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1.
3种低分子量有机酸对紫色土吸附菲的影响   总被引:2,自引:2,他引:2  
谢黎  陈本寿  张进忠  卢松  江韬 《环境科学》2016,37(3):1032-1038
采用静态吸附实验,研究了3种低分子量有机酸(柠檬酸、苹果酸和草酸)对紫色土吸附菲的影响.结果表明紫色土吸附菲的动力学过程符合二级动力学模型,3种低分子量有机酸(LMWOAs)均能显著降低紫色土吸附菲的速率常数;线性吸附模型很好地描述了紫色土对菲的吸附热力学过程是以分配作用为主.当加入的3种LMWOAs浓度低于5 mmol·L~(-1)时,促进紫色土吸附菲;当LMWOAs浓度≥10 mmol·L~(-1)时,抑制紫色土吸附菲,抑制作用随LMWOAs浓度的增加而加强.当LMWOAs浓度为20 mmol·L~(-1)时,其抑制作用能力表现为柠檬酸草酸苹果酸,这与3种LMWOAs的分子结构和酸性强弱有关.与对照相比,随着LMWOAs浓度的增加,紫色土溶出的溶解性有机质(DOM)含量呈现先降低后升高的趋势,紫色土对菲的吸附量与土壤溶出的DOM含量呈负相关.  相似文献   

2.
何沅洁  刘江  江韬  黄京晶  成晴  陈宏 《环境科学》2017,38(2):600-607
三峡库区消落带落干期时会生长大量植被,其根系分泌的低分子量有机酸会对消落带土壤中重金属的活化带来一定影响,为此,本研究通过水培法以及利用去离子水直接浸提其根际土测出三峡库区优势植物狗牙根和稗草根系分泌的低分子量有机酸种类和含量,并模拟优势植物所分泌的单一有机酸和混合有机酸分别对消落带土壤中的铅(Pb)进行解吸,探究其对消落带土壤中铅的解吸动力学.结果表明,狗牙根根系分泌的低分子量有机酸种类和含量均大于稗草,其中柠檬酸、丙二酸、乙酸、苹果酸是两种植株根系均分泌的有机酸,且乙酸含量最高,分别为0.765 mmol·kg-1、0.261 mmol·kg-1,而在狗牙根和稗草根际土中均检测到柠檬酸、丙二酸、乙酸;选取柠檬酸、丙二酸、乙酸对消落带土壤中铅进行解吸时,发现当有机酸浓度≤1 mmol·L~(-1)时,有机酸解吸量由高到低为:丙二酸柠檬酸乙酸;而当有机酸浓度1 mmol·L~(-1)时,有机酸解吸量由高到低为:柠檬酸丙二酸乙酸,且低分子量有机酸在土壤中含量低时,抑制土壤对Pb的解吸;含量高时,促进土壤对Pb的解吸.在解吸过程中,0~240 min为快反应阶段,240 min后为慢反应阶段,准二级动力学方程拟合效果最好.  相似文献   

3.
低分子有机酸对土壤中Cu化学形态的影响   总被引:4,自引:3,他引:4  
向石英砂岩坡积物发育的红壤中添加系列浓度CuSO4模拟土壤Cu污染,然后加入不同浓度的低分子量有机酸培养,采用改进的BCR连续提取法评价低分子有机酸对重金属Cu形态的影响.结果表明,对不同程度的Cu污染(Cu 0~400mg·kg-1)土壤,随着有机酸添加浓度的升高,最具活性的弱酸溶解态Cu含量均有不同程度的提高,土壤重金属Cu得到活化;Cu活化效果随柠檬酸浓度升高而升高,随酒石酸和草酸浓度升高呈先上升后基本不变趋势;整体活化效果是柠檬酸>酒石酸≈草酸.可还原态Cu随着有机酸浓度的增加而减少,其中添加柠檬酸的处理减少最明显.当有机酸浓度为10 mmol·kg-1、20 mmol·kg-1时,酒石酸和草酸、柠檬酸活化Cu效果分别达到最优.  相似文献   

