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1.
测定分析了造纸废水灌溉对新疆杨体内钠离子含量的影响.研究结果表明,在造纸废水灌溉条件下,新疆杨体内不同生长部位的钠离子含量均随着灌溉年限的增加逐渐增大,新疆杨体内钠离子含量与土壤中钠离子含量呈显著正相关;新疆杨叶片中钠离子含量明显低于根系中钠离子含量,说明盐碱胁迫下新疆杨叶片耐钠性大于根系耐钠性,新疆杨根系是钠离子累积和外排的主要部位.  相似文献   

2.
啤酒废水灌溉对6种蔬菜硝酸盐亚硝酸盐含量的影响   总被引:2,自引:0,他引:2  
通过啤酒废水灌溉对6种蔬菜硝酸盐等的影响研究认为:啤酒废水灌溉对6种蔬菜灰分含量无明显影响,明显提高莴苣,马铃薯和甘蓝中维生素C的含量,提高韭菜,莴苣和甘蓝硝酸盐的含量;降低大葱硝酸盐的含量,可提高韭菜和马铃薯中亚硝酸盐的含量,而对于大葱、莴苣,小白菜和甘蓝中亚硝酸盐含量无明显影响。  相似文献   

3.
通过啤酒废水灌溉对6种蔬菜硝酸盐等的影响研究认为:啤酒废水灌溉对6种蔬菜灰分含量无明显影响;明显提高莴苣、马铃薯和甘蓝中维生素C的含量;提高韭菜、莴苣和甘蓝硝酸盐的含量;降低大葱硝酸盐的含量;可提高韭菜和马铃薯中亚硝酸盐的含量,而对于大葱、莴苣、小白菜和甘蓝中亚硝酸盐含量无明显影响  相似文献   

4.
猪场废水污灌土壤的Cr和Ni空间变异及积累分析   总被引:1,自引:0,他引:1  
黄治平  徐斌  张克强 《生态环境》2007,16(6):1694-1699
为了解长期施用猪场废水对农田土壤Cr和Ni(以下简称重金属)的影响,采集了河北省京安猪场周边农田清洁区和灌溉8年猪场废水的污灌区耕层(0~20cm)共52个土壤样品,并测定了样品中pH、养分及重金属全量和有效态含量,应用GIS结合地统计学方法对重金属进行了空间结构和分布特征分析,探讨规模化猪场周边农田土壤重金属积累的影响因子及其贡献。结果表明,Cr和Ni全量和有效态含量变异函数理论模型均符合球状模型,具有中等程度自相关。根据背景调查,重金属与pH值和土壤养分的相关性分析以及重金属变异函数分析,研究区土壤Cr和Ni主要受成土母质的影响,受污灌猪场废水影响不大。富集因子分析表明,污灌猪场废水对土壤Cr和Ni几乎没有积累。灌溉猪场废水会降低土壤pH值,提高土壤Cr和Ni有效态含量。  相似文献   

5.
规模化牛场废水灌溉对土壤水分和冬小麦产量品质的影响   总被引:2,自引:0,他引:2  
通过田间小区试验,设置不同的牛场废水灌溉次数,研究了冬小麦牛场废水灌溉过程中土壤水分和冬小麦产量品质的变化特征,结果表明,灌溉牛场废水土壤水分迁移和土壤贮水量与灌溉清水无显著差别,水质对土壤水分变化影响很小;冬小麦生育期内分别灌溉牛场废水2、3和4次与正常施肥灌溉施肥相比,冬小麦产量和灌溉水生产效率提高,分别提高了4.61%、6.48%、6.63%,4次牛场废水灌溉冬小麦产量略有下降,这说明灌溉牛场废水次数过多会对冬小麦造成一定的负面影响;牛场废水灌溉次数越多冬小麦籽粒中蛋白质质量分数越高,分别提高了2.50%、5.83%、8.03%,而全磷质量分数则有降低趋势。综合考虑,冬小麦生育期内牛场废水灌溉次数不应高于3次。  相似文献   

