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首页> 外文期刊>Water, Air, and Soil Pollution >Spent Potassium Silicate Drilling Fluid Affects Soil and Leachate Properties
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Spent Potassium Silicate Drilling Fluid Affects Soil and Leachate Properties

机译:废硅酸钾钻井液影响土壤和渗滤液的性质

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摘要

Potassium silicate drilling fluid (PSDF) is a relatively new type of drilling waste generated by the oil and gas industry. PSDF effects on soil, vegetation, and ground water must be determined before its land disposal and use in reclamation can be regulated. A laboratory column leachate study was conducted to quantify the response of select soil and leachate properties to PSDF at various depths in soil column profiles. A spent PSDF was applied to two soils (sand and loam textures) at four rates (20, 40, 60, 120 m~3 ha~(-1)) with two application methods (incorporated, sprayed). Changes to soil and leachate properties were at values that would not be detrimental to most plant species when PSDF was applied at ≤60 m~3 ha~(-1). Applying PSDF at 120 m~3 ha~(-1) had significant effects on soil properties and leachate quality. Hydraulic conductivity and field capacity were significantly reduced, and soil available potassium and sulfate concentrations, pH, and salinity increased with PSDF. Incorporated PSDF in the upper 10 cm of soil accelerated PSDF element transport through soil columns to leachate and increased organic carbon and salinity in leachate. PSDF application rate significantly reduced soil field capacity, available nitrogen, and increased salinity at the highest rates in loam soil, suggesting a threshold beyond which conditions will not be suitable for land spraying PSDF. This research demonstrates that PSDF has potential to improve soil short term water availability, macronutrient potassium and sulfur for disposal on cultivated and uncultivated lands. This potential should be field tested.
机译:硅酸钾钻井液(PSDF)是由石油和天然气工业产生的一种相对新型的钻井废料。必须先确定PSDF对土壤,植被和地下水的影响,然后才能规范其土地处置和开垦用途。进行了实验室柱渗滤液研究,以量化在不同深度的土壤柱剖面中所选土壤和渗滤液特性对PSDF的响应。用两种施用方法(结合,喷洒)以四种速率(20、40、60、120 m〜3 ha〜(-1))将用过的PSDF施用到两种土壤(砂和壤土质地)上。当PSDF≤60 m〜3 ha〜(-1)时,土壤和渗滤液特性的变化不会损害大多数植物种类。在120 m〜3 ha〜(-1)处施用PSDF对土壤性质和渗滤液质量有显着影响。 PSDF显着降低了水力传导率和田间持水量,土壤速效钾和硫酸盐的浓度,pH值和盐度也增加了。将PSDF掺入土壤的上部10 cm可以加速PSDF元素通过土壤柱向渗滤液的迁移,并增加渗滤液中的有机碳和盐分。 PSDF施用量显着降低了壤土土壤的土壤田间容量,有效氮和盐分,最高速率下盐碱化增加,表明存在一个阈值,超过该阈值条件将不适合于土地喷洒PSDF。这项研究表明,聚偏二氟乙烯具有改善土壤短期水分利用,大量养分钾和硫的潜力,可在耕地和非耕地上处置。这种潜力应进行现场测试。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2014年第10期|2156.1-2156.15|共15页
  • 作者单位

    Department of Renewable Resources, University of Alberta, Room 751 General Services Building, Edmonton, Alberta, Canada,School of Land Science and Technology, University of Geosciences, Beijing, China;

    Department of Renewable Resources, University of Alberta, Room 751 General Services Building, Edmonton, Alberta, Canada;

    Department of Renewable Resources, University of Alberta, Room 751 General Services Building, Edmonton, Alberta, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Drilling waste; Water-based drilling fluid; Leachate; Soil column; Land reclamation;

    机译:钻井废料;水性钻井液;渗滤液土柱;土地复垦;

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