4.
A large proportion of total P in the soils of the area is unavailable to plants and consequently P is the second most limiting nutrient. The labile and moderately labile phosphorus fractions and adsorption characteristics of surface and subsurface horizons of eleven soil profiles in the derived savanna (DS) and the northern Guinea savanna (NGS) of West Africa were assessed. The labile P fractions are the resin and HCO3-extractable inorganic (Pi) and organic (Po) P. The moderately labile fractions are the NaOH-extractable portion of soil P in the Hedley sequential procedure. In the DS soils, the resin P, considered the most readily available fraction, varied from 1 to 14 mg kg−1, HCO3-Pi ranged from 3.3 to 11, and HCO3-PO was between 4 and 12 mg kg−1 in the surface horizon. In the NGS, the topsoil contained 1.5–3 mg kg−1 of resin P, 5–8 mg kg−1 of HCO3-Pi, and 7.5–9.7 mg kg−1 of HCO3-Po. Sodium hydroxide-Po was the largest of the fractions in all the soils studied. It ranged from 23 to 55 mg kg−1 in the topsoil. In general, the labile P levels were higher in soils of the DS than of the NGS and were related to the oxalate-extractable Fe (Feox), and Al (Alox) as well as to soil texture. The subsoil of Kasuwan Magani (profile KS 9–21 cm) required 153 mg P kg−1 to maintain 0.2 mg P l−1 in solution (standard P requirement), and Danayamaka (profile DD 7–32 cm) required 145 mg P kg−1. These could translate to 214 and 200 kg P ha−1 if a plow layer of 10 cm is assumed. Because these are within the plow layer, more P fertilizer would be needed for crop production than in the other soils. The standard P requirement and the adsorption maxima were related to Feox and Alox, dithionite-Fe (Fed), and texture. The increase in labile P content with decreasing Feox and Alox could imply that management practices capable of reducing the activities of Fe and Al in solution might improve P availability.  相似文献   

5.
Phosphorus (P) is one of the main limiting plant nutrients in most tropical soils. Acquiring quantitative information on soil P status is essential for evaluating its sustainable management in agroecosystems. The objective of this study was to evaluate how land-use shifts from semi-permanent food crop systems (CF) to plantations of tea (Camellia sinensis) (TP) and Eucalyptus grandis (EP) impact on both organic and inorganic P species. Determination of phosphorus status combined a P sequential fractionation procedure and 31P nuclear magnetic resonance (NMR) spectroscopy. Sequentially extracted pools included available P by 0.5 M NaHCO3, Al/Fe-P by 0.1 M NaOH, Ca-P by 0.5 M HCl and residual P by 0.5 M H2SO4 after ignition at 550 °C. Soil total P (STP) varied significantly across land uses (P<0.05) with the lowest mean value (1025.6±23.1 mg kg−1) occurring under CF and the highest (1698.0±86.1 mg kg−1) under TP. The largest P-pools were NaOH-P (47–51% of total soil P) and H2SO4-P (25–32%). NaHCO3-Pi under fertilized land uses (CF and TP) was greater than 12 mg kg−1 indicating that these systems were sustainable. Unfertilized EP was P-deficient, probably as the result of organic-matter accretion and subsequent P immobilization in organic forms. 31P NMR revealed that 88–89% of P compounds in NaOH extract were organic with monoester-P accounting for 59.1–60.8%. This was followed by diester-P (9.8–12.4%), teochoic acid (8.4–10.1%), orthophosphate (8.8–9.7%), unknown compounds (7.4–8.4%), pyrophosphate (1.1–4.6%) and phosphonate (0–1.3%). EP had higher diester-P and no phosphonate compound whereas CF had substantial amount of pyrophosphate (4.6%) and less orthophosphate and teochoic acid. These results indicate that these last P compounds are easily mineralizable P forms participating actively in plant P nutrition.  相似文献   

