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Artigos de revistas sobre o assunto "Gac"
Kamboj, Nitin, e Mohrana Choudhary. "Impact of solid waste disposal on ground water quality near Gazipur dumping site, Delhi, India". Journal of Applied and Natural Science 5, n.º 2 (1 de dezembro de 2013): 306–12. http://dx.doi.org/10.31018/jans.v5i2.322.
Texto completo da fontevan den Broek, Daan, Thomas F. C. Chin-A-Woeng, Guido V. Bloemberg e Ben J. J. Lugtenberg. "Role of RpoS and MutS in phase variation of Pseudomonas sp. PCL1171". Microbiology 151, n.º 5 (1 de maio de 2005): 1403–8. http://dx.doi.org/10.1099/mic.0.27777-0.
Texto completo da fonteKim, Taehoon, e Byungryul An. "Effect of Hydrogen Ion Presence in Adsorbent and Solution to Enhance Phosphate Adsorption". Applied Sciences 11, n.º 6 (20 de março de 2021): 2777. http://dx.doi.org/10.3390/app11062777.
Texto completo da fonteLin, Shih-Shun, Hui-Wen Wu, Fuh-Jyh Jan, Roger F. Hou e Shyi-Dong Yeh. "Modifications of the Helper Component-Protease of Zucchini yellow mosaic virus for Generation of Attenuated Mutants for Cross Protection Against Severe Infection". Phytopathology® 97, n.º 3 (março de 2007): 287–96. http://dx.doi.org/10.1094/phyto-97-3-0287.
Texto completo da fonteTakeuchi, Kasumi, Kosumi Yamada e Dieter Haas. "ppGpp Controlled by the Gac/Rsm Regulatory Pathway Sustains Biocontrol Activity in Pseudomonas fluorescens CHA0". Molecular Plant-Microbe Interactions® 25, n.º 11 (novembro de 2012): 1440–49. http://dx.doi.org/10.1094/mpmi-02-12-0034-r.
Texto completo da fonteDriscoll, William W., John W. Pepper, Leland S. Pierson e Elizabeth A. Pierson. "Spontaneous Gac Mutants of Pseudomonas Biological Control Strains: Cheaters or Mutualists?" Applied and Environmental Microbiology 77, n.º 20 (26 de agosto de 2011): 7227–35. http://dx.doi.org/10.1128/aem.00679-11.
Texto completo da fonteTewfik, Nazih, Samir Abdelmoaty, Barry L. Smith e Paulo Johann. "GAC Spotlight". Leading Edge 23, n.º 10 (outubro de 2004): 990–92. http://dx.doi.org/10.1190/tle23100990.1.
Texto completo da fonteBurianyk, Mike, John M. Howie, Ezeanyagu Ifeanyichukwu, A. G. Onwuemesi, Hermes Malcotti, Adrián Rodríguez Herrera, Dave Pitcher e Susan Henley. "GAC Spotlight". Leading Edge 24, n.º 1 (janeiro de 2005): 44–47. http://dx.doi.org/10.1190/tle24010044.1.
Texto completo da fonteBurianyk, Mike, James Sun e David Zinzer. "GAC Spotlight". Leading Edge 24, n.º 4 (abril de 2005): 398–400. http://dx.doi.org/10.1190/tle24040398.1.
Texto completo da fontePitcher, Dave, Aldo Vesnaver, Peter Attewell e Mike Burianyk. "GAC Spotlight". Leading Edge 24, n.º 6 (junho de 2005): 594–96. http://dx.doi.org/10.1190/tle24060594.1.
Texto completo da fonteTeses / dissertações sobre o assunto "Gac"
Morell, Bonin Tyra. "Prestationsanalys av granulerataktivt kol (GAC) – en jämförelse mellan två etablerade GAC-typer". Thesis, Uppsala universitet, Institutionen för geovetenskaper, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-328611.
