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Treatment of Molasses waste water using chitosan and activated carbon. Waste water treatment

Treatment of Molasses waste water using chitosan and activated carbon. Waste water treatment
Author: Humphrey Mutuma
Publisher: GRIN Verlag
Total Pages: 52
Release: 2021-01-27
Genre: Technology & Engineering
ISBN: 3346335887

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Project Report from the year 2016 in the subject Engineering - Chemical Engineering, grade: 87, Moi University, language: English, abstract: This degree thesis studied the viability of treating molasses waste water using a combination of chitosan and activated carbon. Chitosan is obtained by deacetylation of chitin and is an important polymer in water treatment. Activated carbon is a powerful absorbent that is used in filtration. Effects of temperature, time, oh and agitation was studied. The research pointed important leads to embracing chitosan in waste water treatment. Kenya is a major sugar producer with a sugar production output of 591,658 tonnes. The sugar industry encompasses sugar refining which yields molasses used in molasses distilleries to produce ethanol. The molasses distillery produces distillery waste known as spent wash which has a high BOD/COD, bad odor and brown color. The high BOD/COD can be removed by conventional means such as aerobic and anaerobic digesters, but it is this brown caramelized compounds known as melanoidins that must be removed by unconventional means since they are recalcitrant and difficult to biodegrade biologically. This project aims to explore options of removing recalcitrant compounds in molasses waste water by adsorption process using powdered activated carbon and chitosan a biopolymer derived from chitin. Sugarcane molasses is the by-product of the sugar production industry which are generated during sugar production. Sugarcane molasses contains 50% fermentable sugar is dark brown, putrid and viscous liquid. Sugarcane molasses is a feedstock for ethanol production and is used in a ratio of 1:1 for fermentation and purification of spirit. The product collected as bottom products form spent wash which is the major constituent of molasses waste water. Properties of molasses include high acidity, strong odor, coloring pigments due to presence of melanoidins, metal sulfides and phenolics giving it brown color. Spent wash is one of the serious pollution problems of countries producing alcohol from fermentation and subsequent distillation of cane molasses. According to distillery spent wash is characterized as one of the caramelized and recalcitrant wastes containing extremely high Chemical Oxygen Demand (COD), Biological Oxygen Demand (BOD), inorganic solids and low in pH 1-2. The post methanation distillery effluent produced from treatment is characterized by high BOD, COD, intense brown colour due to presence of melanoidin pigments and high levels of salts and nutrient rich.


Advances in Biological Treatment of Industrial Waste Water and their Recycling for a Sustainable Future

Advances in Biological Treatment of Industrial Waste Water and their Recycling for a Sustainable Future
Author: Ram Lakhan Singh
Publisher: Springer
Total Pages: 376
Release: 2018-10-12
Genre: Science
ISBN: 9811314683

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With rampant industrialization, the management of waste generated by various industries is becoming a mammoth problem. Wastewater discharges from industrial and commercial sources may contain pollutants at levels that could affect the quality of receiving waters or interfere with potable water supplies. Thousands of small and large-scale industrial units dump their waste, which is often toxic and hazardous, in open spaces and nearby water sources. Over the last three decades, many cases of serious and permanent damage to the environment and human health on the part of these industries have come to the fore. This book mainly focuses on the biological treatment of wastewater from various industries, and provides detailed information on the sources and characteristics of this wastewater, followed by descriptions of the biological methods used to treat them. Individual chapters address the treatment of wastewater from pulp and paper mills; tanneries; distilleries, sugar mills; the dairy industry; wine industry; textile industry; pharmaceutical industry; food processing industry; oil refinery/petroleum industry; fertilizer industry and beverage/ soft drink bottling industry; and include the characteristics of wastewater, evaluation of biological treatment methods, and recycling of wastewater. Easy to follow, with simple explanations and a good framework for understanding the complex nature of biological wastewater treatment processes, the book will be instrumental to quickly understanding various aspects of the biological treatment of industrial wastewater. It will serve as a valuable reference book for scientists, researchers, educators, and engineers alike.


Waste Treatment in the Biotechnology, Agricultural and Food Industries

Waste Treatment in the Biotechnology, Agricultural and Food Industries
Author: Lawrence K. Wang
Publisher: Springer Nature
Total Pages: 494
Release: 2022-09-07
Genre: Science
ISBN: 3031035917

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This book and its 2 sister books (Volumes 2 and 3) of the Handbook of Environmental Engineering (HEE) series have been designed to serve as a mini-series covering agricultural and green biotechnologies. It is expected to be of value to advanced undergraduate and graduate students, to designers of sustainable biological resources systems, and to scientists and researchers. The aim of these books is to provide information on treatment and management of agricultural, pharmaceutical and food wastes and to serve as a basis for advanced study or specialized investigation of the theory and analysis of various integrated environmental control and waste recycle systems. Volume 1 covers topics on: treatment and management of livestock wastes; waste treatment in the pharmaceutical biotechnology industry using green environmental technologies; vermicomposting process for treating agricultural and food wastes; the impacts of climate change on agricultural, food, and public utility industries; innovative PACT activated sludge, CAPTOR activated sludge, activated bio-filter, vertical loop reactor, and PHOSTRIP processes; agricultural waste treatment by water hyacinth aquaculture, wetland aquaculture, evapotranspiration, rapid rate land treatment , slow rate land treatment, and subsurface infiltration; production and applications of crude polyhydroxyalkanoate-containing bioplastic from agricultural and food-processing wastes; optimization processes of biodiesel production from pig and neem seeds blend oil using alternative catalysts from waste biomass; making castor oil a promising source for the production of flavor and fragrance through lipase mediated biotransformation; and waste treatment and minimization in baker's yeast industry.


