Sunday, February 20, 2011

The Value of Inherent Soil Characteristics: A Hedonic Analysis

The Value of Inherent Soil Characteristics: A Hedonic Analysis: "

http://purl.umn.edu/97158

Abstract: In an attempt to value soil natural capital, we use the inherent characteristics of soil and land valuation data to examine the relationship between soil characteristics and rural farmland values in the 6000ks2 Manawatu catchment in New Zealand. The study applies a hedonic pricing method to determine if the value of ‘critical’ inherent characteristics of soils are reflected in land values. We find empirical evidence that the examined characteristics of soil natural capital stock, e.g., particle size, drainage, potential rooting depth and profile available water, are in fact reflected in rural land values.

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Farmland with loamy soil particles size is valued on average 8% and 29% more than farmland with sandy and skeletal soil particle size classes.... Imperfectly drained soils appear to have a lower value compared with well drained soils.

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by Oshadhi Samarasinghe 1 and Suzie Greenhalgh, both of Land Care Research Manaaki Whenua, Auckland, New Zealand

AgEconSearch via REPEC Research Papers in Economics www.REPEC.org

Issue Date: August, 2010
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Assessment of waste management technology using BATNEEC options, technology quality method and multi-criteria analysis

Assessment of waste management technology using BATNEEC options, technology quality method and multi-criteria analysis: "

http://dx.doi.org/10.1016/j.jenvman.2010.12.016

Abstract: Best Available Techniques Not Entailing Excessive Costs (BATNEEC) options, technology quality method and multi-criteria analysis were proposed as means of developing indices for evaluating municipal waste management systems. The proposed indices can be treated as a tool for ranking the system taking into account technical, environmental, economic, social and other objectives, bearing in mind specific features of the area involved. The analysis was made for three different incineration plants (Spittelau in Vienna, Warsaw and Tarnobrzeg) together with alternative waste disposal versions (with or without biogas burning and with MBP Mechanical-Biological Process) and the waste management infrastructure. The results showed that incineration of waste is much more beneficial than disposal. These results conform to the waste hierarchy identified in EU Directive 2008/98, but the indices created are easy to interpret and useful as a tool for communicating with the public, which is often a crucial factor in determining the location of investment.



by Agnieszka Generowicz 1, Joanna Kulczycka 2, Zygmunt Kowalski 3 and Marcin Banach 3

1. Institute of Water Supply and Environmental Protection, Cracow University of Technology, Warszawska 24, 31-155 Cracow, Poland

2. Mineral and Energy Economy Research Institute, Polish Academy of Sciences, Wybickiego 7, 31-261 Cracow, Poland

3. Institute of Chemistry and Inorganic Technology, Cracow University of Technology, Warszawska 24, 31-155 Cracow, Poland

Journal of Environmental Management via Elsevier Science Direct www.ScienceDirect.com

Volume 92, Issue 4; April, 2011; Pages 1314-1320"

Improving urban wastewater management through an auction-based management of discharges

Improving urban wastewater management through an auction-based management of discharges: "

http://dx.doi.org/10.1016/j.envsoft.2011.01.005

Abstract: This article proposes the use of an auction process in which the capacity of a WasteWater Treatment Plant (WWTP) is sold to coordinate different industrial discharges within the Urban Wastewater System (UWS). The main goal of coordination is to manage the wastewater inflow rate and pollutants to improve the WWTP operation. The system is modeled as a multi-agent system where each industry is represented by an agent, another agent represents the influent coming from the domestic use and one agent represents the WWTP. When the maximum level of the flow or the maximum concentrations of some components exceed the plant’s capacity, an auction starts. In the auction, the WWTP agent is the auctioneer that sells its resources and the industry agents are the bidders that want to buy the resources. The winners of the auction will discharge to the sewage system and the losers will have to wait for the next opportunity. The resulting wastewater discharge schedules of the industries have been analyzed using the IWA/COST simulation benchmark as a case study. The results obtained through this simulation protocol show that the auction-based coordination mechanism using both pollution and hydraulic capacity constraints accomplishes the goal of improving the effluent quality, achieving a reduction in the impact of industrial discharges up to 20.99%.



by Javier Murillo 1, Dídac Busquets 1, Jordi Dalmau 2, Beatriz López 1, Víctor Muñoz 1 and Ignasi Rodríguez-Roda 2 and 3

1. Institut d’Informàtica i Aplicacions, Universitat de Girona, Campus Montilivi, 17071 Girona, Spain

2. Laboratory of Chemical and Environmental Engineering, Universitat de Girona, Campus Montilivi, 17071 Girona, Spain

3. Catalan Institute for Water Research (ICRA), Edifici H2O, Parc Científic i Tecnològic de la Universitat de Girona, Emili Grahit 101, 17003 Girona, Spain

Environmental Modelling & Software via Elsevier Science Direct www.ScienceDirect.com

Article in Press, Corrected Proof; Available Onlin February 9, 2011"

