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      <title>2021 Critical Quality Parameters Resource Build by Paula Bourke</title>
      <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2</link>
      <description>Name your selected product and define the critical quality parameter. How is it analysed?</description>
      <language>en-us</language>
      <pubDate>2021-09-28 15:59:22 UTC</pubDate>
      <lastBuildDate>2025-12-30 17:03:47 UTC</lastBuildDate>
      <webMaster>hello@padlet.com</webMaster>
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      <item>
         <title>The Juice Company: Cranberry Juice </title>
         <author>kathedmridul30</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1781566638</link>
         <description><![CDATA[<div><strong>Critical Quality Parameters </strong></div><ul><li>pH (pH meter and titrimetry)</li><li>Colour (Colorimeter)</li><li>Sensory: Taste, Odour, Aroma (Sensory Analysis)</li><li>Microbial Activity (Microbiological tests for the presence of specific pathogenic Microorganisms)</li><li>Enzyme Activity (to check for the activity of pectinolytic enzymes)</li><li>other quality parameters such as packaging, rheological properties etc. can also be considered as typical quality parameters.</li></ul><div><br></div><ol><li><sub>Režek Jambrak, A., Šimunek, M., Djekic, I., 2018. </sub><strong><sub>Total quality index of ultrasound-treated blueberry and cranberry juices and nectars. </sub></strong><sub>Food Science and Technology International 24, 434–446.. doi:10.1177/1082013218764962</sub></li><li><sub>Perreault, V., Gouin, N., Bérubé, A., Villeneuve, W., Pouliot, Y., Doyen, A., 2021. </sub><strong><sub>Effect of Pectinolytic Enzyme Pretreatment on the Clarification of Cranberry Juice by Ultrafiltration</sub></strong><sub>. Membranes 11, 55.. doi:10.3390/membranes11010055</sub></li></ol><div><br></div>]]></description>
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         <pubDate>2021-09-30 14:24:46 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1781566638</guid>
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      <item>
         <title>Orange juice quality parameters</title>
         <author>luciagallegotejeda</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1781800101</link>
         <description><![CDATA[<div><br><br></div><div>-pH. pH-meter&nbsp;<br><br></div><div>-Sugar content (°Brix). Refractometer&nbsp;<br><br></div><div>-Organic acids continent: titratable acidity (TA) <br><br></div><div>-Cloud. Unicam UV–Vis (UV2) spectrophotometer (Enzyme activity: pectin methylesterase and peroxidase).<br><br></div><div>-Browning index. UV–Vis spectrophotometer or HPLC (furfural and 5-hydroxymethylfurfural (HMF))&nbsp;<br><br></div><div>-Color. Colorimeter (L*, a*, and b* values)<br><br></div><div>-Content of vitamin  HPLC&nbsp;<br><br></div><div>-Microbiological analyses. Shelf life study, pathogen detection<br><br></div><div>Tiwari, B. K., Muthukumarappan, K., O’Donnell, C. P., &amp; Cullen, P. J. (2008). Effects of sonication on the kinetics of orange juice quality parameters. <em>Journal of Agricultural and Food Chemistry</em>. https://doi.org/10.1021/jf073503y<br><br></div><div>Vervoort, L., Van Der Plancken, I., Grauwet, T., Timmermans, R. A. H., Mastwijk, H. C., Matser, A. M., Hendrickx, M. E., &amp; Van Loey, A. (2011). Comparing equivalent thermal, high pressure and pulsed electric field processes for mild pasteurization of orange juice: Part II: Impact on specific chemical and biochemical quality parameters. <em>Innovative Food Science and Emerging Technologies</em>. https://doi.org/10.1016/j.ifset.2011.06.003<br><br></div>]]></description>
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         <pubDate>2021-09-30 15:30:43 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1781800101</guid>
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      <item>
         <title>The Grower&#39;s Harvest Apple Juice quality parameter</title>
         <author>JiaweiDing</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1781895679</link>
