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PENNSYLVANIA’S ABANDONED MINE LAND (AML) EMERGENCY PROGRAM 宾夕法尼亚州废弃矿区紧急项目
Pub Date : 2020-12-20 DOI: 10.21000/JASMR20040067
Eric E. Cavazza, J. Stefanko, Richard L. Beam
Abstract. The Pennsylvania Department of Environmental Protection’s Bureau of Abandoned Mine Reclamation (BAMR) implements an Abandoned Mine Land (AML) Emergency Program to address high-priority, abandoned mine land (AML) problems that suddenly occur throughout Pennsylvania’s coal fields. BAMR maintains two field offices: one in eastern Pennsylvania (Anthracite Region) in Wilkes-Barre and one in western Pennsylvania (Bituminous Region) in Ebensburg. Both field offices maintain in-house construction crews with significant equipment available to respond to and address many small AML Emergencies (hazards) such as pothole (or cavehole), subsidences, and mine drainage breakouts. For larger AML Emergencies such as subsidence events causing structural damage to homes, businesses, and roads; mine fires; coal refuse fires; landslides; or other large-scale or complex AML problems, projects are completed by outside contractors. Project designs are completed by BAMR engineering staff. The contractors are then hired through solicitation of bids or proposals with very short timeframes between bid issue and bid opening. Since October of 2010, BAMR has addressed nearly 800 AML Emergencies which equates to approximately 80 AML Emergency projects each calendar year. The average construction cost to address those emergencies was just over $3.25 million per year. Due to the increased precipitation over the Commonwealth the last several years, that number has increased to an average of 86 AML Emergency projects over the last five (5) years (2015–2019) with a record number of 127 addressed in calendar year 2018. The average cost to address those AML Emergency projects over that five-year period was $4.66 million per year. This paper will provide some background on Pennsylvania’s AML Emergency Program, some summary statistics including the annual number and types of projects completed including costs, and also highlight through both photos and video links some typical projects recently completed by the program.
摘要宾夕法尼亚州环境保护局废弃矿山复垦局(BAMR)实施了一项废弃矿山土地(AML)紧急计划,以解决整个宾夕法尼亚州煤田突然发生的高优先级废弃矿山土地(AML)问题。BAMR设有两个外地办事处:一个在宾夕法尼亚州东部的威尔克斯-巴雷(无烟煤地区),一个在宾夕法尼亚州西部的埃本斯堡(沥青地区)。两个外地办事处都有内部施工人员,配备重要的设备,以应对和解决许多小型AML紧急情况(危害),如坑洞(或洞穴)、下沉和矿井排水爆裂。对于较大的“反洗钱”紧急情况,如对房屋、企业和道路造成结构性破坏的沉降事件;矿井火灾;煤矸石燃烧;山体滑坡;或其他大规模或复杂的“反洗钱”问题,项目由外部承包商完成。项目设计由BAMR工程人员完成。然后通过招标或建议书的方式聘用承包商,在发标和开标之间的时间跨度非常短。自2010年10月以来,BAMR已处理了近800个“反洗钱”紧急情况,相当于每个日历年处理约80个“反洗钱”紧急项目。处理这些紧急情况的平均建筑费用每年刚刚超过325万美元。由于过去几年英联邦降水增加,这一数字在过去五(5)年(2015-2019年)平均增加到86个“反洗钱”紧急项目,在2018日历年达到创纪录的127个。在这五年期间,处理这些“反洗钱”紧急项目的平均费用为每年466万美元。本文将提供宾夕法尼亚州反洗钱紧急计划的一些背景,一些汇总统计数据,包括年度数量和已完成项目的类型,包括成本,并通过照片和视频链接强调该计划最近完成的一些典型项目。
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引用次数: 0
PENNSYLVANIA’S ENVIRONMENTAL GOOD SAMARITAN PROGRAM 宾夕法尼亚州的环境好撒玛利亚人计划
Pub Date : 2020-12-20 DOI: 10.21000/JASMR20040087
Eric E. Cavazza, J. Stefanko, Richard L. Beam
Abstract. Pennsylvania enacted an Environmental Good Samaritan Act (PA EGSA) in 1999. The law is intended to encourage landowners and others to reclaim abandoned mineral extraction lands and abate water pollution caused by abandoned mines or orphaned oil and gas wells. The law protects landowners, groups and individuals who volunteer to do such projects from civil and environmental liability under Pennsylvania law. Prior to the PA EGSA, anyone who voluntarily reclaimed abandoned lands or treated water pollution for which they were not liable could be held responsible for treating the residual pollution under Pennsylvania law. This dissuaded people and groups from pursuing these types of projects. Only projects approved by the Pennsylvania Department of Environmental Protection (PA DEP) prior to construction are eligible for protections under the PA EGSA. PA DEP has developed a project proposal form for participants and landowners. Each proposal must identify the project participants and landowners, describe the location of the project and the environmental problems that will be addressed, and establish a work plan for the proposed project. The PA DEP evaluates each proposal to determine if the project is capable of reclaiming the land or improving water quality. The PA DEP will also advise participants on any permits that may be required. Once the project is approved, PA DEP will maintain a permanent record of the participants and landowners who are protected under the PA EGSA.
