Abiogenic and Biogenic Petroleum Origin: A Common Theory for Geological Surveys

2021 ◽  
Vol 18 (1) ◽  
pp. 59-65
Author(s):  
Irina Volkova ◽  
Dmitry Gura ◽  
Ilia Aksenov

Biogenic and abiogenic origins of petroleum are a pertinent problem today, which have been examined in this article including the current state of theories and experimental facts. The paper provides an overview of works on this subject over the past decade. As analysis of scientific research efforts, majority of scientists suggest that petroleum is organic in origin. The second theory also includes reliable facts and hypotheses about the existence of abiogenic hydrocarbons. This origin is associated with tectonic geological processes, in particular, orogenesis, rifting, excessive releases, erosion, sediment deposition, deep gas releases, etc. The results of experimental studies, the existing concepts presented in this review, show that despite disagreements between the proponents of both theories, common beliefs remain prevalent, namely, about the process of hydrocarbons formation both on Earth and other objects of the solar system. The analysis concludes that the consolidation of these theories is of high scientific interest and has great potential for confirmation of numerous hypotheses, facts from the scientific point of view and the search for alternative energy sources due to environmental and economic issues associated with the impoverishment of natural resources. This review study is valuable for generalising various scientific theories, which can be used for future research efforts and modelling new ideas about the origin of hydrocarbons.

Author(s):  
Александр Григорьевич Комков ◽  
Александр Константинович Сокольский

В статье рассмотрено современное состояние энергоснабжения и перспективы развития альтернативных источников энергии на территории Крайнего Севера. Отмечено, что несмотря на острую потребность во внедрении возобновляемых источников энергии, установленные мощности всех ветряных и солнечных электростанций в регионе не превышают 7-8 МВт. Также в работе рассчитаны технический и экономический потенциал ветровой энергии региона, на основании которых подобрана наиболее эффективная установка. The article discusses the current state of energy supply and the prospects for the development of alternative energy sources in the Far North. It is noted that despite the urgent need for the introduction of renewable energy sources, the installed capacities of all wind and solar power plants in the region do not exceed 7-8 MW. Also, the technical and economic potential of the region’s wind energy was calculated based on which the most efficient installation was selected.


2021 ◽  
Author(s):  
Zeynu Shamil Awol ◽  
Rezika Tofike Abate

Abstract Biomass energy is renewable energy source that comes from the material of plants and animals. Forms of biomass energy are bio-ethanol, bio methanol, and biodiesel. Bio-ethanol is one of the most important alternative energy sources that substitute the fossil fuels. The focus of this research is to produce bio-ethanol from waste office paper. Five laboratory experiments were conducted to produce bio-ethanol from wastepaper. The wastepaper was dried in oven and cut in to pieces. Then it passed through dilute acid hydrolysis, fermentation and distillation process respectively. High amount of ethanol was observed at 20 ml/g (liquid to solid ratio) and at the time of 2hr. Cost and economic analysis for ethanol production from wastepaper was performed. Results from the analysis indicated a paper to ethanol plant was feasible from the economic point of view with rate of return (RR) 38.61% and the payback period of 2.2 years.


2016 ◽  
Vol 35 (2) ◽  
pp. 147-166 ◽  
Author(s):  
Florian Keusch ◽  
Chan Zhang

The term “gamification” is used for a wide variety of techniques aimed to increase respondent engagement while filling out web surveys. Suggested approaches range from rephrasing questions to sound more game-like to embedding the entire survey into a game where respondent avatars adventure through a fantasy land while answering survey questions. So far, only a few experimental studies regarding the influence of gamification on survey responding have been published in peer-reviewed journals. This article systematically reviews the current research literature on gamification in surveys by first answering the question as to what gamification entails in the context of web surveys by identifying relevant gamification elements. Next, the article discusses how these elements could influence survey data quality using the Total Survey Error framework. Finally, a systematic review of empirical evidence on gamified surveys from published and unpublished studies is provided. While most studies found in our literature review reported a positive effect of using game elements, such as challenges, story/narrative, rewards, goals/objectives, and badges, on psychological outcomes among survey respondents (e.g., fun, interest, satisfaction), the influence of these elements on behavioral outcomes (e.g., completion and break-offs, item omission, satisficing, responses) and, therefore, survey quality is more unclear. This article informs survey researchers and practitioners of the current state of research on survey gamification and identifies potential areas for future research.


