Brahma, S., Islam, M. R., Shimo, S. S., & Dina, R. B. Influence of Natural and Artificial Mordants on the Dyeing
Performance of Cotton Knit Fabric with Natural Dyes.
IOSR Journal of Polymer and Textile Engineering, (2019),
01-06.
Bukhari, M. N., Islam, S., Shabbir, M., Rather, L. J., Shahid,
M., & Singh, U., (2017). Dyeing studies and fastness
properties of brown naphtoquinone colorant extract from
Juglans regia L. on natural protein fibre using different
metal salt mordants. Textiles and Clothing Sustainability,
3(3), 1–9.
Chaudhry, Siddiqui, S. I., Fatima, B., Tara, N., Rathi, G.,
& Chaudhry, S. A. Recent advances in remediation of
synthetic dyes from wastewaters using sustainable and
low-cost adsorbents. The impact and prospects of green
chemistry for textile technology. (2019), pp. 471-507).
Chawla, H., Parle, M., Sharma, K., & Yadav, M. (2016).
Beetroot:A Health Promoting Functional Food. Nutraceuticals, 1, 0976-3872.
Ding, Y. I., & Freeman, H. S. (2017). Mordant dye application on cotton; optimization and combination with natural
dyes. Coloration Technology, 133(5), 369–375.
Francine, U., Jeannette, U., & Pierre, R. J. Assessment of
antibacterial activity of neem plant (Azadirachta indica)
on Staphylococcus aureus and Escherichia coli. Journal
of Med Plants, (2015), 3(4), 85-91.
Frose, A., Schmidtke, K., Sukmann, T., Junger, I. J., &
Ehrmann, A. Application of natural dyes on diverse textile materials. International Journal for Light and Electron
Optics, 181(2018), (2019), 215–219.
Geelani, S. M., Ara, S., Mir, N. A., Bhat, S. J. A., & Mishra,
P. K. (2016). Dyeing and fastness properties of Quercus
robur with natural mordants on natural fibre. Textile and
Clothing Sustainability, 2(8), 1–10.
Ghouila, H., Meksi, N., Haddar, W., Mhenni, M., & Jannet,
H. (2012). Extraction, identification and dyeing studies
of Isosalipurposide, a natural chalcone dye from Acacia cyanophylla flowers on wool. Industrial Crops and
Products, 35, 31-36.8 (paperback). pp 70.
Gokhale, S. V., & Lele, S. S. (2014). Betalain content and
antioxidant activity of Beta vulgaris: Effect of hot air convective drying and storage. Journal of Food Processing
and Preservation, 38, 585–590.
Hamanthraj K.P.M, Desai S.M, & Bisht S.S. (2014). Optimization of Extraction Parameters for Natural Dye
form Pterocarpus Santalinus by Using Response Surface methodology. International Journal of Engineering
Research and Applications, 4(9 (Version 3)), 100- 108.
Hernandez-Martinez A.R., Estevez M., Vargas S., &
Rodríguez R. (2013). Stabilized Conversion Efficiency
and Dye-Sensitized Solar Cells from Beta vulgaris Pigment .International journal of molecular sciences, 14,
4081-93, DOI 10.3390/ijms14024081.
Hong, K. H. (2018). Effects of tannin mordanting on coloring
and functionalities of wool fabrics dyed with spent coffee
grounds. Fashion and Textiles, 5, 33.
Kechi, A., Chavan, R., & Moeckel, R. (2013). Dye Yield,
Color Strength and Dyeing Properties of Natural Dyes
Extracted from Ethiopian Dye Plants. Textiles and Light
Industrial Science and Technology, 2(3), 137-145.
Khan, A., Hussain M.T. & Jiang H. 2018. Dyeing of silk
fabric with natural dye from camphor (Cinnamomum
camphora) plant leaf extract. Coloration Technology.
doi:10.1111/cote.12338.
Kulkarni SS, Gokhale AV, Bodake UM, & Pathade GR
(2011) Cotton dyeing with natural dye extracted from
pomegranate (Punica granatum) Peel. Univers J Environ
Res Technol 1(2):135–139.
