Bitcoins worth millions lost in landfill leachate
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See our User Agreement and Privacy Policy. See our Privacy Policy and User Agreement for details. Create your free account to read unlimited documents. Abstract Laboratory scale studies were conducted to investigate the feasibility of Industrial by-products as potential alternative medium to conventional gravel in the drainage layer of leachate collection system as permeable reactive barriers PRBs for landfill leachate treatment.
Industrial by-products were used to treat effectively the landfill leachate, which is an innovative in-situ remediation technology. This study will open a tremendous scope of using industrial byproducts as potential medium for treating leachate and this would reduce the magnitude of the current industrial waste disposal problem and convert one waste into a beneficial material. Industrial waste, such as Steel plant by-product Waste slag , Tire industry by-product scrap-tire-shreds and Rice Sheller by-product Rice husks were studied.
The availability and the cost are important criteria in selecting a reactive material. These Industrial waste materials are inexpensive and abundant, and are, therefore, ideal for low cost leachate treatment. Leachate treatment efficiency was evaluated on the basis of percentage reduction in concentration of leachate parameters before and after treatment by passing through Test Cells 1 to 11 having different combinations of conventional gravel and various Industrial by-products with total thickness mm of PRBs multibarrier.
Treated leachate samples were collected from Test Cells 1 to 11 at the interval of 30, 60 and 90 days. The percentage reduction in various leachate parameters was maximum with Test Cell having combination of rice husk mm , waste slag mm , scrap-tire-shreds mm and gravel layer mm in equal proportion as PRBs multibarrier.
It has been observed that leachate sample after passing through combined beds of Industrial by-products and conventional gravel gave better results in comparison to Test Cell-1 containing conventional gravel bed singly. This performance trend can be attributed due to combined effect of conventional gravel and Industrial by-products bed on adsorption, ion exchange reactions, filtration, precipitation and biological uptake.
For reliable expectation on the longevity of PRBs multibarrier , column test has to be performed for longer periods of time and the changes in material reactivity need to be observed. The SlideShare family just got bigger. Home Explore Login Signup. Successfully reported this slideshow. We use your LinkedIn profile and activity data to personalize ads and to show you more relevant ads. You can change your ad preferences anytime. Next SlideShares. You are reading a preview.
Create your free account to continue reading. Sign Up. Upcoming SlideShare. Embed Size px. Start on. Show related SlideShares at end. WordPress Shortcode. Share Email. Top clipped slide. Download Now Download Download to read offline. Assessment of industrial byproducts as permeable reactive barriers for landfill leachate management Aug.
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Related Books Free with a 30 day trial from Scribd. Elsevier Books Reference. Germany, September Elsevier Books Reference. Related Audiobooks Free with a 30 day trial from Scribd. Assessment of industrial byproducts as permeable reactive barriers for landfill leachate management 1. Saini2 , M.
Ambedkar National Institute of Technology NIT , Jalandhar, Punjab, India Abstract Laboratory scale studies were conducted to investigate the feasibility of Industrial by-products as potential alternative medium to conventional gravel in the drainage layer of leachate collection system as permeable reactive barriers PRBs for landfill leachate treatment. Rapid urbanization has seriously enhances the problem of waste disposal and management.
Industrial byproducts disposal remains a problematic issue in industrialized nations around the world. Huge quantity of Industrial byproducts are being generated every year and results in major environmental hazards worldwide. The present recycling techniques of the industrial byproducts may only consume a very small amount of the unwanted scrap. The percentage of industrial byproducts recycled is not compatible with the growth of unwanted scrap.
This has become a serious problem in many countries. A large number of industrial byproducts are landfilled, stockpiled and illegally dumped. In order to avoid the continual addition of industrial byproducts to these unsightly and unhealthy stockpiles, innovative methods of recycling and reuse of industrial byproducts needs to be developed.
Emphasis should be given on sound waste management strategy which includes waste minimization, recovery, recycling and reuse. During the last decade of the 19th century, as well as during initial years of 20th century, millions of people died due to Bubonic Plague in India, which had linkages to poor management of solid waste.
Solid waste management includes the control of generation, storage, collection, transfer and disposal of solid waste in an environmentally acceptable manner. The disposal of solid waste currently relies principally on landfilling. Only a fraction can be regarded as engineered landfills designed and constructed according to engineering specifications.
