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A systems study of waste paper recovery and recyclingHo, Tat Kin January 1982 (has links)
This thesis investigated the technological economics of waste paper recovery and recycling in UK. The major problem in waste paper recycling is still the removal of contraries, although technological developments have so far been able to remove some of them. The costs incurred by the local authorities in recovering waste paper were investigated. Local authority costing was found to be inconsistent and many of them did not include all the relevant indirect costs and savings, so that many local authorities claimed to be making heavy losses in their operations. Full accounting incorporating all the relevant indirect costs and savings have shown that most local authorities incurred much smaller losses and in some cases profited from their waste paper recovery operations. A general computer model was developed to allow local authorities to check the viability of their on-going operations and another computer model was developed for an investment appraisal of a proposed waste paper recovery operation. Multiple regression models were developed to forecast the demand of waste paper in the short term and the long term. The cost to the mill in recycling waste paper was also examined. Waste paper recycling can only be increased by improving demand for waste paper based products. Various alternatives for diversifying the markets for waste paper were investigated, particularly those outside the paper and board industry. The government's role in helping to inc~ease waste paper recovery and recycling was examined and some government actions that could be taken were proposed.
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A Novel Design for Fully Printed Flexible AC-driven Powder Electroluminescent Devices on PaperKronfli, Rosanna 26 June 2014 (has links)
ACPEL devices were fabricated onto various paper substrates. The dielectric and phosphor layers were mask printed, a PEDOT:PSS/SWCNT ink was inkjet-printed for the cathode and a translucent conductor was applied with a paintbrush for the anode resulting in a maximum luminance of 8.05 cd/m2 at 300 VAC and 60 Hz. It was found that the conductivity of the PEDOT:PSS/SWCNT ink on the various paper types was affected by the coating and paper thickness. Novel ACPEL devices were also fabricated by incorporating paper as the dielectric layer of the device. The maximum luminance achieved was 7.24 cd/m2 at 300 VAC and 60 Hz. It is shown that the dielectric constant of the paper and hence the performance of the resulting EL device may be enhanced by filling the sheet with BaTiO3 and by the surface treatment of the sheet.
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A Novel Design for Fully Printed Flexible AC-driven Powder Electroluminescent Devices on PaperKronfli, Rosanna 26 June 2014 (has links)
ACPEL devices were fabricated onto various paper substrates. The dielectric and phosphor layers were mask printed, a PEDOT:PSS/SWCNT ink was inkjet-printed for the cathode and a translucent conductor was applied with a paintbrush for the anode resulting in a maximum luminance of 8.05 cd/m2 at 300 VAC and 60 Hz. It was found that the conductivity of the PEDOT:PSS/SWCNT ink on the various paper types was affected by the coating and paper thickness. Novel ACPEL devices were also fabricated by incorporating paper as the dielectric layer of the device. The maximum luminance achieved was 7.24 cd/m2 at 300 VAC and 60 Hz. It is shown that the dielectric constant of the paper and hence the performance of the resulting EL device may be enhanced by filling the sheet with BaTiO3 and by the surface treatment of the sheet.
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A methodology for the life cycle and sustainability analysis of manufacturing processesCulaba, Alvin B. January 1996 (has links)
No description available.
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Structural considerations for superhydrophobic and superoleophobic surfacesLi, Lester 12 January 2015 (has links)
Highly fluid repellent have application in many industries ranging from marine to biomedical due to their self-cleaning antifouling properties. The development and implementation of these superhydrophobic (water contact angle >150 degrees ) and superoleophobic (oil contact angle > 150 degrees ) surfaces were studied in this thesis. We focused our studies on paper as a substrate for these superhydrophobic and superoleophobic surfaces. Cellulose based paper is a biodegradable, inexpensive material that is ideal for disposable use applications. Applying an oxygen plasma etching technique combined with the deposition of a fluoropolymer from a pentafluoroethane precursor, superhydrophobic paper can be attained. This superhydrophobic paper is functionalized by printing wax islands onto the surface, thereby creating areas of high fluid adhesion. These wax functionalized sheets are used to sample droplets from bulk droplets, with the sampled volume being controlled by the hysteresis of the wax island. Disposable biomedical devices can be envisioned from these wax designs. While these superhydrophobic surface excel at repelling water, they continue to readily absorb water. Formation of paper that is both superhydrophobic and superoleophobic, or superamphiphobic, is accomplished through a combination of steps: mechanical fiber refining, solvent exchange processing and plasma treatment. The fiber refining creates nano-scale fibrils that are separated in the solvent processing. Subsequent plasma treatment of oxygen etching and fluoropolymer deposition creates superamphiphobic paper, exhibiting contact angles of > 150 degrees for water, ethylene glycol, motor oil and n-hexadecane. Further studies were conducted to increase the strength of these superamphiphobic sheets by using layered paper. Development of superhydrophobic paper from a hydrophilic diamond-like carbon surface coating was also demonstrated. When combined with oxygen plasma etching, diamond-like carbon coated paper sheets attain superhydrophobic properties similar to fluoropolymer coated sheets. Based on the knowledge gained from the studies on paper, superhydrophobic surfaces are created on 304 and 316 stainless steels. Samples are etched in hydrofluoric acid and then passivated in nitric acid to create the necessary surface structure. Deposition of fluoropolymer onto the etched samples yields superhydrophobic properties.