Fire Safety ◽  
2019 ◽  
pp. 54-58
Author(s):  
O. V. Lazarenko ◽  
O. D. Synelnikov ◽  
I. M. Bykov ◽  
A. S. Kuskovets

The development of modern technologies simultaneously with the improvement of the conditions of human existence creates additional risks that had been solved to ensure the safety and comfortable conditions of people's stay. One of these areas of human development is the gradual transition to alternative energy sources and modes of transport, including electric vehicles. Modern versions of electric vehicles, by their tactical and technical characteristics, practically do not concede cars with engines of internal combustion, but the research shows that from the point of view of fire safety and tactics of firefighting, the batteries of electric cars require some other approaches and algorithms for carrying out of emergency rescue works. Considering the modern experience and experimental results of research on the tactics of firefighting of electric vehicles, it turned out that the normative intensity of water supply (aqueous solutions) should be increased and make not less than 1,2 l/(c·m2). An increase in the normative intensity of water supply requires the fire-extinguishing chief to ensure in advance the uninterrupted supply of the extinguishing agent to the fire brigade, necessarily installing a tanker truck on a fire hydrant or reservoir. The specificity of the extinguishing of electric cars also shows the ineffectiveness of the use of a fire-extinguishing agent of air-mechanical foam and the necessity of compulsory dismantling of the battery pack of an electric vehicle after the elimination of the fire. The main results of the work are summarized in the general list of the algorithm of actions of the fireextinguishing chief after his arrival at the place of the emergency related to the ignition of electric vehicles. Compliance by the fire-extinguishing chief of the given algorithm of action will minimize the risks for the personnel of the rescue unit and accelerate the elimination of the fire. Accordingly, to the analysis and scientific results, the future directions of scientific research should be aimed: at improving the algorithm of action and tactics of elimination the fire of electric cars, the development of technical devices for extinguishing the battery of electric cars, the development of automatic fire extinguishing of electric cars, the development of more effective fire extinguishing means for extinguishing the rechargeable battery of electric cars.


2022 ◽  
Vol 15 ◽  
Author(s):  
Thenille Braun Janzen ◽  
Yuko Koshimori ◽  
Nicole M. Richard ◽  
Michael H. Thaut

Research in basic and clinical neuroscience of music conducted over the past decades has begun to uncover music’s high potential as a tool for rehabilitation. Advances in our understanding of how music engages parallel brain networks underpinning sensory and motor processes, arousal, reward, and affective regulation, have laid a sound neuroscientific foundation for the development of theory-driven music interventions that have been systematically tested in clinical settings. Of particular significance in the context of motor rehabilitation is the notion that musical rhythms can entrain movement patterns in patients with movement-related disorders, serving as a continuous time reference that can help regulate movement timing and pace. To date, a significant number of clinical and experimental studies have tested the application of rhythm- and music-based interventions to improve motor functions following central nervous injury and/or degeneration. The goal of this review is to appraise the current state of knowledge on the effectiveness of music and rhythm to modulate movement spatiotemporal patterns and restore motor function. By organizing and providing a critical appraisal of a large body of research, we hope to provide a revised framework for future research on the effectiveness of rhythm- and music-based interventions to restore and (re)train motor function.


The article discusses dome-type houses from the point of view of the concept of energy efficiency, energy saving and multi-functionality. The review of foreign and domestic experience in the design and construction of residential buildings, which are based on the dome cover, is presented. On the basis of this review, it is concluded that there is no unified design, calculation, production and technological regulatory framework. The advantages and disadvantages of dome houses are given. It is noted that the most suitable materials for creating the dome cover is a metal frame and almost continuous glazing. It is revealed that the dome design has a minimum surface area, which makes it possible to save up to 20 % of energy costs for its maintenance. The concept of a dome house combining the function of housing and a "winter garden" has been proposed. In addition, when creating a vegetarian house, other important agricultural and ecological problems are solved, the use of alternative energy sources for example. The article outlines the prospects for the development of this concept.