         <description><![CDATA[<div><strong>Physicochemical parameter:</strong></div><div>- pH (pH meter);&nbsp;</div><div>- Titrable acidity (titrimetry);&nbsp;</div><div>- Total soluble solids (indirect by refractometry)</div><div>&nbsp;</div><div><strong>Safety parameter: &nbsp;</strong></div><div>- Microbial analysis (microorganism detected by total plate count)</div><div>&nbsp;</div><div><strong>Sensorial parameter:</strong></div><div>- Color (Hunter Lab colorimeter)</div><div>- Cloud (UV–Vis spectrophotometer)</div><div>- Sensory (evaluated by Trained Panels)</div><div>&nbsp;</div><div><strong>Specific parameter for apple juice:&nbsp;</strong></div><div>- Ascorbic acid, e.g. Vitamin C (HPLC)</div><div>- Browning index (UV–Vis spectrophotometer)</div><div>- Polyphenoloxidase (PPO) activity (UV–Vis spectrophotometer)</div><div>- Pectinmethylesterase (PME) activity (Rouse and Atkins (1955) method in automatic titrator)<br><br>Reference:<br><sub><sup>Codex Alimentarius Commission. (2005). Codex General Standard for Fruit Juices and Nectars. </sup></sub><em><sub><sup>Codex Stand 247</sup></sub></em><sub><sup>, 1–19.<br></sup></sub><br></div><div><sub><sup>FARCAS, A., MURESAN, C., TOFANA, M., &amp; MIRCA, S. (2017). Development and Analysis of Quality Parameters of an Innovative Juice. </sup></sub><em><sub><sup>Bulletin of University of Agricultural Sciences and Veterinary Medicine Cluj-Napoca. Food Science and Technology</sup></sub></em><sub><sup>, </sup></sub><em><sub><sup>74</sup></sub></em><sub><sup>(1), 31. https://doi.org/10.15835/buasvmcn-fst:12630<br></sup></sub><br></div><div><sub><sup>Suárez-Jacobo, Á., Saldo, J., Rüfer, C. E., Guamis, B., Roig-Sagués, A. X., &amp; Gervilla, R. (2012). Aseptically packaged UHPH-Treated apple juice: Safety and quality parameters during storage. </sup></sub><em><sub><sup>Journal of Food Engineering</sup></sub></em><sub><sup>, </sup></sub><em><sub><sup>109</sup></sub></em><sub><sup>(2), 291–300. https://doi.org/10.1016/j.jfoodeng.2011.09.007</sup></sub></div>]]></description>
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         <pubDate>2021-09-30 16:00:03 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1781895679</guid>
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      <item>
         <title>Orange juice quality parameters</title>
         <author>xinyuefu</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782149725</link>
         <description><![CDATA[<div>-Titratable acidity: titrating<br><br>-pH: pH meter<br><br>-Total soluble solids (<sup>o</sup>Brix): refractometer<br><br>-Color (<em>L*</em>, <em>a*</em>, <em>b*</em>): colorimeter<br><br>-Non-enzymatic browning (NEB) value: Unicam UV-VIS (UV2) spectrophotometer<br><br>-Cloud value: Unicam UV-VIS (UV2) spectrophotometer<br><br>-Pectin Methyl Esterase (PME) activity: determined by titrating the liberated carboxyl group at pH 7.5 (30 °C)<br><br>-Vitamin C content: high-performance liquid chromatography (HPLC) system<br><br>References<br>Xu, L., Garner, A.L., Tao, B. <em>et al.</em> Microbial Inactivation and Quality Changes in Orange Juice Treated by High Voltage Atmospheric Cold Plasma. <em>Food Bioprocess Technol</em> <strong>10, </strong>1778–1791 (2017). https://doi.org/10.1007/s11947-017-1947-7<br><br>Tiwari, B.K., O’ Donnell, C.P., Muthukumarappan, K. and Cullen, P.J. (2009), Effect of sonication on orange juice quality parameters during storage. International Journal of Food Science &amp; Technology, 44: 586-595. <a href="https://doi.org/10.1111/j.1365-2621.2008.01858.x">https://doi.org/10.1111/j.1365-2621.2008.01858.x</a></div><div><br></div>]]></description>
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         <pubDate>2021-09-30 17:35:23 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782149725</guid>
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      <item>
         <title>Pineapple Juice&#39; CQP</title>
         <author>waqassiddiqui</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782294830</link>