Kushwaha, R., Kumar, V., Vyas, G. & Kaur, J. (2018): Optimization of different variable for eco-friendly extraction
of betalains and phytochemicals from beetroot pomace.
Waste Biomass Valori, 9, 1485–1494.
Kusumawati, N., Santoso, A. B., Sianita, M. M., & Muslim,
S. Extraction, Characterization andApplication of Natural
Dyes from the Fresh Mangosteen (Garcinia mangostana
L.) Peel. International Journal on Advanced Science,
Engineering and Information Technology, (2017), 7(3),
878-884.
Li, H. X., Xu, B., Tang, L., Zhang, J. H., & Mao, Z. G.
Reductive decolorization of indigo carmine dye with
Bacillus sp. MZS10. International Biodeterioration &
Biodegradation, (2015), 103, 30-37.
Maran, J.P. & Priya, B. (2016): Multivariate statistical analysis and optimization of ultrasound-assisted extraction of
natural pigments from waste red beet stalks. J. Food Sci.
Tech., 53(1), 792–799.
Rather, L. J., Islam, S., Azam, M., Shabbir, M., Bukhari, M.
N., Shahid, M., Khan, M. A., Haque, Q. M. R., & Mohammad, F. (2016). Antimicrobial and fluorescence finishing
of woolen yarn with Terminalia arjuna natural dye as an
ecofriendly substitute to synthetic Antibacterial agents.
RSC Advances, 6, 39080–39094.
Rather, L. J., M. Shabbir, M. N. Bukhari, M. Shahid, M.
A. Khan, & F. Mohammad. 2016. Ecological dyeing
of woollen yarn with Adhatoda vasica natural dye in
the presence of biomordants as an alternative copartner
to metal mordants. Journal of Environmental Chemical Engineering 4:3041–49. doi:10.1016/j.jece.2016.
06.019.
Ravichandran, K., Saw, N.M.T., Mohdaly, A.A.A., Gabr,
A.M.M., & Smetanska, I. (2013): Impact of processing
of red beet on betalain content and antioxidant activity.
Food Res. Int., 50(2), 670–675.
Samanta A.K., & Konar A, (2011). Dyeing of Textiles with
Natural Dyes. India.
Sarhan, T. M., & Salem, A. A. Turmeric dyeing and chitosan/titanium dioxide nanoparticle colloid finishing of
cotton fabric. Indian Journal of Fibre & Textile Research,
(2018), 43(4), 464-473.
Saxena H.O, Tiwari R, & Pandey A.K. (2012). Optimization of Extraction & Dyeing Conditions of Natural Dyes
from Butea monosperma (Lam) Kuntze Flowers and
Development of Various Shades. Environmental & We an
International Journal of Science and Technology. 7, 29-35.
Simpson, J. T., Hunter, S. R., & Aytug, T. Superhydrophobic
materials and coatings: a review. Reports on Progress in
Physics, (2015), 78(8), 086501.
Singam, R. T., Marsi, N., Mamat, H., Mohd Rus, A. Z.,
Main, N. M., Huzaisham, N. A., & Mohd Fodzi, M. H.
The Preparation and Characterization on Natural Dyes
Based on Neem, Henna and Turmeric for Dyeing on Cotton with Superhydrophobic Coating. International Journal
of Integrated Engineering, (2019), 11(7), 137-143.
SinghA, Ganesapillai M, & Gnanasundaram N: Optimization
of extraction of betalain pigments from Beta vulgaris peels
by microwave pretreatment. IOP Conf Ser Mater Sci Eng
2017; 263: 032004.
Stewart, C. W. Comparative Study of the Environmental
Impacts of Standardized Dyeing Systems Using Natural
and Synthetic Dyes on Knitted Cotton Fabric. Fiber and
Polymer Science. (2017), 3(1), 76-84.
Sufian,A., Hannan,A., Rana, M., & Huq, M. Z. (2016). Comparative study of fastness properties and color absorbance
criteria of conventional and avitera reactive dyeing on
cotton knit fabric. European Scientific Journal, 12(15),
352–364.