Texto completo da fonteThere are multiple steps to be done in the drinking water treatment process. The product must obtain high quality and to do so, it must reach certain requirements. One of the treatment steps in Görväln water treatment plant, Stockholm, is to use granular active carbon (GAC). The GAC function is to filter away taste and odor in addition to acting as a chemical barrier, although the latter does not work properly in the water treatment plant today.The project´s aim is comparing the performance of two types of GAC, Norit® 830 W and FiltraSorb® 400, together with the effect of longer (21 minutes) and shorter (7 minutes) contact time (EBCT). The contact time (EBCT) is the time, in minutes, that a body of water is in contact with the GAC-filter. A longer EBCT, means lower flow, which leads to longer time for the GAC to adsorb contaminants from the water.To evaluate the difference between the GAC-types a column-test was constructed. The test allows a direct comparison to full scale operations. The water used during this study was taken directly after the sand filtration process in Görväln. The water is clear and particles visible to the naked eye are eliminated during the sand filtration. However, the small dissolved organic components (carbon) are hard to remove, which makes the GAC-filter important.The performance of the GAC was evaluated by the removal efficiency of TOC, DOC and evaluation of fluorescence and absorbance capacity. The result indicated a better performance for both GAC using a longer contact time. Best effect of the long contact time was seen during the fluorescence measurement, where calculated indexes and removal of specific compounds were distinguished.The difference between longer, 21 minutes, and shorter, 7 minutes, contact time was not as significant as the difference between the two types of GAC. FiltraSorb® 400 had a significant higher adsorbance capacity for DOC and TOC, 30 % better than Norit® 830 W, at the same bed volume. Norit® 830 W reached breakthrough much faster (~80 %) than FiltraSorb® 400 (~50%) at around 4700 bed volumes.
Tran, Thao Hoang. "Producing carotenoid-rich powder from Gac fruit". Thesis, View thesis, 2007. http://handle.uws.edu.au:8081/1959.7/19013.
Texto completo da fonteTran, Thao Hoang. "Producing carotenoid-rich powder from Gac fruit". View thesis, 2007. http://handle.uws.edu.au:8081/1959.7/19013.
Texto completo da fonteA thesis submitted in fulfilment of the requirements for the degree of Master of Science (Hons) to the University of Western Sydney, College of Health and Science, Centre for Plant and Food Science. Includes bibliography.
Janeiro, Hugo. "Redes Internas do GAC. Alterações decorrentes da implementação do SACC". Master's thesis, Academia Militar. Direção de Ensino, 2013. http://hdl.handle.net/10400.26/7546.
Texto completo da fonteAbstract This paper aims to analyze the Internal Networks for the Field Artillery Battalion, from the Quick Response Brigade, and the implementation of the Automated System for Command and Control on this unit. In the Portuguese Army, and to cope with the contemporary operatin g environment, was acquired the Automated System for Command and Control for Field Artillery, so it became necessary to make a research to see if changes are needed and what changes should be made at the level of Internal Networks for the Field Artillery Battalion from the Quick Response Brigade, following the implementation of SACC. For the preparation of this work, we first characterize the contemporary operating environment and the resulting new requirements for the Field Artillery. Then follows the study of the capabilities and requirements for implementation of the Automated System for Command and Control and its subsystems, and expounded the various stages of implementation of the Automated System for Command and Control in the Field Artillery Battalion since its acquisition until the present day. We also conducted the study at the level of an Internal Networks for the Field Artillery Battalion, first the Portuguese doctrine and then the American doctrine, that we decided to expose as a reference. In a second phase, a survey was made, which specifically includes the Field Artillery Battalion, in regard to their doctrinal Organic Framework and its current situation, referring to the equipments used in the process Command and Control of the Field Artillery Battalion. This research aimed to explain the capabilities of each equipment and a relationship between its amount and type provided in Table Organic and the quantity and type that are actually available for the Field Artillery Battalion. This study allowed us to analyze the configuration and operation of the Internal Networks for the Field Artillery Battalion, to check if its current organization needs changes, allowing the fulfillment of their missions in order to maximize the capabilities of the Automated System for Command and Control on behalf of the Field Artillery Battalion. This analysis concluded that the current organization of the Internal Networks for the Field Artillery Battalion does not allow to match the requirements of the Automated System for Command and Control, both in terms of the configuration of the networks as well as the materials used, which prevents the maximization of the potential of the system in the Field Artillery Battalion. Despite the limitations found in the Internal Networks for the Field Artillery Battalion, the previous analysis allowed to make the survey and subsequent analysis of possible network configurations to be adopted by the Field Artillery Battalion from the Quick Response Brigade.
