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首页> 外文期刊>Soil Science Society of America Journal >Accumulation of organic matter components in soil under conditions imposed by wastewater infiltration.
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Accumulation of organic matter components in soil under conditions imposed by wastewater infiltration.

机译:在废水渗入的条件下,土壤中有机质组分的积累。

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Onsite wastewater systems that use subsurface infiltration of septic tank effluent are used widely in the United States and abroad; however, the processes that govern effluent flow and pollutant transport during treatment in the subsurface have only recently begun to be elucidated. The conditions that often occur during intermittent wastewater application can lead to the formation and deposition of organic molecules, which can cause reduced permeability and soil pore clogging. To enhance the fundamental understanding of organic matter accumulation as affected by effluent infiltration, field research was performed at the Mines Park Test Site located at the Colorado School of Mines. Four pilot-scale infiltration cells established in a sandy loam soil profile and used for infiltration of domestic septic tank effluent were dismantled to study the nature and extent of organic matter accumulation. Macro- and micromorphological observations were made, and soil samples were taken at and below the infiltrative surface and analyzed for total organic C, polysaccharides, and humic substances. Additionally, dissolved O2 concentrations were measured with time in the septic tank effluent within a cell as it infiltrated into the soil. Compared with background controls, soil samples collected at the soil infiltrative surface were characterized by high water contents and high concentrations of organic matter. The high values measured at the infiltrative surface declined sharply, however, from 1 to 2 cm of soil depth. An infiltrative surface exposed to microaerophilic concentrations (~2 mg/L) of dissolved O2 accumulated 400 to 800% (w/w) more organic material than the mass accumulated under more continuously anaerobic conditions. The microaerophilic conditions also appeared to favor the growth of polyphosphate-accumulating microorganisms.Digital Object Identifier http://dx.doi.org/10.2136/sssaj2009.0395
机译:利用化粪池废水的地下渗透的现场废水系统在美国和国外得到了广泛的应用。然而,直到最近才开始阐明在地下处理过程中控制废水流量和污染物迁移的过程。在间歇性废水处理过程中经常发生的情况会导致有机分子的形成和沉积,从而导致渗透性降低和土壤孔隙堵塞。为了增强对受污水渗透影响的有机物积累的基本认识,在科罗拉多矿业大学的矿山公园试验场进行了现场研究。拆除了在砂壤土土壤剖面中建立的四个用于家庭化粪池污水渗透的中试规模的渗透池,以研究有机质积累的性质和程度。进行了宏观和微观形态的观察,并在浸润表面及其下方采集了土壤样品,并对总有机碳,多糖和腐殖质进行了分析。另外,随着时间的流逝,当细胞渗入土壤时,在化粪池流出物中溶解的O 2 浓度也随时间测量。与背景对照相比,在土壤渗透表面收集的土壤样品具有高水分含量和高有机质含量的特征。在渗透表面测得的高值急剧下降,但是从土壤深度的1到2 cm。暴露于微需氧浓度(〜2 mg / L)的溶解的O 2 的渗透表面比在更连续的厌氧条件下积累的质量多累积了400-800%(w / w)的有机物。微需氧条件似乎也有利于聚磷酸盐积累微生物的生长。数字对象标识符http://dx.doi.org/10.2136/sssaj2009.0395

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