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  1. Article: Chitosan Biopolymer from Crab Shell as Recyclable Film to Remove/Recover in Batch Ketoprofen from Water: Understanding the Factors Affecting the Adsorption Process.

    Rizzi, Vito / Gubitosa, Jennifer / Fini, Paola / Romita, Roberto / Nuzzo, Sergio / Cosma, Pinalysa

    Materials (Basel, Switzerland)

    2019  Volume 12, Issue 23

    Abstract: Seafood, a delight for many people, is sold in the market as a wide variety of products. However, seafood industries produce many by-products; for example, during the processing, the heads and shells of shellfish are generated as waste. This results in ... ...

    Abstract Seafood, a delight for many people, is sold in the market as a wide variety of products. However, seafood industries produce many by-products; for example, during the processing, the heads and shells of shellfish are generated as waste. This results in the generation of a large amount of shell waste that is accumulated over time, inducing a major environmental concern. Effective solutions for recycling shell waste should be taken into consideration, and the extraction of commercially useful substances like chitin and its derivates, such as chitosan, could be a valid solution for reducing the seafood waste's environmental impact. Thus, during this work, we propose the use of chitosan as biowaste, to induce the formation of solid films useful for decontaminating water from emerging pollutants. In particular, ketoprofen was used as a model contaminant, and a high percentage of removal, at least 90%, was obtained in a short time under our experimental conditions. Thus, a comprehensive investigation into the adsorption of ketoprofen onto chitosan film was performed, detailing the nature of the adsorption by studying the effects of pH, temperature changes, and electrolyte presence in the solutions containing the pollutant. The process was found to be pH-dependent, involving meanly electrostatic interactions between the pollutant molecules and chitosan. The endothermic character of the adsorption was inferred. The kinetics of the process was investigated, showing that the pseudo second-order kinetic model best fit the experimental data. A recycling process of the adsorbent was proposed; therefore, the adsorbed pollutant can be recovered by reusing the same adsorbent material for further consecutive cycles of adsorption without affecting the efficiency for ketoprofen removal from water.
    Language English
    Publishing date 2019-11-20
    Publishing country Switzerland
    Document type Journal Article
    ZDB-ID 2487261-1
    ISSN 1996-1944
    ISSN 1996-1944
    DOI 10.3390/ma12233810
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article: Cyclodextrin polymers and salts: An Eco-Friendly combination to modulate the removal of sulfamethoxazole from water and its release

    Romita, Roberto / Rizzi, Vito / Gubitosa, Jennifer / Gabaldón, José Antonio / Fortea, María Isabel / Gómez-Morte, Teresa / Gómez-López, V.M / Fini, Paola / Cosma, Pinalysa

    Chemosphere. 2021 Nov., v. 283

    2021  

    Abstract: This study is aimed to validate water-insoluble cyclodextrin-epichlorohydrin polymer (β-EPI) use to remove, by adsorption, sulfamethoxazole (SMX) from water and then release it via an environmentally friendly treatment so that the adsorbent can be ... ...

    Abstract This study is aimed to validate water-insoluble cyclodextrin-epichlorohydrin polymer (β-EPI) use to remove, by adsorption, sulfamethoxazole (SMX) from water and then release it via an environmentally friendly treatment so that the adsorbent can be recycled according to one of the objectives of the European Project Life “Clean up” (LIFE 16 ENV/ES/000169).SMX adsorption experiments on β-EPI polymer in-batch were performed, varying different experimental parameters of the process, such as contact time, pH values, and so on.The adsorption process, exothermic and driven by enthalpy, occurs both through the formation of inclusion and association complexes, involves mainly hydrophobic and hydrogen bonds, has a rate-controlling step depending on both pollutant concentration and adsorbent dose and can be described by the Freundlich and Dubinin-Radushkevich models which confirm the polymer surface heterogeneity and the physical nature of the adsorption. The presence of salts gives rise to a general decrease in the SMX sorption, mainly in the case of bromide, which was used to promote the SMX desorption and regenerate the adsorbent. The overall results indicate that β-EPI polymer is not only capable of removing SMX by adsorption with short contact times and a qₘₐₓ = 10 mg/g but it is also easily regenerated using a 0.5 M solution of sodium bromide without any loss in the adsorption performance and with obvious economic and environmental advantages. The polymer as synthesized, with SMX adsorbed and regenerated was characterized by FT-IR, SEM and DSC.
    Keywords adsorbents ; adsorption ; cyclodextrins ; desorption ; enthalpy ; heat production ; hydrogen ; hydrophobicity ; pH ; pollutants ; polymers ; sodium bromide ; sorption isotherms ; sulfamethoxazole ; water solubility
    Language English
    Dates of publication 2021-11
    Publishing place Elsevier Ltd
    Document type Article
    ZDB-ID 120089-6
    ISSN 1879-1298 ; 0045-6535 ; 0366-7111
    ISSN (online) 1879-1298
    ISSN 0045-6535 ; 0366-7111
    DOI 10.1016/j.chemosphere.2021.131238
    Database NAL-Catalogue (AGRICOLA)

