cement and concrete research paper submission

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Cement and concrete research paper submission


The impact factor IF or journal impact factor JIF of an academic journal is a scientometric factor based on the yearly average number of citations on articles published by a particular journal in the last two years.

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Beowulf research papers In doing so, the journal will focus on reporting major results of tuberculosis essays free on the properties and performance of cementitious materials; novel experimental techniques; the latest analytical and modelling methods; the examination and the diagnosis of real cement and concrete structures; and the potential for improved materials. The chart shows the evolution of the average number of times documents published in a journal cement and concrete research paper submission the past two, three and four years have been cited in the current year. URL The time it takes from manuscript submission to final publication. United Kingdom Universities and research institutions in United Kingdom. Information Homepage How to publish in this journal Contact. You will always remain in control of your data.
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Cement and concrete research paper submission Typeset would allow download of your references in Cement and Concrete Research Endnote style, according to elsevier guidelines. Open Access. Learn more. Conferences Journals Workshops Seminars. We'll soon release a desktop version. Not every article in a journal is considered primary research and therefore "citable", this chart shows the ratio of a journal's articles including substantial research research articles, conference papers and reviews in three year windows vs.
Custom dissertation results ghostwriter for hire for phd Five large scale T-beams were tested and analyzed regarding their deflection, ductility, strain, curvature, load capacity and crack development. Year SJR 0. The overall rank of Cement and Concrete Research is Open Access. Ratio of a journal's items, grouped in three years windows, that have been cited at least once vs. The best quartile for this journal is Q1. Year Documents
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Within the spaces between the bonds of CSH, tiny pores develop — on the scale of 3 nanometers. These are known as gel pores. Despite this porosity, cement possesses excellent strength and binding properties. Of course, by decreasing this porosity, one can create a denser and even stronger final product.

Starting in the s, engineers designed a material — high-performance concrete HPC — that did just that. Essentially, it reduced the larger pores filled with water and increased the strength of the material. Of course, notes Ulm, reducing the water-to-cement ratio for HPC also requires more cement. This is in part because when calcium carbonate is fired in a kiln to produce conventional cement, a chemical reaction occurs that produces carbon dioxide CO 2.

This heating must be done using fossil fuels because of the extremely high temperatures required in the kiln 2, F. The electrification of kilns is being studied, but it is currently not technically or economically feasible. Since concrete is the most popular material in the world and cement is the primary binder used in concrete, these two sources of CO 2 are the main reason that cement contributes around 8 percent of global emissions. And because we use so much of it, any reductions we make in its footprint will have a big impact on global emissions.

The last thing we can do is capture and store or utilize the carbon emitted during cement production. Several companies, like Solidia Technologies and Carbon Cure, are getting ahead of the curve by designing cement and concrete that utilize and consequentially sequester CO 2 during the production process.

This means we need to rethink how we design our concrete mixtures. Currently, the exact specifications of concrete mixtures are prescribed ahead of time. While this reduces the risk for developers, it also hinders innovative mixes that lower emissions. According to Gregory, this requires a culture shift. To transition to performance-based specifications, numerous stakeholders, such as architects, engineers, and specifiers, will have to collaborate to design the optimal mix for their project rather than rely on a predesigned mix.

We can mitigate risk by asking producers to report the environmental footprints of their products and by enabling performance-based specifications. To address cost, we need to support the development and deployment of carbon capture and low-carbon technologies. One way is through its use. The application of concrete in buildings and infrastructure can enable lower greenhouse gas emissions over time.

Concrete buildings, for instance, can have high energy efficiency, while the surface and structural properties of concrete pavements allow cars to consume less fuel. Carbonation occurs gradually in concrete as CO 2 in the air reacts with cement to form water and calcium carbonate. A paper in Nature Geoscience found that since , carbonation in concrete has offset 43 percent of the emissions from the chemical transformation of calcium carbonate to clinker during cement production.

Carbonation, though, has a drawback. It can lead to the corrosion of the steel rebar often set within concrete. Going forward, engineers may seek to maximize the carbon uptake of the carbonation process while also minimizing the durability issues it can pose. Carbonation, as well as technologies like carbon capture, utilization, and storage and improved mixes, will all contribute to lower-carbon concrete.

But making this possible will require the cooperation of academia, industry, and the government, says Gregory. Previous item Next item. Massachusetts Institute of Technology. It is based on Scopus data. IS of Cement and Concrete Composites is 7.

If the same upward trend persists, impact score of joule may rise in as well. Cement and Concrete Composites has an h-index of It means articles of this journal have more than number of citations. The h-index is a way of measuring the productivity and citation impact of the publications. An ISSN is a unique code of 8 digits.

Cement and Concrete Composites is published by Elsevier Ltd. It's publishing house is located in United Kingdom. Coverage history of this journal is as following: The organization or individual who handles the printing and distribution of printed or digital publications is known as Publisher.

This abbreviation 'Cem. It meets all the essential criteria of ISO 4 standard. ISO 4 International Organization for Standardization 4 is an international standard that defines a uniform and consistent system for abbreviating serial publication titles and journals. Some of the critical parameters are listed below. Peer review complexity and timeline. The mix of unsolicited and invited submissions. The time it takes from manuscript submission to final publication.

And Many More. Some Journals considers all the manuscripts submissions as a basis of acceptance rate computation. On the other hand, few consider the only manuscripts sent for peer review or few even not bother about the accurate maintenance of total submissions.

Hence, it can provide a rough estimation only. Check complete list. Conferences Journals Workshops Seminars.