Sustainable Solutions for Environmental Pollution

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Environmental pollution is one of the biggest problems facing our world today, in every country, region, and even down to local landfills. Not just solving these problems, but turning waste into products, even products that can make money, is a huge game-changer in the world of environmental engineering. Finding ways to make fuel and other products from solid waste, setting a course for the production of future biorefineries, and creating a clean process for generating fuel and other products are just a few of the topics covered in the groundbreaking new first volume in the two-volume set, 
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The valorization of waste, including the creation of biofuels, turning waste cooking oil into green chemicals, providing sustainable solutions for landfills, and many other topics are also covered in this extensive treatment on the state of the art of this area in environmental engineering. 
This groundbreaking new volume in this forward-thinking set is the most comprehensive coverage of all of these issues, laying out the latest advances and addressing the most serious current concerns in environmental pollution. Whether for the veteran engineer or the student, this is a must-have for any library.

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References

Adeniyi, O.M., Azimov, U., Burluka, A. 2018. Algae biofuel: current status and future applications. Renewable and sustainable energy reviews , 90, 316-335.

Ajinomoto Co., I. 2013. First quarter-FY 2014. Market and other information.

Al-Mamun, A., Ahmad, W., Baawain, M.S., Khadem, M., Dhar, B.R. 2018. A review of microbial desalination cell technology: configurations, optimization and applications. Journal of Cleaner Production , 183, 458-480.

Angenent, L.T., Richter, H., Buckel, W., Spirito, C.M., Steinbusch, K.J., Plugge, C.M., Strik, D.P., Grootscholten, T.I., Buisman, C.J., Hamelers, H.V. 2016. Chain elongation with reactor microbiomes: open-culture biotechnology to produce biochemicals. Environmental Science & Technology , 50(6), 2796-2810.

Arslan, D., Steinbusch, K., Diels, L., Hamelers, H., Strik, D., Buisman, C., De Wever, H. 2016. Selective short-chain carboxylates production: A review of control mechanisms to direct mixed culture fermentations. Critical Reviews in Environmental Science and Technology , 46(6), 592-634.

Awate, B., Steidl, R.J., Hamlischer, T., Reguera, G. 2017. Stimulation of electro-fermentation in single-chamber microbial electrolysis cells driven by genetically engineered anode biofilms. Journal of Power Sources , 356, 510-518.

Bai, F., Dai, L., Fan, J., Truong, N., Rao, B., Zhang, L., Shen, Y. 2015. Engineered Serratia marcescens for efficient (3R)-acetoin and (2R, 3R)-2, 3-butanediol production. Journal of Industrial Microbiology & Biotechnology , 42(5), 779-786.

Barua, S., Zakaria, B.S., Chung, T., Hai, F.I., Haile, T., Al-Mamun, A., Dhar, B.R. 2019. Microbial electrolysis followed by chemical precipitation for effective nutrients recovery from digested sludge centrate in WWTPs. Chemical Engineering Journal , 361, 256-265.

Bligh, E.G., Dyer, W.J. 1959. A rapid method of total lipid extraction and purification. Canadian Journal of Biochemistry and Physiology , 37(8), 911-917.

Bursac, T., Gralnick, J.A., Gescher, J. 2017. Acetoin production via unbalanced fermentation in Shewanella oneidensis. Biotechnology and Bioengineering , 114(6), 1283-1289.

Chandrasekhar, K., Amulya, K., Mohan, S.V. 2015. Solid phase bio-electrofermentation of food waste to harvest value-added products associated with waste remediation. Waste Management , 45, 57-65.

Chen, X., Jiang, S., Zheng, Z., Pan, L., Luo, S. 2012. Effects of culture redox potential on succinic acid production by Corynebacterium crenatum under anaerobic conditions. Process Biochemistry , 47(8), 1250-1255.

Cheng, S., Xing, D., Call, D.F., Logan, B.E. 2009. Direct biological conversion of electrical current into methane by electromethanogenesis. Environmental Science & Technology , 43(10), 3953-3958.

Cheynier, V., Schneider, R., Salmon, J.-M., Fulcrand, H. 2010. Chemistry of wine.

Chien, C.-C., Chen, C.-C., Choi, M.-H., Kung, S.-S., Wei, Y.-H. 2007. Production of poly-β-hydroxybutyrate (PHB) by Vibrio spp. isolated from marine environment. Journal of Biotechnology , 132(3), 259-263.

Chisti, Y. 2007. Biodiesel from microalgae. Biotechnology Advances , 25(3), 294-306.

