234
X. Agnello J. Naveen et al.
Danielle ML, Patrick M (2010) Industrial strategies to help reduce energy consumption: A
holistic approach for cement producers. 2010 IEEE-IAS/PCA 52nd Cement Industry Technical
Conference. https://doi.org/10.1109/CITCON.2010.5469768
Emad B, Zahedi G, Shamsaei E, Bahadori A (2013) Global strategies and potentials to curb CO 2
emissions in cement industry. J Cleaner Prod 51:142–161
Gupta PK (2013) Indian scenario of co-processing of wastes in cement industries. CMA – IIP
International conference on enhanced usage of alternate fuels and raw materials – co-processing
in cement plants
Jankovic A, Valery W, Davis E (2004) Cement grinding optimization. Minerals Eng 17(11–
12):1075–1081
Kabir G, Abubakar AI, El-Nafaty UA (2010) Energy audit and conservation opportunities for pyro
processing unit of a typical dry process cement plant. Energy 35(3):1237–1243
Khurana S, Banerjee R, Gaitonde U (2002) Energy balance and cogeneration for a cement plant.
Appl Therm Eng 22(5):485–494
Ministry of Power, Government of India (2012) PAT: Perform Achieve and Trade. http://beeindia.
in/content.php?page=schemes/schemes.php?id=8
Phillips PP, Phillips JJ (2006) Return on investment (ROI) basics, American Society for Training
and Development
Sengupta B (2016) Status of co-processing of waste in cement plants as per hazardous and other
wastes management rules. In: 2016 Presented at 3rd international conference on alternate fuels
and raw materials in cement industry–towards realising swachh bharat dream on 23rd and 24th
March 2017 at New Delhi, India
Siva Chandran J (2016) Cost-benefit approach of Bt cotton and Non-Bt cotton seeds application in
agriculture: a case evidence from Salem and Coimbatore districts of Tamil Nadu, India. p 8
Udara SP, Arachchige R, Kawan D, Tokheim LA, Melaaen MC (2014) Impact of kiln thermal
energy demand and false air on cement kiln flue gas CO2 capture. Int J Energ Environ 5(1):45–52
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