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An Economic Analysis of North American Pulp and Paper Markets, and A Competitiveness Study of the Canadian Pulp and Paper ProductsTang, Xiaoli 26 February 2009 (has links)
North America is the world’s largest pulp and paper producing region as well as the largest consuming region. An understanding of market integration is critical for designing relevant policies since it is important to improve national welfare and ensure long-run competitive market equilibrium. In addition, it is crucial for the Canadian industry to maintain the
competitiveness for its pulp and paper products in the world market, because any deterioration in the performance of the Canadian pulp and paper industry will have negative social and economic impact on the well-being of Canada and affect Canadian balance of payment. This thesis contains three essays that investigate the market integration of the combined markets of
Canada and the US, and the competitive position of Canadian pulp and paper products in the US market.
The first essay presents an econometric analysis of spatial integration of the US and Canada newsprint markets as reflected in newsprint prices. It applies the Johansen multivariate cointegration procedure to test the law of one price for five regional markets (British Columbia, Ontario, Quebec, US east, US west) of newsprint using monthly data for the 1988 to 2004 period. Preliminary data analysis shows that all price series are non-stationary I(1)
processes. The hypothesis that the Law of One Price (LOP) holds for all five regional
newsprint markets simultaneously was not supported by the Johansen multivariate test. The LOP was also tested for national markets, and it was found to hold between US west and US east newsprint prices. The results suggest that there is a single newsprint market in the US, whereas there are several distinct newsprint markets in Canada.
The second essay examines the degree of market integration among US import markets for three pulp and paper products, and further analyses the dynamic interaction between US domestic and US import markets. Persistence profile results show that long-run equilibrium exists in the US import markets for three pulp and paper products of interest; moreover, given a system-wide shock, a new equilibrium could be reached in a relatively short period. Forecast
error variance decomposition suggests that US markets are critical since shocks to domestic US prices for relevant pulp and paper products explain a substantial amount of movements in import prices.
The third essay studies substitution between main categories of imported pulp and paper
products and between imported and domestic pulp and paper products in the US market. A
restricted translog subcost function approach was employed to derive the elasticity of substitution. The results suggest that Canadian pulp and paper products are still competitive and have maintained their competitiveness in the US market. However the consecutive demand decline for pulp and paper in the US has brought hard times to Canada. It seems that
if Canadian pulp and paper industry wants to retain a dominant position in the world market place, it will have to create global reach and develop new markets.
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Electophoretic patterns of fresh, irradiated-pasteurized and irradiated-sterilized beef stored at 34°FMohasseb, Zeinab Shehata 21 November 1961 (has links)
Graduation date: 1962
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Conservation of Severely Damaged Paper Using Passivation PolymersEilert, Eloise 2011 August 1900 (has links)
This work examined the use of passivation polymers in the conservation of severely damaged paper. It specifically investigated the use of this functional polymer treatment to address the issues of damage to paper caused by waterlogging, mold, and internal acidity. Several experiments were designed and conducted to examine the effects of the polymers in the conservation of papers compromised by these conditions. Paper artifacts from the Bonfire Memorabilia Collection were selected and conserved using treatment protocols that included the use of the passivation polymers. The conservation of some of the damaged papers from this culturally important site demonstrated the effectiveness of the polymer treatment in real-world conservation situations. This dissertation established that the use of passivation polymers adds strength and stability to severely damaged paper.