6.
环渤海滨海湿地土壤磷形态特征研究   总被引:5,自引:2,他引:5  
利用SMT分级方法和液相31P核磁共振分析方法,研究了环渤海典型滨海湿地表层土壤磷形态.结果发现,湿地土壤中总磷在410.35~691.57 mg·kg-1之间,其中以HCl-P为主,占总磷的46.67%~82.95%;较易释放的Na OH-P含量较少,占4.98%~22.31%;同时,由于有机质含量丰富,有机磷含量也较高,在受水产养殖污染的湿地中,有机磷含量明显偏高.使用31P-NMR技术在湿地土壤中共检测到6类磷化合物:正磷酸盐(Ortho-P)、磷酸单酯(Mono-P)、磷脂(Lipid-P)、DNA磷(DNA-P)、焦磷酸盐(Pyro-P)及膦酸盐(Phon-P),其中以正磷酸盐为主,含量在181.69~350.64 mg·kg-1之间;磷酸单酯为有机磷的主要组分,占总量的5.25%~37.17%.渤海湾南部湿地土壤中有机磷含量明显高于北部湿地,以稳定性较高的磷酸单酯为主,同时,DNA磷较多地存在于南部湿地,北部湿地含量极少,说明南部湿地微生物活性较高.  相似文献   

7.
模拟淹水条件下紫色土镉的释放特征及影响因素   总被引:4,自引:2,他引:4       下载免费PDF全文
研究了在模拟淹水条件下紫色土镉的释放迁移特征及影响因素 .结果表明 ,土壤初始镉污染水平、水体初始酸度和有机酸组成显著影响土壤镉向水体的迁移释放 .土壤初始镉浓度每增加 1mg·kg-1,淹水平衡后水体中镉的浓度增加 0 0 0 6—0 0 0 7mg·L-1.当水体初始pH <6时 ,镉的释放量随pH的降低呈线性增加 ,每降低一个pH单位 ,水中镉浓度平均将增加 0 0 6mg·L-1.水体中多种有机物共存时对土壤重金属的释放存在复杂的交互作用 .草酸、柠檬酸、EDTA以及草酸、柠檬酸、富里酸、EDTA共存时显著促进土壤镉的释放 ;而草酸、柠檬酸、富里酸共存时 ,反而抑制了土壤镉的释放 .讨论了淹水过程中镉的释放与体系pH、Eh 变化之间的关系 .  相似文献   

8.
Depletion of plant-available soil phosphorus (P) from excessive to agronomically optimum levels is a measure being implemented in Ireland to reduce the risk of diffuse P transfer from land to water. Within the Nitrates and Water Framework Directive regulations the policy tool is designed to help achieve good status by 2015 in water bodies at risk from eutrophication. To guide expectation, this study used soil plot data from eight common soil associations to develop a model of Soil Test P (STP) (Morgan's extract) decline following periods of zero P amendment. This was used to predict the time required to move from excessive (Index 4) to the upper boundary of the optimum (Index 3) soil P concentration range. The relative P balance (P balance : Total soil P) best described an exponential decline (R2 = 63%) of STP according to a backwards step-wise regression of a range of soil parameters. Using annual field P balance scenarios (?30 kg P ha?1, ?15 kg P ha?1, ?7 kg P ha?1), average time to the optimum soil P boundary condition was estimated from a range of realistic Total P and STP starting points. For worst case scenarios of high Total P and STP starting points, average time to the boundary was estimated at 7–15 years depending on the field P balance. However, uncertainty analysis of the regression parameter showed that variation can be from 3 to >20 years. Combined with variation in how soil P source changes translate to resulting P delivery to water bodies, water policy regulators are advised to note this inherent uncertainty from P source to receptor with regard to expectations of Water Framework Directive water quality targets and deadlines.  相似文献   

9.
Soluble P release during soil organic matter decomposition was measured under fluctuating seasonal temperatures in several of Florida's organic soils. Natural soil profiles obtained from seven locations in central and south Florida were used in the study. Soil columns were leached once every 25 days, followed by applying a suction of 100 cm. Soil columns were flooded for 25 days in the months of July and August (between 14 and 21 weeks after initiation of the study for central Florida organic soils and between 11 and 18 weeks for south Florida organic soils) to simulate normal agronomic practice.The amounts of P released into effluent from Florida's organic soils were in the range of 2.9–26.2 μg P/cm3 of soil per year (16–168 kg P ha?1 year?1). This represents 2.2–20% of the total soil P for central Florida organic soils and 0.75–1.1% of total soil P for south Florida organic soils. Soluble ortho-P accounted for about 70–89% of total effluent P for central Florida organic soils and 54–57% of effluent P for south Florida organic soils. Estimated soil P mineralization during organic matter decomposition was about 38–185 kg P ha?1 year?1 for central Florida organic soils and 16–23 kg P ha?1 year?1 for south Florida organic soils. Seasonal temperature fluctuations had minimal influence on the P release into effluent. Flooding the organic soils, however, increased P release into drainage effluent by about 4–8 times, compared with drained conditions.  相似文献   

