195 research outputs found

    Experimental and natural infections of severe acute respiratory syndrome-related coronavirus 2 in pets and wild and farm animals

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    The severe acute respiratory syndrome-related coronavirus 2 (SARS-CoV-2) has spread globally and has led to extremely high mortality rates. In addition to infecting humans, this virus also has infected animals. Experimental studies and natural infections showed that dogs have a low susceptibility to SARS-CoV-2 infection, whereas domesticated cats and other animals in the family Felidae, such as lions, tigers, snow leopards, and cougars, have a high susceptibility to viral infections. In addition, wild white-tailed deer, gorillas, and otters have been found to be infected by SARS-CoV-2. Furry farm animals, such as minks, have a high susceptibility to SARS-CoV-2 infection. The virus appears to spread among minks and generate several new mutations, resulting in increased viral virulence. Furthermore, livestock animals, such as cattle, sheep, and pigs, were found to have low susceptibility to the virus, whereas chicken, ducks, turkeys, quail, and geese did not show susceptibility to SARS-CoV-2 infection. This knowledge can provide insights for the development of SARSCoV-2 mitigation strategies in animals and humans. Therefore, this review focuses on experimental (both replication and transmission) in vitro, ex vivo, and in vivo studies of SARS-CoV-2 infections in pets and in wild and farm animals, and to provide details on the mechanism associated with natural infection. Copyright: Mastutik, et al

    ANALISIS PENGARUH KUALITAS KINERJA BERKELANJUTAN PERUSAHAAN DAN UKURAN PERUSAHAAN TERHADAP PENGUNGKAPAN KEBERLANJUTAN (Studi Empiris pada Perusahaan yang Terdaftar di Bursa Efek Indonesia Tahun 2015- 2017)

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    The purpose of this study is to help companies demonstrate their responsibilities in the Sustainability Report on the Economy, Social and environmental aspects. Disclosure of Sustainability Reports follows the guidelines of the Global Reporting Initiative (GRI), G4 and G4.1, both of which consist of three main aspects namely Economic performance, Environmental performance and Social performance. The population in this study consisted of all manufacturing companies in the Indonesia Stock Exchange in the period 2015 - 2017. Sampling was carried out using the purposive sampling method. The total sample of this study was 54 companies. This study uses multiple regression analysis to test hypotheses. The results of this study indicate that disclosure sustainability performance and company size has a positive effect on sustainability disclosure

    Metal-coated magnetic nanoparticles for surface enhanced Raman scattering studies

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    We report the optimization and usage of surfactantless, water dispersible Ag and Au-coated γ–Fe2O3 nanoparticles for applications in Surface-enhanced Raman Scattering (SERS). These nanoparticles, with plasmonic as well as super paramagnetic properties exhibit Raman enhancement factors of the order of 106 (105) for Ag (Au) coating, which are on par with the conventional Ag and Au nanoparticles. Raman markers like 2-naphthalenethiol, rhodamine-B and rhodamine-6G have been adsorbed to these nanoparticles and tested for nonresonant SERS at low concentrations. Further, to confirm the robustness of Ag-coated nanoparticles, we have performed temperature-dependent SERS in the temperature range of 77–473 K. The adsorbed molecules exhibit stable SERS spectra except at temperatures >323 K, where the thermal desorption of test molecule (naphthalenethiol) were evident. The magnetic properties of these nanoparticles combined with SERS provide a wide range of applications

    Pengaruh Proses Heat Treatment Annealing Terhadap Struktur Mikro Dan Nilai Kekerasan Pada Sambungan Las Thermite Baja Np-42