6.
本文通过模拟渗滤实验对酿造残渣(NovoGro)在天津地区农业利用可能产生的环境影响-氮素对地下水的潜在污染———进行了比较系统的研究。结果表明,氮素(主要是NO3-)在土壤中的迁移和积累行为在不同作物和土壤条件下是有差异的。在水田中施用NovoGro,不会引起水体的氮素污染问题;旱田(小麦)表层土壤和下渗水中NO3--N的含量则随NovoGro的施用量的增加而增加,当施用量达到45t/hm2时足以造成地表径流和地下水的NO3--N污染。  相似文献   

7.
研究了表面流、水平潜流和垂直潜流人工湿地以及地下渗滤系统组合生态工艺对模拟和实际猪场养殖废水的净化效果。结果表明,在进水ρ(COD)=709.2 mg.L-1,ρ(TN)=597.1 mg.L-1,ρ(NH4+-N)=560.4 mg.L-1和ρ(TP)=42.5 mg.L-1的质量浓度条件下组合生态系统对于COD、TN、NH4+-N和TP的去除率分别可以达到87%、95%、97%和95%,其中COD的去除主要在第一级表面流人工湿地,NH4+-N和TN去除主要是在水平潜流和垂直潜流人工湿地,水平潜流和垂直潜流人工湿地对溶解性磷酸盐去除效果明显,地下渗滤起到进一步稳定出水水质的作用。水平潜流和垂直潜流人工湿地的运行结果对比表明,后者对污染物的去除率均高于前者。  相似文献   

8.
以实际猪场废水为研究对象,采用MgCl2·6H2O和Na2HPO4·12H2O为沉淀剂,对磷酸铵镁(magnesium ammonium phosphate, MAP) 结晶法去除猪场废水中氮、磷元素的3种工艺条件进行了系统研究.结果表明:只调节pH工艺,最佳pH值范围为9.0~10.0;通过曝气可提高废水pH,曝气时间以60 min为宜,可提升废水pH值至8.9,铵态氮、磷和总氮去除率分别为16.8%、78.4%、21.4%;补加镁源工艺可有效提高磷去除率,最佳pH范围为9.0~10.0,Mg∶P(摩尔比)为1.6,磷去除率为95.4%;同时补加镁源和磷源工艺,可获得较高的铵态氮去除率,最佳pH值为 9.5,P∶N(摩尔比)为1.0,Mg∶N(摩尔比)为1.1,铵态氮去除率为87.4%,余磷质量浓度小于10mg·L-1.  相似文献   

9.
猪场废水厌氧消化过程中的除磷效果   总被引:6,自引:0,他引:6  
采用序批式半连续厌氧消化试验方法,研究猪场废水厌氧消化过程中磷的去除情况。结果表明,水力停留时间(HRT)为1、3、6和9 d的厌氧反应器平均除磷率分别为65.0%、81.1%、82.7%和83.0%,而COD平均去除率分别为54.5%、82.3%、87.0%和85.9%。厌氧反应器除磷能力随沼气产量的增加而增加,说明厌氧反应器中磷的去除与产甲烷过程密切相关。对厌氧消化前后的污泥进行浸提后发现,厌氧消化过程中,化学反应生成磷酸盐沉淀的除磷作用十分显著,污泥中正磷酸盐,与铁结合的磷化合物(Fe-RP),还原可溶性磷,与钙、镁离子结合的磷化合物(Ca-RP、Mg-RP)以及无机或有机聚合磷增加量分别为0.027 8~0.101 5、0.013 5~0.081 0、0.2165~0.430 5、23.4~54.8和7.2~21.5 mg.g-1;且总体而言,HRT越长,污泥中与不同金属结合的磷增加量就越大。从HRT、磷和有机物的去除效果以及沼气产气速率3个方面综合考虑,猪场废水厌氧消化反应器的HRT控制在3 d为宜。  相似文献   

10.
采用静态好氧工艺,就不同添加剂对厨余垃圾堆肥氨挥发与氮素损失影响方面进行比较试验。试验设4个处理:A0,对照;A1,添加30 mL.kg-1(以干基计,下同)高温保氮菌剂;A2,添加1 mol.kg-1化学保氮剂;A3,同时添加30 mL.kg-1高温保氮菌剂和1 mol.kg-1化学保氮剂。堆肥结束时,与对照相比,A1、A2和A3处理堆肥全氮含量分别提高8.4%、38.4%和43.1%,有机氮含量分别提高9.9%、64.3%和68.8%,氨氮含量分别降低11.3%、86.5%和86.5%,厨余氨氮释放率分别降低13.4%、84.0%和86.5%,堆肥氮损失率分别下降17.5%、61.5%和67.2%。加入添加剂均可减少厨余垃圾堆肥氨挥发,降低堆肥氮损失。单独添加时,化学保氮剂较高温保氮菌剂作用大;但就3种处理比较而言,菌剂与化学药剂联合添加效果最好。  相似文献   

