52
A. Arivoli et al.
Reddy SSG, Raju AJ, Kumar BM (2015) Phytoremediation of sugar industrial water effluent using
various hydrophytes. Int J Environ Sci 5(6):1147–1158
Roy PR, Prasad J, Joshi AP (2007) Effect of sugar factory effluent on some physico-chemical
properties of soils- A case study. J Environ Sci Eng 49(4):277–282
Sahu O (2018) Assessment of sugarcane industry: Suitability for production, consumption, and
utilization. Ann Agrarian Sci 16(4):389–395
Salequzzaman M, Tariqul SM, Tasnuva Islam A, Kashem MA, al Masud MM (2008) Environmental
impact of sugar industry—a case study on Kushtia sugar mills in Bangladesh. J Innov Dev Strat
2(3):31–35
Saranraj P, Stella D (2012) Bioremediation of sugar mill effluent by immobilized bacterial
consortium. Int J Res Pure Appl Microbiol 2(4):43–48
Siddiqui WA, Waseem M (2012) A comparative study of sugar mill treated and untreated effluent—a
case study. Orient J Chem 28(4):1899–1904
Solomon SK (2005a) Environmental pollution and sugar industry in India its management in: an
appraisal. Sugar Tech 7(1):77–81
Solomon SK (2005b) Environmental pollution and its management in sugar industry in India: an
appraisal. Sugar Tech 7(1):77–81
Umashanker S, Bishnoi NR (2018) Assessment of removal efficiency of total suspended solids
(TSS) from secondary treated effluent using a multigrade multimedia filtration technique. Ann
Agri Bio Res 23(1):74–77
Valappil M, Devuyst D, Hens L (1994) Evaluation of the environmental impact assessment
procedure in India. Impact Assess 12(1):75–88
Yaqub M, Lee W (2019) Zero-liquid discharge (ZLD) technology for resource recovery from
wastewater: a review. Sci Total Environ 681(1):551–563
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