Author(s):  
К.Н. Архипова

С начала 21 века в секторе электроэнергетики России произошли существенные изменения - была проведена масштабная реформация, в результате которой выделился конкурентный оптовый рынок, что было сделано для привлечения частных инвестиций в отрасль, которые бы смогли модернизировать существующие генерирующие мощности, а также создать новые. В течение этого времени появлись альтернативные источники энергии, которые также оказывают влияние на сектор, возрастающее с каждым годом все сильнее. Для проведения дальнейшего реформирования и государственной поддержки отдельных звеньев системы, которые могут дать новые точки роста отрасли, необходимо оценить ее современное состояние. The influence of the electric power sector on the development of the country's economy cannot be overestimated; in this regard, the article discusses the main trends in the development of the sector, as well as difficulties, overcoming of which may become a new growth point in the future. Since the beginning of the 21st century, significant changes have taken place in the Russian electric power sector - a large-scale reformation has been carried out, as a result of which a competitive wholesale market has emerged, which was done to attract private investment in the industry, which could modernize existing generating capacities and create new ones. During this time, alternative energy sources appeared that also affect the sector, which is growing more and more every year. To carry out further reform and state support of individual parts of the system, which can provide new points of growth for the industry, it is necessary to evaluate its current state.


2018 ◽  
Vol 140 (2) ◽  
Author(s):  
Paulina Sawicka-Chudy ◽  
Maciej Sibiński ◽  
Marian Cholewa ◽  
Ryszard Pawełek

The world energy consumption has exhibited high growth over the last several decades. Alternative energy sources like photovoltaic (PV) systems generate electricity, reduce pollution air, and have little environmental impact. The commonly used fixed-tilt solar panels, however, have low efficiency and high production cost. Thus, it takes a long time to obtain a return on the investment. Solar trackers increase the efficiency of PV systems and are therefore more attractive from a financial point of view. In order to design tracking systems that will be efficient, it is necessary to analyze the results during various periods during the year and over their lifespan. Thus, we performed a comparative study between fixed-tilt panels and the tracking system installed in Lodz, Poland. Fixed-tilt panels are at normal to the Earth's surface (90 deg from horizontal plane) and are attached to a building façade, azimuth 180 deg (S direction) with 15 cm ventilation gap so slight efficiency drop may be presumed. We performed short- and long-term analyses of the solar tracking and fixed-tilt systems, which allowed us to conclude that the panels tracking the sun had an additional gain of energy during the year as compared to the fixed-tilt panels. During some months, however, the solar tracking system did not produce as much energy as the fixed-tilt, vertically positioned panels. These results might be useful in designing and constructing solar tracking PV systems.


Micromachines ◽  
2018 ◽  
Vol 9 (12) ◽  
pp. 638 ◽  
Author(s):  
Mario Culebras ◽  
Kyungwho Choi ◽  
Chungyeon Cho

Environmental energy issues caused by the burning of fossil fuel such as coal, and petroleum, and the limited resources along with the increasing world population pose a world-wide challenge. Alternative energy sources including solar energy, wind energy, and biomass energy, have been suggested as practical and affordable solutions to future energy needs. Among energy conversion technologies, thermoelectric (TE) materials are considered one of the most potential candidates to play a crucial role in addressing today’s global energy issues. TE materials can convert waste heat such as the sun, automotive exhaust, and industrial processes to a useful electrical voltage with no moving parts, no hazardous working chemical-fluids, low maintenance costs, and high reliability. These advantages of TE conversion provide solutions to solve the energy crisis. Here, we provide a comprehensive review of the recent progress on organic TE materials, focused on polymers and their corresponding organic composites incorporated with carbon nanofillers (including graphene and carbon nanotubes). Various strategies to enhance the TE properties, such as electrical conductivity and the Seebeck coefficient, in polymers and polymer composites will be highlighted. Then, a discussion on polymer composite based TE devices is summarized. Finally, brief conclusions and outlooks for future research efforts are presented.


Author(s):  
Jonas F. Eichinger ◽  
Lea J. Haeusel ◽  
Daniel Paukner ◽  
Roland C. Aydin ◽  
Jay D. Humphrey ◽  
...  

AbstractThere is substantial evidence that growth and remodeling of load bearing soft biological tissues is to a large extent controlled by mechanical factors. Mechanical homeostasis, which describes the natural tendency of such tissues to establish, maintain, or restore a preferred mechanical state, is thought to be one mechanism by which such control is achieved across multiple scales. Yet, many questions remain regarding what promotes or prevents homeostasis. Tissue equivalents, such as collagen gels seeded with living cells, have become an important tool to address these open questions under well-defined, though limited, conditions. This article briefly reviews the current state of research in this area. It summarizes, categorizes, and compares experimental observations from the literature that focus on the development of tension in tissue equivalents. It focuses primarily on uniaxial and biaxial experimental studies, which are well-suited for quantifying interactions between mechanics and biology. The article concludes with a brief discussion of key questions for future research in this field.


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