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Electron beam technology for biogas and biofertilizer generation at municipal resource recovery facilities


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Sorensen, A. & Okata, J. (Eds.). (2011). Megacities: Urban form, governance, and sustainability. Library for sustainable urban regeneration. (Vol. 10). New York: Springer. DOI: 10.1111/juaf.12120. SorensenA. OkataJ. (Eds.). 2011 Megacities: Urban form, governance, and sustainability. Library for sustainable urban regeneration 10 New York Springer 10.1111/juaf.12120 Open DOISearch in Google Scholar

Department of Economic and Social Affairs. (2015). World urbanization prospects: the 2014 revision. (ST/ESA/SER.A/366). New York: United Nations. Available from https://population.un.org/wup/Publications/Files/WUP2014-Report.pdf. Department of Economic and Social Affairs 2015 World urbanization prospects: the 2014 revision (ST/ESA/SER.A/366). New York United Nations Available from https://population.un.org/wup/Publications/Files/WUP2014-Report.pdf. Search in Google Scholar

AlSayed, A., Soliman, M., & Eldyasti, A. (2020). Anaerobic-based water resources recovery facilities: A review. Energies, 13(14), 3662. DOI: 10.3390/en13143662. AlSayedA. SolimanM. EldyastiA. 2020 Anaerobic-based water resources recovery facilities: A review Energies 13 14 3662 10.3390/en13143662 Open DOISearch in Google Scholar

Pillai, S., & Reimers, R. (2010). Disinfecting and stabilizing biosolids using e-beam and chemical oxidants. (Vol. 9). London: IWA Publishing. DOI: https://doi.org/10.2166/9781843392996. PillaiS. ReimersR. 2010 Disinfecting and stabilizing biosolids using e-beam and chemical oxidants 9 London IWA Publishing DOI: https://doi.org/10.2166/9781843392996 10.2166/9781843392996 Search in Google Scholar

European Union. (2008). EUR-Lex Directive EU/2018/851 of the European Parliament and of the Council of 30 May 2018 amending Directive 2008/98/EC on Waste. Off. J. Eur. Communities, 150, 109–140. https://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:32018L0851&from=EN. European Union 2008 EUR-Lex Directive EU/2018/851 of the European Parliament and of the Council of 30 May 2018 amending Directive 2008/98/EC on Waste Off. J. Eur. Communities 150 109 140 https://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:32018L0851&from=EN. Search in Google Scholar

Collivignarelli, M. C., Abbá, A., Trattarola, A., Carnevale Miino, M., Padovani, S., Katsoyiannis, I., & Torretta, V. (2019). Legislation for the reuse of biosolids on agricultural land in Europe: Overview. Sustainability, 11(21), 6015. DOI: 10.3390/su11216015. CollivignarelliM. C. AbbáA. TrattarolaA. Carnevale MiinoM. PadovaniS. KatsoyiannisI. TorrettaV. 2019 Legislation for the reuse of biosolids on agricultural land in Europe: Overview Sustainability 11 21 6015 10.3390/su11216015 Open DOISearch in Google Scholar

US Environmental Protection Agency. (1993). 40 CFR Parts 257, 405, and 503 (FRL-4203-3): Standards for use and disposal of sewage. Final rule. Fed Register, 58, 9248. Washington, DC: US Government Printing Office. https://www.epa.gov/sites/production/files/2020-02/documents/fr-2-19-1993-sewage-sludge.pdf. US Environmental Protection Agency 1993 40 CFR Parts 257, 405, and 503 (FRL-4203-3): Standards for use and disposal of sewage. Final rule. Fed Register, 58, 9248 Washington, DC US Government Printing Office https://www.epa.gov/sites/production/files/2020-02/documents/fr-2-19-1993-sewage-sludge.pdf. Search in Google Scholar

Praveen, C. H., Jesudhasan, P. R., Reimers, R. S., & Pillai, S. D. (2013). Electron beam inactivation of selected microbial pathogens and indicator organisms in aerobically and anaerobically digested sewage sludge. Bioresour. Technol., 144, 652–657. DOI: 10.1016/j.biortech.2013.07.034. PraveenC. H. JesudhasanP. R. ReimersR. S. PillaiS. D. 2013 Electron beam inactivation of selected microbial pathogens and indicator organisms in aerobically and anaerobically digested sewage sludge Bioresour. Technol. 144 652 657 10.1016/j.biortech.2013.07.034 Open DOISearch in Google Scholar

