station, 2012.
- L.Z. Eng, K.P. Loo, Microwave-assisted extraction of banana
peel bio-flocculant and its potential in wastewater treatment,
Global J. Eng. Technol. Adv., 1 (2019) 1–9.
- S. Kamsonlian, S. Suresh, C.B. Majumder, S. Chand,
Characterization of banana and orange peels: biosorption
mechanism, Int. J. Sci. Technol., 2 (2011) 1–7.
- I. Kabenge, G. Omulo, N. Banadda, J. Seay, A. Zziwa,
N. Kiggundu, Characterization of banana peels wastes
as potential slow pyrolysis feedstock, J. Sustainable Dev.,
11 (2018), doi: 10.5539/jsd.v11n2p14.
- N.M. Mokhtar, M. Priyatharishini, R.A. Kristanti, Study on the
effectiveness of banana peel coagulant in turbidity reduction
of synthetic wastewater, Int. J. Eng. Sci. Res. Technol., 6 (2019)
82–90.
- N. Gloria, Treatment of refinery and petrochemical wastewater
using banana peel as a natural coagulant, Bioorg. Med.
Chem., 7 (2018) 141–143.
- K.H. Chong, P.L. Kiew, Potential of banana peels as bioflocculant
for water clarification, Prog. Energy Environ.,
1 (2017) 47–56.
- I.R. Yuliastri, E. Rohaeti, H. Effendi, L.K. Darusman, The use
of Moringa oleifera seed powder as coagulant to improve the
quality of wastewater and ground water, IOP Conf. Ser.: Earth
Environ. Sci., 31 (2016), doi: 10.1088/1755-1315/31/1/012033.
- T. Zarei Mahmudabadi, A.A. Ebrahimi, H. Eslami, M. Mokhtari,
M.H. Salmani, M.T. Ghaneian, M. Pakdaman, Optimization
and economic evaluation of modified coagulation–flocculation
process for enhanced treatment of ceramic-tile industry
wastewater, AMB Express, 8 (2018) 1–12.
- K. Cardoso Valverde, P. Ferri Coldebella, M. Fernandes Silva,
L. Nishi, M. Carvalho Bongiovani, R. Bergamasco, Moringa
oleifera Lam. and its potential association with aluminium
sulphate in the process of coagulation/flocculation and
sedimentation of surface water, Int. J. Chem. Eng., 2018 (2018)
4342938, doi: 10.1155/2018/4342938.
- A.H. Birima, H.A. Hammad, M.N.M. Desa, Z.C. Muda,
Extraction of natural coagulant from peanut seeds for treatment
of turbid water, IOP Conf. Ser.: Earth Environ. Sci., 16 (2013),
doi: 10.1088/1755-1315/16/1/012065.
- M.F. Eskibalci, M.F. Ozkan, An investigation of the effect
of NaCl concentration on the electrocoagulation of coal
preparation plant tailings, Physicochem. Probl. Miner. Process.,
54 (2018) 934–943.
- S. Adeel, M. Zuber, K.M. Zia, Microwave-assisted extraction
and dyeing of chemical and bio-mordanted cotton fabric
using harmal seeds as a source of natural dye, Environ. Sci.
Pollut. Res., 25 (2018) 11100–11110.
- P.D. Pathak, S.A. Mandavgane, Preparation and characterization
of raw and carbon from banana peel by microwave activation:
application in citric acid adsorption, J. Environ. Chem. Eng.,
3 (2015) 2435–2447.
- H.T. Vu, C.J. Scarlett, Q.V. Vuong, Maximising recovery of
phenolic compounds and antioxidant properties from banana
peel using microwave assisted extraction and water, J. Food
Sci. Technol., 56 (2019) 1360–1370.
- A. Yimer, B. Dame, Papaya seed extract as coagulant for potable
water treatment in the case of Tulte River for the community of
Yekuset district, Ethiopia, Environ. Challenges, 4 (2021) 100198,
doi: 10.1016/j.envc.2021.100198.
- Y. Li, J. Liu, Q. Yuan, H. Tang, F. Yu, X. Lv, A green adsorbent
derived from banana peel for highly effective removal of
heavy metal ions from water, RSC Adv., 6 (2016) 45041–45048.
- S. Sasikala, G. Muthuraman, Turbidity removal from surface
water by natural coagulants and its potential application,
Iran. J. Energy Environ., 8 (2017) 61–66.
- F.A. Dawodu, C.J. Abonyi, K.G. Akpomie, Feldspar-banana
peel composite adsorbent for efficient crude oil removal
from solution, Appl. Water Sci., 11 (2021) 1–10.
- V.S. Munagapati, V. Yarramuthi, Y. Kim, K.M. Lee, D.S. Kim,
Removal of anionic dyes (Reactive Black 5 and Congo red) from
aqueous solutions using banana peel powder as an adsorbent,
Ecotoxicol. Environ. Saf., 148 (2018) 601–607.
- N.A.N. Muhamad, N.F. Juhari, I.N. Mohamad,
Efficiency of natural plant-based coagulants for water
treatment, IOP Conf. Ser.: Earth Environ. Sci., 616 (2020),
doi: 10.1088/1755-1315/616/1/012075.
- G.H. Ali, B.E. Hegazy, H.A. Fouad, M. Rehab, Comparative
study on natural products used for pollutants removal from
water, J. Appl. Sci. Res., 5 (2008) 1020–1029.
- S. Boulaadjoul, H. Zemmouri, Z. Bendjama, N. Drouiche,
A novel use of Moringa oleifera seed powder in enhancing
the primary treatment of paper mill effluent, Chemosphere,
206 (2018) 142–149.
- A. Al-Mamun, A.T.A. Basir, White popinac as potential phytocoagulant
to reduce turbidity of river water, ARPN J. Eng.
Appl. Sci., 11 (2016) 7180–7183.
- A.S. Mukheled, A novel water pretreatment approach for
turbidity removal using date seeds and pollen sheath, J. Water
Resour. Prot., 4 (2012), doi: 10.4236/jwarp.2012.42010.
- M. Priyatharishini, N.M. Mokhtar, Performance of jackfruit
(Artocarpus heterophyllus) peel coagulant in turbidity reduction
under different pH of wastewater, Mater. Today Proc.,
46 (2021) 1818–1823.
- S. Maurya, A. Daverey, Evaluation of plant-based natural
coagulants for municipal wastewater treatment, 3 Biotech,
8 (2018) 1–4.
- G. Vilardi, L. Di Palma, N. Verdone, Heavy metals adsorption
by banana peels micro-powder: equilibrium modeling by
non-linear models, Chin. J. Chem. Eng., 26 (2018) 455–464.
- M. Lapointe, I. Papineau, S. Peldszus, N. Peleato, B. Barbeau,
Identifying the best coagulant for simultaneous water treatment
objectives: interactions of mononuclear and polynuclear
aluminum species with different natural organic matter
fractions, J. Water Process Eng., 40 (2021) 101829, doi: 10.1016/j.jwpe.2020.101829.
- S Water and World Health Organization, Guidelines for
Drinking-Water Quality [Electronic Resource]: Incorporating
First Addendum, Vol. 1, Recommendations, 2006.
- N.K. Mondal, S. Kar, Potentiality of banana peel for the removal
of Congo red dye from aqueous solution: isotherm, kinetics
and thermodynamics studies, Appl. Water Sci., 8 (2018) 1–12.