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    Pengelasan logam dengan menggunakan metode las thermite banyak digunakan, seperti pada rail crane, maupun perbaikan instalasi jalur rel kereta api. Beberapa masalah dalam pengelasan adalah terjadinya tegangan sisa dan kekerasan yang berlebih sehingga dapat menurunkan ketangguhan las. Salah satu cara mengurangi permasalahan ini adalah dengan metode Post Weld Heat Treatment (PWHT) annealing. Post Weld Heat Treatment (PWHT) annealing memiliki beberapa fungsi yaitu mengurangi tegangan sisa, meningkatkan keuletan, menurunkan ketidak homogenan stuktur dan memperbaiki ketangguhan daerah logam las dan HAZ. PWHT Annealing dilakukan pada baja NP-42 dengan menvariasi temperatur pemanasan 7800C, 8000C, 8200C, dan 8400C. Dengan waktu penahanan 60 menit dari proses PWHT Annealing serta didinginkan dalam furnace. Hasil penelitian ini adalah diperoleh struktur ferrite dan pearlit pada semua spesimen, namun perbedaan yang signifikan adalah perbedaan ukuran grain size pada masing-masing temperatur annealing. Untuk nilai kekerasan antara 171,7 VHN – 259,1VHN, hal ini didukung dengan foto mikro pada daerah disetiap temperatu

    Fiber association and network formation in PLA/lignocellulosic fiber composites.

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    PLA composites were prepared in an internal mixer with a lignocellulosic fiber having relatively large aspect ratio. Fiber content changed between 0 and 60 vol% and the homogenized material was compression molded to 1 mm thick plates. The composites showed anomalous behavior above certain fiber content. Their modulus and especially their strength decreased drastically and modeling also proved the loss of reinforcement at large fiber contents. Micromechanical testing showed that the mechanism of deformation and failure changes at a critical fiber content. Microscopic analysis indi-cated the formation of a network purely from geometrical reasons. The inherent strength of the network is very small because of the weak forces acting among the fibers. This weak inherent strength makes the structure of the composites very sensitive to pro-cessing conditions, and decreases strength, reproducibility as well as reliability

    Beyond 'Trimming the fat': the sub-editing stage of newswriting

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    Thus far, professional editing has not been researched extensively in writing research. This article zooms in on sub-editing in newswriting as a form of professional editing, addressing three research questions: (a) What are the ways in which a news article's text is altered?, (b) Are some types of news article altered more significantly than others?, and (c) Are certain news article sections more prone to alterations? Merging the contextualized insights of fieldwork with a corpus-based discourse analytic research perspective, we trace the differences (viz. additions, deletions, translocations, replacements) between the initial (right before sub-editing) and final (published) version of six different types of news article, (frontpage, headline, long, medium, short, and news wire article) in a corpus sample of 30 broadsheet articles. Our findings are first thatcontrary to popular belief that sub-editors mainly hack away at news stories, or merely trim the fatadditions prevail. Second, we found that most interventions occur in high-stakes articles. Third, we discovered the largest number of interventions in the entry points of an article, that is, whereaccording to eye-tracking researchreaders stop scanning and start reading. We discuss our findings in the light of training for professional newswriters

    Chemical and chemometric methods for halal authentication of gelatin: an overview

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    The issue of food authenticity has become a concern among religious adherents, particularly Muslims, due to the possible presence of nonhalal ingredients in foods as well as other commercial products. One of the nonhalal ingredients that commonly found in food and pharmaceutical products is gelatin which extracted from porcine source. Bovine and fish gelatin are also becoming the main commercial sources of gelatin. However, unclear information and labeling regarding the actual sources of gelatin in food and pharmaceutical products have become the main concern in halal authenticity issue since porcine consumption is prohibited for Muslims. Hence, numerous analytical methods involving chemical and chemometric analysis have been developed to identify the sources of gelatin. Chemical analysis techniques such as biochemical, chromatography, electrophoretic, and spectroscopic are usually combined with chemometric and mathematical methods such as principal component analysis, cluster, discriminant, and Fourier transform analysis for the gelatin classification. A sample result from Fourier transform infrared spectroscopy analysis, which combines Fourier transform and spectroscopic technique, is included in this paper. This paper presents an overview of chemical and chemometric methods involved in identification of different types of gelatin, which is important for halal authentication purposes

