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11.
考虑土壤水平衡的灌区水资源优化配置研究 总被引:1,自引:0,他引:1
针对内蒙古河套灌区解放闸灌域地下水埋深较浅且矿化度高及黄河水量逐年减少等因素导致的农业用水严重短缺问题,本研究以解放闸灌域玉米为研究对象,耦合Jensen模型与土壤水平衡模型构建灌区尺度灌溉水资源优化配置模型,对不同的地下水埋深及土壤含水量情景下水资源优化配置方案进行研究,并利用Lingo软件编程求解模型。结果表明:当地下水埋深为2.5m时,引黄水量为3.85×10~8 m~3,可以达到5.55×10~8元的净经济效益;而土壤水含量为0.12~0.16时,净经济效益为[5.41,5.67]×108元。优化结果验证了模型在当地可行,并针对河套灌区解放闸灌域的不同土壤含水量与地下水埋深情景分别提供14种配水方案。 相似文献
12.
为了寻找改善单叶片离心叶轮径向受力的方法,通过对一单端面配重的单叶片叶轮进行研究,在外特性试验验证定常数值计算精度的前提下,进行非定常数值计算,获得了单叶片叶轮的径向力矢量分布规律,发现设计工况附近,叶轮所受径向力的方向与叶片相对位置基本固定.基于整周期内径向力的矢量平均,获得平均径向受力的大小和方向.利用虚拟样机仿真技术,获得了质量平衡的叶轮,以及质量不平衡的叶轮;该叶轮的不平衡质量在旋转作用下产生的离心力,正好与平均水力径向力大小接近、方向相反.通过单向流固耦合仿真,发现偏心质量叶轮在实际运行中径向受力大幅度减小,证明了通过精确控制不平衡质量大小及相位角,减小和改善单叶片叶轮径向受力的方法是可行的. 相似文献
13.
不同供磷水平对辣椒根系形态和根际特征的影响 总被引:3,自引:0,他引:3
以辣椒品种线椒王为试验材料,采用盆栽方式,通过分析不同施磷水平下辣椒根系形态和根系生理的变化,探究辣
椒磷高效利用的主要根系及根际过程。结果表明,辣椒地上部和根系生物量随供磷水平的增加呈现先增加后下降的趋势,整
株磷浓度以及整株磷累积量呈增加趋势。随供磷水平增加,根系总根长呈先增加后下降趋势,根系平均直径、根冠比呈逐渐
降低趋势;辣椒根系菌根侵染率和土壤酸性磷酸酶活性呈现先增加后下降的趋势。相关分析结果表明,土壤有效磷浓度和整
株磷浓度与根系平均直径、菌根侵染率呈极显著负相关,与总根长可用一元二次方程拟合,表明辣椒根系适应低磷的根际特
征可能是通过增加根系生物量及总根长,同时降低根系平均直径来实现的。 相似文献
14.
Jizzakh Province in Uzbekistan is one of the largest irrigated areas in Central Asia without natural drainage.In combination with aridity,climate change and extensive irrigation practices,this has led to the widespread salinization of agricultural land.The aim of this study was to identify opportunities to improve the reclamation status of the irrigated area and how best to effectively use the water resources in Jizzakh Province based on investigations conducted between 1995 and 2016.A database of field measurements of groundwater levels,mineralization and soil salinity conducted by the provincial Hydro-Geological Reclamation Expeditions was used in the study.The total groundwater mineralization was determined using a portable electric conductometer(Progress 1T)and the chloride concentration was determined using the Mohr method.The soil salinity analyses were conducted by applying two different methods:(1)the extraction and assessment of the soluble salt content,and(2)using an SM-138 conductivity sensor applied to a 1:1 mixture of soil sample and water.The analyses of the monitoring results and the salt balance in the"irrigation water–soil–drainage water"system clearly demonstrated that the condition of the irrigated land in the province was not significantly improved.Under these conditions,the stability of crop yields is achieved mainly through the use of large volumes of fertilizer.However,excess amounts of mineral fertilizers can also cause the salinization of soils.The average groundwater salinization value in most of the irrigated land(75.3%)fluctuated between 1.1 and 5.0 g/L,while the values were less than 1.0 g/L in 13.1%of the land and in the range of 5.1–10.0 g/L in 10.5%of the land.During the period of 1995–2016 the salinization level of the irrigated land in Jizzakh Province increased slightly and the area could be divided into the following classes:no salinity(17.7%of the total area),low salinity(51.3%),moderate salinity(29.0%),and high salinity(2.0%).Detailed studies of the salt balance in irrigated land,the impact of climate change,increased fertilizer use,and repeated remediation leaching on the groundwater level and mineralization should be conducted in the future,due to the possibility of accelerated salinization,fertility decline,and reduced yields of agricultural crops. 相似文献
15.
