Page 318 - เชื้อเพลิงชีวภาพและชีวเคมีภัณฑ์โดยจุลินทรีย์
P. 318
280
Suksong W., Promnuan K., Seengenyoung J., O-Thong S. Anaerobic co-digestion of palm oil mill waste residues with sewage sludge for biogas production. Energy Procedia 2017; 138: 789–794.
Switzenbaum M.S, Holden C., Soares H., Kuter G.A. Effect of amendments on nitrogen conservation in wastewater biosolid composting. Compost Sci Util 1994; 2: 35–42. Switzenbaum M.S., Giraldo-Gomez E., Hickey R.F. Monitoring of the anaerobic methane
fermentation process. Enzyme Microb Technol 1990; 12: 722–730.
Trzcinski A.P., Stuckey D.C. Determination of the hydrolysis constant in the biochemical
methane potential test of municipal solid waste. Environ Eng Sci 2012; 29:
848–854.
Vavilin V.A., Fernandez B., Palatsi J., Flotats X. Hydrolysis kinetics in anaerobic
degradation of particulate organic material: An overview. Waste Manage 2008;
28: 939–951.
Wang Z., Xu F., Li Y. Effects of total ammonia nitrogen concentration on solid-state
anaerobic digestion of corn stover. Bioresour Technol 2013; 144: 281–287. Whitman W.B., Jeanthon C. The Prokaryotes. Springer: New York; 2006.
Yan Z., Song Z., Li D., Yuan Y., Liu X., Zheng T. The effects of initial substrate
concentration, C/N ratio, and temperature on solid-state anaerobic digestion
from composting rice straw. Bioresour Technol 2015; 177: 266–273.
Yang B., Xu H., Yang S., Bi S., Li F., Shen C., Ma C., Tian Q., Liu J., Song X., Sand W., Liu Y.
Treatment of industrial dyeing wastewater with a pilot-scale strengthened
circulation anaerobic reactor. Bioresour Technol 2018; 264: 154–162.
Yang L., Xu F., Ge X., Li Y. Challenges and strategies for solid-state anaerobic digestion
of lignocellulosic biomass. Renew Sustain Energy Rev 2015; 44: 824–834. Yen H.W., Chiu C.H. The influences of aerobic-dark and anaerobic-light cultivation on CoQ10 production by in the submerged fermenter.
Enzyme Microb Technol 2007; 41: 600–604.