Zheng, Jing. "Application of GAC adsorption in pulp and paper mill effluent treatment". Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2000. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape4/PQDD_0019/MQ58522.pdf.
Texto completo da fonteDe, Las Casas Carla. "In-Situ Regeneration of Granular Activated Carbon (GAC) Using Fenton's Reagents". Diss., The University of Arizona, 2006. http://hdl.handle.net/10150/195619.
Texto completo da fonteRentsch, Stefanie. "Hybrides Erzählen Text-Bild-Kombinationen bei Jean Le Gac und Sophie Calle". Paderborn München Fink, 2008. http://d-nb.info/993984967/04.
Texto completo da fonteChen, Bingran. "Effects of Chemical Properties of Cyanotoxins on Transport through Granular Activated Carbons". University of Cincinnati / OhioLINK, 2018. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1535374137804276.
Texto completo da fonteAl-Attas, Omar. "Competitive Adsorption of Iron and Natural Organic Matter in Groundwater Using Granular Activated Carbon". Thèse, Université d'Ottawa / University of Ottawa, 2012. http://hdl.handle.net/10393/23349.
Texto completo da fonteMishra, Chinmay. "On-Site Regeneration of Granular Activated Carbon : A literature study, comparison and assessment of different regeneration methods to find potential on-site regeneration method in Sweden". Thesis, KTH, Hållbar utveckling, miljövetenskap och teknik, 2021. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-291272.
Texto completo da fonteLäkemedel i vatten är ett stort hot mot miljö och hälsa. Kommunalt avloppsvatten består av avloppsvatten från hushåll, privata och offentliga institutioner och dagvattenavrinning. En viktig läkemedelskälla i avloppsvatten är ett läkemedel som kommer in via urin och / eller avföring. Olika tekniker finns för avlägsnande av farmaceutiska rester och andra mikroföroreningar från avloppsvatten. En sådan teknik är adsorptionen av dessa rester med hjälp av Granulärt Aktivtkor (GAC). Aktivtkor (AC) är ett kolhaltigt material med liten pordiameter, stora porvolymer och hög specifik yta rea vid bearbetning. Det anses vara det bästa adsorptionsmedlet för att adsorbera organiska, oorganiska och giftiga metalljoner som finns i avloppsvattnet. Det finns två typer av aktivtkol som används för att avlägsna farmaceutiska rester: Granulärt aktivtkol och pulveriserat aktivt kol. Denna forskning syftar till att identifiera, jämföra och bedöma befintlig regenereringsteknik för att hitta den teknik som har störst potential och använda den på ett referensavloppsreningsverk. Det finns olika metoder för regenerering av använt aktivt kol (SAC). Dessa är termisk regenerering, kemisk regenerering, biologisk regenerering, elektrokemisk regenerering, mikrovågsregenerering och våt-oxidationsregenerering. Metoderna listas och förklaras med hjälp av deras arbetsprincip, beredskap, kostnad, fördelar, nackdelar och referenser till studier där de har använts. Flera kriterier / faktorer beaktas för bedömning och jämförelse av olika regenereringsmetoder. Faktorerna poängsätts sedan med hjälp av ett viktat poängsystem. Var och en av de ovannämnda faktorerna görs mellan 0–5 och tilldelas en vikt mellan 1–3. En högre poäng betyder bättre prestanda i den givna faktorn. Medan en högre vikt betyder betydelsen av faktorn. Från bedömningen visar sig kemisk regenerering vara den mest lämpliga metoden för regenerering av GAC på plats. Den minst lämpliga metoden är biologisk regenerering med en total poäng på 39. De två bästa regenereringsmetoderna på plats är kemisk och mikrovågsregenerering. I procent har kemisk regenerering och mikrovågsregenerering en rating på 93,3% och 90%. För att validera