130
M. Rajin et al.
Fang, M., & Wong, J. W. C. (1999). Effects of lime amendment on availability of heavy metals and
maturation in sewage sludge composting. Environmental Pollution, 106, 83–89.
Gao, S., et al. (2015). Tolerance response to in situ ammonia stress in a pilot-scale anaerobic
digestion reactor for alleviating ammonia inhibition. Bioresource Technology, 198, 372–379.
Higgins, G. M., & Swartzbaugh, J. T. (1986) Enzyme addition to the anaerobic digestion of municipal
wastewater primary sludge. USEPA Water Engineering Research Laboratory, Office of research
and Developement.
Himanen, M., & Hänninen, K. (2011). Composting of bio-waste, aerobic and anaerobic sludges—Effect of feedstock on the process and quality of compost. Bioresource Technology. Elsevier Ltd,
102(3), 2842–2852.
Ishak, N. F., Ahmad, A. L., & Ismail, S. (2014). Feasibility of anaerobic co-composting empty fruit
bunch with activated sludge from palm oil mill wastes for soil conditioner. Journal of Physical
Science, 25(1), 77–92.
Kanmani, P., Kumaresan, K., & Aravind, J. (2016). Pre-treatment of coconut mill effluent using
celite-immobilized hydrolytic enzyme preparation from Staphylococcus pasteuri. Biotechnology
Progress, 31(5), 249–1258.
Kelleher, B. P., et al. (2002). Advances in poultry litter disposal technology—A review. Bioresource
Technology, 83(1), 27–36.
Kulcu, R., & Yaldiz, O. (2004). Determination of aeration rate and kinetics of composting some
agricultural wastes. Bioresource Technology, 93(1), 49–57.
Kulikowska, D. (2016). Kinetics of organic matter removal and humification progress during sewage
sludge composting. Waste Management, 49, 196–203. Elsevier Ltd.
Kunwar, P., et al. (2017). Food waste to energy: An overview on sustainable approach for food
waste management and nutrient recycling. Biomed Research International, 1–19.
Li, L., et al. (2015). Bioresource technology dynamics of microbial community in a mesophilic
anaerobic digester treating food waste: Relationship between community structure and process
stability. Bioresource Technology, 189, 113–120.
Li, W., et al. (2016). Two-stage anaerobic digestion of food waste and horticultural waste in highsolid system. Applied Energy, 209, 400–408.
Lin, C. (2008). A negative-pressure aeration system for composting food wastes. Bioresource Technology, 99(16), 7651–7656.
Manu, M. K., Kumar, R., & Garg, A. (2017). Performance assessment of improved composting system for food waste with varying aeration and use of microbial inoculum. Bioresource Technology,
234, 167–177.
Meng, Y., et al. (2017). Enhancing anaerobic digestion performance of crude lipid in food waste by
enzymatic pretreatment. Bioresource Technology, 224, 48–55.
Moon, H. C., & Song, I. S. (2011). Enzymatic hydrolysis of foodwaste and methane production
using UASB bioreactor. International Journal of Green Energy, 8(3), 361–371.
Narkhede, S., Attarde, S., & Ingle, S. (2010). Combined aerobic composting of municipal solid
waste and sewage sludge. Global Journal of Environmental Research, 4(80), 109–112.
Petric, I., & Mustafi´ c, N. (2015). Dynamic modeling the composting process of the mixture of
poultry manure and wheat straw. Journal of Environmental Management, 161, 392–401.
Polprasert, C. (2007) Organic waste recycling—Technology and management.
Rajin, M. (2018) A current review on the application of enzymes in anaerobic digestion. In N.
Horan, A. Z. Yaser & N. Wid (Eds.) Anaerobic digestion processes. Singapore: Springer.
Rawoteea, S. A., Mudhoo, A., & Kumar, S. (2017). Co-composting of vegetable wastes and carton:
Effect of carton composition and parameter variations. Bioresource Technology, 227, 171–178.
Romano, R. T., et al. (2009). The effect of enzyme addition on anaerobic digestion of Jose Tall
Wheat Grass. Bioresource Technology, 100(20), 4564–4571. Elsevier Ltd.
Salwanee, S., et al. (2013). Effects of enzyme concentration, temperature, pH and time on the degree
of hydrolysis of protein extract from viscera of tuna (Euthynnus affinis) by using alcalase. Sains
Malaysiana, 42(3), 279–287.
