Paraffin Wax As a Phase Changing Material PCM

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Paraffin Wax As a Phase Changing Material PCM ( paraffin-wax-as-phase-changing-material-pcm )

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Crystals 2021, 11, 951 MWCNTs nanocomposites. Figure 4 confirms that the MWCNT layers were distributed in the PW in various paths and spots. The MWCNTs created a framework that supports heat transfer. Moreover, the layers of the MWCNTs were totally and regularly covered by paraffin, where the MWCNTs and PW were strongly integrated as the content of the MWCNTs increased, without any microcracks or loose interfaces. These observations have been confirmed by the EDX Elemental Analysis (see Figure 5), of the spatial distri- bution of various emelments. 8 of 14 (b) (c) Figure4.SEMiimageessooffththeepparaarfafifnfinwwaxa/xM/MWWCCNNTTcocmompopsoitseiste:sP:WPW-1C-1NCTN(Ta)(,aP)W,P-W2C-N2CTN(bT),(abn),daPnWd-P3WCN-3TC(Nc)T.S(ca).leSbcalres (a) Crystals 2021, 11, x FOR PEER REVIEW 9 of 15 bars of Figures 4 and 5 are the same (see Figure 5). of Figures 4 and 5 are the same (see Figure 5). (a1) (b1) (c1) (a2) (b2) (c2) FigureFi5g.uEreD5X.EimDXagimesagoefstohfethpeaprarfafifnfinwwaax//MWCNTcompposoisteitse:s(a:1(,a12,)aP2W)P-1WCN-1TC,(Nb1T,b,2()bP1W,b-2)CPNWT,-a2nCdN(cT1,,c2a)nPdW(-c31C,cN2)T.PW-3 CNT. It was anticipated that as the mass fraction of multi-walled carbon nanotubes rises, the thermal conductivity slowly rises, while the latent heat drops, which would indicate It was anticipated that as the mass fraction of multi-walled carbon nanotubes rises, that the increase in the PCM’s thermal conductivity using MWCNTs complements the the thermal conductivity slowly rises, while the latent heat drops, which would indicate decreased latent heat of the PCM composite. Consequently, further thermal measurements that the increase in the PCM’s thermal conductivity using MWCNTs complements the are required, with a fitting mass fraction of multi-walled carbon nanotubes needing to be decreased latent heat of the PCM composite. Consequently, further thermal measure- measured, based on the application. ments are required, with a fitting mass fraction of multi-walled carbon nanotubes needing 3.2.2. FTIR Analysis to be measured, based on the application. The FTIR spectra of the paraffin, carbon materials, and composites are shown in Figure 6. 3.2.2. FTIR Analysis The FTIR spectra of the paraffin, carbon materials, and composites are shown in Fig- ure 6.

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