resultatet av bedömningen används Himmerfjärdsverket som referensavloppsverk. Himmerfjärdsverket bygger om och expanderar till en högteknologisk anläggning. Den nya anläggningen kommer att bestå av modern reningsteknik och hög reningskapacitet. Den planerade nya anläggningen förväntas vara klar 2025, medan byggandet påbörjades i januari 2020. I en studie genomförd av Syvab i samarbete med Ramboll, IVL och SU anges att det skulle behövas kolförbrukning på 15–20 g / m3 vatten. Den totala kostnaden per behandlat avloppsvatten skulle sannolikt öka med 20–30% till 2027 om läkemedelsreningen genomförs på Himmerfjärdsverket med hjälp av GAC och av regenereringsmetoden utanför anläggningen. Himmerfjärdsverket kommer att konsumera 3,92 ton kol dagligen eller 27,56 ton varje vecka. Detta kommer att kosta 28,7 miljoner SEK / år för 20 000 EBV (i värsta fall) och 11,5 miljoner SEK / år för 50 000 EBV. Medan kostnaden för kemisk regenerering av GAC med högsta regenereringseffektivitet uppskattas till 27,4 miljoner SEK / år för användning av flytande NaOH-lösning och 17,7 miljoner SEK / år för användning av fast NaOH för 20 000 EBV. För mängden 573 t / år kol kommer NaOH-förbrukningen att vara 2083,5 t / år, vilket kommer att kosta 7,1 och 10,9 miljoner SEK / år för 50 000 EBV. Eftersom kostnad är en av de viktigaste faktorerna som motverkar tillämpningen av metoder som är lika tillförlitliga som termisk regenerering. Om termisk regenerering implementeras på Himmerfjärdsverket kan installationen användas för att regenerera GAC från andra reningsverk från Stockholm. 2 GAC-bio filter i serieskapare bättre förutsättningar för biologisk regenerering av GAC samt ger låga föroreningskoncentrationer och höga syrekoncentrationer. För att lägga till det producerar Himmerfjärdsverket biogas som kan användas för att uppnå höga temperaturer som krävs enligt denna metod eller generera den erforderliga elen eller båda. I alla tre fall kommer kostnaden att minskas ytterligare. Avslutningsvis har kemisk regenerering den högsta regenereringspotentialen på plats bland alla andra studerade metoder. Medan termisk regenerering är nära den andra på grund av kolförlusten. En pilotstudie krävs för att validera de regenereringseffektivitet som nämns i litteraturen och bearbetningsförhållandena och typerna av adsorbera vid Himmerfjärdsverket behöver utvärderas liksom behandlingsförhållandena.
Livros sobre o assunto "Gac"
Jean, Le Gac, e Musée Léon Dierx, eds. Jean Le Gac par Le Gac Jean. Paris: Cercle d'Art, 1992.
Encontre o texto completo da fonteGraese, Sandra L. GAC filter-adsorbers. Denver, Colo: American Water Works Association, 1987.
Encontre o texto completo da fonteDagbert, Anne. Jean Le Gac. Paris: Fall, 1998.
Encontre o texto completo da fonteGrupo de Arte Callejero (Argentina), ed. GAC: Pensamiento, prácticas, acciones. Ciudad Autónoma de Buenos Aires]: Tinta Limón Ediciones, 2009.
Encontre o texto completo da fonteOlivier, Laurent. Jean Le Gac: L'effraction douce. Paris: La Pionnière, 2009.
Encontre o texto completo da fonteGac, Jean Le. Jean le Gac & Robert Bonaccorsi. [S.l.]: Éditions Pérégrines/Le temps qu'il fait, 2006.
Encontre o texto completo da fonteOlivier, Laurent. Jean Le Gac: L'effraction douce. Paris: La Pionnière, 2009.
Encontre o texto completo da fonteAruba. Centraal Bureau voor de Statistiek. GAC-97: Geografische adressen classificatie. Oranjestad, Aruba: Centraal Bureau voor de Statistiek, 1997.
Encontre o texto completo da fonteEvelyne, Artaud, ed. L'atelier de Jean Le Gac. Paris: Thalia, 2010.
Encontre o texto completo da fonteWagneur, Jean-Didier. Une œuvre de Jean Le Gac. Marseille, France: Muntaner, 2000.