摘要宾夕法尼亚州于1999年颁布了《环境好撒玛利亚人法案》(PA EGSA)。该法律旨在鼓励土地所有者和其他人开垦废弃的矿产开采地,减少废弃矿山或废弃油气井造成的水污染。根据宾夕法尼亚州法律,该法律保护自愿从事此类项目的土地所有者、团体和个人免于民事和环境责任。在PA EGSA之前,根据宾夕法尼亚州的法律,任何自愿开垦废弃土地或处理水污染的人都可能对处理残余污染负责。这阻止了个人和团体追求这些类型的项目。只有宾夕法尼亚州环境保护部(PA DEP)在施工前批准的项目才有资格受到PA EGSA的保护。环境保护署署长为参加者和土地拥有人编制了项目建议书表格。每份建议书必须确定项目参与者和土地所有者,描述项目的位置和将要解决的环境问题,并为拟议的项目制定工作计划。环保署署长会评估每项建议,以确定工程项目是否有能力填海或改善水质。环境保护署署长亦会就可能需要的许可证向参加者提供意见。一旦项目获得批准,PA DEP将保存受PA EGSA保护的参与者和土地所有者的永久记录。
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引用次数: 0
A System to Evaluate Prime Farmland Reclamation Success Based on Spatial Soil Properties 基于空间土壤特性的基本农田复垦成功评价系统
Pub Date : 2020-12-20 DOI: 10.21000/JASMR20040001
Dustin L. Corr
Abstract. Scholars, governmental agencies, and concerned citizens are interested in developing empirical predictive models to quantitatively assess the vegetative productivity potentials of reconstructed soils (neo- sols). This research presents equations for a northern Michigan mining region in the Upper Peninsula of Michigan, based on data derived from the National Resources Conservation Service. We employed principal component analysis to develop models to predict the vegetative productivity of corn, corn silage, oats, alfalfa/hay, Irish potatoes, red maple (Acer rubrum L.), white spruce (Picea glauca [Moench] Voss), red pine (Pinus resinosa Aniton), eastern white pine (Pinus strobus L.), jack pine (Pinus banksiana Lamb.), and lilac (Syringa vulgaris L.). Soil attributes that were examined in this research include: available water holding capacity, moist bulk density, % clay, % rock fragments, hydraulic conductivity, % organic matter, soil reactivity, % slope, and topographic position. Four predictive equations based on landscape topography have been developed and are described as an all-mesic woody plant and crop equation, a xeric equation, an equation specific to jack pine, and a wet environment equation. The models were highly significant (p<0.0001) and explained 87.93%, 74.52%, 65.33%, and 87.68% of the variation in site productivity of the respective landscape setting. These equations are intended to assist in efforts to assess the vegetative productivity potentials of reconstructed soils on post-mined landscapes and other disturbed landscapes.