Engineered landfills are constructed to include containment system and structure 2. These measures include lining systems, gas pipes, rain water collection control and monitoring boreholes. Landfilling continues to be the most common form of waste disposal despite the fact that leachate seriously contaminates water sources. Leachate is the liquid residue resulting from the various physical, chemical and biological processes taking place within the landfill. Landfill leachate is generated by excess rainwater percolating through the waste layers in a landfill.
This liquid contains large number of organic and inorganic compounds. The leachate accumulates at the bottom of the landfill and percolates through the soil. Areas near landfills have a greater possibility of groundwater contamination because of the potential pollution source of leachate originating from the nearby site. Such contamination of groundwater resource poses a serious threat to the natural environment and human health [1,2].
The extensive size of many of these leachate contaminated groundwater plumes, covering several to hundreds of hectares [3], renders conventional ex-situ groundwater remediation techniques economically and technically unfeasible, due to the long treatment duration and huge costs in soil excavation, groundwater pumping and processing of the contaminated substances. PRB is a continuous, permeable treatment zone designed to intercept and remediate a contaminant.
The treatment zone may be created directly using reactive materials such as iron or indirectly using materials designed to stimulate secondary processes, such as by adding carbon substrate and nutrients to enhance microbial activity. In this way, contaminant treatment may occur through physical, chemical and biological processes.
Recently, many researchers have introduced the PRBs system as an alternative technology to control leachate [5,6,7,8,9,10,11,12,13,14,15,16]. A multibarrier combines different reactive materials and contaminant removal processes, which is necessary to remove a complex pollutant mixture such as landfill leachate contamination. PRBs which is an emplacement of reactive materials in the subsurface designed to intercept a contaminant plume, provides a flow path through the reactive media, and transform the contaminants into environmentally acceptable forms to attain remediation concentration goals down gradient of barrier [4].
They are considered a low cost, effective alternative for remediating contaminated sites. The technology of PRBs could potentially allow many more contaminated sites to be remediated effectively, thus greatly enhancing natural groundwater protection. Groundwater remediation using PRBs is an in situ method with low energy demand and therefore more cost-effective than standard remediation techniques [18].
It is a passive, in situ technology that has a high potential to treat shallow aquifers at a lower cost than traditional pump- and-treat methods, but due to a lack of long-term data, its cost- effectiveness has not been proven [19,20].
However, Schad and Gratwohl [21] found that the remediation costs can be up to 50 percent less than pump-and-treat methods based on data collected at several sites.
In addition, using PRBs reduces contaminant exposure to humans and allows the overlying land to be actively used during remediation. A wide variety of pollutants are degraded, precipitated, sorbed or exchanged in the reactive zone, including chlorinated solvents, heavy metals, radio nuclides and other organic and inorganic species [22,23]. Therefore, making PRBs cost-effective is imperative. In order to achieve this, experiments on low-cost reactive media is of utmost importance.
The main engineering challenge is determination of suitable type and amount of reactive materials in a permeable wall and proper placement techniques. Continuing controlled column experiments for prolonged periods of time provides an opportunity to derive the treatment system [24]. Fig Schematic overview of the permeable reactive barriers multibarrier concept 3.
However, alternative materials are being explored that facilitate sustainability, are less expensive and may be less prone to fouling by mineral precipitates. Some industrial byproducts appear to have significant potential as low cost and effective reactive materials for PRBs used to treat number of contaminants.
Large scale uses of shredded tires have been identified by several researchers for civil engineering applications, such as highway embankments, pavements, retaining structures and lightweight fill material. Economically and environmentally feasible alternatives have been investigated for recycling of waste scrap tires. One of these applications is the use of shredded scrap tires as drainage material in landfill system. Tire shreds can be used as an alternative to crushed stones gravel as drainage media in landfill leachate collection systems was supported by number of workers [25,26,27,28,29,30,31,32].
The use of shredded scrap tires as drainage material has the potential for the utilization of large quantities of scrap tires.
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Yeah, you have to imagine that at one or more moment he was physically less than 25 feet from the drive, he just dug in the wrong direction, or gave up digging too soon, or it was under something incredibly heavy, so he dug around it. Every night when he lies his tired body down, sore from digging all day, he has no idea that the drive is right beneath him. He dropped it into his sports bag 10 years ago and kicked it under his bed. Leachate - the soup that percolates through landfills: Hazardous components include toxic heavy metals, halogenated compounds, aromatic compounds, pesticides and other recalcitrant organic compounds. Worked in a landfill when I was a teenager, this shit is melted.
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