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  3. Article ; Online: Chitosan Film as Eco-Friendly and Recyclable Bio-Adsorbent to Remove/Recover Diclofenac, Ketoprofen, and their Mixture from Wastewater.

    Rizzi, Vito / Romanazzi, Fabio / Gubitosa, Jennifer / Fini, Paola / Romita, Roberto / Agostiano, Angela / Petrella, Andrea / Cosma, Pinalysa

    Biomolecules

    2019  Volume 9, Issue 10

    Abstract: This paper reported the first example on the use of chitosan films, without further modification, to remove and recover, through bio-sorption processes, the emerging pollutant Diclofenac from water. The latter was adopted as a model, among non-steroidal ... ...

    Abstract This paper reported the first example on the use of chitosan films, without further modification, to remove and recover, through bio-sorption processes, the emerging pollutant Diclofenac from water. The latter was adopted as a model, among non-steroidal anti-inflammatory drugs, by obtaining a maximum adsorption capacity, q
    MeSH term(s) Adsorption ; Chitosan/chemistry ; Diclofenac/analysis ; Hydrogen-Ion Concentration ; Industrial Waste ; Ketoprofen/analysis ; Spectroscopy, Fourier Transform Infrared ; Waste Water/chemistry ; Water Purification
    Chemical Substances Industrial Waste ; Waste Water ; Diclofenac (144O8QL0L1) ; Chitosan (9012-76-4) ; Ketoprofen (90Y4QC304K)
    Language English
    Publishing date 2019-10-05
    Publishing country Switzerland
    Document type Journal Article ; Research Support, Non-U.S. Gov't
    ZDB-ID 2701262-1
    ISSN 2218-273X ; 2218-273X
    ISSN (online) 2218-273X
    ISSN 2218-273X
    DOI 10.3390/biom9100571
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  4. Article ; Online: Cyclodextrin polymers and salts: An Eco-Friendly combination to modulate the removal of sulfamethoxazole from water and its release.

    Romita, Roberto / Rizzi, Vito / Gubitosa, Jennifer / Gabaldón, José Antonio / Fortea, María Isabel / Gómez-Morte, Teresa / Gómez-López, V M / Fini, Paola / Cosma, Pinalysa

    Chemosphere

    2021  Volume 283, Page(s) 131238

    Abstract: This study is aimed to validate water-insoluble cyclodextrin-epichlorohydrin polymer (β-EPI) use to remove, by adsorption, sulfamethoxazole (SMX) from water and then release it via an environmentally friendly treatment so that the adsorbent can be ... ...

    Abstract This study is aimed to validate water-insoluble cyclodextrin-epichlorohydrin polymer (β-EPI) use to remove, by adsorption, sulfamethoxazole (SMX) from water and then release it via an environmentally friendly treatment so that the adsorbent can be recycled according to one of the objectives of the European Project Life "Clean up" (LIFE 16 ENV/ES/000169). SMX adsorption experiments on β-EPI polymer in-batch were performed, varying different experimental parameters of the process, such as contact time, pH values, and so on. The adsorption process, exothermic and driven by enthalpy, occurs both through the formation of inclusion and association complexes, involves mainly hydrophobic and hydrogen bonds, has a rate-controlling step depending on both pollutant concentration and adsorbent dose and can be described by the Freundlich and Dubinin-Radushkevich models which confirm the polymer surface heterogeneity and the physical nature of the adsorption. The presence of salts gives rise to a general decrease in the SMX sorption, mainly in the case of bromide, which was used to promote the SMX desorption and regenerate the adsorbent. The overall results indicate that β-EPI polymer is not only capable of removing SMX by adsorption with short contact times and a q
    MeSH term(s) Adsorption ; Cyclodextrins ; Hydrogen-Ion Concentration ; Kinetics ; Salts ; Spectroscopy, Fourier Transform Infrared ; Sulfamethoxazole ; Water ; Water Pollutants, Chemical/analysis
    Chemical Substances Cyclodextrins ; Salts ; Water Pollutants, Chemical ; Water (059QF0KO0R) ; Sulfamethoxazole (JE42381TNV)
    Language English
    Publishing date 2021-06-15
    Publishing country England
    Document type Journal Article
    ZDB-ID 120089-6
    ISSN 1879-1298 ; 0045-6535 ; 0366-7111
    ISSN (online) 1879-1298
    ISSN 0045-6535 ; 0366-7111
    DOI 10.1016/j.chemosphere.2021.131238
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  5. Article: Operational parameters affecting the atrazine removal from water by using cyclodextrin based polymers as efficient adsorbents for cleaner technologies

