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  <title>NOPR Collection:</title>
  <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/57832" />
  <subtitle />
  <id>http://nopr.niscpr.res.in/handle/123456789/57832</id>
  <updated>2026-10-10T21:41:31Z</updated>
  <dc:date>2026-10-10T21:41:31Z</dc:date>
  <entry>
    <title>A policy Dialogue on COVID-19 Vaccine from Vaccine Self-Reliance to Global leadership, Opportunities, Challenges, and policy Imperatives in Covid Era: Brief Report</title>
    <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/57870" />
    <author>
      <name>Prasanna, N K</name>
    </author>
    <author>
      <name>Anu</name>
    </author>
    <author>
      <name>Y, Madhavi</name>
    </author>
    <id>http://nopr.niscpr.res.in/handle/123456789/57870</id>
    <updated>2021-08-06T06:34:35Z</updated>
    <published>2021-05-01T00:00:00Z</published>
    <summary type="text">Title: A policy Dialogue on COVID-19 Vaccine from Vaccine Self-Reliance to Global leadership, Opportunities, Challenges, and policy Imperatives in Covid Era: Brief Report
Authors: Prasanna, N K; Anu; Y, Madhavi
Page(s): 378</summary>
    <dc:date>2021-05-01T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>A policy Dialogue on COVID-19 Vaccine from Vaccine Self-Reliance to Global leadership, Opportunities, Challenges, and policy Imperatives in Covid Era: Brief Report</title>
    <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/57869" />
    <author>
      <name>Prasanna, N K</name>
    </author>
    <author>
      <name>Anu</name>
    </author>
    <author>
      <name>Y, Madhavi</name>
    </author>
    <id>http://nopr.niscpr.res.in/handle/123456789/57869</id>
    <updated>2021-08-06T06:36:05Z</updated>
    <published>2021-05-01T00:00:00Z</published>
    <summary type="text">Title: A policy Dialogue on COVID-19 Vaccine from Vaccine Self-Reliance to Global leadership, Opportunities, Challenges, and policy Imperatives in Covid Era: Brief Report
Authors: Prasanna, N K; Anu; Y, Madhavi
Page(s): 377</summary>
    <dc:date>2021-05-01T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>Optimization of process conditions to improve copper adsorption capacity of raw and treated Algerian bentonite: Characterization, kinetics and equilibrium study</title>
    <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/57846" />
    <author>
      <name>Bouaziz, Mohamed Ghrissi</name>
    </author>
    <author>
      <name>Youcef, Leila</name>
    </author>
    <author>
      <name>Kheliel, Oussama</name>
    </author>
    <author>
      <name>Benalia, Mohamed Charif</name>
    </author>
    <id>http://nopr.niscpr.res.in/handle/123456789/57846</id>
    <updated>2021-08-05T06:45:58Z</updated>
    <published>2021-05-01T00:00:00Z</published>
    <summary type="text">Title: Optimization of process conditions to improve copper adsorption capacity of raw and treated Algerian bentonite: Characterization, kinetics and equilibrium study
Authors: Bouaziz, Mohamed Ghrissi; Youcef, Leila; Kheliel, Oussama; Benalia, Mohamed Charif
Abstract: Raw bentonite (RB) locally available in Mostaganem (Algeria) deposit has been treated in the presence of NaOH&#xD;
(B-NaOH), MgCl2 (B-MgCl2) and H2SO4 (B-H2SO4) to improve its adsorption ability for the removal of copper ions from&#xD;
aqueous solutions. Characterization of all adsorbents supported montmorillonite, illite and kaolinite as major clay minerals&#xD;
identified for the raw and treated bentonites and proved the aluminosilicate structure of the clays. In synthetic solutions, the&#xD;
adsorption equilibrium of copper onto RB, B-MgCl2 and B-H2SO4 is reached in 30 min. while, equilibrium is reached after 4&#xD;
hours when using B-NaOH. The adsorption kinetics are well described by the pseudo-second-order model. The adsorption&#xD;
of copper is pH-dependent. The Langmuir, Freundlich and Dubinin-Radushkevich isotherms indicate a suitable fit between&#xD;
the experimental data and models. The corresponding parameters indicate that the sorption mechanism might be physical in&#xD;
nature. The maximum adsorption capacities of Langmuir that are obtained are in the following order 25.1 mg/g (RB) &lt;&#xD;
28.03 mg/g (B-H2SO4) &lt; 39.89 mg/g (B-MgCl2) &lt; 72.80 mg/g (B-NaOH). The removal efficiency of copper in industrial&#xD;
wastewater was 45.75 %, 55.22 %, 63.27 % and 70.39 % using RB, B-MgCl2, B-H2SO4 and B-NaOH, respectively. The&#xD;
B-NaOH exhibit a higher adsorption capacity of copper with the other tested bentonites.
Page(s): 249-261</summary>
    <dc:date>2021-05-01T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>Natural carbohydrate gums based hydrogels</title>
    <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/57845" />
    <author>
      <name>Balodhi, Divya</name>
    </author>
    <author>
      <name>Khushbu</name>
    </author>
    <author>
      <name>Warkar, Sudhir G</name>
    </author>
    <author>
      <name>Rani, Archana</name>
    </author>
    <author>
      <name>Gupta, Rajinder K</name>
    </author>
    <id>http://nopr.niscpr.res.in/handle/123456789/57845</id>
    <updated>2021-08-05T06:42:52Z</updated>
    <published>2021-05-01T00:00:00Z</published>
    <summary type="text">Title: Natural carbohydrate gums based hydrogels
Authors: Balodhi, Divya; Khushbu; Warkar, Sudhir G; Rani, Archana; Gupta, Rajinder K
Abstract: The future of good research lies in the search of innocuous material development, based primarily on natural resources.&#xD;
Keeping in this perspective, four different natural gums namely, Locust bean Gum, Gum Ghatti, Gum Tragacanth, and, Gum&#xD;
Acacia, are used to synthesize four different novel hydrogels via free radical polymerization method with sodium acrylate&#xD;
and acrylamide. The synthesis is evident with the help of characterization using TGA (Thermo Gravimetric Analysis), FTIR&#xD;
(Fourier Transform Infrared Spectroscopy), SEM (Scanning Electron Microscope), 13C NMR (Nuclear Magnetic&#xD;
Resonance), and swelling studies in buffer solutions of pH 4, pH 7.4, pH 9.2, and, in distilled water. The synthesized&#xD;
hydrogels are potent enough in its potential utility in pharmaceuticals, drug delivery, tissue engineering as scaffolds that&#xD;
generally mimic human skin and in wound healing activity by incorporating the drug into it.
Page(s): 262-273</summary>
    <dc:date>2021-05-01T00:00:00Z</dc:date>
  </entry>
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