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List of publications (65), Journals: 59, book chapters: 6
2024
1.
Kumari, R., Khan, M.A., Mahto, M., Qaiyum, M. A., Mohanta,
J., Dey, B., Samal, P. P., Dey, S*.
(2024) Strategically dewaxed honeycomb powder, a promising and eco-friendly
alternative for the removal of malachite green through fixed bed column. Journal
of Water Chemistry and Technology. Accepted.
2. Jangir, A., Samal, P.P., Jangir, A.K., Dey, B., Dey, S*. (2024) Exploring Ficus religiosa inflorescence powder as an eco-friendly and sustainable solution for the removal of Crystal Violet with a disposal solution. Environmental Monitoring and Assessment. https://doi.org/10.1007/s10661-024-12866-x
3.
Kumari, R., Sircar, S.*, Dey, S.,
Qaiyum, M.A., Bist, N., Yadav, K. (2024) Sequestration of a food dye (sunset
yellow) from wastewater using natural adsorbent: a kinetic, isotherm and
interference study. International Journal of Phytoremediation. https://doi.org/10.1080/15226514.2024.2349964
4. Mohanta,
J., Dey, B., Dey, S*. (2024)
Magnetic cobalt and nickel oxide nanoparticles for excellent arsenic withdrawal
from water. Chemical Papers. https://doi.org/10.1007/s11696-024-03433-2
5. Qaiyum,
M.A., Bharadwaj, B., Samal, P.P., Dey, B., Dey,
S*. (2024) Nature’s allies: unleashing the potential of oxalic
acid‑modified kashful stalks for methylene blue removal from water
and wastewater. International Journal of Environmental
Science and Technology. Accepted. https://doi.org/10.1007/s13762-024-05545-4
6. Samal,
P. P., Qaiyum, M. A., Ghosh, A., Das, S., Swain, J., Kumari, R., Mohanta, J.,
Dey, B., Dey, S* (2024) Green
synthesis of goethite and boehmite embedded activated green ply sawdust for
spectacular Cr(VI) adsorption: Batch and column study. Journal of Hazardous Materials
Advances. https://doi.org/10.1016/j.hazadv.2024.100405
7.
Parida, S., Samal, P.P., Dey, B., Dey,
S* (2024) Wodyetia
bifurcata (foxtail palm tree) leaves as a super-augmented instantaneous
methylene blue remover from simulated water and wastewater. Environmental
Monitoring and Assessment. Accepted.
8.
Barik, H., Qaiyum, M.A., Dey, B., Dey,
S* (2024) Triggered dual activation of de-oiled mahua seed cake by hydrogen
peroxide / phosphoric acid towards a colored wastewater treatment. Biomass Conversion and Biorefinery.
9.
Barik, H., Qaiyum, M.A., Samal,
P.P., Dey, B., Dey, S* (2024) Citric
acid activated Lotus (Nelumbo nucifera) seed pod for efficient and inexpensive
scavenging of crystal violet from contaminated water. Biomass Conversion and Biorefinery.
10.
Kumari, P., Samal, P.P., Dey, B., Dey,
S*. (2024) Ixora Coccinea
(Jungle geranium) as a scintillating scavenger of recalcitrant crystal violet
from wastewater. Separation Science and Technology.
2023
11. Samal,
P.P., Swain, J., Qaiyum, M.A., Ghosh, A., Mondal, D., Dey, B., Dey, S* (2023) Green synthesis of MnO2-embedded
Rauvolfia tetraphylla leaves (MnO2@RTL)
for Crystal violet dye removal and as an antibacterial agent. Environmental
Science and Pollution Research. https://doi.org/10.1007/s11356-023-31442-3
12.
Qaiyum, M. A., Samal, P. P., Dey,
B., Dey, S*. (2023) Synthesis of phyto-magnetic Fe3O4@Syzygium cumini and its application for
decontamination of Eriochrome Black T dye from aqueous solution and wastewater.
Biomass Conversion and Biorefinery.
https://doi.org/10.1007/s13399-023-04372-w
13.
Kumari, R., Mohanta, J., Sambasivaiah, B.,
Qaiyum, M. A., Dey, B., Samal, P. P. Dutta, S., Dey, S* (2023) Dye sequestration from aqueous phase using natural and synthetic
adsorbents in batch mode: Present Status and Future Perspectives.
