Suppr超能文献

蒸发蒸腾覆盖物在俄亥俄州西北部城市固体废物填埋场的两年性能表现。

Two-year performance by evapotranspiration covers for municipal solid waste landfills in northwest Ohio.

机构信息

Department of Environmental Sciences, University of Toledo, Lake Erie Center, 6200 Bayshore Rd, Oregon, OH 43616, United States.

出版信息

Waste Manag. 2012 Dec;32(12):2336-41. doi: 10.1016/j.wasman.2012.07.014. Epub 2012 Aug 9.

Abstract

Evapotranspiration (ET) covers have gained interest as an alternative to conventional covers for the closure of municipal solid waste (MSW) landfills because they are less costly to construct and are expected to have a longer service life. Whereas ET covers have gained acceptance in arid and semi-arid regions (defined by a precipitation (P) to potential evapotranspiration (PET) ratio less than 0.75) by meeting performance standards (e.g. rate of percolation), it remains unclear whether they are suitable for humid regions (P:PET greater than 0.75). The goal of this project is to extend their application to northwest Ohio (P:PET equals 1.29) by designing covers that produce a rate of percolation less than 32 cm yr(-1), the maximum acceptable rate by the Ohio Environmental Protection Agency (OEPA). Test ET covers were constructed in drainage lysimeters (1.52 m diameter, 1.52 m depth) using dredged sediment amended with organic material and consisted of immature (I, plants seeded onto soil) or mature (M, plants transferred from a restored tall-grass prairie) plant mixtures. The water balance for the ET covers was monitored from June 2009 to June 2011, which included measured precipitation and percolation, and estimated soil water storage and evapotranspiration. Precipitation was applied at a rate of 94 cm yr(-1) in the first year and at rate of 69 cm yr(-1) in the second year. During the first year, covers with the M plant mixture produced noticeably less percolation (4 cm) than covers with the I plant mixture (17 cm). However, during the second year, covers with the M plant mixture produced considerably more percolation (10 cm) than covers with the I plant mixture (3 cm). This is likely due to a decrease in the aboveground biomass for the M plant mixture from year 1 (1008 g m(-2)) to year 2 (794 g m(-2)) and an increase for the I plant mixture from year 1 (644 g m(-2)) to year 2 (1314 gm(-2)). Over the 2-year period, the mean annual rates of percolation for the covers with the M and I plant mixtures were 7 and 8 cm yr(-1), which are below the OEPA standard. The results suggest the application of ET covers be extended to northwest Ohio and other humid regions.

摘要

蒸发蒸腾(ET)覆盖物作为传统的城市固体废物(MSW)垃圾填埋场封盖的替代品越来越受到关注,因为它们的建造成本更低,预计使用寿命更长。尽管 ET 覆盖物在干旱和半干旱地区(根据降水量(P)与潜在蒸发蒸腾量(PET)的比值小于 0.75 来定义)已经通过了性能标准(例如,渗流率),但它们是否适合潮湿地区(P:PET 大于 0.75)仍不清楚。该项目的目标是通过设计覆盖物来将其应用扩展到俄亥俄州西北部(P:PET 等于 1.29),使渗流率小于 32 厘米/年,这是俄亥俄州环境保护局(OEPA)可接受的最大速率。在排水 Lysimeter(直径 1.52 m,深度 1.52 m)中构建了测试 ET 覆盖物,使用添加有机材料的疏浚沉积物,并由不成熟(I,播种到土壤上的植物)或成熟(M,从恢复的高草草原转移的植物)植物混合物组成。从 2009 年 6 月到 2011 年 6 月监测了 ET 覆盖物的水量平衡,其中包括测量的降水量和渗流量以及估计的土壤水储量和蒸发蒸腾量。在第一年以 94 厘米/年的速率和第二年以 69 厘米/年的速率应用降水。在第一年,具有 M 植物混合物的覆盖物产生的渗流量明显小于具有 I 植物混合物的覆盖物(17 厘米)(4 厘米)。然而,在第二年,具有 M 植物混合物的覆盖物产生的渗流量明显高于具有 I 植物混合物的覆盖物(3 厘米)(10 厘米)。这可能是由于 M 植物混合物的地上生物量从第一年(1008 g m(-2))减少到第二年(794 g m(-2)),而 I 植物混合物的地上生物量从第一年(644 g m(-2))增加到第二年(1314 gm(-2))。在两年期间,具有 M 和 I 植物混合物的覆盖物的年平均渗流率分别为 7 和 8 厘米/年,低于 OEPA 标准。结果表明,ET 覆盖物的应用可以扩展到俄亥俄州西北部和其他潮湿地区。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验