摘要学者、政府机构和相关公民都对开发经验预测模型来定量评估重建土壤(新土壤)的植被生产力潜力感兴趣。本研究根据美国国家资源保护局的数据,提出了密歇根上半岛北密歇根矿区的方程。采用主成分分析法建立了玉米、青贮玉米、燕麦、苜蓿/干草、爱尔兰马铃薯、红枫(Acer rubrum L.)、白云杉(Picea glauca [Moench] Voss)、红松(Pinus resinosa Aniton)、东部白松(Pinus strobus L.)、短叶松(Pinus banksiana Lamb.)和丁香(Syringa vulgaris L.)的营养生产力预测模型。本研究中考察的土壤属性包括:有效持水量、湿容重、粘土、岩石碎片、水力导电性、有机质、土壤反应性、坡度和地形位置。以景观地形为基础,建立了4个预测方程,分别为全域木本植物和作物方程、干旱方程、短叶松方程和湿润环境方程。这些模型都非常显著(p<0.0001),分别解释了87.93%、74.52%、65.33%和87.68%的景观环境下的场地生产力变化。这些方程旨在帮助评估开采后景观和其他受干扰景观上重建土壤的植被生产力潜力。
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引用次数: 0
THREE-DIMENSIONAL SEEPAGE ANALYSIS OF A COAL REFUSE PILE RECLAMATION 某煤矸石堆复垦的三维渗流分析
Pub Date : 2020-12-20 DOI: 10.21000/JASMR20040044
Iuri Lira Santos, Civil
Abstract. A coal refuse pile located in Greenbrier County, West Virginia was studied to restrict generation of acid mine drainage through the use of a cap and cover system. This paper presents results of a finite element method seepage analysis on a proposed reclamation design. The proposed reclamation incorporates a cap and cover system with a 0.3-m thick surface vegetation cap layer over a 0.6-m thick low permeability layer. The low permeability layer is directly above the coal refuse. Unsaturated soil mechanics was utilized, adopting the Fredlund and Xing equation for soil-water characteristic curve (SWCC) estimation. SWCC fitting parameters were calculated using the Zapata and the Hernandez estimation techniques. Different precipitation events were used to evaluate seepage throughout the reclamation area and assess the effectiveness of the cap and cover system. A steep area (>4H:1V) and a flat area were considered. The water balance analysis showed a 50% to 88% reduction in water volume at the coal refuse layer and a reduction in the time for the refuse to return to initial water content due to the cap and cover system implementation. Moisture detainment was observed in the growth layer and is important for supporting vegetation persistence.
摘要研究了位于西弗吉尼亚州Greenbrier县的一个煤矸石堆,通过使用帽盖系统来限制酸性矿井废水的产生。本文介绍了某拟建围垦方案的有限元渗流分析结果。拟议的填海工程包括一个帽盖系统,在0.6 m厚的低渗透层上覆盖0.3 m厚的地表植被帽层。低渗层位于煤矸石的正上方。利用非饱和土力学,采用Fredlund和Xing方程估算土-水特征曲线。使用Zapata和Hernandez估计技术计算SWCC拟合参数。利用不同降水事件对整个围垦区渗流情况进行了评价,并对盖盖系统的有效性进行了评价。陡峭区域(>4H:1V)和平坦区域被考虑。水平衡分析表明,由于封盖系统的实施,煤矸石层的水量减少了50%至88%,并且减少了垃圾恢复到初始含水量的时间。在生长层观察到水分滞留,这对支持植被的持久性很重要。
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引用次数: 0
Influence of Temperature and Vegetation on Selenium Removal in Constructed Wetland Microcosms 温度和植被对人工湿地微环境中硒去除的影响
Pub Date : 2020-09-30 DOI: 10.21000/JASMR20030044
Michael P. Nattrass, Jesse I. Morrison, B. Baldwin
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引用次数: 1
ARTHROPOD RESPONSE TO PRAIRIE MANAGEMENT ON RECLAIMED MINE LAND IN APPALACHIA 节肢动物对阿巴拉契亚矿区复垦草原管理的响应
Pub Date : 2020-09-30 DOI: 10.21000/jasmr20030001
Rebecca M. Swab, A. Nolan
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引用次数: 1
DIMENSIONS IN POST-INDUSTRIAL LAND TRANSFORMATION IN PLANNING AND DESIGN: A PORTUGESE CASE STUDY CONCERNING PUBLIC PERCEPTION 规划与设计中的后工业土地转型维度:一个有关公众认知的葡萄牙案例研究
Pub Date : 2020-09-30 DOI: 10.21000/JASMR20030014
L. Loures, J. Burley, T. Panagopoulos, Jing Zhou
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引用次数: 2
ARTHROPOD RESPONSE TO PRAIRIE MANAGEMENT ON RECLAIMED MINE LAND IN APPALACHI 节肢动物对阿巴拉契垦荒矿区草原管理的响应
Pub Date : 2020-05-19 DOI: 10.21000/jasmr200100029
A. Nolan, Keiron Young
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引用次数: 0
USING UNMANNED AERIAL VEHICLES TO MODEL SURFACE RUNOFF DURING WELL PAD DEVELOPMENT 利用无人机模拟井台开发过程中的地表径流
Pub Date : 2020-05-19 DOI: 10.21000/jasmr200100051
M. Strager, Ângela Maria Klein Hentz, Paul Kinder, Shawn T. Grushecky
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引用次数: 0
IDENTIFICATION OF TROPICAL NATIVE HIGH-ACCUMULATING PLANT SPECIES FOR PHYTOREMEDIATION 热带原生高积累植物的植物修复鉴定
Pub Date : 2020-05-19 DOI: 10.21000/jasmr200100001
Adegbite A. Adesipo
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引用次数: 0
期刊
Journal of the American Society of Mining and Reclamation
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