190
Performance of Cotton Knit Fabric with Natural Dyes.
IOSR Journal of Polymer and Textile Engineering, (2019),
01-06.
Bukhari, M. N., Islam, S., Shabbir, M., Rather, L. J., Shahid,
M., & Singh, U., (2017). Dyeing studies and fastness
properties of brown naphtoquinone colorant extract from
Juglans regia L. on natural protein fibre using different
metal salt mordants. Textiles and Clothing Sustainability,
3(3), 1–9.
Chaudhry, Siddiqui, S. I., Fatima, B., Tara, N., Rathi, G.,
& Chaudhry, S. A. Recent advances in remediation of
synthetic dyes from wastewaters using sustainable and
low-cost adsorbents. The impact and prospects of green
chemistry for textile technology. (2019), pp. 471-507).
Chawla, H., Parle, M., Sharma, K., & Yadav, M. (2016).
Beetroot:A Health Promoting Functional Food. Nutraceuticals, 1, 0976-3872.
Ding, Y. I., & Freeman, H. S. (2017). Mordant dye application on cotton; optimization and combination with natural
dyes. Coloration Technology, 133(5), 369–375.
Francine, U., Jeannette, U., & Pierre, R. J. Assessment of
antibacterial activity of neem plant (Azadirachta indica)
on Staphylococcus aureus and Escherichia coli. Journal
of Med Plants, (2015), 3(4), 85-91.
Frose, A., Schmidtke, K., Sukmann, T., Junger, I. J., &
Ehrmann, A. Application of natural dyes on diverse textile materials. International Journal for Light and Electron
Optics, 181(2018), (2019), 215–219.
Geelani, S. M., Ara, S., Mir, N. A., Bhat, S. J. A., & Mishra,
P. K. (2016). Dyeing and fastness properties of Quercus
robur with natural mordants on natural fibre. Textile and
Clothing Sustainability, 2(8), 1–10.
Ghouila, H., Meksi, N., Haddar, W., Mhenni, M., & Jannet,
H. (2012). Extraction, identification and dyeing studies
of Isosalipurposide, a natural chalcone dye from Acacia cyanophylla flowers on wool. Industrial Crops and
Products, 35, 31-36.8 (paperback). pp 70.
Gokhale, S. V., & Lele, S. S. (2014). Betalain content and
antioxidant activity of Beta vulgaris: Effect of hot air convective drying and storage. Journal of Food Processing
and Preservation, 38, 585–590.
Hamanthraj K.P.M, Desai S.M, & Bisht S.S. (2014). Optimization of Extraction Parameters for Natural Dye
form Pterocarpus Santalinus by Using Response Surface methodology. International Journal of Engineering
Research and Applications, 4(9 (Version 3)), 100- 108.
Hernandez-Martinez A.R., Estevez M., Vargas S., &
Rodríguez R. (2013). Stabilized Conversion Efficiency
and Dye-Sensitized Solar Cells from Beta vulgaris Pigment .International journal of molecular sciences, 14,
4081-93, DOI 10.3390/ijms14024081.
Hong, K. H. (2018). Effects of tannin mordanting on coloring
and functionalities of wool fabrics dyed with spent coffee
grounds. Fashion and Textiles, 5, 33.
Kechi, A., Chavan, R., & Moeckel, R. (2013). Dye Yield,
Color Strength and Dyeing Properties of Natural Dyes
Extracted from Ethiopian Dye Plants. Textiles and Light
Industrial Science and Technology, 2(3), 137-145.
Khan, A., Hussain M.T. & Jiang H. 2018. Dyeing of silk
fabric with natural dye from camphor (Cinnamomum
camphora) plant leaf extract. Coloration Technology.
doi:10.1111/cote.12338.
Kulkarni SS, Gokhale AV, Bodake UM, & Pathade GR
(2011) Cotton dyeing with natural dye extracted from
pomegranate (Punica granatum) Peel. Univers J Environ
Res Technol 1(2):135–139.