    Romita, Roberto / Rizzi, Vito / Semeraro, Paola / Gubitosa, Jennifer / Gabaldón, José Antonio / Gorbe, María Isabel Fortea / López, Vicente Manuel Gómez / Cosma, Pinalysa / Fini, Paola

    Environmental technology & innovation. 2019 Aug. 14,

    2019  

    Abstract: In this work, the adsorption of atrazine, as emerging pollutant, from water, by using α-, β- and γ-cyclodextrin-epichlorohydrin water-insoluble copolymers, is presented and carefully investigated by using several complementary techniques. Various in ... ...

    Abstract In this work, the adsorption of atrazine, as emerging pollutant, from water, by using α-, β- and γ-cyclodextrin-epichlorohydrin water-insoluble copolymers, is presented and carefully investigated by using several complementary techniques. Various in batch experiments were performed, changing different parameters. The aqueous atrazine concentration were evaluated by HPLC analyses, and very interesting results were obtained when α-cyclodextrin-based polymer was employed. The presence of weak interactions, not affected by pH changes, involving H-bonds, van der Waals forces, with the possible formation of inclusions complexes host-guest-like between atrazine and the polymers were suggested and confirmed by FTIR-ATR spectroscopy and DSC analysis. Accordingly, the Freundlich isotherm well fitted the experimental data indicating the heterogeneous character of the adsorption process, better described by the pseudo-second order kinetic model. Overall, the thermodynamic analysis showed that the atrazine adsorption on α-, β- and γ-cyclodextrin-epichlorohydrin polymers was exothermic, exergonic occurring with an increase of entropy. Atrazine desorption experiments were carried out on α-EPI polymer through extraction with water, ethanol and methanol, indicating this latter as the most effective solvent for the purpose. Furthermore it was found that CD-EPI polymers can be effectively regenerated and reused at least for five times, thus promoting a circular economy.
    Keywords Fourier transform infrared spectroscopy ; adsorbents ; adsorption ; atrazine ; circular economy ; composite polymers ; cyclodextrins ; desorption ; entropy ; environmental technology ; ethanol ; heat production ; high performance liquid chromatography ; kinetics ; methanol ; pH ; pollutants ; solvents ; sorption isotherms ; sustainable technology ; van der Waals forces
    Language English
    Dates of publication 2019-0814
    Publishing place Elsevier B.V.
    Document type Article
    Note Pre-press version
    ISSN 2352-1864
    DOI 10.1016/j.eti.2019.100454
    Database NAL-Catalogue (AGRICOLA)

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  6. Article ; Online: Chitosan film as recyclable adsorbent membrane to remove/recover hazardous pharmaceutical pollutants from water: the case of the emerging pollutant Furosemide.

    Rizzi, Vito / Gubitosa, Jennifer / Fini, Paola / Romita, Roberto / Nuzzo, Sergio / Gabaldón, José Antonio / Gorbe, María Isabel Fortea / Gómez-Morte, Teresa / Cosma, Pinalysa

    Journal of environmental science and health. Part A, Toxic/hazardous substances & environmental engineering

    2020  Volume 56, Issue 2, Page(s) 145–156

    Abstract: Due to the negative effects of emerging contaminants on the environment, that can potentially induce deleterious effects in aquatic and human life, this paper focuses on the removal from the water of Furosemide, through the adsorption process. Indeed, ... ...