         <description><![CDATA[<div>Pre-Processing Parameters</div><ul><li>Quality of Pineapples</li></ul><div><sub>(area, crop, season, storage conditions (volatile compounds that produce the characteristic aroma of pineapple vary on the pineapple variety ~ measured organoleptically )</sub><br>Processing &nbsp;</div><ul><li>Preservation method ( heating time and temperature) - measured in-line sensors and design, phospotase test &nbsp;</li><li>Physicochemical parameters [measurement]&nbsp;<ul><li>pH [pH-meter]</li><li>&nbsp;TA [titration with NaOH]</li><li>TSS [ refractometer ]</li><li>L*, a*, and b* [colorimeter]. &nbsp;</li></ul></li><li>Microbiological parameters :&nbsp;<ul><li>Psychrotrophic bacteria (log CFU/mL)&nbsp; &nbsp;</li><li>Enterobacteria (log CFU/mL)&nbsp; &nbsp;</li><li>Yeasts and molds (log CFU/mL)&nbsp;</li></ul></li></ul><div>measure by<strong> </strong>microbiological plating and counting<strong>&nbsp;</strong></div><ul><li>Packaging<ul><li>Expiry date, allergen information other regulatory compliance&nbsp; ~inspection</li></ul></li></ul><div>References&nbsp;</div><ol><li>Mohamed, Soumanou &amp; Hounhouigan, Menouwesso &amp; Linnemann, Anita &amp; Boekel, Martinus. (2014). Effect of Processing on the Quality of Pineapple Juice. Food Reviews International. 30. 112-133. 10.1080/87559129.2014.883632.&nbsp;</li></ol><div><br></div>]]></description>
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         <pubDate>2021-09-30 18:37:57 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782294830</guid>
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      <item>
         <title></title>
         <author>ming_yem96</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782308924</link>
         <description><![CDATA[<ul><li>pH: pH meter</li><li>Soluble solids: Leica Mark II Plus Abbe Refractometer</li><li>Tithable acidity: titration with NaOH (AOAC 2000)</li><li>activity&nbsp; of&nbsp; Pectinmethylesterase (PME) - titration of carboxylic groups&nbsp;</li><li>Activity of Polygalacturonase (PG) - spectrophotometer</li><li>Color -Hunterlab&nbsp; Colorflex&nbsp; colorimeter</li><li>viscosity&nbsp; - rotary&nbsp; viscometer&nbsp;</li><li>Consistency = Bostwick consistometer</li><li>Ascorbic acid content: HPLC</li><li>Antioxidant activity: FRAP assay</li></ul><div><br></div><div>Other parameters such as Textural properties</div><div><br></div><div><br></div><div>Sofia Boulekou, Constantinos Mallidis, Petros S. Taoukis, Nikolaos G. Stoforos,</div><div>Quality evaluation of slightly concentrated tomato juice produced under high pressure conditions,</div><div>Procedia Food Science, Volume 1, 2011, Pages 800-804, ISSN 2211-601X,</div><div>https://doi.org/10.1016/j.profoo.2011.09.121.</div><div><br></div><div>KAUR, C., GEORGE, B., DEEPA, N., JAGGI, S. and KAPOOR, H. (2007),&nbsp;</div><div>VISCOSITY AND QUALITY OF TOMATO JUICE AS AFFECTED BY PROCESSING METHODS.&nbsp;</div><div>Journal of Food Quality, 30: 864-877. <a href="https://doi.org/10.1111/j.1745-4557.2007.00166.x">https://doi.org/10.1111/j.1745-4557.2007.00166.x</a></div><div><br></div>]]></description>
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         <pubDate>2021-09-30 18:44:47 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782308924</guid>
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      <item>
         <title>Cloudy apple juice. Critical quality parameters.</title>
         <author>sergioquecandiaz</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782343473</link>
         <description><![CDATA[<div><strong>General criteria:<br></strong>- <em>pH: </em>pH meter<br>- <em>Sugar content: </em>refractometer (°Brix). <br>- <em>Colour: </em>colourimeter or experienced panellists.<br>- <em>Sensory analyses (odour/flavour):</em> experienced panellists. <br>- <em>Non-enzymatic browning:</em> absorbance measure via spectrophotometer.<br>- <em>Particle size distribution</em>: laser diffraction.<br>- <em>Microbial analyses:</em> total plate count.<strong><br></strong><br><strong>Specific criteria:</strong><br>- <em>Turbidity intensity:</em> measured with special turbidity photometers (nephelometer).<br>- <em>Sedimentation stability:</em> measured by centrifugation test.<br>- <em>Colour (cloud colour): </em>&nbsp;measured by spectral reflexion colourimeters or experienced panellists.<br>- <em>Polyphenol oxidase activity (Enzymatic browning): </em>spectrophotometry.<br><br><strong>References:<br>- </strong>&nbsp;Zimmer, Edgar. Pecoroni, Stefan. Cloudy Apple Juice Influence of Raw Material, Processing and Storage.<em> SCIENCE &amp; TECHNOLOGY COMMISSION BEST PRACTICE GUIDELINE. </em>2019.