11.
研究了杂环类(吡啶、喹啉)和酚类(间甲酚、二甲酚、苯酚)有机物对磷酸铵镁结晶法(MAP,magnesium ammonium phosphate)处理废水中氨氮的影响.研究表明,杂环和酚类有机物均对MAP法的除氮效果产生抑制作用,杂环类有机物的抑制作用大于酚类有机物,其中加入吡啶、喹啉、间甲酚、二甲酚、苯酚相比于对照组(21 mg·L-1),氨氮残余浓度分别升高45.17、56.66、43.01、50.68、49.72 mg·L-1.因为络合作用和吸附作用,多组分体系MAP晶体产生的抑制作用强于单一组分体系.  相似文献   

12.
探讨了将经过一定处理后的土霉素废水与清洁水混合 ,作为农业生产灌溉用水的可能性。试验表明 ,经处理后的污水不仅不会增加农业环境负担 ,而且能起到改良土壤和增加农作物产量的作用  相似文献   

13.
采用水培法,设置4个Cr6+质量浓度(0,1,10,20mg·L-1)处理风车草(Cyperus alternifolius)和薏米(Coix aquatica Roxb),以此研究铬对生活污水中氮磷净化效果及植物体内氮磷质量分数的影响。结果表明:(1)试验期内,铬质量浓度为1mg·L-1时促进风车草和薏米对总氮的去除,铬质量浓度为20mg·L-1时则抑制;总氮去除率因处理时间不同而不同,表现在处理17d时0mg·L-1、1mg·L-1铬处理显著高于处理7d,但20mg·L-1处理则相反;除Cr20处理外,薏米对总氮的去除率显著高于风车草。(2)风车草和薏米对生活污水中总磷的去除率随铬处理时间延长而降低,表现在处理17d时10mg·L-1、20mg·L-1铬处理显著低于处理7d;在20mg·L-1铬处理下皆显著低于对照;风车草对总磷的去除率在10mg·L-1、20mg·L-1铬处理下显著高于薏米。(3)不同质量浓度Cr6+处理下风车草和薏米体内氮、磷质量分数的变化不同,其中20mg·L-1铬处理下风车草茎和薏米根、茎及叶片皆显著低于对照。  相似文献   

14.
The effect of textile mill wastewater on germination, delay index, physiological growth parameters, and plant pigments of two cultivars of chickpea was studied. The aim of this study was to evaluate the suitability of textile mill wastewater (treated and untreated) at different concentrations (0, 6.25, 12.5, 25, 50, 75, and 100%) for irrigational purposes. The textile effluent did not show any inhibitory effect on seed germination at a lower concentration (6.25%). The other reported plant parameters (delay index, root length, shoot length, dry weight, chlorophyll, and carotenoid) also followed a similar trend. Seeds germinated in 100% effluents but did not survive for longer periods. It has also been concluded that the effect of the textile effluent is cultivar-specific, and due care should be taken before using the textile mill wastewater for irrigation purposes.  相似文献   

15.
The effect of textile mill wastewater on germination, delay index, physiological growth parameters, and plant pigments of two cultivars of chickpea was studied. The aim of this study was to evaluate the suitability of textile mill wastewater (treated and untreated) at different concentrations (0, 6.25, 12.5, 25, 50, 75, and 100%) for irrigational purposes. The textile effluent did not show any inhibitory effect on seed germination at a lower concentration (6.25%). The other reported plant parameters (delay index, root length, shoot length, dry weight, chlorophyll, and carotenoid) also followed a similar trend. Seeds germinated in 100% effluents but did not survive for longer periods. It has also been concluded that the effect of the textile effluent is cultivar-specific, and due care should be taken before using the textile mill wastewater for irrigation purposes.  相似文献   