International Journal of Environmental Science and Technology. https://doi.org/10.1007/s13762-023-04782-3
14.
Das, S., Samal, P. P., Qaiyum, M.
A., Dutta, S., Dey, B., Dey, S* (2023) Neolamarckia
cadamba
(Cadamba) waste pulp as a natural and techno-economic scavenger for methylene
blue from aqueous solutions. International Journal of Phytoremediation.
https://doi.org/10.1080/15226514.2023.2232861
15.
Sethi, G. K., Qaiyum, M. A.,
Samal, P. P., Dutta, S., Dey, B., Dey, S* (2023) Phyto-magnetic and techno-economic
peanut-shell embedded ferrite as a scavenger for classic removal of
recalcitrant crystal violet dye from wastewater. Biomass Conversion and Biorefinery. https://doi.org/10.1007/s13399-023-04461-w
16.
Samal, P. P., Qaiyum, M. A.,
Dutta, S., Dey, B., Dey, S*. (2023) Augmented dye eradication
from wastewater using alkali-aided, reinforced waste acacia (Acacia auriculiformis) leaves.
International Journal of Phytoremediation. https://doi.org/10.1080/15226514.2023.2220404
17.
Qaiyum, M. A., Samal, P. P.,
Dutta, S., Dey, B., Dey, S*. (2023) Non-conventional, Burnt Shorea robusta Leaf Extract Mediated
Green Synthesis of Zinc Oxide Nanoparticles and Facile Removal of Eriochrome
Black T dye from water. International Journal of Phytoremediation. https://doi.org/10.1080/15226514.2023.2256903
18.
Bharadwaj, B., Dutta, S., Qaiyum,
M. A., Samal, P. P., Dey, B., Dey, S* (2023) Pristine wild sugarcane (Saccharum
spontaneum) as a biosorbent for removal of Methylene Blue from wastewater:
Isotherm, Kinetics and Regeneration Studies. International Journal of
Phytoremediation. http://doi.org/10.1080/15226514.2023.2260002
19.
Panda, A., Qaiyum, M. A., Samal, P. P., Dey, B., Dey, S.* (2023) Think before throw:
Waste chilli stalk powder for facile scavenging of cationic dyes from water. Environmental
Monitoring and Assessment. http://doi.org/10.1007/s10661-023-12243-0
20.
Swain, J., Samal, P. P., Qaiyum,
M. A., Dutta, S., Dey, B., Dey, S* (2023) Base
modified waste Rauvolfia tetraphylla leaves as a rapid
scavenger of crystal violet containing wastewater. Water Conservation Science and
Engineering. http://doi.org/10.1007/s41101-023-00233-9
21.
Mohanta, J., Qaiyum, M. A., Samal, P. P. Dutta,
S., Dey, B., Dey, S*
(2023) Starch Grafted Pyrolusite
Composite for Enhanced Removal of Malachite Green from Water and Wastewater. Water, Air, and Soil Pollution. https://doi.org/10.1007/s11270-023-06841-4
22.
Dutta, L., Sethi, G. K., Dey, S.* (2023) A comprehensive and critical assessment on the
efficiency of natural and synthetic adsorbents for the removal of recalcitrant
malachite green from water: present level and future perspectives. Korean
Journal of Chemical Engineering (accepted, in press).
23.
Sambasivaiah, B., Kumari, R., Dey, S* (2023) Direct Incorporation of Metal Ion into β-substituted
porphyrinogen Skelton. Journal of the Iranian Chemical Society.
https://doi.org/10.1007/s13738-023-02908-5
24.
Samal, P. P., Das, S., Qaiyum, M. A., Ghosh, A., Dey, B., Dey, S* (2023) Polypyrrole-embedded
magnetic Neolamarckia cadamba flower
biochar for outstanding Cr(VI) removal from wastewater, Biomass Conversion and
Biorefinery. https://doi.org/10.1007/s13399-023-05180-y
2022
25. Samal, P. P., Kumari, J., Qaiyum, M. A., Mohanta,
J., Kumari, R., Dutta, S., Dey, B., Dey, S*. (2022) Thiosulfate
impregnated spent tea leaves for the remarkable uptake of malachite green.