    Evolution of the knowledge economy: a historical perspective with an application to the case of Europe

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    The goal of the article is to explore the evolution of original concept of knowledge economy based on science intensive production sectors toward service type economies which significantly changed the role of scientific research and technological innovation for economic growth. The paper argues that this transition is due not only to the structural changes in global production, but the theoretical evolution and aradigmatic shift of the concept of “knowledge economy” in general and “knowledge” in particular has played a significant role. The paper examines the different interpretation of knowledge within new types of intangible economies (e.g., new/Internet, weightless, service, creative, cultural economies) where knowledge is perceived to be generated not as a product of scientific research but as a service or creative activity and critically examined the role of scientific research in a service led knowledge economy. Additionally the paper argue how these phenomena, which marked the global economy in the last decades, enable the transition of the standard concept of knowledge economy originated from industrial production and manufacturing to a knowledge economy equalized with various types of expanding intangible economies, primarily those based on service and creative industries

    Consolidated bioprocessing of corn cob-derived hemicellulose: engineered industrial Saccharomyces cerevisiae as efficient whole cell biocatalysts

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    Background Consolidated bioprocessing, which combines saccharolytic and fermentative abilities in a single microorganism, is receiving increased attention to decrease environmental and economic costs in lignocellulosic biorefineries. Nevertheless, the economic viability of lignocellulosic ethanol is also dependent of an efficient utilization of the hemicellulosic fraction, which contains xylose as a major component in concentrations that can reach up to 40% of the total biomass in hardwoods and agricultural residues. This major bottleneck is mainly due to the necessity of chemical/enzymatic treatments to hydrolyze hemicellulose into fermentable sugars and to the fact that xylose is not readily consumed by Saccharomyces cerevisiaethe most used organism for large-scale ethanol production. In this work, industrial S. cerevisiae strains, presenting robust traits such as thermotolerance and improved resistance to inhibitors, were evaluated as hosts for the cell-surface display of hemicellulolytic enzymes and optimized xylose assimilation, aiming at the development of whole-cell biocatalysts for consolidated bioprocessing of corn cob-derived hemicellulose. Results These modifications allowed the direct production of ethanol from non-detoxified hemicellulosic liquor obtained by hydrothermal pretreatment of corn cob, reaching an ethanol titer of 11.1 g/L corresponding to a yield of 0.328 g/g of potential xylose and glucose, without the need for external hydrolytic catalysts. Also, consolidated bioprocessing of pretreated corn cob was found to be more efficient for hemicellulosic ethanol production than simultaneous saccharification and fermentation with addition of commercial hemicellulases. Conclusions These results show the potential of industrial S. cerevisiae strains for the design of whole-cell biocatalysts and paves the way for the development of more efficient consolidated bioprocesses for lignocellulosic biomass valorization, further decreasing environmental and economic costs.This work has been carried out at the Biomass and Bioenergy Research Infrastructure (BBRI)-LISBOA-01-0145-FEDER-022059, supported by Operational Programme for Competitiveness and Internationalization (PORTUGAL2020), by Lisbon Portugal Regional Operational Programme (Lisboa 2020) and by North Portugal Regional Operational Programme (Norte 2020) under the Portugal 2020 Partnership Agreement, through the European Regional Development Fund (ERDF) and has been supported by the Portuguese Foundation for Science and Technology (FCT) under the scope of the strategic funding of UIDB/04469/2020, the “Contrato-Programa” UIDB/04050/2020, the MIT-Portugal Program (Ph.D. Grant PD/BD/128247/2016 to Joana T. Cunha) and through Project FatVal (POCI-01-0145-FEDER-032506) and BioTecNorte operation (NORTE-01-0145-FEDER-000004) funded by the European Regional Development Fund under the scope of Norte2020 - Programa Operacional Regional do Norte.info:eu-repo/semantics/publishedVersio
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