To address the global demand for sustainable energy, integrating biogas into internal combustion engines is becoming more important. Homogeneous Charge Compression Ignition (HCCI) engines, known for high efficiency and low emissions, offer a promising solution. This study investigates the optimal injector location for using biogas in HCCI engines, with diethyl ether (DEE) as the pilot fuel, evaluating three positions: (i) at the port, (ii) 6 cm away (Manifold 1), and (iii) 10 cm away (Manifold 2). Through experiments and simulations, the impact of injector location on engine performance is analyzed across various parameters, including methane fractions, engine loads, and exhaust gas compositions. Results show that port injection achieves the highest first law and exergy efficiencies but increases emissions of hydrocarbons (HC), carbon monoxide (CO), and smoke. At 15 Nm load, Manifold 1 shows a 27.34 % reduction in exergy efficiency compared to port injection, while Manifold 2 exhibits an 18.49 % decrease at higher loads. Despite lower efficiencies, Manifold 1 effectively reduces harmful emissions. The study also considers exergo-economic and sustainability aspects, highlighting that while port injection is optimal for efficiency, Manifold 1 excels in minimizing HC and CO emissions, with a 50 % reduction in HC and 71.43 % reduction in CO emissions at 15 Nm load compared to port injection. Manifold 2 achieves the lowest smoke emissions across all loads. This investigation provides crucial insights into optimizing HCCI engines for biogas utilization, emphasizing injector location, fuel composition, and operating parameters to enhance performance and reduce environmental impact.
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http://dx.doi.org/10.1016/j.heliyon.2024.e37607 | DOI Listing |
BMJ Paediatr Open
November 2024
University of Southampton, Southampton, UK.
Objective: To investigate awareness and implementation of the Spare Pens (ie, adrenaline auto-injectors (AAIs)) scheme in primary and secondary schools in two regions in Wales.
Design: A cross-sectional pilot study employing a mixed research methods approach was carried out.
Setting And Participants: State primary and secondary schools within Swansea and Pembrokeshire regional authorities were invited to take part.
Proc SPIE Int Soc Opt Eng
February 2024
University of Buffalo, Buffalo, New York, USA, Canon Research Stroke and Vascular Center, Buffalo, New York, USA.
High Speed Angiography (HSA) at 1000 fps is a novel interventional-imaging technique that was previously used to visualize changes in vascular flow details before and after flow-diverter treatment of cerebral aneurysms in in-vitro 3D printed models. In this first pre-clinical work, we demonstrate the use of the HSA technique during flow-diverter treatment of in-vivo rabbit aneurysm models. An aneurysm was created in the right common carotid artery of each of two rabbits using previously published elastase aneurysm-creation methods.
View Article and Find Full Text PDFMed Devices (Auckl)
October 2024
Medical & Science, Devices & Digital Health, Novo Nordisk A/S, Søborg, Denmark.
Purpose: Adherence to growth hormone treatment is known to affect growth outcomes. Both device preference and ease of use have been shown to affect treatment adherence. In this study, we assessed device preference and ease of use with two long-acting growth hormones, somapacitan (Sogroya, Novo Nordisk A/S) and somatrogon (Ngenla, Pfizer).
View Article and Find Full Text PDFOphthalmologie
November 2024
Zentrum für Augenheilkunde, Medizinische Fakultät und Universität zu Köln, Uniklinik Köln, 50937, Köln, Deutschland.
Objective Of Surgery: The aim of this surgical technique is the implantation of a glaucoma drainage device (GDD) in eyes with aphakic glaucoma following injector-assisted implantation of an artificial iris into the ciliary sulcus.
Indications: This atraumatic tube insertion technique can be performed during GDD implantation after implantation of an artificial iris into the ciliary sulcus.
Surgical Technique: Following injector-assisted implantation of an artificial iris into the ciliary sulcus of eyes, the iris can shift into the chamber angle.
Heliyon
September 2024
School of Mechanical Engineering, Vellore Institute of Technology Chennai, Chennai, 600127, India.
To address the global demand for sustainable energy, integrating biogas into internal combustion engines is becoming more important. Homogeneous Charge Compression Ignition (HCCI) engines, known for high efficiency and low emissions, offer a promising solution. This study investigates the optimal injector location for using biogas in HCCI engines, with diethyl ether (DEE) as the pilot fuel, evaluating three positions: (i) at the port, (ii) 6 cm away (Manifold 1), and (iii) 10 cm away (Manifold 2).
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