Epithelial sodium channel (ENaC) is an ion channel widely distributed in various tissues and organs of human. It is composed of 3 homologous subunits and allows the flow of sodium ion across epithelial cells, maintain?ing water-salt balance in the cells. Recent studies show that abnormal expression or dysfunction of ENaC in the respiratory system affects water-salt balance, fluid transportation and cell mobility, and causes abnormal changes of the airway surface liquid level and impaired clearance. ENaC is closely related to the development of respiratory diseases, such as cystic fibrosis, asthma and chronic obstructive pulmonary disease. This article reviews the progress in ENaC structure, function and roles in related respiratory diseases in order to provide a reference for the treatment of the diseases. 相似文献
16.
Water eutrophication and poultry manure require an efficacious remediation technology to decrease phosphorous (P) concentration. In this study, the P phytoremediation potential of a mining (ME) and nonmining ecotype (NME) of Pilea sinofasciata were analyzed by pot experiments employing different concentrations of P treatments (CK, P100, P200, P400, P800 and P1600) in tested soil. Growth, P accumulation and P-relevant enzyme activities of P. sinofasciata in ME and NME were assessed after 10 weeks’ plantation. The results showed that there was no significant difference between the shoot biomass of the ME and NME. Higher P concentration and accumulation were observed in the ME than NME for all treatments. Stem P concentration of the ME were 117%, 189%, 152%, 153%, 140% and 139% higher than the NME, and leaf P concentration were 122%, 146%, 138%, 144%, 137% and 113%. Maximum P uptake and phytoextraction was observed at P400 for the ME of P. sinofasciata. Elevated activities of acid phosphatase and phytase in roots were examined in P-enriched soil, and the ME presented higher activities compared with the NME. The results in this paper provide a theoretical basis for the use of ME of P. sinofasciata for phosphorus accumulators and suggest that ME of P. sinofasciata is a promising species for the excess P phytoextraction of P-enriched soils. 相似文献
17.
典型农田根际土壤伯克霍尔德氏菌群落结构及其多样性 总被引:1,自引:0,他引:1
在根际环境中伯克霍尔德氏菌(Burkholderiales)是一类重要的植物促生菌,其群落结构变化可能会影响植物的生长和发育。本研究针对伯克霍尔德氏菌目,采用特异性引物16S rRNA基因高通量测序技术,研究了田间条件下黑土、潮土和红壤中玉米根际伯克霍尔德氏菌群落结构及其对地上部作物生物量和产量的可能影响。结果表明:在三种土壤类型中,与未施肥相比,施肥对伯克霍尔德氏菌目的丰富度和多样性均没有显著影响。在伯克霍尔德氏菌的科水平主要检测到三类细菌,分别为草酸杆菌科(Oxalobacteraceae)、丛毛单胞菌科(Comamonadaceae)和伯克氏菌科(Burkholderiaceae),且草酸杆菌科是其中的优势菌。此外,施肥显著增加了有机质含量较低的潮土中马赛菌(Massilia spp.和Massilia sp. WG5)和伯克氏菌(Burkholderiaspp.)的相对丰度(P0.05);增加了酸性红壤中草螺旋菌(Herbaspirillumsp.ZM319)的相对丰度,但降低了Noviherbaspirillum spp.的相对丰度(P0.05);而在有机质含量最高的黑土中,所有检测到的伯克霍尔德氏菌均无明显地变化。进一步分析表明,土壤有效磷、速效钾含量和土壤pH是影响这几类细菌的主要因素,而马赛菌群落的变化可能会影响玉米地上部生物量和产量。本研究表明,尽管化学施肥是影响玉米地上部生物量和产量的主要原因,但是伯克霍尔德氏菌等根际微生物群落也可能是影响它们的潜在生物因素。 相似文献
18.
