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Download Free PDF. Manajemen Pelatihan dan Kursus. Durotul Yatimah. Download Full PDF Package. A short summary of this paper. 37 Full PDFs related to this paper. Manajemen Pelatihan dan Kursus. Manajemen Pelatihan dan Kursus. Durotul Yatimah. Jika nilai suatu besaran harus dihitung dengan rumus tertentu, maka kitidakpastian tergantung pada fungsi/persamaanya. Penjumlahan atau pengurangan Jika A = B + C atau A = B - C, maka ketidakpastian A adalah sebagai berikut: ∆A = ∆B + ∆C b. Perkalian atau pembagian Jika A = B x C atau A = B - C, maka ketidakpastian A dapat diketahui.

Accepted Manuscript Reply to comments on “CuYb0.5Fe1.5O4 nanoferrite adsorbent structural, morphological and functionalization characteristics for multiple pollutant removal by response surface methodology”
Muhammad Abdur Rehman, Ismail Yusoff, Pervaiz Ahmad, Yatimah Alias PII: DOI: Reference:
S0167-7322(17)33319-6 doi:10.1016/j.molliq.2017.09.095 MOLLIQ 7932
To appear in:
Journal of Molecular Liquids
Received date: Accepted date:
26 July 2017 21 September 2017
Please cite this article as: Muhammad Abdur Rehman, Ismail Yusoff, Pervaiz Ahmad, Yatimah Alias , Reply to comments on “CuYb0.5Fe1.5O4 nanoferrite adsorbent structural, morphological and functionalization characteristics for multiple pollutant removal by response surface methodology”. The address for the corresponding author was captured as affiliation for all authors. Please check if appropriate. Molliq(2017), doi:10.1016/ j.molliq.2017.09.095
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ACCEPTED MANUSCRIPT Reply to comments on “CuYb0.5Fe1.5O4 nanoferrite adsorbent structural, morphological and functionalization characteristics for multiple pollutant removal by response surface methodology” Muhammad Abdur Rehmana,b,c, Ismail Yusoffa, Pervaiz Ahmadd, Yatimah Aliasb,c Department of Geology, Faculty of Science, University Malaya, Kuala Lumpur 50603, Malaysia.
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Department of Chemistry, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia.
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University Malaya Centre for Ionic Liquids (UMCiL), University of Malaya, 50603 Kula Lumpur, Malaysia.
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Department of Physics, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia
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a.
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*Corresponding Author:
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Dr. Muhammad Abdur Rehman, Department of Geology, Faculty of Science, University of Malaya, Kuala Lumpur, 50603, Malaysia. Phone: +601-1380738 Fax: +603-79675149 E-mail: [email protected]
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Abstract
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Present short communication is in reply to the comments on published paper “CuYb0.5Fe1.5O4 nanoferrite adsorbent structural, morphological and functionalization characteristics for multiple
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pollutant removal by response surface methodology”[1].
Keywords: Nanoferrites, DOE, Response surface method, Adsorption, Adsorbents.
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ACCEPTED MANUSCRIPT Detailed reply Authors in ref [2] suggested a visual method of matching XRD data for data interpretation in comparison to computer software database matching standard method [2]. The authors suggested an outdated approach compared to the well-established approach to interpret XRD with highscoreplus software. The suggested changes present a skewed view with impractical arbitrary
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scales and does not fit into the domain of the nano-magnetic ferrites adsorbents. The chemistry
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and physics of magnetic ferrites is totally different then the suggested borides XPS standards in
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ref [2].
In their comments ref. [2] the authors suggested a non-stoichometric spinel compound
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(Cu7.04Fe16.96O32.00) with a cubic structure (space group: Fd-3m), and according to this standard the peaks were indexed in the following way: (022), (113), (222), (004), (133), (224), (155), etc.
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The authors suggested to compare a non-stochimetric spinel ferrite standard with a stoichiometric spinel ferrite (CuYb0.5Fe1.5O4) reported in [1]. In short the suggested reference
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and standards were clearly chemically different than the reported magnetic nanoferrites.
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In their second comments authors applied, unknown visual tools without any clear specification or version to compare relative intensities on an arbitrary scale. Moreover, the survey scan results
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from magnetic nanoferrites were tried to compare for a totally different class of compounds e.g. borides. It must be understood that the XPS survey spectrum displays the relative distribution of
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constituent’s elements of any sample, and by no means could it be used to make judgments on the arbitrary scale [3].
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The authors in ref [2] comments on the photelectronic properties are no longer considered for an adsorbents. However, these properties will be useful to study the catalytic behaviors of the magnetic ferrites. These properties needs further research and were beyond the scope of presented work [1]. In summary, the changes suggested in the comments emphasized to use a visual method to compare ferrite XRD data which is no longer practiced now a day. The chemistry and physics of the magnetic ferrites is quite unique then the suggested non metallic borides.
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ACCEPTED MANUSCRIPT References
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Rehman, M.A., et al., CuYb0·5Fe1.5O4 nanoferrite adsorbent structural, morphological and functionalization characteristics for multiple pollutant removal by response surface methodology. Journal of Molecular Liquids, 2016. 224: p. 1256-1265. Müller, F., et al., Comment on “CuYb0.5Fe1.5O4 nanoferrite adsorbent structural, morphological and functionalization characteristics for multiple pollutant removal by response surface methodology” by M.A. Rehman et al., J. Mol. Liq. 224 (2016) 1256– 1265. Journal of Molecular Liquids, 2017. 233: p. 52-54. Van der Heide, P., X-ray photoelectron spectroscopy: an introduction to principles and practices. 2011: John Wiley & Sons.
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ACCEPTED MANUSCRIPT Highlights •
An explanation is given to the comments regarding the XRD and XPS data presentation.

The manual visual comparison method versus computer database comparison of XRD standards. Explanation is given why suggested visual method is less precise then the digital database
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matching with higscoreplus.
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