Kushwaha, R., Kumar, V., Vyas, G. & Kaur, J. (2018): Optimization of different variable for eco-friendly extraction
of betalains and phytochemicals from beetroot pomace.
Waste Biomass Valori, 9, 1485–1494.
Kusumawati, N., Santoso, A. B., Sianita, M. M., & Muslim,
S. Extraction, Characterization andApplication of Natural
Dyes from the Fresh Mangosteen (Garcinia mangostana
L.) Peel. International Journal on Advanced Science,
Engineering and Information Technology, (2017), 7(3),
878-884.
Li, H. X., Xu, B., Tang, L., Zhang, J. H., & Mao, Z. G.
Reductive decolorization of indigo carmine dye with
Bacillus sp. MZS10. International Biodeterioration &
Biodegradation, (2015), 103, 30-37.
Maran, J.P. & Priya, B. (2016): Multivariate statistical analysis and optimization of ultrasound-assisted extraction of
natural pigments from waste red beet stalks. J. Food Sci.
Tech., 53(1), 792–799.
Rather, L. J., Islam, S., Azam, M., Shabbir, M., Bukhari, M.
N., Shahid, M., Khan, M. A., Haque, Q. M. R., & Mohammad, F. (2016). Antimicrobial and fluorescence finishing
of woolen yarn with Terminalia arjuna natural dye as an
ecofriendly substitute to synthetic Antibacterial agents.
RSC Advances, 6, 39080–39094.
Rather, L. J., M. Shabbir, M. N. Bukhari, M. Shahid, M.
A. Khan, & F. Mohammad. 2016. Ecological dyeing
of woollen yarn with Adhatoda vasica natural dye in
the presence of biomordants as an alternative copartner
to metal mordants. Journal of Environmental Chemical Engineering 4:3041–49. doi:10.1016/j.jece.2016.
06.019.
Ravichandran, K., Saw, N.M.T., Mohdaly, A.A.A., Gabr,
A.M.M., & Smetanska, I. (2013): Impact of processing
of red beet on betalain content and antioxidant activity.
Food Res. Int., 50(2), 670–675.
Samanta A.K., & Konar A, (2011). Dyeing of Textiles with
Natural Dyes. India.
Sarhan, T. M., & Salem, A. A. Turmeric dyeing and chitosan/titanium dioxide nanoparticle colloid finishing of
cotton fabric. Indian Journal of Fibre & Textile Research,
(2018), 43(4), 464-473.
Saxena H.O, Tiwari R, & Pandey A.K. (2012). Optimization of Extraction & Dyeing Conditions of Natural Dyes
from Butea monosperma (Lam) Kuntze Flowers and
Development of Various Shades. Environmental & We an
International Journal of Science and Technology. 7, 29-35.
Simpson, J. T., Hunter, S. R., & Aytug, T. Superhydrophobic
materials and coatings: a review. Reports on Progress in
Physics, (2015), 78(8), 086501.
Singam, R. T., Marsi, N., Mamat, H., Mohd Rus, A. Z.,
Main, N. M., Huzaisham, N. A., & Mohd Fodzi, M. H.
The Preparation and Characterization on Natural Dyes
Based on Neem, Henna and Turmeric for Dyeing on Cotton with Superhydrophobic Coating. International Journal
of Integrated Engineering, (2019), 11(7), 137-143.
SinghA, Ganesapillai M, & Gnanasundaram N: Optimization
of extraction of betalain pigments from Beta vulgaris peels
by microwave pretreatment. IOP Conf Ser Mater Sci Eng
2017; 263: 032004.
Stewart, C. W. Comparative Study of the Environmental
Impacts of Standardized Dyeing Systems Using Natural
and Synthetic Dyes on Knitted Cotton Fabric. Fiber and
Polymer Science. (2017), 3(1), 76-84.
Sufian,A., Hannan,A., Rana, M., & Huq, M. Z. (2016). Comparative study of fastness properties and color absorbance
criteria of conventional and avitera reactive dyeing on
cotton knit fabric. European Scientific Journal, 12(15),
352–364.
190