10.
谢凯  易齐涛  孙鹏飞 《环境科学学报》2013,33(11):3101-3110
以淮南潘谢某采煤沉陷积水区为研究对象,通过设计室内模拟实验,对其农业耕作层土壤初期覆水条件下的氧化还原过程进行了考察.在此基础上研究了磷(P)自农业土壤内部向"水-土"界面迁移转化潜能,模拟实验持续近4个月.同时,实验采取土壤理化性质分析和孔隙水表征相结合的方法进行,土壤主要分析了淹水前后有机质含量(OM)、铁氧化物、P含量及其赋存形态等相关变化,而孔隙水则分析了pH、氧化还原电位(Eh)、溶解无机碳(DIC)和有机碳(DOC)、Fe2+、NO3--N、SO42--S,较为保守元素Cl-作为其他可变指标的参考.结果发现,研究过程中观察到了微生物活动所对应的不同氧化还原过程,1~2周后土柱内部的NO3--N和SO42--S由于呼吸作用趋于耗竭,孔隙水Fe2+持续升高,并伴随着活性磷(DRP)的释放.此后整个体系氧化还原反应趋于平衡,在"水-土"界面观察到了明显的Fe"泵升"现象,弱吸附态磷(NH4Cl-P)和有机磷(OP)有向金属氧化物结合态磷(NaOH-P)迁移转化的趋势,但孔隙水内部DRP能否向表层迁移短时间内不能确定.  相似文献   

11.
低分子量有机酸提取土壤中部分重金属的拟合模型研究   总被引:1,自引:0,他引:1  
为研究不同浓度低分子量有机酸与提取的土壤重金属含量之间的关系,本文以采自安徽省安庆市某铜矿区及其周围的土壤为例,通过浸提法,研究了不同浓度苹果酸、甲酸对采样点土壤中重金属Cu、Mn、Zn、Pb提取能力的影响并进行模型拟合.结果表明:不同浓度苹果酸和甲酸对采样点土壤中重金属的提取量不同,两种有机酸对低pH、高重金属含量采样点及其周围土壤中的重金属提取量较大,两种低分子量有机酸对S6采样点的重金属Mn的提取量最大,分别为322.5 mg·kg~(-1)和193.58 mg·kg~(-1),提取率达70.02%和42.03%,Zn、Pb次之,Cu最低;随着苹果酸、甲酸浓度的升高,土壤中重金属Cu、Mn、Zn、Pb的提取量增加,苹果酸对土壤中重金属的提取能力大于甲酸;拟合模型对于两种低分子量有机酸与其提取的土壤中部分重金属含量之间的关系,具有较好的拟合性,其决定系数R~2在0.8293~0.9990之间,都具有显著性(p0.05),该模型可以定量表征低分子量有机酸对土壤重金属的提取能力,此研究结果为土壤中重金属的固定化和增强植物修复受重金属污染的土壤提供了理论支持.  相似文献   