Encontre o texto completo da fonteCapítulos de livros sobre o assunto "Gac"
Tran, Xuan T., e Sophie E. Parks. "Improving Cultivation of Gac Fruit". In Gac Fruit, 1–14. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0001.
Texto completo da fonteTa, Ngoc T. M., Tuyen C. Kha e Minh H. Nguyen. "Microencapsulation of Gac Aril Oil". In Gac Fruit, 123–42. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0007.
Texto completo da fonteErsṃan, Sevcan, e Judith Müller-Maatsch. "Carotenoids in Gac Fruit Aril – Structure and Bioaccessibility". In Gac Fruit, 25–39. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0003.
Texto completo da fontePhan-Tai, Huan, Tuyen C. Kha e Minh H. Nguyen. "Advance Extraction Techniques for Gac Aril Oil". In Gac Fruit, 81–101. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0005.
Texto completo da fonteLe, Van-Anh. "Processing Technology of Gac Seeds". In Gac Fruit, 156–77. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0009.
Texto completo da fontePham, Tai Huu. "The Market for Gac Target Products". In Gac Fruit, 178–86. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0010.
Texto completo da fonteMai, Huynh Cang. "Membrane Filtration Technology and Its Application in Gac ( Momordica cochinchinensis Spreng.) Oil Concentration". In Gac Fruit, 102–22. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0006.
Texto completo da fonteKha, Tuyen C., e Minh H. Nguyen. "Gac Aril Processing Technology". In Gac Fruit, 40–80. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0004.
Texto completo da fonteVan Chuyen, Hoang. "Processing Technology of Gac Pulp and Peel". In Gac Fruit, 143–55. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0008.
Texto completo da fonteNguyen, Dao, e Tien Huynh. "Diversity in Nutrition and Bioactivity of Gac Fruit". In Gac Fruit, 15–24. GB: CABI, 2022. http://dx.doi.org/10.1079/9781789247329.0002.
Texto completo da fonteTrabalhos de conferências sobre o assunto "Gac"
Haas, Steffen, e Mathias Fischer. "GAC". In SAC 2018: Symposium on Applied Computing. New York, NY, USA: ACM, 2018. http://dx.doi.org/10.1145/3167132.3167239.
Texto completo da fonteAwdeh, Hussein, Adelle Abdallah, Youssef Zaki, Gilles Bernard e Mohammad Hajjar. "A Gold Multipurpose Arabic Corpus (GAC)". In 2021 International Conference on Electrical, Computer and Energy Technologies (ICECET). IEEE, 2021. http://dx.doi.org/10.1109/icecet52533.2021.9698621.
Texto completo da fonteLi, Zhe, Yaohua Wang e Zhanshan Li. "A Bitwise GAC Algorithm for Alldifferent Constraints". In Thirty-Second International Joint Conference on Artificial Intelligence {IJCAI-23}. California: International Joint Conferences on Artificial Intelligence Organization, 2023. http://dx.doi.org/10.24963/ijcai.2023/221.
Texto completo da fonteGuo, Yanqing, Meiqing Wang e Choi-Hong Lai. "An Improved GAC Model Combining with GNGVF". In 2011 Tenth International Symposium on Distributed Computing and Applications to Business, Engineering and Science (DCABES). IEEE, 2011. http://dx.doi.org/10.1109/dcabes.2011.23.
Texto completo da fonteSoyjaudah, K. M. S., I. Jahmeerbacus, C. Bhurtun e M. K. Oolun. "Hybrid BFSK/MPSK modulation employing GAC codes". In 1999 IEEE Africon. 5th Africon Conference in Africa. IEEE, 1999. http://dx.doi.org/10.1109/afrcon.1999.820768.
Texto completo da fonteJianjun Yun, Ping Li e Yumei Wen. "Contour segmentation using an improved GAC model". In 2011 International Conference on Multimedia Technology (ICMT). IEEE, 2011. http://dx.doi.org/10.1109/icmt.2011.6001795.
Texto completo da fonteLin, Yang, e Luo Tong. "Level Set Image Segmentation of CV-GAC Model". In 2018 13th International Conference on Computer Science & Education (ICCSE). IEEE, 2018. http://dx.doi.org/10.1109/iccse.2018.8468713.
