30 resultados para ethanol steam reforming


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Over the past three decades, debates about legal reforms to lethal violence have been evident across Australia and in other jurisdictions. While these debates have often arisen from shared concerns, the resulting reforms have taken different approaches to reformulating the defences to murder. This article considers the divergent approaches taken to reform and the process of law reform itself, documenting the significance of localised histories and high profile cases. It also questions whether reforms to the defences to murder have responded adequately to the varying contexts within which men and women kill. The analysis reveals the limitations of law reform inquiries that fail to take a comprehensive approach to considering the operation of the laws in this area. The article calls for ongoing critical analysis of homicide within and beyond the law.

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This study aimed to investigate the effect of different patterns of high-frequency stimulation at the nucleus accumbens shell on ethanol preference and circadian locomotor activity in adult male alcohol preferring (P) and nonpreferring (NP) rats.

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We demonstrated a new metal oxides based chemiresistor (MOC), which exhibits fast response/recovery behavior, large sensitivity, and good selectivity to ethanol, enabled by Sr-doped SnO2 nanofibers via simple electrospinning and followed by calcination. Transmission electron microscopy (TEM), scanning electron microscopy (SEM), X-ray diffraction (XRD), and X-ray photoelectron spectra (XPS) were carefully used to characterize their morphology, structure, and composition. The ethanol sensing performances based on Sr-doped SnO2 nanofibers were investigated. Comparing with the pristine SnO2 nanofibers, enhanced ethanol sensing performances (more rapid response/recovery behavior and larger response values) have been achieved owing to the basic SnO2 surface caused by Sr-doping, whereas the acetone sensing performances have been weakened. Thus, good discriminative ability to ethanol from acetone has been realized. Additionally, Sr-doped SnO2 nanofibers also exhibit good selectivity.

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Previous applications of manganese(IV) as a chemiluminescence reagent have required the use of formaldehyde to enhance the emission intensity to analytically useful levels. However, this known human carcinogen (by inhalation) is not ideal for routine application. A wide range of alternative enhancers have been examined but to date none have been found to provide the dramatic increase in chemiluminescence intensities obtained using formaldehyde. Herein, we demonstrate that ethanol offers a simple, safe and inexpensive alternative to the use of formaldehyde for manganese(IV) chemiluminescence detection, without compromising signal intensity or sensitivity. For example, chemiluminescence signals for opiate alkaloids using 50-100% ethanol were 0.8-1.6-fold those using 2M formaldehyde. This innocuous alternative enhancer is shown to be a particularly effective for the direct detection of thiols and disulfides by manganese(IV) chemiluminescence, which we have applied to a simple HPLC procedure to determine a series of biomarkers of oxidative stress.

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In this work, optical sensing performance of tapered multimode fiber tip coated with graphene oxide (GO) nanostructured thin film towards aqueous ethanol with different concentrations is investigated. The tapering process of the optical fiber is done by a glass processing machine. The multimode optical fiber tip is dip-coated with GO and annealed at 70 °C to enhance the binding of the nanomaterials to the silica fiber. FESEM, Raman microscopy and XRD analyses are performed to micro-characterize the GO thin films. The morphology of the GO is observed to be in sheets forms. The reflectance response of the GO coated fiber tip is compared with the uncoated tip. The measurements are taken using a spectrophotometer in the optical wavelength range of 550-720 nm. The reflectance response of the GO coated fiber tip reduced proportionally, upon exposure to ethanol with concentration range of 5-80%. The dynamic response of the developed sensor showed strong reversibility and repeatability when it is exposed to ethanol with concentrations of 5%, 20% and 40% in distilled water. At room temperature, the sensor shows fast response and recovery as low as 19 and 25 s, respectively. © 2014 Elsevier B.V.

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Multinational Corporations establish operations in states with lower legal and ethical standards in areas including the environment, wages, labor standards, human rights, corruption, and company taxation. Corporate law scholars cannot be indifferent to the horrific consequences of these lax standards. From contributing to rapes and violent incidents stemming from trade in conflict minerals in the Congo to the killing of workers due to poor conditions in garment manufacturing units in Bangladesh, multinational corporations exploit conditions in developing countries abroad without disclosing their actions at home. We advance a normative argument to clarify and strengthen the existing model of disclosure-based regulation to hold MNCs accountable. We argue that, since the core expectations held by shareholders of companies are the same whether they are operating within our borders or externally, a harmonization of disclosure obligations imposed by law would be a more flexible and less costly solution. We posit that a broader reading of the disclosure obligations of companies under existing legislation like the Reg. S-K in the United States, the continuous disclosure rules under * Dean and Professor of Law, University of Newcastle Law School. Sandeep Gopalan would like to thank Terrie Troxel, Jack Tatom, Professor Bill Wilhelm, and the Networks Financial Institute at Indiana State University College of Business for their valuable support in conducting research for this article. We are also grateful to Audrey Son, Bassam Khawaja, and the editorial staff of the Columbia Human Rights Law Review for their excellent editorial work. ** Solicitor and doctoral candidate, University of Newcastle Law School. 2 COLUMBIA HUMAN RIGHTS LAW REVIEW [46.2:1 the Australian Corporations Act 2001, and listing rules such as those adopted by the Australian Securities Exchange and the New York Stock Exchange would require the disclosure of material corporate practices outside our national borders.

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Steam-valving and excitation systems play an important role to maintain the transient stability of power systems with synchronous generators when power systems are subjected to large disturbances and sudden load changes. This paper presents a nonlinear adaptive backstepping approach for controlling excitation and steam-valving systems of synchronous generators. In this paper, the proposed excitation and steam-valving controllers are designed in a coordinated manner so that they can work under several and most severe operating conditions. Both excitation and steam-valving controllers are designed by considering some critical parameters as unknown. The effectiveness of the proposed coordinated control scheme is evaluated on a single machine infinite bus system under different operating conditions such as load changes and three-phase short circuit faults at the generator terminal. Finally, performance of the proposed scheme is compared to that of a similar nonlinear adaptive backstepping excitation controller without any coordination and simulation results demonstrate the superiority of the proposed one.