International Journal of Phytoremediation (accepted) https://doi.org/10.1080/15226514.2022.2161465
26.
Srivastava, K*, Dey,
S. (2022) ‘Perspectives of Gender Inequality in Higher Education in India’
in book ‘Multi-faceted Perspectives of Gender Education: Reaching the
unreached’ Ed. Oommen, N. M., Council for Educational Administration and
Management, Thiruvananthapuram, India. ISBN: 978–93–5593–442–0
27.
Mahato, R., Qaiyum, M. A., Samal,
P. P., Dutta, S., Dey, B., Dey, S*. (2022) Exploring the promising
potential of fallen Bamboo leaves (Bambusa
bambos) for efficient removal of Crystal violet from water and industrial
wastewater. International Journal of Phytoremediation, accepted (in press). https://doi.org/10.1080/15226514.2022.2125498
28.
Rout, A., Qaiyum, M. A., Samal, P.
P., Dutta, S., Dey, B., Dey, S*. (2022) Brinjal
(Solanum melongena) stalk waste as an effective scavenger for
Eriochrome Black-T from water and wastewater: an Approach towards waste to best.
International Journal of Phytoremediation, accepted(in press). http://dx.doi.org/10.1080/15226514.2022.2123445
29.
Qaiyum, M. A., Sahu, P. R., Samal,
P. P., Dutta, S., Dey, B., Dey, S*. (2022) Towards
a Win-win chemistry: Extraction of C.I. orange from
Kamala fruit (Mallotus philippensis),
and simultaneous exercise of its peel for the removal of methylene blue from
water. International Journal of Phytoremediation. in press. https://doi.org/10.1080/15226514.2022.2119936
30.
Samal, P. P., Qaiyum, M. A.,
Dutta, S., Dey, B., Dey, S*. (2022) Towards circular economy:
Chemicals packaging waste as a promising scavenger for neutral red from water
and wastewater. International Journal of Environmental Science and Technology
(accepted) https://doi.org/10.1007/s13762-022-04670-2
31.
Dey, S.*,
Chakraborty, R., Mohanta, J., & Dey, B. (2022) Triccosanthes cucumerina: A
Potential Biomass for Efficient Removal of Methylene Blue from Water. Bioremediation
Journal, in press, https://doi.org/10.1080/10889868.2022.2086530
32.
Qaiyum, M. A., Kumari, R., Mohanta, J., Samal, P. P., Dey,
B., & Dey, S* (2022). Adsorptive Removal of Malachite Green from
Water Using Ethylenediamine Fabricated Ni–Cr Bimetallic Composite. Journal of Cluster Science, in
press, https://doi.org/10.1007/s10876-022-02270-1
33.
Dwivedi, S., & Dey,
S* (2022) Review on Biochar as an adsorbent material for removal of dyes
from waterbodies. International Journal of Environmental Science and Technology,
in press. https://doi.org/10.1007/s13762-022-04364-9
34.
Dey, S.*,
Bhagat, P., Mohanta, J., & Dey, B. (2022), Methylene blue removal using
Eucalyptus Leaves: A Low Cost Protocol towards Environmental Sustainability. European
Journal of Advanced Chemistry Research, 3, 1-11. https://doi.org/10.24018/ejchem.2022.3.1.82
35.
Samal, P. P., & Dey,
S* (2022). Book chapter: Zirconium based Adsorbents as Promising Materials
for the Sequestration of Dyes and Heavy Metals from Waterbody. In ‘Advances in Materials Science Research’
Ed. Maryann C. Wythers. Nova Science Publishers, Hauppauge, NewYork, USA. ISBN:
978-1-68507-856-0
2021
36. Qaiyum,
M. A., Mohanta, J., Kumari, R., Samal, P. P., Dey, B., & Dey, S* (2021)
Alkali treated water chestnut (Trapanatans L.) shells as a promising
phytosorbent for malachite green removal from water. International
Journal of Phytoremediation, 24 (8), 822-830. https://doi.org/10.1080/15226514.2021.1977912
37.
Mohanta, J., Kumari, R., Qaiyum, M. A., Dey, B., & Dey,
S.* (2021) Alkali assisted hydrophobic reinforcement of coconut fiber for
enhanced removal of cationic dyes: equilibrium, kinetics and thermodynamic
insight. International Journal of Phytoremediation., 23,
1423-1431. https://doi.org/10.1080/15226514.2021.1901850
38.