    Abstract Due to the negative effects of emerging contaminants on the environment, that can potentially induce deleterious effects in aquatic and human life, this paper focuses on the removal from the water of Furosemide, through the adsorption process. Indeed, only a few papers are available in the literature about the Furosemide adsorption and, chitosan films are thus proposed for this purpose as safe, sustainable, and recyclable adsorbent materials. In the present work, the effects on the adsorption process of several experimental parameters such as the pH values, ionic strength, amount of adsorbent/pollutant, and temperature values were investigated. The kinetics models, isotherms of adsorption, and the thermodynamic parameters were studied showing that the Furosemide physisorption occurred on the heterogeneous Chitosan surface, endothermically (Δ
    MeSH term(s) Adsorption ; Chitosan/chemistry ; Furosemide/analysis ; Humans ; Hydrogen-Ion Concentration ; Kinetics ; Temperature ; Thermodynamics ; Waste Water/chemistry ; Water Pollutants, Chemical/analysis ; Water Purification/methods
    Chemical Substances Waste Water ; Water Pollutants, Chemical ; Furosemide (7LXU5N7ZO5) ; Chitosan (9012-76-4)
    Language English
    Publishing date 2020-12-07
    Publishing country England
    Document type Journal Article
    ZDB-ID 196584-0
    ISSN 1532-4117 ; 0360-1226 ; 1077-1204 ; 1093-4529
    ISSN (online) 1532-4117
    ISSN 0360-1226 ; 1077-1204 ; 1093-4529
    DOI 10.1080/10934529.2020.1853985
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  7. Article ; Online: Removal of tetracycline from polluted water by chitosan-olive pomace adsorbing films.

    Rizzi, Vito / Lacalamita, Dario / Gubitosa, Jennifer / Fini, Paola / Petrella, Andrea / Romita, Roberto / Agostiano, Angela / Gabaldón, José Antonio / Fortea Gorbe, María Isabel / Gómez-Morte, Teresa / Cosma, Pinalysa

    The Science of the total environment

    2019  Volume 693, Page(s) 133620

    Abstract: This paper focuses on the removal of tetracycline from polluted water by chitosan-olive pomace adsorbing films. More specifically, both raw olive solid wastes (olive pomace) and the olive solid wastes/chitosan composite were compared and used for this ... ...

    Abstract This paper focuses on the removal of tetracycline from polluted water by chitosan-olive pomace adsorbing films. More specifically, both raw olive solid wastes (olive pomace) and the olive solid wastes/chitosan composite were compared and used for this purpose. Adsorption capacities values of 16 mg × g
    MeSH term(s) Adsorption ; Chitosan ; Industrial Waste ; Kinetics ; Olea ; Tetracycline/analysis ; Tetracycline/chemistry ; Thermodynamics ; Waste Disposal, Fluid/methods ; Water Pollutants, Chemical/analysis ; Water Pollutants, Chemical/chemistry ; Water Pollution ; Water Purification/methods
    Chemical Substances Industrial Waste ; Water Pollutants, Chemical ; Chitosan (9012-76-4) ; Tetracycline (F8VB5M810T)
    Language English
    Publishing date 2019-07-30
    Publishing country Netherlands
    Document type Journal Article
    ZDB-ID 121506-1
    ISSN 1879-1026 ; 0048-9697
    ISSN (online) 1879-1026
    ISSN 0048-9697
    DOI 10.1016/j.scitotenv.2019.133620
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  8. Article: Biosimilars: initial excitement gives way to reality.

    Belsey, Mark J / Harris, Laura M / Das, Romita R / Chertkow, Joanna

    Nature reviews. Drug discovery

    2006  Volume 5, Issue 7, Page(s) 535–536

    MeSH term(s) Biological Products ; Drug Approval ; Drugs, Generic ; Marketing ; Recombinant Proteins
    Chemical Substances Biological Products ; Drugs, Generic ; Recombinant Proteins
    Language English
    Publishing date 2006-07
    Publishing country England
    Document type News
    ZDB-ID 2062954-0
    ISSN 1474-1784 ; 1474-1776
    ISSN (online) 1474-1784
    ISSN 1474-1776
    DOI 10.1038/nrd2093
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  9. Article: Multiplicity and transverse momentum evolution of charge-dependent correlations in pp, p-Pb, and Pb-Pb collisions at the LHC.