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On the relation between paperboard properties and packaging performanceMarin, Gustav January 2020 (has links)
Paper-based materials, such as paperboard, are commonly used as packaging materials. Inaddition to the advantage that wood as a raw material is renewable, there are also many otherbenefits of paperboard. From a mechanical point of view, paperboard has a high bendingstiffness compared to its relatively low weight and has a high foldability, which both areproperties of significance in the design of packages. However, a distinct drawback withpaperboard is its significant sensitivity to moisture. The moisture reduces the mechanicalproperties of the paperboard and consequently reduces the performance of the package. Thisthesis is starting with an investigation of the relation between moisture and differentmechanical properties on a continuum material level, and then these relations are applied onthe packaging design level through experimental testing and simulations. In Paper A, a material characterization was performed on a series of five paperboards withdifferent grammages from the same producer. Five types of mechanical tests to characterizethe paperboards’ material properties were performed: • In-plane tensile test, • Out-of-plane tensile test, • Short-span Compression Test (SCT), • Bending stiffness test, • Double-notch shear test. All tests were performed at several levels of relative humidity (RH). Linear relations betweenthe mechanical properties normalized with their respective value at 50 % RH and moistureratio were found. Paper B examined whether the linear relationships discovered in Paper A are true also forother paperboard series as well. Therefore, 15 paperboards from four producers wereinvestigated in this study, at the same levels of RH as before. Here, the in-plane stiffnessesand strengths and SCT-values were evaluated as a function of moisture. When also themoisture ratios in the investigated paperboards were normalized, it turned out that allpaperboards followed the same linear relationship between normalized mechanical propertyand normalized moisture ratio. Additionally, a bilinear elastic-plastic in-plane model wasdeveloped, that can predict the stress-strain relation of an arbitrary paperboard at an arbitrarymoisture level, and without requiring any mechanical testing except at standard condition(50% RH, 23 °C). In Paper C, this relation was used to estimate input material parameters for simulating a BoxCompression Test (BCT) at different moisture levels. The result showed that it was possibleto accurately predict the load-compression curve of a BCT when moisture was accountedfor. / Som förpackningsmaterial betraktat är pappersbaserade material, som exempelvis kartong,väldigt intressanta material. Utöver att råvaran trä är förnyelsebar finns även många andrafördelar med kartong. Ur ett mekaniskt perspektiv är kartong exempelvis väldigt styv iförhållande till sin vikt och har generellt väldigt hög vikbarhet, vilket båda är egenskaper somlämpar sig väl för en förpackning. En klar nackdel med kartong är dess känslighet för fukt.Fukten reducerar kartongens mekaniska egenskaper, vilket följaktligen leder till attförpackningens prestanda försämras. I den här licentiatavhandlingen undersöktes initialtsambanden mellan fukt och mekaniska egenskaper på materialnivå, för att sedan överförasambanden till förpackningsnivå genom experimentell provning och simuleringar. I Artikel A utfördes en materialkaraktärisering på en kartongserie innehållande femkartonger med varierande ytvikter från samma tillverkare. Fem typer av mekaniska provgenomfördes för att karaktärisera kartongernas respektive materialegenskaper: • Dragprov (i planet), • Dragprov (ut ur planet), • Korta kompressionsprov (SCT), • Böjstyvhetsprov, • Skjuvprofilsprov. Samtliga prov utfördes vid flera olika nivåer av relativ fuktighet (RH). Linjära relationermellan mekanisk egenskap normerad med motsvarande värde vid 50 % RH och fuktnoterades. I Artikel B undersöktes huruvida de linjära sambanden som upptäcktes i Artikel A stämmeräven för andra kartongserier. 15 kartonger från fyra producenter undersöktes därför i dennastudie vid samma fukthalter som tidigare. I den här studien undersöktes endast dragprov iplanet, samt SCT. När även fuktkvoterna i de undersökta kartongerna normerades visade detsig att alla kartonger följde samma linjära relation mellan normerad mekanisk egenskap ochnormerat fuktinnehåll. Utöver detta utvecklades en bilinjär elastisk-plastisk i-planet-modellsom kan prediktera en godtycklig kartongs spännings-töjningsförhållande för godtyckligfuktnivå, utan att någon mekanisk provning utöver standardklimat (50 % RH, 23 °C) behöver genomföras. I Artikel C utnyttjades det linjära sambandet mellan mekanisk egenskap och fuktkvot genomatt prediktera de ingående materialegenskaperna som användes vid simuleringar avboxkompressionsprovning vid olika fuktnivåer. Simuleringarna jämfördes med experimentellprovning och visade sig kunna prediktera experimentella resultat vid olika fukthalter bra. / <p>QC 20220510</p>
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Attenuation of constituents from paper-pulp mill wastewater ponded on clay soil under natural environmental conditionsLarson, Robert Blake. January 1986 (has links) (PDF)
Thesis (M.S. - Soils, Water and Engineering)--University of Arizona, 1985. / Includes bibliographical references (leaves 63-65).
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