Texto completo da fonteJing, Shen, Wu Muqing, Bai Yong e Zhao Min. "An improved GAC routing algorithm based on SDN". In 2017 3rd IEEE International Conference on Computer and Communications (ICCC). IEEE, 2017. http://dx.doi.org/10.1109/compcomm.2017.8322535.
Texto completo da fonteLi, Zhiwei, Steven G. Buchberger, Robert M. Clark e Y. Jeffrey Yang. "Calibration of GAC Model in Drinking Water Treatment". In World Environmental and Water Resources Congress 2011. Reston, VA: American Society of Civil Engineers, 2011. http://dx.doi.org/10.1061/41173(414)359.
Texto completo da fonteQiang Wang. "The improvement of GAC model for image segmentation". In 2013 IEEE 4th International Conference on Software Engineering and Service Science (ICSESS). IEEE, 2013. http://dx.doi.org/10.1109/icsess.2013.6615480.
Texto completo da fonteRelatórios de organizações sobre o assunto "Gac"
Tarpley, Danielle, e David Perkey. Impacts of Granular Activated Carbon (GAC) on erosion behavior of muddy sediment. Engineer Research and Development Center (U.S.), julho de 2022. http://dx.doi.org/10.21079/11681/44841.
Texto completo da fonteRoy, P. Fish Toxicity Non-Hazardous Waste GAC Data. Office of Scientific and Technical Information (OSTI), dezembro de 2016. http://dx.doi.org/10.2172/1336983.
Texto completo da fonteMorley, M. C., e G. E. Jr Speitel. Biodegradation of high explosives on granular activated carbon [GAC]: Enhanced desorption of high explosives from GAC -- Batch studies. Office of Scientific and Technical Information (OSTI), março de 1999. http://dx.doi.org/10.2172/329496.
Texto completo da fonteSchuberth, Moritz. Une approche des groupes armés communautaires en Afrique subsaharienne : Enseignements tirés et mesures de la réussite. RESOLVE Network, novembro de 2020. http://dx.doi.org/10.37805/cbags.fr.2020.4.
Texto completo da fonteMatfess, Hilary. Pourvoyeuses de légitimité : Les femmes dans les groupes armés communautaires. RESOLVE Network, outubro de 2021. http://dx.doi.org/10.37805/cbags.fr.2021.3.
Texto completo da fonteVan Metre, Lauren. D’auto-défenseurs à justiciers: Un cadre typologique pour les groupes armés communautaires. RESOLVE Network, novembro de 2020. http://dx.doi.org/10.37805/cbags.fr.2020.2.
Texto completo da fonteJohn Deldebbio, T. L. Watson e J. B. Heintzelman. Long-Term Performance of Sulfer-Impregnated Granulated Activated Carbon (GAC) for Mercury Removal from NWCF Off-Gas. Office of Scientific and Technical Information (OSTI), setembro de 2003. http://dx.doi.org/10.2172/911828.
Texto completo da fonteSharpe, D. R. Bedrock erosional features and landforms, Cantley, Quebec: GAC-MAC field trip, May 28, 2011. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2017. http://dx.doi.org/10.4095/300689.
Texto completo da fonteBenovska, Mirka, Jeff Cook, Veronica Groshko, Bob Heine e Connie Hohman. Treatment of Industrial Process Effluents & Contaminated Groundwater Using the Biological Granular Activated Carbon-Fluidized Bed Reactor (GAC-FBR) Process. Volume I. Fort Belvoir, VA: Defense Technical Information Center, setembro de 1996. http://dx.doi.org/10.21236/ada348453.
Texto completo da fonteBenovska, Mirka, Jeff Cook, Veronica Groshko, Bob Heine e Connie Hohman. Treatment of Industrial Process Effluents & Contaminated Groundwater Using the Biological Granular Activated Carbon-Fluidized Bed Reactor (GAC-FBR) Process. Volume II. Fort Belvoir, VA: Defense Technical Information Center, setembro de 1996. http://dx.doi.org/10.21236/ada348454.
Texto completo da fonte