Mohanta, J., Kumari, R., Dey, B., & Dey, S.*
(2021) Highly Porous Iron–Zirconium-Zinc Ternary Metal Oxide: Cost Effective
Synthesis and Efficient Removal of Malachite Green from Water. Journal of
Chemical Engineering & Data. 66(1), 297-307. https://doi.org/10.1021/acs.jced.0c00681
2020
39. Kumari,
R., Nanda, K. P., Firdaus, H.*, Dey, S.*
(2020) COVID-19: A Critical Review on Viral Biochemistry, Environmental
Transmission, Therapeutics and Safety Measures. European Journal of Biology and
Biotechnology, 1(6). https://doi.org/10.24018/ejbio.2020.1.6.125
40.
Kumari, R., Khan, M. A., Mahto, M.,
Qaiyum, M. A., Mohanta, J., Dey, B., & Dey, S*. (2020). Dewaxed
Honeycomb as an Economic and Sustainable Scavenger for Malachite Green from
Water. ACS Omega, 5(31), 19548–19556. https://doi.org/10.1021/acsomega.0c02011 (Highlighted in ACS Asia highlights as feature article,
August 2020 newsletter)
41.
Mohanta, J., Dey, B., & Dey, S*.
(2020). Magnetic Cobalt Oxide Nanoparticles: Sucrose-Assisted Self-Sustained
Combustion Synthesis, Characterization, and Efficient Removal of Malachite
Green from Water. Journal of Chemical & Engineering Data, 65(5),
2819–2829. https://doi.org/10.1021/acs.jced.0c00131 (Appeared as front cover
page, May 2020 issue)
42.
Mohanta, J., Dey, B., & Dey, S*.
(2020). Highly porous iron-zirconium binary oxide for efficient removal of
Congo Red from water. Desalination and Water Treatment, 189,
227–242. https://doi.org/10.5004/dwt.2020.25570
43.
Mohanta, J., Dey, B., &Dey, S*.
(2020). Sucrose-Triggered, Self-Sustained Combustive Synthesis of Magnetic
Nickel Oxide Nanoparticles and Efficient Removal of Malachite Green from Water.
ACS Omega, 5(27), 16510–16520. https://doi.org/10.1021/acsomega.0c00999
2019
44. Kumari, R., Mohanta, J., Dey, B., &Dey, S*.
(2019). Eucalyptus leaf powder as an efficient scavenger for Congo red from
water: Comprehensive batch and column investigation. Separation Science
and Technology, 55(17), 3047-3059. https://doi.org/10.1080/01496395.2019.1670208
45.
Kumari, R., &Dey, S*.
(2019). A breakthrough column study for removal of malachite green using
coco-peat. International Journal of Phytoremediation, 21(12),
1263–1271. https://doi.org/10.1080/15226514.2019.1633252
46.
Kumari, R., &Dey, S*.
(2019). Synthesis of porous iron – zirconium mixed oxide fabricated ethylene
diamine composite for removal of cationic dye. Desalination and Water
Treatment, 158, 319–329. https://doi.org/10.5004/dwt.2019.24223
2018
47. Dey, B., Dipty, L., Dey, S*. (2018). Efficient
Removal of Malachite Green using Saal (Shorearobusta) Flower from Contaminated
Water. International Journal of Green and Herbal Chemistry, 7(2).
392-405. https://doi.org/10.24214/ijghc/gc/7/2/39205
48.
Kumari, R., & Dey, S*.
(2018). Facile Removal of Congo Red using Mahua (Madhuca longifolia) Seeds, A Low Cost Adsorbent. International
Journal of Green and Herbal Chemistry, 7(2). 237-250. https://doi.org/10.24214/ijghc/gc/7/2/23750
2017
49.
Sambasivaiah,
B., Kumari, R., &Dey, S*. (2017). Synthesis of
β-octabromoMesoTetracycloheptylPorphyrinogen and Its Application in Arsenic
Removal. Journal of Applicable Chemistry, 6, 1031–1039.
50.
Srivastava,
K., &Dey, S. (2017) Role of Digital Technology in Teaching Learning
Process. IOSR Journal of Humanities and Social Science, 23,
74-79.
Before 2017
51.
