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    <subfield code="a">Bebartta, Ram Prasad  </subfield>
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    <subfield code="a">Development of cryodesiccated micronized protein conglomerates ;</subfield>
    <subfield code="b">effect of maltodextrin on its thermal stability, functionality and digestibility</subfield>
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    <subfield code="a">Pathum Thani, Thailand :</subfield>
    <subfield code="b">Asian Institute of Technology,</subfield>
    <subfield code="c">2021</subfield>
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    <subfield code="a">Thesis ;</subfield>
    <subfield code="v">no.FB-21-09</subfield>
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    <subfield code="a">A thesis submitted in partial fulfillment of the requirements for the degree of Master of Science in Food Engineering and Bioprocess Technology, School of Environment, Resources and Development</subfield>
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    <subfield code="a">Thesis (M. Sc.) - Asian Institute of Technology, 2021</subfield>
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    <subfield code="a">In recent days, better functional characteristics of the powders such as flow properties,  wettability, solubility, water activity, moisture content, particle shape and size, surface  charge distribution are highly desirable by the food manufacturers for the development  of many functional foods and drug delivery systems. And hence, extensive knowledge  regarding the aforementioned properties is highly essential. However, due to immense  exposure of the proteins during the thermal processing in any conventional thermal  drying methods, dried powders tend to show an alteration in their properties. Hence, in  this study WPI, SPI protein powders were selected for the evaluation of thermal  stability, functional characteristics and digestibility in the presence of a polysaccharide  i.e maltodextrin. Since, maltodextrin behaves as a thermal protectant and binder, studies  have been conducted on the thermal stability of the proteins with the presence of MD,  however 15% (w/v) of MD shows the best thermal stability for all the proteins (10%  w/v) with a TDT of &gt; 1150 C. Upon cryodesiccation of the aliquots, the powders were  subjected to fluidised bed dryer at various temperatures (800  {u2013} 900 C) and functional  properties of the reconstituted protein powders were compared with the lyophilised  powders. Study shows, powders treated with 1000 C depicts best functional properties,  and hence the later was subjected to invitro static digestive system for the determination  of bio-accessible protein fractions and results in non-significant difference with the  IVPD of the native untreated proteins. CDMPC bears the properties to resist the  extreme pH conditions during digestion as the powders tend to show highest buffer  index below pH 2. However, due to less moisture and water activity content powders  show better stability over 60 days duration of time. Which depicts that, micro  agglomeration of the conglomerates at a optimised temperature by the process of self agglomeration or agglomeration by fines return; in the presence of a thermal protectant  and binder tends to increase the functional characteristics (reconstitution properties),  thermal stability along with storage stability while not affecting the digestibility of the  native proteins. </subfield>
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    <subfield code="a">Proteins</subfield>
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    <subfield code="a">Anal, Anil Kumar,</subfield>
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    <subfield code="a">Loc Thai Nguyen,</subfield>
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    <subfield code="a">Asian Institute of Technology Fellowship,</subfield>
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    <subfield code="a">Asian Institute of Technology.</subfield>
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    <subfield code="b">CREATED : 2021-05-10</subfield>
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