    Adam, J / Adamová, D / Aggarwal, M M / Aglieri Rinella, G / Agnello, M / Agrawal, N / Ahammed, Z / Ahn, S U / Aiola, S / Akindinov, A / Alam, S N / Aleksandrov, D / Alessandro, B / Alexandre, D / Alfaro Molina, R / Alici, A / Alkin, A / Almaraz, J R M / Alme, J /
    Alt, T / Altinpinar, S / Altsybeev, I / Alves Garcia Prado, C / Andrei, C / Andronic, A / Anguelov, V / Anielski, J / Antičić, T / Antinori, F / Antonioli, P / Aphecetche, L / Appelshäuser, H / Arcelli, S / Arnaldi, R / Arnold, O W / Arsene, I C / Arslandok, M / Audurier, B / Augustinus, A / Averbeck, R / Azmi, M D / Badalà, A / Baek, Y W / Bagnasco, S / Bailhache, R / Bala, R / Baldisseri, A / Baral, R C / Barbano, A M / Barbera, R / Barile, F / Barnaföldi, G G / Barnby, L S / Barret, V / Bartalini, P / Barth, K / Bartke, J / Bartsch, E / Basile, M / Bastid, N / Basu, S / Bathen, B / Batigne, G / Batista Camejo, A / Batyunya, B / Batzing, P C / Bearden, I G / Beck, H / Bedda, C / Behera, N K / Belikov, I / Bellini, F / Bello Martinez, H / Bellwied, R / Belmont, R / Belmont-Moreno, E / Belyaev, V / Bencedi, G / Beole, S / Berceanu, I / Bercuci, A / Berdnikov, Y / Berenyi, D / Bertens, R A / Berzano, D / Betev, L / Bhasin, A / Bhat, I R / Bhati, A K / Bhattacharjee, B / Bhom, J / Bianchi, L / Bianchi, N / Bianchin, C / Bielčík, J / Bielčíková, J / Bilandzic, A / Biswas, R / Biswas, S / Bjelogrlic, S / Blair, J T / Blau, D / Blume, C / Bock, F / Bogdanov, A / Bøggild, H / Boldizsár, L / Bombara, M / Book, J / Borel, H / Borissov, A / Borri, M / Bossú, F / Botta, E / Böttger, S / Bourjau, C / Braun-Munzinger, P / Bregant, M / Breitner, T / Broker, T A / Browning, T A / Broz, M / Brucken, E J / Bruna, E / Bruno, G E / Budnikov, D / Buesching, H / Bufalino, S / Buncic, P / Busch, O / Buthelezi, Z / Butt, J B / Buxton, J T / Caffarri, D / Cai, X / Caines, H / Calero Diaz, L / Caliva, A / Calvo Villar, E / Camerini, P / Carena, F / Carena, W / Carnesecchi, F / Castillo Castellanos, J / Castro, A J / Casula, E A R / Ceballos Sanchez, C / Cepila, J / Cerello, P / Cerkala, J / Chang, B / Chapeland, S / Chartier, M / Charvet, J L / Chattopadhyay, S / Chelnokov, V / Cherney, M / Cheshkov, C / Cheynis, B / Chibante Barroso, V / Chinellato, D D / Cho, S / Chochula, P / Choi, K / Chojnacki, M / Choudhury, S / Christakoglou, P / Christensen, C H / Christiansen, P / Chujo, T / Chung, S U / Cicalo, C / Cifarelli, L / Cindolo, F / Cleymans, J / Colamaria, F / Colella, D / Collu, A / Colocci, M / Conesa Balbastre, G / Conesa Del Valle, Z / Connors, M E / Contreras, J G / Cormier, T M / Corrales Morales, Y / Cortés Maldonado, I / Cortese, P / Cosentino, M R / Costa, F / Crochet, P / Cruz Albino, R / Cuautle, E / Cunqueiro, L / Dahms, T / Dainese, A / Danu, A / Das, D / Das, I / Das, S / Dash, A / Dash, S / De, S / De Caro, A / de Cataldo, G / de Conti, C / de Cuveland, J / De Falco, A / De Gruttola, D / De Marco, N / De Pasquale, S / Deisting, A / Deloff, A / Dénes, E / Deplano, C / Dhankher, P / Di Bari, D / Di Mauro, A / Di Nezza, P / Diaz Corchero, M A / Dietel, T / Dillenseger, P / Divià, R / Djuvsland, Ø / Dobrin, A / Domenicis Gimenez, D / Dönigus, B / Dordic, O / Drozhzhova, T / Dubey, A K / Dubla, A / Ducroux, L / Dupieux, P / Ehlers, R J / Elia, D / Engel, H / Epple, E / Erazmus, B / Erdemir, I / Erhardt, F / Espagnon, B / Estienne, M / Esumi, S / Eum, J / Evans, D / Evdokimov, S / Eyyubova, G / Fabbietti, L / Fabris, D / Faivre, J / Fantoni, A / Fasel, M / Feldkamp, L / Feliciello, A / Feofilov, G / Ferencei, J / Fernández Téllez, A / Ferreiro, E G / Ferretti, A / Festanti, A / Feuillard, V J G / Figiel, J / Figueredo, M A S / Filchagin, S / Finogeev, D / Fionda, F