&nbsp; https://cdn.ymaws.com/ifu-fruitjuice.com/resource/resmgr/best_practice_guidelines/ifu_bpg_cloudy_apple_juice__.pdf<br><br>- A.E. Illera, S. Chaple, M.T. Sanz, S.Ng, P.Lu, J. Jones, E. Carey, P. Bourke. Effect of cold plasma on polyphenol oxidase inactivation in cloudy apple juice and on the quality parameters of the juice during storage. <em>Food Chemistry: X. </em>2019. https://reader.elsevier.com/reader/sd/pii/S2590157519300513?token=A2648AA6F8C3941344F0C60A26EA78485138F4EBC1CC673840E21AC3FD6721BE5CAC265568FB35BE0CA0EB905EC1B408&amp;originRegion=eu-west-1&amp;originCreation=20210930202239</div>]]></description>
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         <pubDate>2021-09-30 19:01:53 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782343473</guid>
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         <title>Mango juice critical quality parameter</title>
         <author>ruichaoli7</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782405123</link>
         <description><![CDATA[<ul><li>pH: pH meter</li><li>Color, clarity&nbsp; and&nbsp; non-enzymatic browning index (NEBI) : colorimeter</li><li>Total soluble solids: digital refractometer &nbsp;</li><li>Titratable acidity: titration with 0.1N sodium hydroxide</li><li>Total carotenoid content: UV/Visible spectrophotometry&nbsp;</li><li>Ascorbic acid content: 2,6-dichlorophen ol-indophenol (DCPIP) visual titration</li><li>Antioxidant activity: Folin–Ciocalteu assay &amp; DPPH radical scavenging assay</li><li>Other sensory properties (sweetness, sourness, etc): sensory analysis</li></ul><div><br>References:<br><br>Santhirasegaram V, Razali Z, Somasundram C. Effects of thermal treatment and sonication on quality attributes of Chokanan mango (Mangifera indica L.) juice[J]. Ultrasonics sonochemistry, 2013, 20(5): 1276-1282.<br><br><br>Wang J, Liu Q, Xie B, et al. Effect of ultrasound combined with ultraviolet treatment on microbial inactivation and quality properties of mango juice[J]. Ultrasonics sonochemistry, 2020, 64: 105000.</div><div><br></div>]]></description>
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         <pubDate>2021-09-30 19:34:22 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782405123</guid>
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      <item>
         <title>Prune Juice- Critical Quality Parameters</title>
         <author>chahatsharma1</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782528368</link>
         <description><![CDATA[<div><strong>General Quality Parameters-</strong><br><br>1. pH<br><br>2. Color<br><br>3. Microbiological Activity<br><br>4. Enzyme Activity <br><br><strong>Parameters for Prune Juice - <br></strong><br>1. Phenolic Compounds: HPLC-PDA-MS (high performance liquid chromatography- photo diode array- mass spectrometry)<br><br>2. Antioxidant Activity : HPLC or ABTS method (2,2-azino-di-(3-ethylbenzothialozine-sulfonic acid)<br><br>3. Drying (if done) prior to production also contributes to the chemical and physical attributes of the juice.<br><br><strong>Articles :-</strong><br>1. Luciana Cinquanta, Marisa Di Matteo, Marco Esti<br>Part2. <strong>Effect on the quality characteristics of different prune cultivators</strong> Food Chemistry 2002, 79(2002) 233-228<br>https://www.sciencedirect.com/science/article/pii/S0308814602001383?casa_token=q7R9dT7aCeIAAAAA:mmNubVVfW6kMrP4vFqpCz_roGVxCUuE1g3Xq60dXDO8XX87CpsnRMSAMgndvmMl_Y9v7ZyiGCrYX_A<br><br>2.&nbsp; Jennifer L. Donovan, Anne S. Meyer, and Andrew L. <br><strong>Phenolic Composition and Antioxidant Activity of Prunes and Prune Juice (Prunus domestica)</strong> Waterhouse Journal of Agricultural and Food Chemistry <strong>1998</strong> <em>46</em> (4), 1247-1252DOI: 10.1021/jf970831x</div><div><br>https://pubs.acs.org/doi/full/10.1021/jf970831x</div>]]></description>
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         <pubDate>2021-09-30 20:54:30 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782528368</guid>
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         <title>Critical Quality Parameters for Apple Juice</title>
         <author>swapnikamedikonda</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782627155</link>