A comparative appraisal of the use of rainwater harvesting in single and multi-family buildings of the Metropolitan Area of Barcelona (Spain): social experience, drinking water savings and economic costs

A comparative appraisal of the use of rainwater harvesting in single and multi-family buildings of the Metropolitan Area of Barcelona (Spain): social experience, drinking water savings and economic costs: "

http://dx.doi.org/10.1016/j.jclepro.2010.11.010

Abstract: Many urban areas suffer water scarcity but paradoxically, a local source of water such as rainwater is mostly treated as a risk rather than as a valuable resource. Scepticism regarding the use of rainwater harvesting technologies still prevails today, particularly in low precipitation areas. However, some regions such as the Metropolitan Area of Barcelona (MAB) have started to promote the use of rainwater through specific regulations and incentives. This paper aims to examine the use of rainwater harvesting in the two main types of buildings prevalent in the MAB by analysing users’ practices and perceptions, drinking water savings and economic costs. Despite low precipitation inputs and a high variability of precipitation, daily balances show that toilet flushing demand of a single family house can be practically met with a relatively small tank. Rooftop rainwater can also meet more than 60% of the landscape irrigation demand in both single and multi-family buildings. The main drawback is the long pay-back period that rainwater harvesting systems present today. Nevertheless, it is remarkable that in multi-family buildings residents usually take no notice of the costs associated with the system. In contrast, benefits for the whole society are usually much more appreciated. Users’ reactions and their level of satisfaction towards rainwater harvesting systems suggest that both regulations and subsidies are good strategies to advocate and expand rainwater harvesting technologies in residential areas. However, a multidirectional learning environment needs to be promoted to ensure a proper use of rainwater harvesting systems and risk minimisation.



by Laia Domènech 1 and David Saurí 1 and 2

1. Institute of Environmental Science and Technology, Universitat Autònoma de Barcelona. Edifici C, Campus UAB, 08193, Bellaterra (Cerdanyola del Vallès), Spain; Tel.: +34 935812503; fax: +34935813331

2. Department of Geography, Universitat Autònoma de Barcelona. Campus UAB, 08193, Bellaterra (Cerdanyola del Vallès), Spain. Tel.: +34 935812503; fax: +34935813331

Journal of Cleaner Production via Elsevier Science Direct www.ScienceDirect.com

Volume 19, Issues 6-7; April-May, 2011; Pages 598-608"

Saturday, February 19, 2011

Residential Consumption of Gas and Electricity in the U.S.: The Role of Prices and Income

Residential Consumption of Gas and Electricity in the U.S.: The Role of Prices and Income: "

http://dx.doi.org/10.1016/j.eneco.2011.01.015

Abstract: We study residential demand for electricity and gas, working with nationwide household-level data that cover recent years, namely 1997–2007. Our dataset is a mixed panel/multi-year cross-sections of dwellings/households in the 50 largest metropolitan areas in the United States as of 2008. We estimate static and dynamic models of electricity and gas demand. We find strong household response to energy prices, both in the short and long term. From the static models, we get estimates of the own price elasticity of electricity demand in the − 0.860 to − 0.667 range, while the own price elasticity of gas demand is − 0.693 to − 0.566. These results are robust to a variety of checks. Contrary to earlier literature (Metcalf and Hassett, 1999; Reiss and White, 2005), we find no evidence of significantly different elasticities across households with electric and gas heat. The price elasticity of electricity demand declines with income, but the magnitude of this effect is small. These results are in sharp contrast to much of the literature on residential energy consumption in the United States, and with the figures used in current government agency practice. Our results suggest that there might be greater potential for policies which affect energy price than may have been previously appreciated.



by Anna Alberini 1 and 2, Will Gans 1 and Daniel Velez-Lopez 1

1. University of Maryland / AREC Department / Rm. 2200 Symons Hall / College Park, MD 20742–5535. Tel.: + 301 105 1267; fax: + 301 314 9091

2. CEPE, ETH Zürich

Energy Economics via Elsevvier Science Direct www.ScienceDirect.com

Article in Press, Accepted Manuscript; Available online February 8, 2011

A full free November, 2010 version of the paper is available at http://www.cepe.ethz.ch/publications/workingPapers/CEPE_WP77.pdf. In that paper the authors note:

We computed the total variation of real electricity prices and of log real electricity prices, and found that in each case the variation within dwellings accounted for only 4% of the total variation. Our measure of variation is the sum of square deviations from the grand mean. Gas prices are more variable over time: the “within” dwelling variation accounts for about 14% of total variation in real gas prices, and 15% of the total variation for log real gas prices.



Consumption of electricity increases by 22% for every 10% increase in the square footage of the home, is 16% higher if the home has air conditioning, and about 15% higher if the home is heated using electricity. Dishwashers and electrical stoves increase usage by 8% and 7%, respectively.

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The model with city-specific effects indicates that gas usage increases by 19% for every 10 percentage point increase in the square footage of the home, and is about 24% larger in homes with gas heating systems. The impact of these variables is small and statistically insignificant in the variants with dwelling- and dwelling- household effects. ...
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