M / Fiore, E M / Fleck, M G / Floris, M / Foertsch, S / Foka, P / Fokin, S / Fragiacomo, E / Francescon, A / Frankenfeld, U / Fuchs, U / Furget, C / Furs, A / Fusco Girard, M / Gaardhøje, J J / Gagliardi, M / Gago, A M / Gallio, M / Gangadharan, D R / Ganoti, P / Gao, C / Garabatos, C / Garcia-Solis, E / Gargiulo, C / Gasik, P / Gauger, E F / Germain, M / Gheata, A / Gheata, M / Ghosh, P / Ghosh, S K / Gianotti, P / Giubellino, P / Giubilato, P / Gladysz-Dziadus, E / Glässel, P / Goméz Coral, D M / Gomez Ramirez, A / Gonzalez, V / González-Zamora, P / Gorbunov, S / Görlich, L / Gotovac, S / Grabski, V / Grachov, O A / Graczykowski, L K / Graham, K L / Grelli, A / Grigoras, A / Grigoras, C / Grigoriev, V / Grigoryan, A / Grigoryan, S / Grinyov, B / Grion, N / Gronefeld, J M / Grosse-Oetringhaus, J F / Grossiord, J-Y / Grosso, R / Guber, F / Guernane, R / Guerzoni, B / Gulbrandsen, K / Gunji, T / Gupta, A / Gupta, R / Haake, R / Haaland, Ø / Hadjidakis, C / Haiduc, M / Hamagaki, H / Hamar, G / Harris, J W / Harton, A / Hatzifotiadou, D / Hayashi, S / Heckel, S T / Heide, M / Helstrup, H / Herghelegiu, A / Herrera Corral, G / Hess, B A / Hetland, K F / Hillemanns, H / Hippolyte, B / Hosokawa, R / Hristov, P / Huang, M / Humanic, T J / Hussain, N / Hussain, T / Hutter, D / Hwang, D S / Ilkaev, R / Inaba, M / Ippolitov, M / Irfan, M / Ivanov, M / Ivanov, V / Izucheev, V / Jacobs, P M / Jadhav, M B / Jadlovska, S / Jadlovsky, J / Jahnke, C / Jakubowska, M J / Jang, H J / Janik, M A / Jayarathna, P H S Y / Jena, C / Jena, S / Jimenez Bustamante, R T / Jones, P G / Jung, H / Jusko, A / Kalinak, P / Kalweit, A / Kamin, J / Kang, J H / Kaplin, V / Kar, S / Karasu Uysal, A / Karavichev, O / Karavicheva, T / Karayan, L / Karpechev, E / Kebschull, U / Keidel, R / Keijdener, D L D / Keil, M / Mohisin Khan, M / Khan, P / Khan, S A / Khanzadeev, A / Kharlov, Y / Kileng, B / Kim, D W / Kim, D J / Kim, D / Kim, H / Kim, J S / Kim, M / Kim, S / Kim, T / Kirsch, S / Kisel, I / Kiselev, S / Kisiel, A / Kiss, G / Klay, J L / Klein, C / Klein, J / Klein-Bösing, C / Klewin, S / Kluge, A / Knichel, M L / Knospe, A G / Kobayashi, T / Kobdaj, C / Kofarago, M / Kollegger, T / Kolojvari, A / Kondratiev, V / Kondratyeva, N / Kondratyuk, E / Konevskikh, A / Kopcik, M / Kour, M / Kouzinopoulos, C / Kovalenko, O / Kovalenko, V / Kowalski, M / Koyithatta Meethaleveedu, G / Králik, I / Kravčáková, A / Kretz, M / Krivda, M / Krizek, F / Kryshen, E / Krzewicki, M / Kubera, A M / Kučera, V / Kuhn, C / Kuijer, P G / Kumar, A / Kumar, J / Kumar, L / Kumar, S / Kurashvili, P / Kurepin, A / Kurepin, A B / Kuryakin, A / Kweon, M J / Kwon, Y / La Pointe, S L / La Rocca, P / Ladron de Guevara, P / Lagana Fernandes, C / Lakomov, I / Langoy, R / Lara, C / Lardeux, A / Lattuca, A / Laudi, E / Lea, R / Leardini, L / Lee, G R / Lee, S / Lehas, F / Lemmon, R C / Lenti, V / Leogrande, E / León Monzón, I / León Vargas, H / Leoncino, M / Lévai, P / Li, S / Li, X / Lien, J / Lietava, R / Lindal, S / Lindenstruth, V / Lippmann, C / Lisa, M A / Ljunggren, H M / Lodato, D F / Loenne, P I / Loginov, V / Loizides, C / Lopez, X / López Torres, E / Lowe, A / Luettig, P / Lunardon, M / Luparello, G / Maevskaya, A / Mager, M / Mahajan, S / Mahmood, S M / Maire, A / Majka, R D / Malaev, M / Maldonado Cervantes, I / Malinina, L / Mal'Kevich, D / Malzacher, P / Mamonov, A / Manko, V / Manso, F / Manzari, V / Marchisone, M / Mareš, J / Margagliotti, G V / Margotti, A / Margutti, J / Marín, A / Markert, C / Marquard, M / Martin, N A / Martin Blanco, J / Martinengo, P / 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    The European physical journal. C, Particles and fields