Choi, O., Kim, T., Woo, H.M., Um, Y. 2014. Electricity-driven metabolic shift through direct electron uptake by electroactive heterotroph Clostridiumpasteurianum. Scientific Reports , 4, 6961.

Choi, O., Um, Y., Sang, B.I. 2012. Butyrate production enhancement by Clostridium tyrobutyricum using electron mediators and a cathodic electron donor. Biotechnology and Bioengineering , 109(10), 2494-2502.

Christ, O., Wilderer, P., Angerhöfer, R., Faulstich, M. 2000. Mathematical modeling of the hydrolysis of anaerobic processes. Water Science and Technology , 41(3), 61-65.

Chung, T.H., Meshref, M.N., Dhar, B.R. 2020a. Microbial electrochemical biosensor for rapid detection of naphthenic acid in aqueous solution. Journal of Electroanalytical Chemistry , 114405.

Chung, T.H., Meshref, M.N., Hai, F.I., Al-Mamun, A., Dhar, B.R. 2020b. Microbial electrochemical systems for hydrogen peroxide synthesis: Critical review of process optimization, prospective environmental applications, and challenges. Bioresource Technology , 123727.

Cooney, M., Young, G., Nagle, N. 2009. Extraction of bio-oils from microalgae. Separation & Purification Reviews , 38(4), 291-325.

Daylan, B., Ciliz, N. 2016. Life cycle assessment and environmental life cycle costing analysis of lignocellulosic bioethanol as an alternative transportation fuel. Renewable Energy , 89, 578-587.

Dhar, B.R., Elbeshbishy, E., Hafez, H., Lee, H.-S. 2015. Hydrogen production from sugar beet juice using an integrated biohydrogen process of dark fermentation and microbial electrolysis cell. Bioresource Technology , 198, 223-230.

Dhar, B.R., Kirtania, K. 2009. Excess methanol recovery in biodiesel production process using a distillation column: a simulation study. Chemical Engineering Research Bulletin , 13(2), 55-60.

Dhar, B.R., Ryu, H., Santo Domingo, J.W., Lee, H.-S. 2016. Ohmic resistance affects microbial community and electrochemical kinetics in a multi-anode microbial electrochemical cell. Journal of Power Sources , 331, 315-321.

Do, M.H., Ngo, H.H., Guo, W., Chang, S.W., Nguyen, D.D., Liu, Y., Varjani, S., Kumar, M. 2020. Microbial fuel cell-based biosensor for online monitoring wastewater quality: A critical review. Science of the Total Environment , 712, 135612.

Drozdzynska, A., Leja, K., Czaczyk, K. 2011. Biotechnological production of 1, 3-propanediol from crude glycerol. BioTechnologia. Journal of Biotechnology Computational Biology and Bionanotechnology , 92(1).

Du, C., Yan, H., Zhang, Y., Li, Y., Cao, Z.a. 2006. Use of oxidoreduction potential as an indicator to regulate 1, 3-propanediol fermentation by Klebsiella pneumoniae. Applied Microbiology and Biotechnology , 69(5), 554-563.

Eggeling, L., Bott, M. 2015. A giant market and a powerful metabolism: L-lysine provided by Corynebacterium glutamicum. Applied Microbiology and Biotechnology , 99(8), 3387-3394.

Eggeling, L., Bott, M. 2005. Handbook of Corynebacterium glutamicum . CRC Press.

Elbeshbishy, E., Dhar, B.R., Hafez, H., Lee, H.-S. 2015. Acetone–butanol–ethanol production in a novel continuous flow system. Bioresource Technology , 190, 315-320.

Elbeshbishy, E., Dhar, B.R., Nakhla, G., Lee, H.-S. 2017. A critical review on inhibition of dark biohydrogen fermentation. Renewable and Sustainable Energy Reviews , 79, 656-668.

Engel, M., Holtmann, D., Ulber, R., Tippkötter, N. 2019. Increased Biobutanol Production by Mediator-Less Electro-Fermentation. Biotechnology Journal , 14(4), 1800514.

Feng, Y., He, W., Liu, J., Wang, X., Qu, Y., Ren, N. 2014. A horizontal plug flow and stackable pilot microbial fuel cell for municipal wastewater treatment. Bioresource Technology , 156, 132-138.

Flynn, J.M., Ross, D.E., Hunt, K.A., Bond, D.R., Gralnick, J.A. 2010. Enabling unbalanced fermentations by using engineered electrode-interfaced bacteria. MBio , 1(5).

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