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Online since: February 2012
Authors: Pankaj Pankaj, Shikha Goyal, Prem Kishore Patnala, Mayank Verma
Liu et al [29] developed microbial fuel cells (MFC), for the degradation of methyl orange (MO).
Barnes et al [47] examined electrochemical oxidation of primary aliphatic amines while Santos et al [48] reported that electro-degradation of aromatic amines, benzene-1,4-diamine, 4-aminobenzene-1,3-diol and 5-amino-2-methoxy-benzenesulphonic acid, using boron doped diamond as anode.
Sono ozonation: Wenrong et al [89] further examined the sono-ozonation of arsenazo I solutions.
Al-Ekabi (Eds.), Elsevier., Amsterdam, 1993
Prevot, E.L.
Barnes et al [47] examined electrochemical oxidation of primary aliphatic amines while Santos et al [48] reported that electro-degradation of aromatic amines, benzene-1,4-diamine, 4-aminobenzene-1,3-diol and 5-amino-2-methoxy-benzenesulphonic acid, using boron doped diamond as anode.
Sono ozonation: Wenrong et al [89] further examined the sono-ozonation of arsenazo I solutions.
Al-Ekabi (Eds.), Elsevier., Amsterdam, 1993
Prevot, E.L.
Online since: December 2023
Authors: Zakaria Hadef, Kenza Kamli, Samir Labiod, Baghdadi Chouial, Ouarda Kamli, Mohamed Salah Aida, Hani Hadjoudja
., Algeria.
3Department of Physics, Faculty of Sciences, University Badji Mokhtar, BP 12, 23000 Annaba.
4Department of Physics, Faulty of Science, King Abdulaziz University Jeddah, Saudi Arabia.
5LRPCSI, University 20 Août 1955, BP 26, Route El-Hadaiek, 21000 Skikda, Algeria.
These results are in good agreement with the results obtained by other researchers [20, 21]; furthermore, a recent study by Woods-Robinson et al. has revealed that usually with chemical synthesis methods a heterostructural, heterovalent alloy can be formed in varying degrees [1].
Al-Noaman, A.
These results are in good agreement with the results obtained by other researchers [20, 21]; furthermore, a recent study by Woods-Robinson et al. has revealed that usually with chemical synthesis methods a heterostructural, heterovalent alloy can be formed in varying degrees [1].
Al-Noaman, A.
Online since: August 2012
Authors: Mustafa Bakkal
La-Al-Ni and La- AL-Cu.
Zr- Cu-Ni-Al) [11].
This type of coating is used extensively for machining of Al due to the chemical stability with Al at high temperature.
Similar burr formation characteristics were also observed in Al 6061 in Fig. 4.4.
El-Baradi, Machinability of nickel-base super alloys: a review, Journal of Materials Processing Technology 77 (1998) 278-284
Zr- Cu-Ni-Al) [11].
This type of coating is used extensively for machining of Al due to the chemical stability with Al at high temperature.
Similar burr formation characteristics were also observed in Al 6061 in Fig. 4.4.
El-Baradi, Machinability of nickel-base super alloys: a review, Journal of Materials Processing Technology 77 (1998) 278-284
Online since: July 2013
Authors: Francis W.Y. Momade, P.S. Kwawukume, Lemuel Gbologah
Figure 6 Mass change of synthesized sol-el mullites coatings on SiC coated-C/C substrates as a function of oxidation time at 1500 oC for 110-hour
Figures 7 - 10 show the surface morphologies of sol-gel mullite coating on SiC coated-C/C substrates after 110-hour of isothermal oxidation.
Online since: March 2008
Authors: Wilfried Lerch, Silke Paul
Similar data were presented by
Lerch et al. [24].
Ambient effects on shallow arsenic and phosphorous implants were investigated by Paul et al
As already suggested by Olson et al. [41] and shown for SPE processes with RTP by Lerch et al
Al-Bayati, A.
El Farhane, C.
Ambient effects on shallow arsenic and phosphorous implants were investigated by Paul et al
As already suggested by Olson et al. [41] and shown for SPE processes with RTP by Lerch et al
Al-Bayati, A.
El Farhane, C.
Online since: April 2021
Authors: Sumit Dubal, Sachin Chavan
Ouksaphea Pech et.al.
Young-Jung Heo et.al have synthesized electrospun carbon fiber with PAN precursor by electrospinning technique followed by carbonization and KOH activation.
Mater. 24 (2012) 2547–2566 [20] A.L.
Chee et al., “Electrospun graphene nanoplatelets-reinforced carbon nanofibers as potential supercapacitor electrode,” Mater.
Chee et al., “Electrospun nanofiber membranes as ultrathin flexible supercapacitors,” RSC Adv., vol. 7, no. 20, pp. 12033–12040, 2017.
Young-Jung Heo et.al have synthesized electrospun carbon fiber with PAN precursor by electrospinning technique followed by carbonization and KOH activation.
Mater. 24 (2012) 2547–2566 [20] A.L.
Chee et al., “Electrospun graphene nanoplatelets-reinforced carbon nanofibers as potential supercapacitor electrode,” Mater.
Chee et al., “Electrospun nanofiber membranes as ultrathin flexible supercapacitors,” RSC Adv., vol. 7, no. 20, pp. 12033–12040, 2017.