    2016  Volume 76, Page(s) 86

    Abstract: We report on two-particle charge-dependent correlations in pp, p-Pb, and Pb-Pb collisions as a function of the pseudorapidity and azimuthal angle difference, [Formula: see text] and [Formula: see text] respectively. These correlations are studied using ... ...

    Abstract We report on two-particle charge-dependent correlations in pp, p-Pb, and Pb-Pb collisions as a function of the pseudorapidity and azimuthal angle difference, [Formula: see text] and [Formula: see text] respectively. These correlations are studied using the balance function that probes the charge creation time and the development of collectivity in the produced system. The dependence of the balance function on the event multiplicity as well as on the trigger and associated particle transverse momentum ([Formula: see text]) in pp, p-Pb, and Pb-Pb collisions at [Formula: see text] 7, 5.02, and 2.76 TeV, respectively, are presented. In the low transverse momentum region, for [Formula: see text] GeV/
    Language English
    Publishing date 2016-02-19
    Publishing country France
    Document type Journal Article
    ZDB-ID 1459069-4
    ISSN 1434-6052 ; 1434-6044
    ISSN (online) 1434-6052
    ISSN 1434-6044
    DOI 10.1140/epjc/s10052-016-3915-1
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  10. Article: Production of K[Formula: see text](892)[Formula: see text] and [Formula: see text](1020) in p-Pb collisions at [Formula: see text] = 5.02 TeV.

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    The European physical journal. C, Particles and fields

    2016  Volume 76, Page(s) 245

    Abstract: The production of K[Formula: see text](892)[Formula: see text] and [Formula: see text](1020) mesons has been measured in p-Pb collisions at [Formula: see text][Formula: see text] 5.02 TeV. K[Formula: see text] and [Formula: see text] are reconstructed ... ...

    Abstract The production of K[Formula: see text](892)[Formula: see text] and [Formula: see text](1020) mesons has been measured in p-Pb collisions at [Formula: see text][Formula: see text] 5.02 TeV. K[Formula: see text] and [Formula: see text] are reconstructed via their decay into charged hadrons with the ALICE detector in the rapidity range [Formula: see text]. The transverse momentum spectra, measured as a function of the multiplicity, have a p[Formula: see text] range from 0 to 15 GeV/
    Language English
    Publishing date 2016-04-30
    Publishing country France
    Document type Journal Article
    ZDB-ID 1459069-4
    ISSN 1434-6052 ; 1434-6044
    ISSN (online) 1434-6052
    ISSN 1434-6044
    DOI 10.1140/epjc/s10052-016-4088-7
    Database MEDical Literature Analysis and Retrieval System OnLINE

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