12.
三峡水库沉积物不同赋存形态磷的时空分布   总被引:8,自引:0,他引:8  
为了认识三峡水库沉积物磷的赋存状况,利用磷形态标准测试程序SMT法对干流和三条代表性支流(香溪河、大宁河、小江)的柱状沉积物进行了总磷(TP)、无机磷(IP)、有机磷(OP)、铁/铝磷(Fe/Al-P)、钙磷(Ca-P)的测定,结果表明干流沉积物TP含量为781~1026 mg·kg-1,支流沉积物TP含量为382~1085 mg·kg-1.TP主要由IP组成,OP所占比例较低;IP主要由Ca-P组成,Fe/Al-P所占比例较低.干流TP含量空间差异不显著,但各赋存形态磷的含量普遍高于支流,支流中香溪河磷含量高于大宁河和小江.垂直方向上各赋存形态磷含量在不同沉积深度没有明显规律;TP、IP、Ca-P三者变化趋势较一致,主要受Ca-P含量的影响.鉴于支流的独特水文条件,相比于干流,更应警惕支流沉积物磷的释放风险及其对水体的环境化学效应.  相似文献   

13.
食品垃圾好氧降解过程中挥发性有机物(VOCs)排放特征   总被引:10,自引:0,他引:10  
吴婷  王新明 《环境科学学报》2012,32(10):2575-2583
采用实验室模拟方法,研究了混合食品垃圾(FW)及以橙子、生菜、土豆和西红柿为代表的4种植物性易降解有机垃圾组分好氧降解过程中排放出来的117种挥发性有机物(VOCs)的排放量和组成特征.结果表明,混合食品垃圾好氧降解过程中VOCs总排放量为951.80mg·kg-1,主要为有机硫、含氧化合物和萜烯,分别占VOCs总排放量的43.1%、53.3%和2.1%.橙子、生菜、土豆和西红柿4种植物性易降解有机垃圾好氧降解过程中VOCs的总排放量分别为12736.72、118.67、57.40和228.08mg·kg-1,主要成分均为含氧化合物和萜烯;含氧化合物分别占橙子、生菜、土豆和西红柿4种植物性易降解有机垃圾VOCs总排放量的13.5%、80.9%、85.9%和79.5%,萜烯分别占4种植物性易降解有机垃圾VOCs总排放量的86.5%、16.6%、8.2%和15.6%.  相似文献   

14.
游蕊  梁丽  覃蔡清  邓晗  王定勇 《环境科学》2016,37(1):173-179
为研究植物根系分泌物的主要成分——低分子量有机酸对土壤汞的活化作用,利用室内模拟实验,通过分析不同浓度的柠檬酸、酒石酸和草酸溶液对三峡库区消落带土壤中汞赋存形态的影响及其随培养时间的变化特征,探究了低分子量有机酸对汞迁移能力和生物有效性的作用.结果表明,柠檬酸可增强土壤汞的迁移能力,而草酸和酒石酸则表现出软弱的抑制作用.3种低分子量有机酸均能明显地增强土壤中汞的生物有效性,整体活化效果为:柠檬酸酒石酸≈草酸.有机酸对土壤中汞形态的作用随其浓度的增加而增强,且当浓度为15 mmol·L~(-1)(柠檬酸)、10 mmol·L~(-1)(酒石酸和草酸)时开始趋于稳定.在15 mmol·L~(-1)柠檬酸培养的土壤中,汞形态分布的变化随培养时间的延长而愈加显著,直到14d时才基本停止,此时胃酸溶解态汞增加最为明显,其主要来自于部分被活化的强络合态汞.  相似文献   

15.
The seasonal pattern of extractable soil P and soil solution P was determined for topsoil samples taken from a Cirsio-Molinietum fen-meadow community, and also for an adjacent agriculturally improved pasture in Devon, UK. Phosphorus concentration was investigated using three methods during 1993; Olsen's reagent (sodium bicarbonate) for soil P, centrifuging and polymeric suction cups for soil solution P. Solutions were extracted at two-weekly intervals during the spring and at monthly intervals during the summer. Phosphorus removed from both sites by centrifuging was in the range 5–30 μg dm−3 soil, in comparison with 1–6 mg kg−1 for Olsen P. Olsen P on the Cirsio-Molinietum was significantly lower than on the improved pasture in mid-March and mid-June. The concentration of P in soil solution removed by suction cups was below the level of detection (<2 μg dm−3) on the Cirsio-Molinietum. Suction cup P on the improved pasture peaked in April and May at 16–19 μg dm−3 soil. Herbage yield and P concentration were measured throughout the growing season. Above-ground standing crop was greater on the Cirsio-Molinietum than the improved pasture at the beginning of the grazing season, because of the large litter component on the former. Total P content of this material was only 1.81 kg P ha−1 on the Cirsio-Molinietum, in comparison with 5.58 kg P ha−1 on the improved pasture. Phosphorus concentration of plant material obtained by repeated defoliation was approximately 1.0 mg P g−1 DM on the Cirsio-Molinietum, whereas a clear seasonal trend, peaking at 3.5 mg P g−1 DM, was observed on the improved pasture. Phosphorus concentration of litter, grass and sedge from ungrazed plots on the Cirsio-Molinietum indicated distinct seasonal variations for the grass, with no seasonal pattern for the sedge component.  相似文献   

