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991.
Marty D. Matlock Monty E. Matlock Daniel E. Storm Michael D. Smolen William J. Henley 《Journal of the American Water Resources Association》1998,34(5):1141-1147
ABSTRACT: The decline of water quality in United States’ lotic ecosystems (streams and rivers) has been linked to nonpoint source nutrient loading (U.S. EPA, 1990). Determining limiting nutrients in streams is difficult due to the variable nature of lotic ecosystems. We developed a quantitative passive diffusion periphyton nutrient enrichment system, called the Matlock Periphytometer, to measure the response of attached algae (periphyton) to nutrient enrichment. The system is simple to build and provides quantitative nutrient enrichment of a surface for periphytic growth. The periphyton grow on a glass fiber filter, which allows complete recovery of periphyton for chlorophyll a analysis. A 14-kilodalton dialysis membrane was used as a biofilter to prevent bacterial and algal contamination of the nutrient solution. We determined the rates of diffusion of nitrogen and phosphorus ions across the Matlock Periphytometer's dialysis membrane and glass fiber filter over a 21-day period (42 and 22 μg/cm2/hr, respectively). We used the Matlock Periphytometer to determine the limiting nutrient in a woodland stream. Six replicates each of a control, nitrogen, and phosphorus treatment were placed in the stream for 14 days. The results indicated that phosphorus was the limiting nutrient in the stream for the period and location sampled. 相似文献
992.
Total annual nutrient loads are a function of both watershed characteristics and the magnitude of nutrient mobilizing events.
We investigated linkages among land cover, discharge and total phosphorus (TP) concentrations, and loads in 25 Kansas streams.
Stream monitoring locations were selected from the Kansas Department of Health and Environment stream chemistry long-term
monitoring network sites at or near U.S. Geological Survey stream gauges. We linked each sample with concurrent discharge
data to improve our ability to estimate TP concentrations and loads across the full range of possible flow conditions. Median
TP concentration was strongly linked (R
2 = 76%) to the presence of cropland in the riparian zones of the mostly perennial streams. At baseflow, discharge data did
not improve prediction of TP, but at high flows discharge was strongly linked to concentration (a threshold response occurred).
Our data suggest that on average 88% of the total load occurred during the 10% of the time with the greatest discharge. Modeled
reductions in peak discharges, representing increased hydrologic retention, predicted greater decreases in total annual loads
than reductions of ambient concentrations because high discharge and elevated phosphorus concentrations had multiplicative
effects. No measure of land use provided significant predictive power for concentrations when discharge was elevated or for
concentration rise rates under increasing discharge. These results suggest that reductions of baseflow concentrations of TP
in streams without wastewater dischargers may be managed by reductions of cropland uses in the riparian corridor. Additional
measures may be needed to manage TP annual loads, due to the large percentage of the TP load occurring during a few high-flow
events each year. 相似文献
993.
994.
微生物对芦苇人工湿地除磷影响研究 总被引:2,自引:0,他引:2
以上海梦清园人工芦苇湿地为对象,在微生物制剂使用的同时研究了微生物对湿地除磷效果的影响。经过对近一年的数据分析表明,微生物的增加使总磷平均去除率达到20.9%,高于空白的18.3%。微生物的磷酸化作用使得出水磷更多以磷酸根形式表达,甚至使磷酸盐含量不降反升。底泥监测表明,微生物制剂的加入能有效的促进浮泥层中磷的转移,减缓浮泥层中磷的积累,10个月后试验组浮泥层的磷含量相对空白对照组可降低10%以上,菌剂对于减缓磷的积累,促进磷向基质转移有重要意义。 相似文献
995.
Michael R. Burkart William W. Simpkins Amy J. Morrow J. Michael Gannon 《Journal of the American Water Resources Association》2004,40(3):827-834
ABSTRACT: Seven sets of ground water samples from 103 observation wells were analyzed for total dissolved phosphorus (TDP) in four areas and five materials including loess and loess derived alluvium in the Deep Loess Hills of western Iowa, outwash and fractured till adjacent to Clear Lake in north central Iowa, fractured till in central Iowa, and a sand and gravel aquifer in northwest Iowa. Land use in ground water recharge zones in all four areas is dominated by crop or animal production or both. Concentrations of TDP exceeding the minimum laboratory detection limit of 20 μg/l as P were found in all areas and in all materials sampled. Samples from the outwash deposits associated with Clear Lake contained significantly larger concentrations than all other areas and materials with a median of 160 μg/l. Water from fractured till in three areas produced the smallest range of concentrations with a median of 40 μg/l. The mean value of TDP in all sample sets exceeded 50 μg/l, an important ecological threshold that causes increased productivity in lakes and perennial streams and one being considered as a surface water nutrient standard by regulatory agencies. These results clearly show that ground water in essentially all near‐surface aquifers and aquitards discharging to Iowa's streams and lakes is capable of sustaining P concentrations of 50 to 100 μg/l in streams, lakes, and reservoirs. Consequently, even if point discharges and sediment sources of P are substantially reduced, ground‐water discharge to surface water may exceed critical thresholds under most conditions. 相似文献
996.