         <description><![CDATA[<div>The general quality parameters that are taken into consideration are:<strong><br><br>Physico-Chemical Parameters<br><br></strong>1. pH<br>The pH value of apple juice is around 3.5 to 4. The pH can be calculated using potentiometry.<br><br>2. Colour<br>A spectrophotometer or a hunter lab instrument can be used to measure the colour of apple juice.<br><sub>&lt;https://www.foodengineeringmag.com/articles/99317-measuring-the-color-of-drinks-juices-and-other-liquids) (https://colourmeasure.com/learn/2015-07-16-how-to-measure-the-colour-of-fruit-juice&gt; [Accessed 30 September 2021].<br><br></sub>3. TSS<br>This can be calculated using refractometry or NIR.<br><sub>(Aip.scitation.org. 2021. [online] Available at: &lt;https://aip.scitation.org/doi/pdf/10.1063/1.5115678&gt; [Accessed 30 September 2021].)<br></sub><br><strong>Specific parameters:<br></strong><br>1. Ethanol can be measured using a gas chromatograph. <br><br>2. Caramel colouring was measured using UV-VIS spectrophotometry.<br><sub>(https://aip.scitation.org/doi/pdf/10.1063/1.5115678)</sub><br><br>For any product <strong>microbiological analysis </strong>has to be done and the product must qualify the set regulations for the product.<br><br>(<sub>http://www.fao.org/fao-who-codexalimentarius/sh-proxy/en/lnk=1&amp;url=https%253A%252F%252Fworkspace.fao.org%252Fsites%252Fcodex%252FStandards%252FCXS%2B247-2005%252FCXS_247e.pdf)<br><br></sub><br><br></div>]]></description>
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         <pubDate>2021-09-30 22:18:53 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1782627155</guid>
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      <item>
         <title>Critical Quality parameters - Tropical juice</title>
         <author></author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1783294664</link>
         <description><![CDATA[<div>General parameters:<br>1. pH- measure of free acidity (pHmeter-&lt;4.6)<br><br>2. Microbial analysis- (total viable count or specific tests)<br><br>3. Color- Colorimeter (L*, a*, b* values)<br><br>4.Total soluble solids- refractometer<br><br>Specific parameters:&nbsp;<br>-Determination of sugars and organic acids (ascorbic acid)- HPLC(high performance liquid chromatography), enzymatic techniques)<br><br><br>References:<br><br>-Microbial Analysis of some fruit juices available in the markets of Kashmir valley, India.</div><ul><li>January 2014</li><li><a href="https://www.researchgate.net/publication/journal/Asian-Journal-of-Microbiology-Biotechnology-and-Environmental-Sciences-0972-3005">Asian Journal of Microbiology, Biotechnology and Environmental Sciences</a>15(04):733-837</li></ul><div>-TawheedAmin-FruitJuiceResearch.PDF<br>-https://ifst.onlinelibrary.wiley.com/doi/full/10.1111/jfpp.13237?saml_referrer<br>(<a href="https://doi.org/10.1111/jfpp.13237"><strong>https://doi.org/10.1111/jfpp.13237</strong></a><strong>)</strong><br><br><br><br><br><br></div>]]></description>
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         <pubDate>2021-10-01 04:20:16 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1783294664</guid>
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      <item>
         <title>Orange juice critical quality parameters</title>
         <author>gabrielribeirooliveira</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1783798780</link>
         <description><![CDATA[<div>Total Soluble Solids (°Brix) - Density-hydrometer or Light refraction-refractometer<br><br>Acid content - titration (g of citric acid/L of juice)<br><br>pH - pHmeter<br><br>Ratio of&nbsp; °Brix to acid -&nbsp; Ratio=°Brix/%(w/w) citric acid<br><br>Colour - Colourimeter (L*, a*, b*)<br><br>Non-Enzymatic Browning (NEB) - UV-Vis spectrophotometer<br><br>Cloud - UV-Vis spectrophotometer (centrifuged samples)<br><br>Ascorbic acid - HPLC<br><br>Flavour (and volatiles, which are tested by flavour and aroma) - Sensory analysis<br><br><br>References</div><div>Orange Book. 2021. <em>Orange juice quality and categories</em>. [online] Available at: &lt;https://orangebook.tetrapak.com/chapter/orange-juice-quality-and-categories&gt; [Accessed 30 September 2021].</div><div>Tiwari, B., O’ Donnell, C., Muthukumarappan, K. and Cullen, P., 2009. Effect of sonication on orange juice quality parameters during storage. <em>International Journal of Food Science &amp; Technology</em>, 44(3), pp.586-595.</div><div><br><br></div>]]></description>
