Showing posts with label wastewater treatment. Show all posts
Showing posts with label wastewater treatment. Show all posts

Wednesday, 19 April 2023

Treatment of Waste Water from Complex Organic Substances | Chapter 8 | Novel Perspectives of Geography, Environment and Earth Sciences Vol. 5

 This paper covers the issue of distillation of polycyclic hydrocarbons from waste water by utilizing physical and chemical science including the use of something that holds up structure, sedimentation, filtration, adsorption, ozonation. The use of this technology create it possible to considerably reduce the aggregation of hazardous substances to a degree benzapyrene in the waste water. Under sure conditions of wastewater treatment utilizing physical and synthetic technology the concentration of benzapyrene does not surpass the regulatory principles. The results of the studies showed that the microflora of wastewater adulterated with Polycyclic aromatic hydrocarbons (PAHs) is fit destroying PAHs, containing BP. Prospects for the use of chemoflotocombines for the treatment of waste water holding complex organic wealthes are considered.

Author(s) Details:

B. S. Ksenofontov,
BMSTU, (Moscow), Russia.

A. S. Kozodayev,
BMSTU, (Moscow), Russia.

R. A. Taranov,
BMSTU, (Moscow), Russia.

M. S. Vinogradov,
BMSTU, (Moscow), Russia.

Please see the link here: https://stm.bookpi.org/NPGEES-V5/article/view/9985

Tuesday, 29 November 2022

Activated Carbon: Advances in Research and Application | Book Publisher International

 Recent age have visualized an enormous interest between the analysts in the result of activated element by utilizing various precursors. In this book, distinguished consideration command a price of to the latest research judgments about the requests and the properties of triggered element. The got activated element revealed taller surface area and porosity to erase harmonized, dye compounds, unwelcome pollutants, bad scent and taste. Several types of stimulated carbon in the way that coarse, grated and pellet forms maybe secondhand in cure, gases and water cleansing. This book is urged for engineer, researcher, material scientist and graduate pupils.

Author(s) Details:

Ho Soonmin,
Faculty of Health and Life Sciences, INTI International University, Putra Nilai 71800, Nilai, Negeri Sembilan, Malaysia.

Please see the link here: https://stm.bookpi.org/ACARA/issue/view/860



Tuesday, 14 December 2021

Application of Cleaner Technologies in the Treatment of Leachate and the Prevention of Surface and Groundwater Pollution in the Environment | Chapter 8 | Modern Advances in Geography, Environment and Earth Sciences Vol. 7

 In the northern Kosovo region, direct discharge of urban and industrial waste waters, as well as leachate (originating from unlawful landfills) into receivers without previous filtration, is unfortunately quite frequent. Furthermore, reckless and inappropriate site selection for industrial and municipal landfills, which are frequently located near or on the river's edge, contributes greatly to pollution. Direct sampling and the TCLP (Toxicity Characteristic Leashing Procedures) method were used to analyse the leachate from these sites. Possible methods for removing and reducing existing pollution were given based on the examination of physicochemical parameters of filtrated water from the sites itkovac, Grabovac, and Balaban, as well as analysis of surface water and groundwater samples from the site Grabovac. Purification of municipal and industrial waste waters, as well as leachate from illegal landfills, was recommended as a possible long-term solution. The use of a Membrane Bio Reactor (MBR) to implement remediation with a unified system for water purification, which includes the process of stabilization/solidification of residual sludge, would result in a neutral powder material that is completely safe for the environment and suitable for a variety of applications. The goal of this research is to track the impact of leachate landfill water on surface and groundwater around landfills, as well as to avoid and remediate contamination through the use of cleaner landfill water treatment technology.


Author(S) Details

Irma Dervisevic
University of Prishtina, Faculty of Technical Sciences, Kosovska Mitrovica, Serbia.

Jelena Dokic
University of Prishtina, Faculty of Technical Sciences, Kosovska Mitrovica, Serbia.

Natasa Elezovic
University of Prishtina, Faculty of Technical Sciences, Kosovska Mitrovica, Serbia.