16.
有机质含量及其组分对洱海沉积物磷吸附-释放影响   总被引:8,自引:0,他引:8  
研究了洱海不同湖区沉积物有机质含量、组分及其吸附-释放磷的特征,试图揭示有机质含量及组分对沉积物磷吸附-释放行为的影响机制.结果表明,洱海沉积物磷释放潜能随着沉积物中有机质(TOM)含量的增加而增大,而沉积物磷的最大释放速率(V释,max)和最大释放量(Q释,max)随沉积物中轻组有机质(LFOM)含量的增加而增大,释放平衡时间随活性有机质(ASOM)含量的增加而缩短,磷释放强度随LFOM占TOM比例的增加而减弱.沉积物磷的最大吸附速率(V吸,max)、最大吸附量(Q吸,max)和吸附效率随沉积物TOM含量的增加而增大,吸附平衡时间随TOM含量的增加而缩短,吸附强度随ASOM含量的增加而增强,吸附-解析平衡浓度(EPC0)随ASOM含量的增加而降低.沉积物磷释放后再吸附过程中磷释放的Q释,max和再吸附的V吸,max随TOM含量的增加而增大,当TOM含量相当时,则随沉积物ASOM含量的增加而降低,再吸附强度随沉积物中LFOM含量的增加而降低.沉积物磷吸附释放容量随有机质总量的增加而增加,吸附释放平衡浓度随有机质活性的增加而降低,释放强度和速率随有机质分解程度的增加而降低,吸附强度和速率随有机质活性的增加而增加.  相似文献   

17.
白洋淀沟壕系统水陆交错区生物质磷形态特征研究   总被引:1,自引:0,他引:1  
利用液相31P核磁共振的分析方法,研究了白洋淀水陆交错区中生物质磷(Biogenic-P)的形态特征.结果表明:不同类型水陆交错区磷含量差异较大,水陆交错区中间土壤总磷(TP)含量最高,为1342.81~2444.90 mg·kg-1;水陆交错区Biogenic-P含量为437.65~1309.20 mg·kg-1,占TP含量的25.62%~60.26%;使用液相31P-NMR技术共检测到7类磷化合物,其中,Biogenic-P共计检测到6种,包括磷酸单酯(Mono-P)、DNA磷(DNA-P)、焦磷酸盐(Pyro-P)、磷脂(Lipids-P)、多聚磷酸盐(Poly-P)和膦酸盐(Phon-P);水陆交错区Biogenic-P以Mono-P为主,含量为372.94~1086.96 mg·kg-1,TP含量平均值是全国土壤磷含量平均值的3.41倍;水陆交错区界面土壤与中间土壤相较沉积物和边缘土壤Biogenic-P含量更高;从水陆交错区的中间土壤到沉积物,Biogenic-P含量变化趋势与总有机质(OM)含量变化趋势相反.基于液相31P核磁共振技术,本文对白洋淀沟壕系统水陆交错区中Biogenic-P形态特征与分布提出了新的认识,有助于深入理解水陆交错区磷的生物地球化学循环过程,为流域磷输入的控制提供理论支撑.  相似文献   