M. Rajin et al.
Fang, M., & Wong, J. W. C. (1999). Effects of lime amendment on availability of heavy metals and
maturation in sewage sludge composting. Environmental Pollution, 106, 83–89.
Gao, S., et al. (2015). Tolerance response to in situ ammonia stress in a pilot-scale anaerobic
digestion reactor for alleviating ammonia inhibition. Bioresource Technology, 198, 372–379.
Higgins, G. M., & Swartzbaugh, J. T. (1986) Enzyme addition to the anaerobic digestion of municipal
wastewater primary sludge. USEPA Water Engineering Research Laboratory, Office of research
and Developement.
Himanen, M., & Hänninen, K. (2011). Composting of bio-waste, aerobic and anaerobic sludges—Effect of feedstock on the process and quality of compost. Bioresource Technology. Elsevier Ltd,
102(3), 2842–2852.
Ishak, N. F., Ahmad, A. L., & Ismail, S. (2014). Feasibility of anaerobic co-composting empty fruit
bunch with activated sludge from palm oil mill wastes for soil conditioner. Journal of Physical
Science, 25(1), 77–92.
Kanmani, P., Kumaresan, K., & Aravind, J. (2016). Pre-treatment of coconut mill effluent using
celite-immobilized hydrolytic enzyme preparation from Staphylococcus pasteuri. Biotechnology
Progress, 31(5), 249–1258.
Kelleher, B. P., et al. (2002). Advances in poultry litter disposal technology—A review. Bioresource
Technology, 83(1), 27–36.
Kulcu, R., & Yaldiz, O. (2004). Determination of aeration rate and kinetics of composting some
agricultural wastes. Bioresource Technology, 93(1), 49–57.
Kulikowska, D. (2016). Kinetics of organic matter removal and humification progress during sewage
sludge composting. Waste Management, 49, 196–203. Elsevier Ltd.
Kunwar, P., et al. (2017). Food waste to energy: An overview on sustainable approach for food
waste management and nutrient recycling. Biomed Research International, 1–19.
Li, L., et al. (2015). Bioresource technology dynamics of microbial community in a mesophilic
anaerobic digester treating food waste: Relationship between community structure and process
stability. Bioresource Technology, 189, 113–120.
Li, W., et al. (2016). Two-stage anaerobic digestion of food waste and horticultural waste in highsolid system. Applied Energy, 209, 400–408.
Lin, C. (2008). A negative-pressure aeration system for composting food wastes. Bioresource Technology, 99(16), 7651–7656.
Manu, M. K., Kumar, R., & Garg, A. (2017). Performance assessment of improved composting system for food waste with varying aeration and use of microbial inoculum. Bioresource Technology,
234, 167–177.
Meng, Y., et al. (2017). Enhancing anaerobic digestion performance of crude lipid in food waste by
enzymatic pretreatment. Bioresource Technology, 224, 48–55.
Moon, H. C., & Song, I. S. (2011). Enzymatic hydrolysis of foodwaste and methane production
using UASB bioreactor. International Journal of Green Energy, 8(3), 361–371.
Narkhede, S., Attarde, S., & Ingle, S. (2010). Combined aerobic composting of municipal solid
waste and sewage sludge. Global Journal of Environmental Research, 4(80), 109–112.
Petric, I., & Mustafi´ c, N. (2015). Dynamic modeling the composting process of the mixture of
poultry manure and wheat straw. Journal of Environmental Management, 161, 392–401.
Polprasert, C. (2007) Organic waste recycling—Technology and management.
Rajin, M. (2018) A current review on the application of enzymes in anaerobic digestion. In N.
Horan, A. Z. Yaser & N. Wid (Eds.) Anaerobic digestion processes. Singapore: Springer.
Rawoteea, S. A., Mudhoo, A., & Kumar, S. (2017). Co-composting of vegetable wastes and carton:
Effect of carton composition and parameter variations. Bioresource Technology, 227, 171–178.
Romano, R. T., et al. (2009). The effect of enzyme addition on anaerobic digestion of Jose Tall
Wheat Grass. Bioresource Technology, 100(20), 4564–4571. Elsevier Ltd.
Salwanee, S., et al. (2013). Effects of enzyme concentration, temperature, pH and time on the degree
of hydrolysis of protein extract from viscera of tuna (Euthynnus affinis) by using alcalase. Sains
Malaysiana, 42(3), 279–287.
