2,048 research outputs found
Robbins and Cotran pathologic basis of disease
[edited by] Vinay Kumar, MBBS, MD, FRCPath, Donald N. Pritzker Professor and Chairman, Department of Pathology, Biologic Sciences Division and The Pritzker School of Medicine, The University of Chicago, Chicago, Illinois, Abul K. Abbas, MBBS, Distinguished Professor and Chair, Department of Pathology, University of California San Francisco, San Francisco, California, Jon C. Aster, Professor of Pathology, Harvard Medical School, Brigham and Women's Hospital, Boston, Massachusetts ; with illustrations by James A. Perkins, MS, MFA
FIGURE 5 in Neokamalomyces indicus gen. nov., sp. nov. (Mycosphaerellaceae)-a Septoria-like genus from India
FIGURE 5. Conidia of Neokamalomyces indicus (AMH 10233, holotype). Bars: a–k = 10 μm, l, m = 5 μm.Published as part of Yadav, Sanjay, Verma, Sanjeet Kumar, Singh, Raghvendra, Singh, Vinay Kumar, Chaurasia, Balmukund, Singh, Paras Nath & Kumar, Shambhu, 2022, Neokamalomyces indicus gen. nov., sp. nov. (Mycosphaerellaceae)-a Septoria-like genus from India, pp. 141-168 in Phytotaxa 571 (2) on page 160, DOI: 10.11646/phytotaxa.571.2.3, http://zenodo.org/record/728430
A critical assessment of technical advances in pharmaceutical removal from wastewater – A critical review
Use of pharmaceutical products has seen a tremendous increase in the recent decades. It has been observed that more than thirty million tons of pharmaceuticals are consumed worldwide. The used pharmaceutical products are not completely metabolized in human and animal body. Therefore, they are excreted to the environment and remain there as persistent organic chemicals. These compounds emerge as toxic contaminants in water and affect the human metabolism directly or indirectly. This literature review is an endeavour to understand the origin, applications and current advancement in the removal of pharmaceuticals from the environment. It discusses about the pharmaceuticals used in medical applications such diagnosis and disease treatment. In addition, it discusses about the recent approaches applied in pharmaceutical removal including microbial fuel cells, biofiltration, and bio nanotechnology approaches. Moreover, the challenges associated with pharmaceutical removal are presented considering biological and environmental factors. The review suggest the potential recommendations on pharmaceutical removal.The corresponding author Prof. Vinay Kumar is thankful to all the co-authors for their collaborative efforts in writing this paper. This work was supported by Department of Community Medicine, Saveetha Medical College and Hospital, Saveetha Institute of Medical and Technical Sciences (SIMATS), Chennai, India.Peer reviewe
Occurrence and fate of aromaticity driven recalcitrance in anaerobic treatment of wastewater and organic solid wastes
Aromatic compounds such as aromatic amines (AAs) or lignocellulose biomass derivatives are often recalcitrant to biological processes (i.e., anaerobic digestion). The level of recalcitrance is usually explained by the biochemical structure of the compounds, which determines their removal. AAs are present in dye wastewaters mainly originated from textile industries and are considered carcinogenic and challenging pollutants to be removed from wastewater. The hydrolysis of lignin leads to the formation of some aromatic compounds, which could be recalcitrant at certain concentrations and operation conditions. Similarly, derivatives from sugar degradation such as furfurals and 5-hydroxymethylfurfural (HMF) from pentose and hexose degradation, respectively, have also been reported to be recalcitrant to anaerobic treatment. This chapter details the different forms of recalcitrance found and/or formed during wastewater and organic solid waste treatment, particularly in the anaerobic digestion process. Moreover, the possible strategies to mitigate the recalcitrance of these compounds are comprehensively explained.Green Open Access added to TU Delft Institutional Repository 'You share, we take care!' - Taverne project https://www.openaccess.nl/en/you-share-we-take-care Otherwise as indicated in the copyright section: the publisher is the copyright holder of this work and the author uses the Dutch legislation to make this work public.Sanitary Engineerin
Three-dimensional trans-esophageal echocardiographic evaluation of atrial Septal defects : a pictorial essay
This pictorial assay illustrates the methodology of evaluating the atrial septal defects
by three dimensional transesophageal echocardiography with the help of
representative images. The article starts by discussing the technical details of how to
acquire and crop the dataset to reconstruct the transesophageal three dimensional
echocardiographic images of the inter atrial septum. Next, the anatomical details of
the normal inter atrial septum are illustrated, followed by representative examples of
all the possible defects of inter atrial septum. All the images have been reproduced in
a uniform pattern which is similar to the view of the inter atrial septum that is seen in
the real life situation by the surgeon.peer-reviewe
An exact analytical solution of the unsteady magnetohydrodynamics nonlinear dynamics of laminar boundary layer due to an impulsively linear stretching sheet
In this paper, we investigate the theoretical analysis for the unsteady magnetohydrodynamic laminar boundary layer flow due to impulsively stretching sheet. The third-order highly nonlinear partial differential equation modeling the unsteady boundary layer flow brought on by an impulsively stretching flat sheet was solved by applying Adomian decomposition method and Pade approximants. The exact analytical solution so obtained is in terms of rapidly converging power series and each of the variants are easily computable. Variations in parameters such as mass transfer (suction/injection) and Chandrasekhar number on the velocity are observed by plotting the graphs. This particular problem is technically sound and has got applications in expulsion process and related process in fluid dynamics problems
India-Taiwan Relations: Under the Shadow of China
The 2022 Observer Research Foundation (ORF) survey titled “India @75 and the WORLD” had an interesting result. One of the questions forwarded to the respondents was, “Which country could become India’s most important partner in the coming years in the Indo-Paci"c?” Japan and Australia were the most preferred nations, with 31 percent and 30 percent among the choices. !e list of countries also included Taiwan for the respondents. Taiwan received 5 percent as the "rst preference, the least among the other nations of options give
Effect of Mass Transfer and MHD Induced Navier’s Slip Flow Due to a non Linear Stretching Sheet
Triethanolamine–ethoxylate (TEA-EO) assisted hydrothermal synthesis of hierarchical β-MnO2nanorods: Effect of surface morphology on capacitive performance
Here in present paper, we are reporting a facile tri-ethanolamine-ethoxylate assisted hydrothermal synthesis of MnO2 nanorods. Structural (X-ray diffraction, Rietveld refinement), functional (Fourier Transform Infrared spectroscopy and X-ray Photoelectron Spectroscopy) and morphological (Field emission scanning electron microscope, Transmission electron microscopy) characterization conform the β-MnO2 nanostructure with a rod-like morphology and uniform thickness. The morphological variations of the nanorod thickness can be easily controlled by simply monitoring the reaction temperature. Comparative investigations of β-MnO2 samples synthesized at two different reaction temperatures (viz. 100°C and 120 °C) as a supercapacitive electrode material have been performed with the aid of different electrochemical techniques, such as cyclic voltammetry, galvanostatic charge discharge and impedance spectroscopy in different electrolytes (Li2SO4 and Na2SO4). Interestingly, the low temperature synthesized β-MnO2 nanorods sample exhibit superior electrochemical performance in 1 mol L-1 Li2SO4 electrolyte in terms of high specific capacitance (462 Fg-1 at10 mVs-1), energy density (9.72 WhKg-1), and outstanding cyclic stability (90.26 % over 2000 cycles)
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