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1.
以玉米为研究对象,在盆栽条件下,探究脱硫石膏、蚯蚓粪、硫磺、糠醛渣、沸石对土壤改良的效果,并据此设计改良剂配施组合,研究不同改良剂配施组合对玉米生长发育及土壤性状的改良作用。结果表明:在0—20cm土层中,脱硫石膏、硫磺、糠醛渣、蚯蚓粪、沸石处理的土壤pH值均有不同程度的降低,轻度盐碱条件下降低了0.05~0.19个单位;中度盐碱条件下降低了0.20~0.33个单位。脱硫石膏可显著降低0—20cm土层水溶性Na~+含量。根据不同改良剂的改良特点,设计了T1(脱硫石膏+硫磺+蚯蚓粪)和T2(蚯蚓粪+沸石+脱硫石膏+糠醛渣)两种具有综合改良效果的改良剂配施组合,均能显著增加玉米植株生物量,在轻度盐碱条件下,较空白处理分别增加了77.75%和129.22%;中度盐碱条件下,分别增加了148.13%和170.31%。并且各配施处理(T1和T2)均能降低0—20cm表层土壤的pH。在滨海盐渍土中施用综合改良剂能促进作物生长和改善土壤性状,可以作为未来滨海盐渍土快速改良的重要措施之一。  相似文献   

2.
通过土柱模拟试验,开展了不同水质淋洗下磷石膏及其与酸性材料组合施用后对宁夏碱化盐土土壤水盐运移的影响研究。以黄河水、低矿化度农田退水和高矿化度农田退水作为淋洗水源,腐植酸、糠醛渣和硫酸铝作为酸性材料。结果表明:(1)不同水质淋洗下,垂直湿润锋推进深度、累积入渗水量与入渗时间的平方根均呈线性关系,黄河水淋洗下,改良剂组合措施表现最优,而在高矿化度农田退水淋洗下,单施磷石膏措施最优。(2)黄河水和低矿化度农田退水淋洗下,施用改良剂降低了0—50 cm土层土壤电导率,黄河水淋洗下"磷石膏+硫酸铝"处理最低;高矿化度农田退水淋洗下为"磷石膏+腐植酸"和"磷石膏+硫酸铝"处理表现较优;(3)随着淋洗水矿化度的增加,土壤pH降低深度增加,施用改良剂降低了0—30 cm土层的土壤pH,黄河水淋洗下,"磷石膏+硫酸铝"处理表现最优;低矿化度农田退水淋洗下表现为"磷石膏+糠醛渣+硫酸铝"处理最低;高矿化度农田退水淋洗下表现为"磷石膏+糠醛渣"处理最低。(4)黄河水淋洗下,施用改良剂提高了不同深度土壤含水率,不同水质淋洗下,施用改良剂提高了0—70 cm土层深度土壤含水率,而各改良剂之间土壤含水率相差不大。综上所述,针对宁夏碱化盐土的改良,建议黄河水和高矿化度农田退水淋洗下,采用"磷石膏+硫酸铝"组合措施进行土壤改良;低矿化度农田退水淋洗下,采用"磷石膏+糠醛渣+硫酸铝"组合措施进行土壤改良。  相似文献   

3.
为了实现内蒙古河套灌区盐碱土壤快速改良和构建淡化和肥沃的耕层,将脱硫石膏分别与腐植酸(改良剂GF)、糠醛渣(改良剂GH)按2∶3的质量比配制两种钙基型土壤改良剂。采用田间小区试验,以不施用改良剂为对照(CK),研究了两种改良剂不同施用量处理(15、30和45 t/hm2)对收获期土壤盐分离子、养分含量和向日葵产量的影响。结果表明:与CK相比,两种改良剂处理显著降低了0~40 cm土层的pH值和0~20 cm土层的钠吸附比,但20~40 cm土层全盐量有所增加,尤其是改良剂施用量为45 t/hm2的处理。两种改良剂处理均可显著提高0~20 cm土层有机质含量,改良剂GF可提高土壤有效磷和铵态氮含量,改良剂GH可提高土壤速效钾含量。向日葵产量也得到显著提高,主要与土壤pH值、有效磷及铵态氮含量显著相关,在同等施用量条件下,改良剂GF消减土壤盐碱障碍,提高土壤养分含量的效果明显优于改良剂GH,进而获得了较高的向日葵产量。综上所述,改良剂GF施用量为15 t/hm2的处理在短期内能够实现土壤盐碱土壤改良、培肥和增产的效果,可在内蒙古河套灌区及同类地区进行推广应用。  相似文献   