Chmielewski, A. G., Zimek, Z., Bryl-Sandelewska, T., Kosmal, W., & Kalisz, L., & Kaźmierczuk, M. (1995). Disinfection of municipal sewage sludges in installation equipped with electron accelerator. Radiat. Phys. Chem., 46(4/6), 1071–1074. DOI: 10.1016/0969-806X(95)00323-P. ChmielewskiA. G. ZimekZ. Bryl-SandelewskaT. KosmalW. KaliszL. KaźmierczukM. 1995 Disinfection of municipal sewage sludges in installation equipped with electron accelerator Radiat. Phys. Chem. 46 4/6 1071 1074 10.1016/0969-806X(95)00323-P Open DOISearch in Google Scholar

Kim, Y., Han, B., Kim, J. K., & Ben Yaacov, N. (2009). Design of electron beam sludge hygienization plant (SM/EB-25). https://www-pub.iaea.org/MTCD/publications/PDF/P1433_CD/datasets/papers/sm_eb-25.pdf. KimY. HanB. KimJ. K. Ben YaacovN. 2009 Design of electron beam sludge hygienization plant (SM/EB-25) https://www-pub.iaea.org/MTCD/publications/PDF/P1433_CD/datasets/papers/sm_eb-25.pdf. Search in Google Scholar

Kim, J. -K., Kim, Y., Han, B., & Yaacob, N. B. (2008). Sludge hygienization plant with electron beam. In Transactions of the Korean Nuclear Society Spring Meeting, Gyeongju, Korea, May 29–30, 2008 (pp. 633–634). https://www.kns.org/files/pre_paper/12/353%ED%95%9C%EB%B2%94%EC%88%98.pdf. KimJ. -K. KimY. HanB. YaacobN. B. 2008 Sludge hygienization plant with electron beam In Transactions of the Korean Nuclear Society Spring Meeting Gyeongju, Korea May 29–30, 2008 633 634 https://www.kns.org/files/pre_paper/12/353%ED%95%9C%EB%B2%94%EC%88%98.pdf. Search in Google Scholar

Jianlong, W., & Jiazhuo, W. (2007). Application of radiation technology to sewage sludge processing: A review. J. Hazard. Mat., 143, 2–7. DOI: 10.1016/j.jhazmat.2007.01.027. JianlongW. JiazhuoW. 2007 Application of radiation technology to sewage sludge processing: A review J. Hazard. Mat. 143 2 7 10.1016/j.jhazmat.2007.01.027 17293039 Open DOISearch in Google Scholar

Sudlitz, M., & Chmielewski, A. G. (2019). Application of ionizing radiation for treatment of sludge from waste water treatment plant. “Zero-energy” technology for sewage sludge treatment. (Raporty IChTJ. Seria B no. 2/2019). Warsaw: Institute of Nuclear Chemistry and Technology. Available from http://www.ichtj.waw.pl/ichtj/publ/b_report/b2019_02.htm. (in Polish). SudlitzM. ChmielewskiA. G. 2019 Application of ionizing radiation for treatment of sludge from waste water treatment plant. “Zero-energy” technology for sewage sludge treatment (Raporty IChTJ. Seria B no. 2/2019). Warsaw Institute of Nuclear Chemistry and Technology Available from http://www.ichtj.waw.pl/ichtj/publ/b_report/b2019_02.htm. (in Polish). Search in Google Scholar

Chmielewski, A. G., & Sudlitz, M. (2019). ‘Zero energy’ electron beam technology for sludge hygienization. Nukleonika, 64(2), 55–63. DOI: 10.2478/nuka-2019-0007. ChmielewskiA. G. SudlitzM. 2019 ‘Zero energy’ electron beam technology for sludge hygienization Nukleonika 64 2 55 63 10.2478/nuka-2019-0007 Open DOISearch in Google Scholar

