Track 1: Green Energy, Sustainable Energy & Renewable Energy
Environmentally friendly power vitality originates from normal sources, for example, daylight, wind, downpour, tides, plants, green growth and geothermal warmth. These vitality assets are sustainable, which means they're normally renewed. Interestingly, non-renewable energy sources are a limited asset that take a huge number of years to create and will keep on lessening with use.
Sustainable energy can be defined as a form of energy that can be utilized again and again without putting a source in danger of getting depleted, expired, or vanished.
Sustainable power source, regularly alluded to as spotless vitality, originates from characteristic sources or procedures that are continually renewed. For instance, daylight or wind continue sparkling and blowing, regardless of whether their accessibility relies upon time and weather.While sustainable power source is frequently thought of as another innovation, bridling nature's capacity has for some time been utilized for warming, transportation, lighting, and the sky is the limit from there.
Track 2: Nanochemistry, Nanomaterials and Nanotechnology
The destiny of the World's future, for the most part, lies on Nanotechnology which is the structure of sensible systems at the subatomic scale. An increasingly reasonable view is that it will leave basically no part of life immaculate and is required to be in across the board use by 2025.
Nano technology is laid out in light of the fact that the science manages the intense little particles or one measurement estimated particles from one to a hundred nm alluded to as nanoparticles. These particles have the ability to oversee singular iotas and atoms. Owing to the different potential applications wide choice of examination goes underneath the nanotechnology all through the world like surface science, compound science, organic science, semiconductor material science, vitality stockpiling, little creation, sub-atomic building, and so on. Nano technology includes science, designing and innovation and includes imaging, measuring, displaying, and controlling issue at the nano scale.
Track 3: Materials Science Technology, Materials Chemistry and Metallurgy
Material Science is that the part of science manages the structure, properties, execution, portrayal, and technique for materials that identified with material science and technology development or assembling like metals, polymers, earthenware production, and composites, and so on. Through the assistance of the
material science, we'll capture the historical backdrop of the material like physical and substance properties so in this way a reason material science and building choices a wonderful extension altogether in expository new technology and designing, nanotechnology, biomaterials, metallurgy, disappointment examination, examination materials.
Metal, any of a class of substances characterized by high electrical and thermal conductivity as well as by malleability, ductility, and high reflectivity of light. Metals and
Metallurgy care with the social affair of metallic parts to be utilized as a part of the client or building stock.
Track 4: Biomass, Biogas, Biofuels & Waste-to-Energy
Agricultural biomass which could be pre-owned for energy production is defined as biomass residues from field agricultural crops and biomass from the concomitant of the processing of agricultural products. In the last decade, the demand for
energy wood in Europe increased and experts anticipate a further increase in future due to socio-political changes.
Biogas typically refers to a mixture of different gases produced by the breakdown of organic matter in the absence of oxygen.
Biogas can be produced from raw materials such as agricultural waste, manure, municipal waste, plant material, sewage, green waste or food waste. It is a renewable energy source and in many cases exerts a very small carbon footprint.
Track 5: Advances in Materials Science Engineering and Green Energy
In the search for alternative energy sources, we need to make new discoveries in Green Energy. We need catalysts to convert feedstock’s into fuels, new architectures for better solar cells and materials for advanced energy storage, including lithium batteries. New high-tech materials are key to breakthroughs in biology, the environment,
nuclear energy, transportation and national security. Energy Materials is making revolutionary advances in the science of materials discovery and synthesis
We thought long and hard over advances in materials science over the last 50 years. We sought the advice of our editorial advisory panel and asked leaders in the field to add their own contributions. We hope the results are interesting and thought-provoking. In making the final selection, we have tried to focus on the advances that have either changed our lives or are in the process of changing them. Should an advance alter all our daily lives, or does fundamentally changing the research arena count? What about discoveries that can be clearly attributed to a certain date and investigator, or those developments that have come about incrementally through the efforts of many? Where does
materials science stop and electronics, physics, or
chemistry begin?
Track 6: Climate Change and Global Warming
Most
climate scientists agree the main cause of the current
global warming trend is the human expansion of the greenhouse effect, warming those results when the atmosphere traps heat radiating from earth toward space. Human activities are changing the natural greenhouse. Over the last century, the burning of fossil fuels like coal and oil has increased the concentration of atmospheric carbon dioxide (CO2). Global warming is primarily a problem of too much carbon dioxide (CO2) in the atmosphere, which acts as a blanket, trapping heat and warming the planet.