4.
土壤改良剂对灌溉咸水冬小麦光合和蒸腾的影响   总被引:1,自引:0,他引:1  
在天津滨海地区高水位、黏重土壤利用田间小区试验研究调盐土壤改良对微咸水灌溉的冬小麦光合速率、蒸腾速率、气孔导度、叶绿素含量指数等生理指标的影响。结果表明,冬小麦播种前采用适当土壤改良能够提高冬小麦抽穗期、灌浆期的光合速率、叶绿素含量指数,降低气孔导度、蒸腾速率。冬前施用75kg.100m 2改良剂Ⅱ(风化褐煤40%+磷石膏40%+脱硫石膏20%)有利于提高冬小麦灌浆期的光合速率,有降低抽穗期、灌浆期小麦蒸腾速率的效果;小麦冬前施用45 kg.100m 2改良剂I(风化褐煤20%+磷石膏40%+脱硫石膏20%+沸石粉20%)对提高冬小麦抽穗期光合速率有利,同时也提高抽穗期小麦的蒸腾速率;土壤改良对咸水灌溉冬小麦的气孔导度有明显降低效应,冬前施用30 kg.100m 2改良剂Ⅲ(磷石膏40%+脱硫石膏20%+沸石粉40%)冬小麦气孔导度与不采用改良措施相比,抽穗期降低52.28%,灌浆期降低39.51%;冬前施用45kg.100m 2改良剂Ⅱ混合30 kg.100m 2改良剂Ⅲ或75 kg.100m 2改良剂Ⅱ均能够显著提高抽穗、灌浆期冬小麦的叶绿素含量指数;冬前施用45 kg.100m 2改良剂I混合30 kg.100m 2改良剂Ⅲ,即使较高土壤含盐量也能使冬小麦光合速率保持在较高水平,使冬小麦蒸腾速率受土壤含盐量影响较小。  相似文献   

5.
复合改良剂对盐碱土改良及植物生长的影响   总被引:2,自引:1,他引:1  
唐雪  尚辉  刘广明  姚宇阗  张凤华  杨劲松  周龙祥  储睿 《土壤》2021,53(5):1033-1039
为探寻更加高效的复合型改良剂,本研究通过田间试验,对土壤理化性质和植物生长指标进行分析,探讨了脱硫石膏、黄腐酸钾和稻壳三种物料不同配比施用对盐碱土理化性质及植物生长状况的影响,筛选出最佳复合物料添加比例,旨在为盐碱地改良与合理利用提供参考依据。结果表明:与对照组相比,不同处理下0-20和20-40 cm土壤pH均有显著降低,分别降低了4.2%~9.6%和4.5%~9.4%。0-20 cm土层的土壤盐分含量也显著降低,土壤中〖HCO〗_3^-、〖Cl〗^-、〖Na〗^+含量分别降低了6.1~39.4%、18%~43.1%和6.2%~33.2%,其中稻壳、黄腐酸钾和脱硫石膏配比为5-1.2-9 t/hm2和15-0.4-9 t/hm2时对〖HCO〗_3^-、〖Cl〗^-、〖Na〗^+降低效果最为明显。复合改良剂均能提高土壤有机质、碱解氮和有效磷含量与景天植株生物量。与对照组相比,有机质增加了3%~46%、碱解氮增加了16.1%~111.8%、有效磷增加了59.5%~154.8%和景天生物量增加了7.1%~47.6%。效应综合评价的主成分分析结果表明,稻壳、黄腐酸钾和脱硫石膏配比为5-1.2-9 t/hm2时是滨海盐碱土壤最适宜的生物化学复合改良剂组分。  相似文献   