Gordana Milentijevic
University of Prishtina, Faculty of Technical Sciences, Kosovska Mitrovica, Serbia.

Vladan Cosovic
University of Belgrade, Institute of Chemistry, Technology and Metallurgy, Belgrade, Serbia.

Almin Dervisevic
Faculty of Technology in Novi Sad, Study Program of Pharmaceutical Engineering,Novi Sad, Serbia.

View Book:- https://stm.bookpi.org/MAGEES-V7/article/view/5097

Monday, 29 November 2021

Winery Applications of High Power Ultrasonic Technology for Brettanomyces Control, Barrel Life Extension, Fermentation Management, Flavour Enhancement and Sustainability | Chapter 15 | New Visions in Science and Technology Vol. 10

 Although its application to winemaking is still in the experimental stage, high-intensity energy produced by high-power ultrasound (HPU) has been successfully applied to many processes in food production to reduce operational costs and improve product quality with large-scale commercial applications. Following pioneering work by the present authors in 2003 on the destruction of the insidious wine spoilage yeast, Brettanomyces, by HPU, the impetus for extensive research and field trials on the use of HPU for wine barrel sanitation and colour, flavour, and phenolics extraction from red grape musts began in the late 2000s. Over the last two decades, research has helped us learn more about the impacts of HPU on grapes, musts, wine, and winery microorganisms. The growth and death of wine yeasts, malolactic bacteria, and spoilage microorganisms, particularly Brettanomyces; barrel sanitation and the extension of barrel useful lives; pre-fermentation, fermentation, and post-fermentation management; colour, flavour, and phenolics enhancements; and winery sustainability have all been the focus of research. The benefits and drawbacks of using HPU in different winemaking processes are highlighted. HPU has revolutionised barrel sanitation, resolving the recurrent problems of red wine and barrel deterioration caused by Brettanomyces bruxellensis, which cost wineries thousands to millions of euros each year. HPU technology, as a disruptive industry disruptor, offers a vast array of opportunities to improve the wine industry's competitive position by lowering costs, improving quality, and delivering cleaner, fresher, and more appealing wines to customers. It will allow wineries to develop more long-term, revolutionary, and inventive ways to improve their winemaking processes.


Author(S) Details

A. S. J. Yap
Vinsonus Australia, South Australia 5118, Australia.

G. A. Logan
Vinsonus Australia, South Australia 5118, Australia.

View Book:- https://stm.bookpi.org/NVST-V10/article/view/4896

Friday, 26 February 2021

From Ecological Vision to Innovation Technology Passing Throw the Ecosystem Services: A Conceptual Model to Plan Ground Photovoltaic System as Green Infrastructure for Water Regulating and Habitat Services | Chapter 9 | Challenging Issues on Environment and Earth Science Vol. 1

This paper introduces a photovoltaic system project designed in synergy with freshwater and water ecosystem services. Based on the operative principle of multifunctional land use, the emphasis is on reconnecting business growth with social and ecological development. Such an approach aims to harmonise the needs of photovoltaic systems for industrial processes and the ecological and social needs of the landscape. Specifically, this combination of photovoltaic panels and wetlands is proposed as a new pattern of the photovoltaic scheme, distinct from the normal configuration of photovoltaic panels in farmlands or brownfields. Among other things, the proposed project has the key functions of increasing the production of solar energy, recycling waste water, generating raw materials for biofuel or other applications, providing animal habitat and mitigating the temperature of the air. In this way, it is possible to view ecosystem services as supporting technology services to increase the productivity of energy factories. This novel design opens up a new view of environmental aspects that should be viewed as an active part of the design and not only as future impacts of human activities or mitigation strategies.

Author (s) Details

Teodoro Semeraro
University of Salento, Dipartimento di Scienze e Tecnologie Biologiche ed Ambientali, S.P. 6 Lecce-Monteroni, 73100, Lecce, Italy.

View Book :- https://stm.bookpi.org/CIEES-V1/issue/view/33