160 resultados para latex product waste


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Audit report on the Great River Regional Waste Authority for the year ended June 30, 2013

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Audit report on the Rathbun Area Solid Waste Commission for the year ended June 30, 2014

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Audit report on the Shelby County Area Solid Waste Agency for the year ended June 30, 2014

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Audit report on the Pocahontas County Solid Waste Commission for the year ended June 30, 2014

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Audit report on the Crawford County Area Solid Waste Agency Commission for the year ended June 30, 2014

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Audit report on the Water and Waste Disposal Systems for Rural Communities program for the City of Lone Rock, Iowa for the year ended June 30, 2014

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Audit report on the North Central Iowa Regional Solid Waste Agency for the year ended June 30, 2014

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Audit report on the Wayne-Ringgold-Decatur County Solid Waste Management Commission for the year ended June 30, 2014

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Audit report on the Waste Authority of Jackson County for the year ended June 30, 2014

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Audit report on the Butler County Solid Waste Commission for the year ended June 30, 2014

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The objective of this report is to gain a better understanding of the wood waste market in Iowa through surveying the processors of wood waste. A survey was sent out by the Iowa Department of Natural Resources Management Assistance Division to 147 public waste management organizations and private businesses with a questionnaire which asked for details of any wood waste processing operation.

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Audit report on the Delaware County Solid Waste Disposal Commission for the year ended June 30, 2014

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Audit report on the Great River Regional Waste Authority for the year ended June 30, 2014

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The production and use of biofuels has increased in the present context of sustainable development. Biofuel production from plant biomass produces not only biofuel or ethanol but also co-products containing lignin, modified lignin, and lignin derivatives. This research investigated the utilization of lignin-containing biofuel co-products (BCPs) in pavement soil stabilization as a new application area. Laboratory tests were conducted to evaluate the performance and the moisture susceptibility of two types of BCP-treated soil samples compared to the performance of untreated and traditional stabilizer-treated (fly ash) soil samples. The two types of BCPs investigated were (1) a liquid type with higher lignin content (co-product A) and (b) a powder type with lower lignin content (co-product B). Various additive combinations (co-product A and fly ash, co-products A and B, etc.) were also evaluated as alternatives to stand-alone co-products. Test results indicate that BCPs are effective in stabilizing the Iowa Class 10 soil classified as CL or A-6(8) and have excellent resistance to moisture degradation. Strengths and moisture resistance in comparison to traditional additives (fly ash) could be obtained through the use of combined additives (co-product A + fly ash; co-product A + co-product B). Utilizing BCPs as a soil stabilizer appears to be one of the many viable answers to the profitability of the bio-based products and the bioenergy business. Future research is needed to evaluate the freeze-thaw durability and for resilient modulus characterization of BCP-modified layers for a variety of pavement subgrade and base soil types. In addition, the long-term performance of these BCPs should be evaluated under actual field conditions and traffic loadings. Innovative uses of BCP in pavement-related applications could not only provide additional revenue streams to improve the economics of biorefineries, but could also serve to establish green road infrastructures.