IEA Bioenergy. (2018). The role of anaerobic digestion and biogas in the circular economy. (Task 37). https://www.ieabioenergy.com/wp-content/uploads/2018/08/anaerobic-digestion_web_END.pdf. IEA Bioenergy 2018 The role of anaerobic digestion and biogas in the circular economy. (Task 37) https://www.ieabioenergy.com/wp-content/uploads/2018/08/anaerobic-digestion_web_END.pdf. Search in Google Scholar

Zimek, Z. (1989). Electron accelerators for environmental protection. Warsaw: Institute of Nuclear Chemistry and Technology. (Raporty IChTJ. Seria B no. 8/98). https://inis.iaea.org/collection/NCLCollectionStore/_Public/31/003/31003497.pdf. ZimekZ. 1989 Electron accelerators for environmental protection Warsaw Institute of Nuclear Chemistry and Technology (Raporty IChTJ. Seria B no. 8/98). https://inis.iaea.org/collection/NCLCollectionStore/_Public/31/003/31003497.pdf. Search in Google Scholar

Chmielewski, A. G. (2011). Electron accelerators for environmental protection. Reviews of Accelerators Science and Technology, 04(01), 147–159. DOI: 10.1142/S1793626811000501. ChmielewskiA. G. 2011 Electron accelerators for environmental protection Reviews of Accelerators Science and Technology 04 01 147 159 10.1142/S1793626811000501 Open DOISearch in Google Scholar

Chmielewski, A. G., & Han, B. (2017). Electron beam technology for environmental pollution control. In M. Venturi & M. D’Angelantonio (Eds.), Applications of radiation chemistry in the fields of industry, biotechnology and environment (pp. 37–66). Springer. DOI: 10.1007/978-3-319-54145-7_2. ChmielewskiA. G. HanB. 2017 Electron beam technology for environmental pollution control In VenturiM. D’AngelantonioM. (Eds.), Applications of radiation chemistry in the fields of industry, biotechnology and environment 37 66 Springer 10.1007/978-3-319-54145-7_2 Open DOISearch in Google Scholar

Chmielewski, A. G. & Zimek, Z. (Eds.). (2019). Electron accelerators for research, industry and environment – the INCT perspective. Warsaw: Institute of Electronic Systems, Warsaw University of Technology. https://zenodo.org/record/3237554#.XTlKSHvgqUl. ChmielewskiA. G. ZimekZ. (Eds.). 2019 Electron accelerators for research, industry and environment – the INCT perspective Warsaw Institute of Electronic Systems, Warsaw University of Technology https://zenodo.org/record/3237554#.XTlKSHvgqUl. Search in Google Scholar

Park, W., Hwang, M. -H., Kim, T. -H., Lee, M. -J., & Kim, I. S. (2009). Enhancement in characteristics of sewage sludge and anaerobic treatability by electron beam pre-treatment. Radiat. Phys. Chem., 78, 124–129. DOI: 10.1016/j.radphyschem.2008.09.010. ParkW. HwangM. -H. KimT. -H. LeeM. -J. KimI. S. 2009 Enhancement in characteristics of sewage sludge and anaerobic treatability by electron beam pre-treatment Radiat. Phys. Chem. 78 124 129 10.1016/j.radphyschem.2008.09.010 Open DOISearch in Google Scholar

Shin, K. -S., & Kang, H. (2003). Electron beam pretreatment of sewage sludge before anaerobic digestion. Appl. Biochem. Biotechnol., 109, 227–231. DOI: 10.1385/abab:109:1-3:227. ShinK. -S. KangH. 2003 Electron beam pretreatment of sewage sludge before anaerobic digestion Appl. Biochem. Biotechnol. 109 227 231 10.1385/abab:109:1-3:227 Open DOISearch in Google Scholar

Garlicka, A., Żubrowska-Sudoł, M., Umiejewska, K., Roubinek, O., Palige, J., & Chmielewski, A. G. (2020). Effects of thickened excess sludge pre-treatment using hydrodynamic cavitation for anaerobic digestion. Energies, 13, 2483. DOI: 10.3390/en13102483. GarlickaA. Żubrowska-SudołM. UmiejewskaK. RoubinekO. PaligeJ. ChmielewskiA. G. 2020 Effects of thickened excess sludge pre-treatment using hydrodynamic cavitation for anaerobic digestion Energies 13 2483 10.3390/en13102483 Open DOISearch in Google Scholar

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