Sewage Treatment in Campus for Recycling Purpose: A Review
241
Prandini, J. M., da Silva, M. L. B., Mezzari, M. P., Pirolli, M., Michelon, W., & Soares, H. M.
(2016). Enhancement of nutrient removal from swine wastewater digestate coupled to biogas
purification by microalgae Scenedesmus spp. Bioresource Technology, 202, 67–75.
Prasanna, K., Sudarsan, J. S. (2014). Study on improving the efficiency of sewage treatment plants
(Vol. 33, no. 4, pp. 737–740). SRM University, India.
Qi, W., Zhang, H., Liu, R., Liu, H., & Qu, J. (2019). Effects of different secondary biological
treatment processes followed by flocculation and sand-filtration on subsequent DBPs control
from sewage treatment plants. Separation and Purification Technology, 211, 81–89.
Raghuvanshi, S., Bhakar, V., Sowmya, C., & Sangwan, K. S. (2017). Waste water treatment plant
life cycle assessment: Treatment process to reuse of water. Procedia CIRP, 61, 761–766.
Rahman, M. M., Hagare, D., & Maheshwari, B. (2016). Balanced urban development: Options and
strategies for liveable cities (Vol. 72).
Rajasulochana, P., & Preethy, V. (2016). Comparison on efficiency of various techniques in treatment
of waste and sewage water—A comprehensive review. Resource-Efficient Technologies, 2(4),
175–184.
Randerson, P. F. (2006). Constructed wetlands and vegetation filters: An ecological approach to
wastewater treatment. Environmental Biotechnology, 2(2), 78–89.
Revitt, D. M., Eriksson, E., & Donner, E. (2011). The implications of household greywater treatment and reuse for municipal wastewater flows and micropollutant loads. Water Research, 45(4),
1549–1560.
Rhee, H.-P., Yoon, C.-G., Jung, K.-W., & Son, J.-W. (2009). Microbial risk assessment using E. coli
in UV disinfected wastewater irrigation on paddy. Environmental Engineering Research, 14(2),
120–125.
Sacristán de Alva, M., Luna-Pabello, V. M., Cadena, E., & Ortíz, E. (2013). Green microalga
Scenedesmus acutus grown on municipal wastewater to couple nutrient removal with lipid accumulation for biodiesel production. Bioresource Technology, 146, 744–748.
Salgot, M., Folch, M., & Unit, S. S. (2018). Wastewater treatment and water reuse. Current Opinion
in Environmental Science & Health, 2, 64–74.
Sanghamitra, P., Pattnaik, B., Nayak, R., & Pradhan, J. K. (2016). Wastewater characterization and
management in and around GCEK Campus (Vol. 3, no. 4, pp. 142–152).
Sari Erkan, H., Bakaraki Turan, N., & Önkal Engin, G. (2018). Membrane bioreactors for wastewater
treatment. Comprehensive Analytical Chemistry, 81, 151–200.
Shakir, E., Zahraw, Z., & Al-Obaidy, A. H. M. J. (2017). Environmental and health risks associated
with reuse of wastewater for irrigation. Egyptian Journal of Petroleum, 26(1), 95–102.
Silveira, E. O., Moura, D., Rieger, A., Machado, Ê. L., & Lutterbeck, C. A. (2017). Performance
of an integrated system combining microalgae and vertical flow constructed wetlands for urban
wastewater treatment. Environmental Science and Pollution Research, 24(25), 20469–20478.
Sips, R. (1948). On the structure of a catalyst surface. The Journal of Chemical Physics, 16(5),
490–495.
Stephenson, T., & Stuetz, R. T. (2009). Principles of water and wastewater treatment processes—3.1
Introduction. In Principles of water and wastewater treatment processes (p. 47). IWA publishing.
Su, B., Cui, X., & Zhu, J. (2012). Optimal cultivation and characteristics of aerobic granules with
typical domestic sewage in an alternating anaerobic/aerobic sequencing batch reactor. Bioresource
Technology, 110, 125–129.
Sun, K., & Shi, Y. (2014). Experimental study on the treatment of bath wastewater in the campus
by membrane bioreactor. Advanced Materials Research, 926–930, 124–127.
Susarla, S., Medina, V. F., & McCutcheon, S. C. (2002). Phytoremediation: An ecological solution
to organic chemical contamination. Ecological Engineering, 18(5), 647–658.
Syafiuddin, A., Salmiati, S., Hadibarata, T., Kueh, A. B. H., Salim, M. R., & Zaini, M. A. A. (2018).
Silver nanoparticles in the water environment in Malaysia: Inspection, characterization, removal,
modeling, and future perspective. Scientific Reports, 8(1), 986.