表面流人工湿地磷循环生态动力学模型及实现方法 总被引:4,自引:2,他引:4
人工湿地做为一种高效低耗的新型污水处理工艺日益为人们所关注,特别是表面流人工湿地所特有的区域生态效益和脱氮除磷效果,但其污染物去除的内在机制并不为人们所完全掌握。本文详细地介绍了表面流人工湿地磷循环生态动力学模型的设计思想、具体结构、数学模式和实现方法,并对生物生长、死亡和土壤作用模块的各种不同实现方法傲了深入细致地分析探讨。结果表明人工湿地生态动力学模型由于假设歧义、实现方法不统一、模型参数测定手段的缺乏等因素的影响,导致其模拟结果的误差偏大,在表面流人工湿地多介质环境条件下多形态磷循环机理和多学科交叉研究方面还需要进行更深入、细致的工作,来对模型不断完善以推动对人工湿地污水处理工艺的完全掌握和科学应用。 相似文献
997.
G. Dennis Cooke Robert T. Heath Robert H. Kennedy Murray R. McComos 《Journal of the American Water Resources Association》1982,18(4):699-705
ABSTRACT: Recovery of eutrophic lakes after nutrient diversion may be delayed if the lake experiences significant internal phosphorus (p) loading to the water column. A maximum dose of aluminum sulfate, defined herein, was applied to the anaerobic sediments of the hypolimnia of two dimictic Ohio lakes following septic tank diversion, with the objective of attaining long term control of the release of phosphorus to the water column from these sediments. The results were compared to a similar, downstream, untreated lake. Total phosphorus concentration declined sharply after treatment and has remained so through 1980 for both lakes, a period of 5 and 6 years of control, respectively. Internal P loading from anaerobic, hypolimnetic sediments was partially controlled by the treatment but there are other important sources, perhaps in the littoral zone, in these lakes. Algal biomass is Smaller and water transparency has increased. Both lakes became mesotrophic after treatment, as described by the Carlson (1977) trophic state index, and remain in that improved condition to date. No deleterious side effects were observed, although one lake experienced a significant decrease in diversity of planktonic microcrustacea and a lakeward extension of the macrophyte community. This method appears to be an effective and lasting means of accelerating the recovery of a eutrophic lake following nutrient diversion. 相似文献
998.
Akinpelu K Babayemi Okechukwu D Onukwuli Akindele O Okewale Olusola A Adesina 《环境质量管理》2019,28(3):55-62
Activated carbon was prepared from coconut shell, an agricultural waste, for the removal of phosphorus from synthetic phosphorus‐containing wastewater. The activated carbon obtained from the coconut shell was characterized using Fourier‐transform infrared (FTIR) spectroscopy. Batch mode experiments were conducted to study the effects of pH, particle size, adsorbent dosage, and sorption time on the adsorptive potential of the prepared activated carbon. Response surface methodology was employed to study the interactions among the variables and to optimize the process conditions for the maximum removal of phosphorus using the coconut shell–based activated carbon (CNS). The characterization results from the FTIR showed the presence of variety of functional groups, such as ?OH, ?NH, C=O, C?H, C?N, CH3, and CH2, which explains the CNS's improved adsorption behavior on the colloidal particles. A maximum performance of 95.22% was obtained for CNS at the optimum conditions of adsorbent dosage = 1,000 milligrams (local variable), pH 2 (local variable), particle size = 0.2 millimeters (local variable), and sorption time = 4.2 hours (global variable). 相似文献
999.
序批式生物膜法同步除磷脱氮特性研究 总被引:6,自引:0,他引:6
对淹没序批式生物膜法去除有机物和磷及同步部分脱氮的特性进行了研究。其适合的载体装填密度为30%,水力停留时间为9h,其中厌氧3h,好氧6h,进水COD负荷从0.27kg/(m^3.d)到1.32kg/(m^3.d)均可使除磷率达90%以上,脱氮率达50%-60%。淹没式生物膜法除磷脱氮工艺中的优势菌属为假单胞菌属,其次依顺序为气单胞菌属,芽孢杆菌属,微球菌属,硝化矸菌属,生物膜具有生物量大(MLVSS达5531.7mg/L),脱落污泥含磷量高(达5.67%),沉降性好(SVI为101.7)的特点,污泥产率为0.1996kg干泥/kgCOD。 相似文献
1000.
4种水生植物根际磷素耗竭效应的比较 总被引:2,自引:5,他引:2
利用短期盆栽试验和抖根法研究了喜旱莲子草(Alternanthera philoxeroides)、香蒲(Typha latifolia)、慈姑(Sagittaria sagittifolia)和芦苇(Phragmites communis)4种水牛植物的根际磷素耗竭效应,分析了植物根冠比、根系形态、磷素吸收有效性和磷素利用有妓性等差异,探讨了植物根际磷素耗竭效应的吸收利用调控机制.结果表明,与非根际土壤(有效磷含量为167.53ìg穏-1)相比,喜旱莲子草、香蒲、慈姑和芦苇根际土壤的有效磷含量分别减少至80.17、124.37、155.38和161.75ìg穏-1,水溶性磷含量分别减少了81%、42%、18%和16%.喜旱莲子草根系较小,但磷素吸收有效性高(1.32 mg·m-1),其磷素利用有效件不高(0.34 g·mg-1);香蒲的磷素吸收有效性虽然比喜旱莲子草低许多(0.52 mg·m-1),但其有强大的根系,且磷素利用有效性高(0.64 g·mg-1)、根冠比大(0.35).喜旱莲子草和香蒲耗竭根际磷素的能力高于慈姑和芦苇. 相似文献