18.
长江河口水库沉积物磷形态、吸附和释放特性   总被引:8,自引:20,他引:8  
为了对长江河口青草沙水库沉积物磷形态分布、磷吸附特性和磷释放特性进行分析,2011年4月~2012年1月对沉积物进行实地调查分析.磷形态分析结果表明沉积物总磷含量范围为535.07~910.9 mg·kg-1,以无机磷为主,有机磷含量相对较低.无机磷主要以钙结合态的磷存在,钙结合态磷占总磷的75.57%.磷吸附特性结果表明沉积物磷的等温吸附特征符合修正的Langmuir模型,沉积物磷的最大吸附量为9.78~39.84 mg·kg-1,沉积物-水界面平衡浓度EPC0(equilibrium phosphorus concentration)范围为0.024~0.12 mg·L-1,均高于上覆水体中相应的磷含量,因此,沉积物有向上覆水体释放磷的趋势.磷的释放特性结果表明沉积物最大释放量为11.03 mg·kg-1,在6 h左右达到最大值.沉积物磷释放量来自沉积物的铁/锰结合态的磷、钙结合态磷和有机磷,其中,铁/锰结合态磷和沉积物释放量呈相关性(P0.01).总体上,青草沙水库沉积物呈现释放状态,影响水库水体磷含量.  相似文献   

19.
利用液相~(31)P核磁共振分析方法和SMT分级方法,对比研究了海河流域典型人工河流子牙新河和滏阳新河、自然河流子牙河表层沉积物中磷形态.结果发现,两条河流沉积物中TC、TN、TP含量均很高,且相关性显著,污染较重且具有同源性.沉积物中总磷在568.2~9171.9mg·kg-1之间,其中以HCl-P为主,占总磷的25.5%~81.8%之间,其次为NaOH-P,所占比例为9.3%~55.5%.使用~(31)P-NMR技术在沉积物中共检测到7类磷化合物:正磷酸盐(Ortho-P)、磷酸单酯(Mono-P)、磷脂(Lipid-P)、DNA磷(DNA-P)、焦磷酸盐(Pyro-P)、膦酸盐(Phon-P)及多聚磷酸盐(Poly-P).Ortho-P和Mono-P分别为总磷和有机磷的主要组成成分,含量分别在113.8~6226.1 mg·kg~(-1_和27.0~1991.9 mg·kg~(-1)之间.子牙河、子牙新河和滏阳新河两条河流在沉积物磷组成方面存在很大的差异子牙新河和滏阳新河沉积物中总磷明显高于子牙河.  相似文献   

20.
In much of sub-Saharan Africa (SSA), the lack of organic soil amendments constitutes one of the principal causes for declining soil fertility in intensifying farming systems. The challenge, therefore, remains to increase the availability of organic inputs and to develop recommendations for their combination with inorganic fertilizers. An on-farm experiment was conducted in the northern Guinea savanna of Nigeria to evaluate the fertilizer effect of rice (Oryza sativa L.) mill waste (RMW) on a degraded Alfisol. The decomposition and nutrient (N and P) release patterns of RMW were studied using the litterbag technique, and the effect on maize yield and soil properties was determined. The RMW was applied at rates of 0, 5, 10, and 15 Mg DM ha−1 and was applied either unburnt or burnt (farmers’ practice). In both years, compound fertilizer was broadcast during land preparation on all plots at rates of 40 kg N ha−1, 17 kg P ha−1, and 33 kg K ha−1.Results obtained in the litterbag study showed that, at maize harvest, more than 90% of the P had been released from the decomposing RMW. However, around 60% of the organic C and 45% of the N still remained. Compared to the control treatment (0 Mg ha−1 RMW), which yielded 0.55 Mg ha−1, maize (Zea mays L.) grain yields were increased by 95% when 10 Mg ha−1 of unburnt RMW was applied, and by 147% with 15 Mg ha−1 (mean of 2 years). In contrast, burnt RMW did not result in significant yield increases. The cumulative application of 30 Mg ha−1 of unburnt RMW significantly increased the soil organic carbon in the surface soil from 0.7% (0 Mg ha−1 RMW) to 1.3%.The results of this investigation indicate that RMW constitutes a valuable organic input in the Guinea savanna if applied unburnt at rates of 10–15 Mg ha−1 in combination with inorganic fertilizer. The repeated application of unburnt RMW may contribute to the rehabilitation of degraded soils through the buildup of soil organic matter.  相似文献   

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