16.
To improve the efficiency of nitrogen removal with lower energy consumption, the study of feedforward control was carried out on a pilot-scale anaerobic-anoxic-oxic (AAO) plant for the treatment of municipal wastewater. The effluent qualities of the pilot plant under different control strategies were investigated. The results indicated that the change of external recycle was not a suitable approach to regulate the sludge concentration of plug-flow reactors; adjusting the aeration valve and dissolved oxygen set-point according to ammonia load could overcome the impact of influent fluctuation; and the denitrification potential could be estimated based on the transit time of anoxic zone and the relative content of carbon resource entering the anoxic zone. Simple feedforward control strategies for aeration and internal recycle were subsequently proposed and validated. The nitrogen removal was successfully improved in the pilot plant. The effluent total nitrogen had decreased by 29.9% and was steadily controlled below 15 mg·L-1. Furthermore, approximately 38% of the energy for aeration had been saved.  相似文献   

17.
酚类化合物在焦化废水处理过程中的降解与转移   总被引:1,自引:0,他引:1  
研究了4种烷基酚、7种氯酚和2种硝基酚物质在广东韶关钢铁集团焦化废水处理站的浓度演变与转移.针对设计处理量为2000 m.3d-1,生物处理采用A/O1/O2工艺,已经稳定运行5年的实际废水处理工程,同一时间分别采集水样、气样与综合排泥样若干批次,采用GC/MS方法分析酚类物质的浓度.研究结果表明,焦化废水中酚类物质在原水与各个处理工段中均存在成分与浓度的特征分布,烷基酚类物质浓度高但容易通过生物降解去除,氯酚和硝基酚的去除率略低,经生物处理的出水酚类物质浓度均低于5μg.L-1,达到了有关排放标准的要求;所有酚类物质在废水处理过程中存在气相转移的现象,转移污染物浓度分布差异显著,取决于废水本底浓度与该物质的化学性质;污泥样品能够高倍数富集氯酚类物质,在处理与处置工艺的选择方面需要防止扩散.酚类化合物在焦化废水处理过程中的浓度削减主要是生物阶段,气相转移与固相转移可能构成环境风险,未来的水处理工程需要考虑二次污染的消除问题.  相似文献   

18.
19.
The granulation process, physic-chemical properties, pollution removal ability and bacterial communities of aerobic granules with different feed-wastewater (synthetic wastewater, R1; swine wastewater, R2), and the change trend of some parameters of two types of granules in long-term operated reactors treating swine wastewater were investigated in this experiment. The result indicated that aerobic granulation with the synthetic wastewater had a faster rate compared with swine wastewater and that full granulation in R1 and R2 was reached on the 30th day and 39th day, respectively. However, although the feed wastewater also had an obvious effect on the biomass fraction and extracellular polymeric substances of the aerobic granules during the granulation process, these properties remained at a similar level after long-term operation. Moreover, a similar increasing trend could also be observed in terms of the nitrogen removal efficiencies of the aerobic granules in both reactors, and the average specific removal rates of the organics and ammonia nitrogen at the steady-state stage were 35.33 mg·g−1 VSS and 51.46 mg·g−1 VSS for R1, and 35.47 mg·g−1 VSS and 51.72 mg·g−1 VSS for R2, respectively. In addition, a shift in the bacterial diversity occurred in the granulation process, whereas bacterial communities in the aerobic granular reactor were not affected by the seed granules after long-term operation.  相似文献   

20.
Since a considerable amount of fluoride (Fl) intake also takes place through the ingestion of foods that are grown in the contaminated soil and irrigated with elemental contaminated water, this may lead to higher risk from Fl-mediated toxicity. Therefore, in the present study, a systematic delineation and characterization of Fl in agricultural tube wells in Unnao District, India, were carried out to examine seasonal variations of this element using graphical and multivariate statistical approach. The results suggested that different natural hydro-geochemical processes such as weathering of silicates, carbonates, and various ion exchange processes are the key factors responsible for the geochemistry of the groundwater in addition to the alkalinity of water. Of the water sampled, 27.3% and 18.2% were contaminated with Fl exceeding the desirable limit of 1 mg/L as prescribed by Bureau of Indian Standards during pre-monsoon and post-monsoon season. Fluoride displayed a significant positive correlation during both seasons and the water type of the majority of the samples in both seasons was bicarbonate.  相似文献   

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