Kumari,
B., Dey, S*. (2012) Effect of
Environmental Change on Groundwater Quality. International Research Journal
Lab to Land, 4, 89-92.
52.
Dey, S., Pal, K., & Sarkar, S. (2008). Synthesis of β-octabromocalix[4]pyrroles
and conformational diversity in their acetone inclusion complexes. Tetrahedron
Letters, 49(6), 960–964. https://doi.org/10.1016/j.tetlet.2007.12.025
53.
Dey, S., Pal, K., & Sarkar, S. (2007). Thermally induced
reversible conformational changes in the host–guest adduct of
meso-tetramethyltetrakis(ethyl)calix[4]pyrrole. Tetrahedron Letters,
48(31), 5481–5485. https://doi.org/10.1016/j.tetlet.2007.05.168
54.
Dey, S., Pal, K., & Sarkar, S. (2006). An efficient and
eco-friendly protocol to synthesize calix[4]pyrroles. Tetrahedron Letters,
47(33), 5851–5854. https://doi.org/10.1016/j.tetlet.2006.06.085
55.
Dey, S.,
Chatterjee, S., Sarkar, S. (2005) Direct
and Indirect Arsenic Release in from Soaps by Unhygienic use inTube wells. Current
Science.
89(11), 1913-1916.
56.
Bhattacharya,
D., Dey, S., Maji, S., Pal, K., & Sarkar, S. (2005). Direct
Incorporation of a Ferric Ion in the Porphyrinogen Core:
Tetrakis(cyclohexyl)iron Porphyrinogen Anion with Different Conformers and Its
Reaction with Iodine. Inorganic Chemistry, 44, 7699–7701. https://doi.org/10.1021/ic050890p.s001
57.
Dey, S., Goswami, S., & Ghosh, U. C. (2004). Hydrous Ferric
Oxide (HFO)—a Scavenger for Fluoride from Contaminated Water. Water, Air,
& Soil Pollution, 158(1), 311–323. https://doi.org/10.1023/b:wate.0000044854.71497.b6
58.
Goswami,
S., Dey, S., & Ghosh, U.C. (2004).“Studies on
Removal of Fluoride by Hydrated Zirconium Oxide (HZO)Chemical and Environmental Research, (13), 117-126.
59.
Manna,
B. R., Dey, S., Debnath, S., & Ghosh, U. C. (2003). Removal of
Arsenic from Groundwater using Crystalline Hydrous Ferric Oxide (CHFO). Water
Quality Research Journal of Canada, 38(1), 193–210. https://doi.org/10.2166/wqrj.2003.013
Books and Chapters
1. Ray,
U., Dey, S., &Sarma, R. (2016). Lupungutu: Exploring relationship
with Tribes and Waterbodies. In Tribes and Contemporary India: Orality,
Identity and Development. Today & Tomorrow Printers and
Publishers, India.
2. Mohanta,
J., Xalxo, R., Dey, B.,&Dey, S*. (2020) Efficient Removal of
Malachite Green from Contaminated Water using Pyrolusite, book title: ‘Green
Energy and Efficient Technology Materials’ by Lap Lambert Academic
publishers, U.K., pp 21-28.
3. Samal,
P. P., & Dey, S* (2022).
Zirconium based Adsorbents as Promising Materials for the Sequestration of Dyes
and Heavy Metals from Waterbody. In ‘Advances
in Materials Science Research’ Ed. Maryann C. Wythers. Nova Science
Publishers, Hauppauge, NewYork, USA. ISBN: 978-1-68507-856-0
4. Srivastava,
K*, Dey, S. (2022) ‘Perspectives of
Gender Inequality in Higher Education in India’ in book ‘Multi-faceted
Perspectives of Gender Education: Reaching the unreached’ Ed. Oommen, N. M.,
Council for Educational Administration and Management, Thiruvananthapuram,
India. ISBN: 978–93–5593–442–0
5. Samal, P.P., Dey, S* (2024) Phytosorption as
a promising and sustainable alternative for wastewater treatment. Book chapter,
in book ‘Recent Advances in Bioremediation and Phytoremediation’ – accepted for
publication.
6. Dey, S* (2024) Dynamic
and paradigm shift towards employability: real-time vision of NEP 2020.
Proceedings of the national conference on NEP-2020.
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