84
Bioremediation for Sustainable Environmental Cleanup
Phan Thi, L. A., N. T. Ngoc, N. T. Quynh, N. V. Thanh, T. T. Kim, D. H. Anh and P. H. Viet. 2020. Polycyclic aromatic
hydrocarbons (PAHs) in dry tea leaves and tea infusions in Vietnam: contamination levels and dietary risk
assessment. Environ. Geochem. Health. 42(9): 2853–2863.
Prasad, M. N. V. 2007. Sunflower (Helinathus annuus L.)—a potential crop for environmental industry/girasol
(Helianthus annuus L.)-cultivo potencial para la industria ecológica/le tournesol (Helianthus annuus L.)
culture potentielle dans l’industrie écologique. Helia. 30(46): 167–174.
Premnath, N., K. Mohanrasu, R. G. R. Rao, G. H. Dinesh, G. S. Prakash, V. Ananthi, K. Ponnuchamy, G. Muthusamy
and A. Arun. 2021. A crucial review on polycyclic aromatic Hydrocarbons-Environmental occurrence and
strategies for microbial degradation. Chemosphere. 280: 130608.
Qu, C., S. Albanese, A. Lima, D. Hope, P. Pond, A. Fortelli, N. Romano, P. Cerino, A. Pizzolante and B. De Vivo.
2019. The occurrence of OCPs, PCBs, and PAHs in the soil, air, and bulk deposition of the Naples metropolitan
area, southern Italy: implications for sources and environmental processes. Environ. Int. 124: 89–97.
Radziemska, M., M. D. Vaverková and A. Baryła. 2017. Phytostabilization—management strategy for stabilizing
trace elements in contaminated soils. Int. J. Environ. Res. Public Health. 14(9): 958.
Rahman,
M.
A.
and
H.
Hasegawa.
2011.
Aquatic
arsenic:
phytoremediation
using
floating
macrophytes. Chemosphere. 83(5): 633–646.
Rajan, S., K. R. Rex, M. Pasupuleti, J. Muñoz-Arnanz, B. Jiménez and P. Chakraborty. 2021. Soil concentrations,
compositional profiles, sources and bioavailability of polychlorinated dibenzo dioxins/furans, polychlorinated
biphenyls and polycyclic aromatic hydrocarbons in open municipal dumpsites of Chennai city, India. Waste
Manag. 131: 331–340.
Rajkumari, J., Y. Choudhury, K. Bhattacharjee and P. Pandey. 2021. Rhizodegradation of pyrene by a non
pathogenic Klebsiella pneumoniae isolate applied with Tagetes erecta L. and changes in the rhizobacterial
community. Front. Microbiol. 12: 593023.
Ray, S., P. S. Khillare, T. Agarwal and V. Shridhar. 2008. Assessment of PAHs in soil around the international airport
in Delhi, India. J. Hazard. Mater. 156(1-3): 9–16.
Ren, G., W. Ren, Y. Teng and Z. Li. 2015. Evident bacterial community changes but only slight degradation when
polluted with pyrene in a red soil. Front. Microbiol. 6: 22.
Rengarajan, T., P. Rajendran, N. Nandakumar, B. Lokeshkumar, P. Rajendran and I. Nishigaki. 2015. Exposure to
polycyclic aromatic hydrocarbons with special focus on cancer. Asian Pac. J. Trop. Biomed. 5(3): 182–189.
Sakakibara, M., A. Watanabe, M. Inoue, S. Sano and T. Kaise. 2010. Phytoextraction and phytovolatilization of arsenic
from As-contaminated soils by Pteris vittata. Vol. 121, p. 26. In: Proceedings of the Annual International
Conference on Soils, Sediments, Water And Energy.
Salehi, N., A. Azhdarpoor and M. Shirdarreh. 2020. The effect of different levels of leachate on phytoremediation
of pyrene-contaminated soil and simultaneous extraction of lead and cadmium. Chemosphere. 246: 125845.
Schwab, A. P. 1998. Phytoremediation of soils contaminated with PAHs and other petroleum compounds. In: Beneficial
effects of vegetation in contaminated soils workshop, Kansas State University, Manhattan, KS.
Seth, C. S. 2012. A review on mechanisms of plant tolerance and role of transgenic plants in environmental clean
up. Bot. Rev. 78(1): 32–62.
Sharma, P. and S. Pandey. 2014. Status of phytoremediation in world scenario. Int. J. Environ. Bioremediat.
Biodegrad. 2(4): 178–191.
Shrestha, B., S. Lipe, K. A. Johnson, T. Q. Zhang, W. Retzlaff and Z. Q. Lin. 2006. Soil hydraulic manipulation and
organic amendment for the enhancement of selenium volatilization in a soil–pickleweed system. Plant and
Soil. 288(1): 189–196.
Shukla, S., R. Khan, P. Bhattacharya, S. Devanesan and M. S. AlSalhi. 2022. Concentration, source apportionment and
potential carcinogenic risks of polycyclic aromatic hydrocarbons (PAHs) in roadside soils. Chemosphere.
292:
133413.
Singh, S. K. and A. K. Haritash. 2019. Polycyclic aromatic hydrocarbons: soil pollution and remediation. Int. J. Sci.
Environ. Technol. 16(10): 6489–6512.
Sreelal, G. and R. Jayanthi. 2017. Review on phytoremediation technology for removal of soil contaminant. Indian
J. Sci. Res. 14(1): 127–130.
Srivastava, S. and M. Kumar. 2019. Biodegradation of polycyclic aromatic hydrocarbons (PAHs): a sustainable
approach. pp. 111–139. In: Sustainable
Green Technologies for Environmental Management. Springer,
Singapore.
Suman, S., A. Sinha and A. Tarafdar. 2016. Polycyclic aromatic hydrocarbons (PAHs) concentration levels,
pattern, source identification and soil toxicity assessment in urban traffic soil of Dhanbad, India. Sci.
Total
Environ. 545: 353–360.
Tarafdar, A. and A. Sinha. 2018. Public health risk assessment with bioaccessibility considerations for soil PAHs at
oil refinery vicinity areas in India. Sci.
Total Environ. 616: 1477–1484.