Monitoring and modelling total phosphorus contributions to a freshwater lake with cage‐aquaculture 下载免费PDF全文
Jacquiline E Milne Christopher H Marvin Ram Yerubandi Kevin McCann Richard D Moccia 《Aquaculture Research》2017,48(1):283-297
A mass‐balance modelling approach combined with a sensitivity analysis was utilized to gain an improved understanding of the relative contributions of phosphorus (P) loading from various anthropogenic and non‐anthropogenic sources into Lake Wolsey (Manitoulin Island, Ontario, Canada), a Type 2 freshwater lake with a cage‐aquaculture facility. Total P loadings were estimated from eight sources (inlet exchange, non‐point sources, cage‐aquaculture facility, internal loading, groundwater seepage, atmospheric deposition, leaf litter and dwellings) and three sinks (outlet exchange, sedimentation and sportfishing). Results indicated that over the study period (May–November 2007) the non‐point sources were the leading contributor of total P to Lake Wolsey (1120 kg P) followed by the cage‐aquaculture facility loading (915 kg P), inlet exchange (539 kg P), groundwater inputs (305 kg P), dwellings (219 kg P), internal P recycling loads from the hypoxic hypolimnion (186 kg P), atmospheric deposition (79 kg P) and decomposing leaf litter (8.1 kg P). When comparing the loadings in this study, the sensitivity analysis showed that non‐point sources were the only significant input parameter of total P loading to the in‐lake concentrations of P in Lake Wolsey(P = 0.05). Information from this project will provide water quality managers with sound scientific information to make defencible decisions pertaining to policy and regulatory approaches for water quality risk assessment and management of cage‐aquaculture in Type 2 sites. 相似文献
19.
为了探讨变化环境对农业水资源供需平衡的影响,运用系统动力学软件Vensim-Dss建立了农业水资源供需平衡的系统动力学模型,综合考虑社会经济发展和气候变化情景,仿真模拟了变化环境下农业供、需水量及缺水量的变化情况.石羊河流域模拟结果表明:未来农业供水量和需水量受气候变化的影响程度不同,但 2033年以后,农业供水量在不同气候变化情景下的变化趋势相同;不同行政区农业水资源系统对气候变化的响应存在明显差异,金昌市A2气候情境缺水率大于B2情景,在2029年、2038年缺水率分别达到32.0%,28.6%, B2情境下,2021年开始出现轻度缺水,中度缺水年仅出现在2023年和2039年,缺水率分别为30.7%,30.5%;武威市A2气候情境下缺水率小于B2情景,仅2038年为中度缺水,缺水率为24.9%,B2气候情景中度缺水年较多,2023年缺水率最大,达到33.2%.研究结果可以对变化环境下区域用水规划和农业发展规划提供指导. 相似文献
20.
【目的】 系统分析连续11年增量施磷下赤红壤蔗地土壤全磷、Olsen-P以及地表径流磷流失量的变化特征和土壤磷素变化与磷盈亏、蔗茎产量的响应关系,为土壤磷素科学管理提供参考。【方法】 依托长期肥力及地表径流定位监测试验(2008年—),选取不施肥(CK)、推荐施肥(OPT)和增量施磷(OPT+P)3个处理,测定土壤全磷、Olsen-P含量及地表径流磷流失量,分析土壤磷素变化与磷累积盈亏量的关系,采用Mitscherlich模型拟合蔗茎产量对Olsen-P的响应曲线,计算土壤Olsen-P农学阈值,并推算施肥处理土壤Olsen-P含量从第11年降至环境阈值所需的时间。【结果】 CK处理逐年降低土壤全磷含量,年降速率为0.0251 g·kg -1·a -1。施肥土壤全磷和Olsen-P含量随种植年限波动增加,土壤全磷和Olsen-P增速率OPT+P处理高于OPT处理。不施肥土壤表观磷盈亏10.2 kg·hm -2·a -1,施肥处理土壤表观磷盈余41.3—69.2 kg·hm -2·a -1,占施磷量的31.9%—35.6%,以OPT+P处理显著高于OPT处理67.5%。施肥下赤红壤蔗区土壤全磷和Olsen-P变化量均与土壤累积磷盈亏量呈显著正相关关系(P<0.01),土壤每累积盈余100 kg P·hm -2,OPT处理和OPT+P处理土壤全磷上升0.06 g·kg -1和0.09 g·kg -1,Olsen-P 含量上升11.0 mg·kg -1和9.1 mg·kg -1。土壤每累积亏缺100 kg P·hm -2,CK处理土壤全磷下降0.32 g·kg -1。Mitscherlich模型较好地拟合蔗茎产量与赤红壤Olsen-P含量的响应关系(P<0.01)。其计算出的土壤Olsen-P 农学阈值为12.1 mg·kg -1。施肥显著提高地表径流磷流失量,且OPT+P处理也显著高于OPT处理。地表径流磷流失量与土壤Olsen-P含量显著正相关。基于土壤磷素变化与累积磷盈亏的关系推算得出第11年OPT和OPT+P处理Olsen-P水平降至环境阈值的时间分别需要12年和16年。 【结论】 在南方赤红壤区,施肥尤其增量施磷在提高土壤磷素累积的同时增加了地表径流磷流失风险。在本试验磷的基础养分条件下,按OPT处理施磷,并从甘蔗种植的第2—3年实行隔年施磷可维持土壤磷素处于农学阈值与环境阈值之间。 相似文献