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         <pubDate>2021-10-01 09:53:23 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1783798780</guid>
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      <item>
         <title>Critical Quality Parameters for Apple juice</title>
         <author>julianespitiaperez</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1783957846</link>
         <description><![CDATA[<div>-TSS: Digital pocket refractometer (ºBrix).<br>-pH: pH meter.<br>- TA: Titrator.<br>-Color: Colorimeter ( Oxidation during mash processing increase the golden (yellow to orange) color of the apple juices)<br><br>-Ascorbic Acid: HPLC (Vitamin C contributes to the antioxidant capacity)<br>-Phenolic compounds: measured by spectrophotometer (Apple phenolics in the fruit include flavonoids).<br><br>References<br><br>Massini, L., Rico, D., &amp; Martin-Diana, A. B. (2018). Quality Attributes of Apple Juice. <em>Fruit Juices</em>, 45–57. https://doi.org/10.1016/b978-0-12-802230-6.00004-7<br><br>Stander, J. H., Muller, M., Joubert, E., Labuschagné, I. F., &amp; de Beer, D. (2021b). Potential of low-chill requiring and pink-fleshed apple cultivars for cloudy juice production. <em>Journal of Food Composition and Analysis</em>, <em>103</em>, 104089. https://doi.org/10.1016/j.jfca.2021.104089<br><br>Tikekar, R. V., Anantheswaran, R. C., &amp; LaBorde, L. F. (2011). Ascorbic Acid Degradation in a Model Apple Juice System and in Apple Juice during Ultraviolet Processing and Storage. <em>Journal of Food Science</em>, <em>76</em>(2), H62–H71. https://doi.org/10.1111/j.1750-3841.2010.02015.x<br><br>Zielinski, A. A., Zardo, D. M., Alberti, A., Bortolini, D. G., Benvenutti, L., Demiate, I. M., &amp; Nogueira, A. (2018). Effect of cryoconcentration process on phenolic compounds and antioxidant activity in apple juice. <em>Journal of the Science of Food and Agriculture</em>, <em>99</em>(6), 2786–2792. https://doi.org/10.1002/jsfa.9486<br><br><br><br><br></div>]]></description>
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         <pubDate>2021-10-01 11:46:14 UTC</pubDate>
         <guid>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1783957846</guid>
      </item>
      <item>
         <title>Cranberry Juice Quality Parameters</title>
         <author>claudiacepedamendiola</author>
         <link>https://padlet.com/paulabourke/rj98tpxpud0x6sn2/wish/1784012289</link>
         <description><![CDATA[<div>- Sensory Properties (taste, odour, aroma and colour) determined by trained panels.&nbsp;<br>-pH ~3.2 (potentiometer)<br>-Total acidity, quinic acid for cranberry juice (semi-automatic titrator)&nbsp;<br>-Antioxidant capacity (Ferric reducing antioxidant power assay)<br>-colour parameters (spectrophotometer,&nbsp; colorimeter)<br>- Microbial analysis (Total plate count)<br><br>____________________________________<br>- Jambrak, A. R., Šimunek, M., Petrović, M., Bedić, H., Herceg, Z., &amp; Juretić, H. (2017). Aromatic profile and sensory characterisation of ultrasound treated cranberry juice and nectar. Ultrasonics Sonochemistry, 38, 783-793. https://doi.org/10.1016/j.ultsonch.2016.11.027<br>- Bermúdez-Aguirre, D., &amp; Barbosa-Cánovas, G. V. (2012). Inactivation of Saccharomyces cerevisiae in pineapple, grape and cranberry juices under pulsed and continuous thermo-sonication treatments. Journal of Food Engineering, 108(3), 383-392.<br><br>- Gunathilake, K. D. P. P., Yu, L. J., &amp; Rupasinghe, H. V. (2014). Reverse osmosis as a potential technique to improve antioxidant properties of fruit juices used for functional beverages. Food chemistry, 148, 335-341.<br><br>- Sen Gupta, B., Masterson, F., &amp; Magee, T. R. A. (2005). Inactivation of E. coli in cranberry juice by a high voltage pulsed electric field. Engineering in Life Sciences, 5(2), 148-151.<br><br></div>]]></description>
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         <pubDate>2021-10-01 12:18:58 UTC</pubDate>
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