References
- J.M. Skibo, Pottery Function, Springer, New York, NY, 1992,
doi: 10.1007/978-1-4899-1179-7.
- A. Duhan, S. Warsi, M. Bharadwaj, H. Pankaj, J. Nighojkar,
A. Shedekar, V. Plappally, Characterization of Clay Ceramics
from Areas Near to the Thar Desert, India: Towards Water
Filtration Application, Engineering Ceramics: Microstructure-
PropertyPerformance Relations and Applications —
OnDemand Mechanical Properties of Engineering Ceramics,
MS&T 2021, Columbus, 2021.
- S. Gupta, R.K. Satankar, A. Kaurwar, U. Aravind, M. Sharif,
A. Plappally, Household production of ceramic water filters
in Western Rajasthan, India, Int. J. Serv. Learn. Eng. Humanit.
Eng. Soc. Entrepreneurship, 13 (2018) 53–66.
- V. Roux, No Title, White Matka-Ethnography a Water Jar,
First, Jodhpur Rupayan Sansthan, 2015.
- S. Gupta, R.K. Satankar, A. Kaurwar, U. Aravind, M. Sharif,
A. Plappally, Household production of ceramic water
filters in Western Rajasthan, India, Int. J. Serv. Learn. Eng.
Humanit. Eng. Soc. Entrepreneurship, 13 (2018) 53–66.
- P. Jakhar, L. Dave, M. Ahmad, H. Rathore, N. Gehlot, S. Gupta,
R. Satankar, A. Nighojkar, A. Plappally, Controlled porosity
based sub-surface porous vessel (SSPV) structures for
irrigating organic farms of fruits and vegetables, Acta Hortic.,
1298 (2020) 435–441.
- J. Brown, M.D. Sobsey, Microbiological effectiveness of locally
produced ceramic filters for drinking water treatment in
Cambodia, J. Water Health, 8 (2010) 1–10.
- D.W. Robert, Development of a Ceramic Water Filter for Nepal,
Massachusetts Institute of Technology, Dept. of Civil and
Environmental Engineering, Master Thesis, 2013, pp. 166–170.
- E. Annan, Clay Ceramic Materials for Water Filtration:
Properties, Processing and Performance, Doctor of
Philosophy (Ph.D.) Degree, African University of Science and
Technology (AUST) – Abuja, Nigeria, 2016.
- V. Venugopal, The G-filter: a simple high-tech solution to
India’s water pollution, MRS Bull., 44 (2019) 914–915.
- A.K. Plappally, I. Yakub, L.C. Brown, W.O. Soboyejo,
A.B.O. Soboyejo, Physical properties of porous clay ceramicware,
J. Eng. Mater. Technol., 133 (2011) 1–9.
- R.E. Collins, Flow of Fluids Through Porous Materials,
Petroleum Pub. Co., Tulsa, 1961, 1976.
- S. Gupta, S. Duhan, S. Sarkar, P. Munsi, A.K. Plappally, A Novel
Semi-Empirical Model for Lifetime Prediction of Gravity Based
Ceramic Filter and Permeability Estimation, Proceedings of
Desalination for the Environment, Clean Water and Energy,
Limassol, Cyprus May 22–May 26, 2023.
- J.J.M.J. Stephen, W. Freiman, The Fracture of Brittle Materials:
Testing and Analysis, 2nd ed., Wiley, New Jersey, 2019.
- M. Ahmad, S. Duhan, R.K. Satankar, A.K. Plappally, Long-Term
Reliability Assessment of Ceramic Water Filters: Strength and
Electro-Kinetic Parameter Studies, Proceedings of Desalination
for the Environment, Clean Water and Energy, Limassol,
Cyprus May 22–May 26, 2023.
- S. Olubayode, O. Awokola, E. Dare, O. Olateju, Suitability of
selected Nigeria clay deposit for production of clay based
ceramic water filters, Am. Chem. Sci. J., 12 (2016) 1–7.
- A.S. Grema, I.M. Idriss, A.N. Alkali, M.M. Ahmed, M.H. Iyodo,
Production of clay-based ceramic filter for water purification,
Eur. J. Eng. Technol. Res., 6 (2021) 140–143.
- S. Duhan, S.K. Adari, N. Kanwar, S. Gupta, A.K.P.M. Ahmad,
P.K. Dammala, M. Chhabra, A.K. Plappally, Suitability of
Clayey Soils from Jalore and Jodhpur, Rajasthan, India, for
the Production of 3-Liter Ceramic Water Filters, Proceedings
of Desalination for the Environment, Clean Water and Energy,
Limassol, Cyprus May 22–May 26, 2023.
- A.K. Nighojkar, A. Vijay, A. Kumavat, S. Gupta, R.K. Satankar,
A. Plappally, Use of marble and iron waste additives for
enhancing arsenic and E. coli contaminant removal capacity
and strength of porous clay ceramic materials for point of
use drinking water treatment, Desal. Water Treat., 157 (2019)
290–302.
- S. Gupta, R.K. Satankar, A. Kaurwar, U. Aravind, M. Sharif,
A. Plappally, Household production of ceramic water filters
in Western Rajasthan, India, Int. J. Serv. Learn. Eng. Humanit.
Eng. Soc. Entrepreneurship, 13 (2018) 53–66.
- M. Schnitzer, J.R. Wright, I. Hoffman, Use of thermobalance
in analysis of soils and clays, Anal. Chem., 31 (1959) 440–444.
- I. Perkin Elmer, Sta 6000, 2008, p. 8.
- C. Earnest, Compositional Analysis by Thermogravimetry,
ASTM 1916 Race Street Philadelphia, PA 19103, 1987.
- R. Deju, A. Cucos, M. Mincu, C. Tuca, Thermal characterization
of kaolinitic clay, Rom. J. Phys., 66 (2021) 1–8.
- A. Ouali, F. Sahnoune, M. Heraiz, H. Belhouchet, Sinterability
and thermal properties of cordierite ceramics prepared from
Algerian kaolinite and magnesium hydroxide, Mol. Cryst.
Liq. Cryst., 628 (2016) 65–71.
- ASTM E112, Standard Test Methods for Determining
Average Grain Size E112-10, ASTM E112-10, Vol. 96, 2010,
pp. 1–27, doi: 10.1520/E0112-10.Copyright.
- A. Rabbani, S. Ayatollahi, Comparing three image processing
algorithms to estimate the grain-size distribution of porous
rocks from binary 2D images and sensitivity analysis of the
grain overlapping degree, Spec. Top. Rev. Porous Media: Int. J.,
6 (2015) 71–89.
- ASTM International, Standard Test Methods for Determining
Average Grain Size, ASTM E112-10, Vol. 96, 2010, pp. 1–27.
- G.W. Uni and S. Brunauer, der Waals Adsorption of
Gases, Vol. 1139, 1940.
- A.K. Nighojkar, A.K. Agrawal, B. Singh, S. Gupta, R.K. Satankar,
J.M. Oommena, L. Davea, M. Sharifd, A.B.O. Soboyejoe,
A. Plappallya, Establishing correlations among pore structure,
surface roughness, compressive strength, and fracture
toughness of ceramic water filters local to Rajasthan, India,
Desal. Water Treat., 157 (2019) 332–341.
- J. Ondruška, T. Húlan, I. Sunitrová, Š. Csáki, G. Łagód,
A. Struhárová, A. Trník, Thermophysical properties of
kaolin–zeolite blends up to 1100°C, Crystals, 11 (2021) 165,
doi: 10.3390/cryst11020165.