Chitosan-Based Adsorbents for Wastewater Treatment

Chitosan-Based Adsorbents for Wastewater Treatment
Author: Abu Nasar
Publisher:
Total Pages: 288
Release: 2018-07
Genre: Chitosan
ISBN: 9781945291746

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Chitosan is a natural amino polymer. It is eco-friendly, biocompatible, biodegradable, cost-effective, easily available and has high potential to be utilized as an adsorbent. Because of their excellent chelating power, chitosan-based adsorbents have a very high ability to tightly bind the pollutants present in contaminated water and wastewater. Different heavy metals and toxic dyes can be effectively removed. Chapter 1 deals with the chemical, physical, physicochemical and mechanical properties of chitosan and chitosan-based materials. Adsorption data on the removal of heavy metals and different dyes have been compiled. Chapter 2 covers the utilization of chitosan and its derivatives for the adsorptive removal of mercury from water and wastewater. Chapter 3 describes novel chitosan-based nanocomposites for dye removal applications. Chapter 4 discusses the effect of different chitosan modifications on its structure and specific surface area. Chapter 5 covers the applications of chitin and chitosan-based adsorbents for the removal of natural dyes from wastewater. Chapter 6 highlights the adsorptive treatment of textile effluents using chemically modified chitosan as adsorbents. Chapter 7 reviews the applications of chitosan-based adsorbents for the removal of arsenicals. Chapter 8 centers on the adsorption capacity enhancement of chitosan by chemical modification. Chapter 9 focuses on the smart use of surfactants for the modification of chitosan and some other biomaterials and their subsequent use for the removal of contaminants from aqueous solutions. Chapter 10 reviews the use of chitosan-based nanocomposites as adsorbents for the removal of dyes from wastewater. Chapter 11 describes the preparation of uniformly distributed platinum nanoparticles decorated with graphene oxide-chitosan by employing a microwave-assisted method. The nanocomposite can be used for the removal of dye from aqueous solution.


Waste Water Treatment: Activated Carbon and Other Methods

Waste Water Treatment: Activated Carbon and Other Methods
Author: Alicia Brooks
Publisher:
Total Pages: 0
Release: 2015-02-09
Genre: Carbon, Activated
ISBN: 9781632396051

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Waste water treatment is an important issue globally and the introduction of activated carbons as a tool for the same has significantly enhanced the efficiency of many waste water treatment methods. This text reviews the principal lignocellulosic indicators applied in the elaboration of activated carbons in various nations in continents like Asia, America, Europe and Africa. Various processes and trial conditions used to synthesize activated carbons, including analysis of the major stages of preparation such as carbonization and activation have been elaborated in this book. Additionally, latest specialized methods used in the process have also been discussed here. These include the procedures used to establish textural parameters, various spectroscopies to ascertain the chemical functionality (Raman, FT-IR, etc.) and other X-Ray procedures. Also, the uses of activated carbons synthesized from lignocellulosic precursors for wastewater treatment have been discussed. Particularly, the text is meant to shed light on the benefits and potential of activated carbons for the elimination of related toxic materials and impurities from water. Lastly, usage of pyrolysis process for the valorization of two typical Mexican farm wastes (orange peel and pecan nut shell) for energy creation and carbon generation has been reviewed in this text.


Activated Carbon Adsorption For Wastewater Treatment

Activated Carbon Adsorption For Wastewater Treatment
Author: Jerry. R. Perrich
Publisher: CRC Press
Total Pages: 268
Release: 2018-01-18
Genre: Technology & Engineering
ISBN: 1351086367

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This volume is a guide to the state of the art of activated carbon adsorption technology as applied to wastewater treatment. This book surveys this body of knowledge and is a detailed description of current technology.


ACTIVATED CARBON ADSORPTION FOR WASTEWATER TREATMENT

ACTIVATED CARBON ADSORPTION FOR WASTEWATER TREATMENT
Author: Jerry R. Perrich
Publisher: Springer
Total Pages: 274
Release: 1981-06-10
Genre: Business & Economics
ISBN:

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Wastewater characteristics and treatment. Activated carbon. Activated carbon adsorption. Development of design parameters. Contacting systems. Regeneration systems. Total process design and economics. Component equipament design. A guideline to operational procedures and design for granular carbon systems wastewater applications. Safety aspecs of activated carbon technology.