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         [68] Pemberton M. Pump efficiency drives cost savings. Available from: https://www.
             controleng.com/single-article/pump-efficiency-drives-cost-savings; 2013. Accessed 3
             April 2018.
         [69] Index-mundi. Natural gas. Available from: http://www.indexmundi.com/commodities/?
             commodity¼natural-gas; 2017. Accessed 19 December 2017.
         [70] EIA. Electricity monthly update-July. Washington DC; 2017.
         [71] Peam C, Krist VG, G€ urkan S. Uncertainties in early-stage capital cost estimation of pro-
             cess design—a case study on biorefinery design. Front Energy Res 2015;3. https://doi.org/
             10.3389/fenrg.2015.00003.
         [72] Towler G, Sinnott RK. Chemical engineering design: principles, practice and economics
             of plant and process design. 2nd ed. Oxford: Elsevier; 2012.
         [73] Hans E, Edelmann W. Processing of digestate. Brisbane: International Energy Agency;
             2013.
         [74] Bodik I, Kubaska M. Energy and sustainability of operation of a wastewater treatment
             plant. Environ Prot Eng 2013;39(2):15–24.
         [75] Peters MS, Timmerhaus KD. Plant design and economics for chemical engineers. 4th ed.
             Toronto: Mc-Graw-Hill; 1991.
         [76] Shemfe M, Gu S, Fidalgo B. Techno-economic analysis of biofuel production via bio-oil
             zeolite upgrading: an evaluation of two catalyst regeneration systems. Biomass Bioenergy
             2017;98:182–93.
         [77] Weisstein E. Triangular distribution. In: From MathWorld—a wolfram web resource;
             2018.  Available  from:  http://mathworld.wolfram.com/TriangularDistribution.html.
             Accessed 6 April 2018.
         [78] Qu Y, Wei X, Zhong C. Experimental study on the direct liquefaction of Cunninghamia
             lanceolata in water. Energy 2003;28(7):597–606.
         [79] Brown TM, Duan P, Savage PE. Hydrothermal liquefaction and gasification of
             Nannochloropsis sp. Energy Fuel 2010;24:3639–46.
         [80] Isa KM, Kasim FH, Saad SA, Rahim MAA, Aziz MAA, Ali UFM. Influence of operating
             parameters on biomass conversion under sub and supercritical water conditions. Chem
             Eng Technol 2017;40(3):537–45.
         [81] Akhtar J, Amin NAS. A review on process conditions for optimum bio-oil yield in hydro-
             thermal liquefaction of biomass. Renew Sust Energ Rev 2011;15:1615–24.
         [82] Behrendt F, Oevermann M, Wilmes B, Zobel N. Direct liquefaction of biomass. Chem Eng
             Technol 2008;31(5):667–77.
         [83] Cheng D, Wang L, Shahbazi A, Xiu S, Zhang B. Catalytic cracking of crude bio-oil from
             glycerol-assisted liquefaction of swine manure. Energy Convers Manag 2014;87:378–84.
         [84] Dote Y, Sawayama S, Inoue S, Minowa T, Yokoyama S. Recovery of liquid fuel from
             hydrocarbon-rich microalage by thermochemical liquefaction. Fuel 1994;73(12):1855–7.
         [85] Funazukuri T, Takanashi T, Wakao N. Supercritical extraction of used automotive tire
             with water. J Chem Eng Jpn 1987;20(1):23–7.
         [86] Onsri K, Prasassarakich P, Ngamprasertsith S. Co-liquefaction of coal and used tire in
             supercritical water. Energy Power Eng 2010;2:95–102.
         [87] Goudriaan F, Peferoen DGR. Liquid fuels from biomass via a hydrothermal process. Chem
             Eng Sci 1990;45(8):2729–34.
         [88] He BJ, Zhang Y, Funk TL, Riskowski GL, Yin Y. Thermochemical conversion of swine
             manure: an alternative process for waste treatment and renewable energy production.
             Trans ASAE 2000;43(6):1827–33.
         [89] Jindal MK, Jhab MK. Effect of process parameters on hydrothermal liquefaction of waste
             furniture sawdust for bio-oil production. RSC Adv 2016;6:41772–80.
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