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311.
312.
Ming T. Lee Karl L. Guntermann 《Journal of the American Water Resources Association》1976,12(3):561-576
ABSTRACT This paper reports on research to develop a methodology for estimating agricultural off-site sediment damage costs and includes an empirical estimate of such damages for a watershed. The economics of off-site sediment damage costs are discussed as a theoretical basis for the procedures developed. A detailed methodology is described for estimating five different types of off-site sediment damages commonly associated with rural watersheds. The methodology is then applied to a central Illinois watershed and estimates of individual types of damage are made. The estimates are combined into an off-site sediment damage function for the watershed, and the usefulness of the damage function for analyzing off-site sediment damages and achieving a reduction in those costs is discussed. 相似文献
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This paper analyzes five major causes of park-people conflicts that have occurred in Nepal's Royal Chitwan National Park.
The causes include illegal transactions of forest products from the park, livestock grazing in the park, illegal hunting and
fishing, crop damage, and threats to human and animal life caused by wild animals from the park. The conflicts indicate a
reciprocal relationship between the park and local people. They reflect the attitudes of local people and representatives
of the park authority whose priorities and objectives largely diverge. The results show that people settled adjacent to the
park are heavily dependent on its resources. Even in places where some, albeit few alternative sources exist, local people
continue to trespass the park boundary as these sources are inadequate to ensure the fulfillment of local people's resource
needs. Illegal transactions of resources continue throughout the year; however, they are less intense during summer due to
flooding caused by the Rapti River, which forms the park boundary towards the northern section where this study is conducted.
The frequency of local people's visits to the park is mainly determined by their age, distance between homesteads and park,
and volume of crop loss caused by wild animals. Crop damage is the function of size of landholding, distance, and frequency
of crop raid. Local people claim that they have no intention of letting their livestock graze in the park; however, the dense
vegetation of the park attracts livestock grazing on riverbanks just outside the open park boundary. Many head of livestock
are killed by carnivores of the park. Human casualties are mainly caused by sloth bear (Melursus ursinus), tiger (Panthera tigris), wild pig (Sug scrofa), and rhinoceros (Rhinoceros unicornis). There had been some earlier attempts to reconcile the conflicts by offering local people different kinds of compensations;
however, these were unsuccessful measures. An integrated approach is essential if efforts to resolve the park-people conflicts
are to succeed. The government is in the process of launching a project that aims to resolve the inherent problems with such
an approach. Suggestions are made to incorporate some key elements, such as maintaining effective communication between various
parties and the potential for wildlife conservation among local people. 相似文献
318.
M. Karl Wood Wilbert H. Blackburn 《Journal of the American Water Resources Association》1984,20(3):379-389
The U.S. Soil Conservation Service has developed a method for estimating runoff for small watersheds when stream flow data are not available. The technique is based on a simplified infiltration model of runoff using various kinds of soil, land use, and empirical approximation. 相似文献
319.
Application of fungal‐based bioaugmentation was evaluated for the remediation of creosote‐contaminated soil at a wood‐preserving site in West Virginia. Soil at the site contained creosote‐range polycyclic aromatic hydrocarbons (PAHs) at concentrations in some areas that exceed industrial risk‐based levels. Two white‐rot fungi (Pleurotus ostreatus and Irpex lacteus) were evaluated for remediation effectiveness in a two‐month bench‐scale treatability test. Both fungi produced similar results, with up to 67.3 percent degradation of total PAHs in 56 days. Pilot‐scale testing was performed at the site using Pleurotus ostreatus grown on two local substrate mixtures. During the 276‐day field trial, total PAHs were degraded by up to 93.2 percent, with all individual PAHs except one achieving industrial risk‐based concentrations. It was recommended that fungal‐based remediation be applied to all contaminated soil at the site. © 2002 Wiley Periodicals, Inc. 相似文献
320.
Soil organic carbon (SOC) has beneficial effects on soil quality and productivity. Cropping systems that maintain and/or improve levels of SOC may lead to sustainable crop production. This study evaluated the effects of long-term cropping systems on C sequestration. Soil samples were taken at 0- to 10-, 10- to 20-, 20- to 30-, and 30- to 40-cm soil depth profiles from grass pasture (GP), conventional tillage (CT) winter wheat (Triticum aestivum L.)-fallow (CTWF), and fertilized and unfertilized plots of continuous winter wheat (WW), spring wheat (SW), and spring barley (Hordeum vulgare L.) (SB) monocultures under CT and no-till (NT). The samples were analyzed for soil organic matter (SOM) and SOC was derived. Ages of experiments ranged from 6 to 73 yr. Compared to 1931 SOC levels (initial year), CTWF reduced SOC by 9 to 12 Mg ha(-1) in the 0- to 30-cm zone. Grass pasture increased SOC by 6 Mg ha(-1) in the 0- to 10-cm zone but decreased SOC by 3 Mg ha(-1) in the 20- to 30-cm zone. Continuous CT monocultures depleted SOC in the top 0- to 10-cm zone and the bottom 20- to 40-cm zone but maintained SOC levels close to 1931 SOC levels in the 10- to 20-cm layer. Continuous NT monocultures accumulated more SOC in the 0- to 10-cm zone than in deeper zones. Total SOC (0- to 40-cm zone) was highest under GP and continuous cropping and lowest under CTWF. Fertilizer increased total SOC only under CTWW and CTSB by 13 and 7 Mg ha(-1) in 13 yr, respectively. Practicing NT for only 6 yr had started to reverse the effect of 73 yr of CTWF. Compared to CTWF, NTWW and NTSW sequestered C at rates of 2.6 and 1.7 Mg ha(-1) yr(-1), respectively, in the 0- to 40-cm zone. This study showed that the potential to sequester C can be enhanced by increasing cropping frequency and eliminating tillage. 相似文献