241
Prandini, J. M., da Silva, M. L. B., Mezzari, M. P., Pirolli, M., Michelon, W., & Soares, H. M.
(2016). Enhancement of nutrient removal from swine wastewater digestate coupled to biogas
purification by microalgae Scenedesmus spp. Bioresource Technology, 202, 67–75.
Prasanna, K., Sudarsan, J. S. (2014). Study on improving the efficiency of sewage treatment plants
(Vol. 33, no. 4, pp. 737–740). SRM University, India.
Qi, W., Zhang, H., Liu, R., Liu, H., & Qu, J. (2019). Effects of different secondary biological
treatment processes followed by flocculation and sand-filtration on subsequent DBPs control
from sewage treatment plants. Separation and Purification Technology, 211, 81–89.
Raghuvanshi, S., Bhakar, V., Sowmya, C., & Sangwan, K. S. (2017). Waste water treatment plant
life cycle assessment: Treatment process to reuse of water. Procedia CIRP, 61, 761–766.
Rahman, M. M., Hagare, D., & Maheshwari, B. (2016). Balanced urban development: Options and
strategies for liveable cities (Vol. 72).
Rajasulochana, P., & Preethy, V. (2016). Comparison on efficiency of various techniques in treatment
of waste and sewage water—A comprehensive review. Resource-Efficient Technologies, 2(4),
175–184.
Randerson, P. F. (2006). Constructed wetlands and vegetation filters: An ecological approach to
wastewater treatment. Environmental Biotechnology, 2(2), 78–89.
Revitt, D. M., Eriksson, E., & Donner, E. (2011). The implications of household greywater treatment and reuse for municipal wastewater flows and micropollutant loads. Water Research, 45(4),
1549–1560.
Rhee, H.-P., Yoon, C.-G., Jung, K.-W., & Son, J.-W. (2009). Microbial risk assessment using E. coli
in UV disinfected wastewater irrigation on paddy. Environmental Engineering Research, 14(2),
120–125.
Sacristán de Alva, M., Luna-Pabello, V. M., Cadena, E., & Ortíz, E. (2013). Green microalga
Scenedesmus acutus grown on municipal wastewater to couple nutrient removal with lipid accumulation for biodiesel production. Bioresource Technology, 146, 744–748.
Salgot, M., Folch, M., & Unit, S. S. (2018). Wastewater treatment and water reuse. Current Opinion
in Environmental Science & Health, 2, 64–74.
Sanghamitra, P., Pattnaik, B., Nayak, R., & Pradhan, J. K. (2016). Wastewater characterization and
management in and around GCEK Campus (Vol. 3, no. 4, pp. 142–152).
Sari Erkan, H., Bakaraki Turan, N., & Önkal Engin, G. (2018). Membrane bioreactors for wastewater
treatment. Comprehensive Analytical Chemistry, 81, 151–200.
Shakir, E., Zahraw, Z., & Al-Obaidy, A. H. M. J. (2017). Environmental and health risks associated
with reuse of wastewater for irrigation. Egyptian Journal of Petroleum, 26(1), 95–102.
Silveira, E. O., Moura, D., Rieger, A., Machado, Ê. L., & Lutterbeck, C. A. (2017). Performance
of an integrated system combining microalgae and vertical flow constructed wetlands for urban
wastewater treatment. Environmental Science and Pollution Research, 24(25), 20469–20478.
Sips, R. (1948). On the structure of a catalyst surface. The Journal of Chemical Physics, 16(5),
490–495.
Stephenson, T., & Stuetz, R. T. (2009). Principles of water and wastewater treatment processes—3.1
Introduction. In Principles of water and wastewater treatment processes (p. 47). IWA publishing.
Su, B., Cui, X., & Zhu, J. (2012). Optimal cultivation and characteristics of aerobic granules with
typical domestic sewage in an alternating anaerobic/aerobic sequencing batch reactor. Bioresource
Technology, 110, 125–129.
Sun, K., & Shi, Y. (2014). Experimental study on the treatment of bath wastewater in the campus
by membrane bioreactor. Advanced Materials Research, 926–930, 124–127.
Susarla, S., Medina, V. F., & McCutcheon, S. C. (2002). Phytoremediation: An ecological solution
to organic chemical contamination. Ecological Engineering, 18(5), 647–658.
Syafiuddin, A., Salmiati, S., Hadibarata, T., Kueh, A. B. H., Salim, M. R., & Zaini, M. A. A. (2018).
Silver nanoparticles in the water environment in Malaysia: Inspection, characterization, removal,
modeling, and future perspective. Scientific Reports, 8(1), 986.