6.
不同改良剂与石膏配施对滨海盐渍土的改良效果研究   总被引:11,自引:5,他引:6  
针对江苏省滨海盐渍土的特点,采用4种土壤改良剂,通过改良剂单施和改良剂与石膏配施试验,分析测定了施用这些改良剂后的土壤含盐量和pH值,并测定了作物产量,筛选出适宜于滨海盐渍土的最佳改良剂及组合。试验结果表明,腐殖酸改良滨海盐渍土效果最好,经腐殖酸(300kg/hm2)处理后,0—5,5—20和20—40cm土层盐分含量相对降低量分别为38.2%,24.5%和13.9%。石膏能显著降低土壤盐分含量和提高作物产量,经石膏(300kg/hm2)处理后,0—5,5—20和20—40cm土层盐分含量相对降低量分别为18.8%,13.0%和4.9%,油菜较对照增产6.1%。腐殖酸与石膏配施是滨海盐渍土适宜的改良剂组合,腐殖酸(300kg/hm2)与石膏(300kg/hm2)配施,可使0—5,5—20和20—40cm土层盐分含量相对降低量分别达45.1%,38.9%和25.7%,使油菜较对照增产18.6%。  相似文献   

7.
土壤结构改良剂对重度碱化盐土的改良效果   总被引:3,自引:0,他引:3  
以宁夏银北重度碱化盐土为研究对象,系统研究生化黄腐酸BFA(Biochemical fulvic acid)和聚合硫酸铁铝PAFS(Polymeric aluminum ferric sulfate)与脱硫石膏FGD(Flue gas desulfurization)配合施用对土壤结构改善及其他理化性状的改良效果。结果表明:施用脱硫石膏和结构改良剂后向日葵出苗率、株高、千粒重和产量较对照均有显著增加。2014年、2015年和2016年脱硫石膏和改良剂配合施用的处理产量比对照平均提高了353.48%、298.82%和411.47%。2014年施用脱硫石膏和结构改良剂的处理0~20 cm土壤容重较对照处理平均降低9.07%,其中T3(FGD+BFA+PAFS)降幅最大。各处理土壤孔隙度变化趋势与容重相反。2015年和2016年0~20 cm脱硫石膏和改良剂配合施用的处理0.25 mm粒级质量分数比2014年显著降低,1~2 mm粒级质量分数显著增加。整体来讲,改良后T3土壤水稳性团聚体状况最佳。脱硫石膏单独施用或与结构改良剂配合施用均会降低土壤pH值和EC,T3降幅最大;施用脱硫石膏和不同结构改良剂处理差异间不显著。施用脱硫石膏和改良剂后土壤有机质较对照明显增加,其中T3增幅最大,T4(FGD+BFA)次之。施用脱硫石膏和改良剂后土壤碱解氮、速效磷和速效钾变化情况与有机质相似,但增幅略大于有机质增幅。整体来讲,施用FGD+BFA+PAFS可以显著改善碱化盐土土壤结构、提高土壤有机质和养分含量,实现作物显著增产增收。  相似文献   

8.
为了评价不同改良剂对盐渍化土壤的改良效果,以葵花为研究对象,采用大田裂区试验方法,设置生物炭(DC,22.5 t/hm~2)、脱硫石膏(DS,37.5 t/hm~2)、脱硫石膏加有机肥(DSF,各37.5 t/hm~2)、对照(DCK)4种处理。结果表明:施加改良剂均降低了土壤容重,增加了土壤孔隙度,生物炭效果最明显,在耕层(0—20 cm)收获后较播种前土壤容重降低6.11%,是DCK的4倍,孔隙度增加12.89%,是DCK的5倍;脱硫石膏降低土壤pH和电导率效果最优,最大降幅分别为10.09%和28.51%;3种改良剂对盐渍化土壤的肥力效应不同,与对照相比,在收获后生物炭处理显著提高土壤耕层有机质、碱解氮、速效磷含量,脱硫石膏显著提高速效钾含量;各改良剂处理能显著增加葵花株高、茎粗、干物质积累量和百粒重,且生物炭处理的葵花产量最高,为4 539.60 kg/hm~2,较对照增产32.28%。综上所述,在河套灌区盐渍化土壤中施入不同改良剂后,土壤性状得到明显改善,促进葵花的正常生长,提高了产量。其中施入生物炭22.5 t/hm~2对盐渍土壤改良效果最佳,其次是施入脱硫石膏37.5 t/hm~2,能有效地提高土壤肥力和葵花产量。  相似文献   

9.
脱硫石膏糠醛渣对新垦龟裂碱土的改良洗盐效果   总被引:6,自引:3,他引:3  
为了探讨脱硫石膏及糠醛渣对新垦龟裂碱土改良洗盐效果,在统一施用脱硫石膏(28 t/hm2)的基础上,该文于2012年在宁夏平罗县西大滩农场,研究了不同淋洗水平(3 600、4 500和4 800 m3/hm2)和不同糠醛渣施用量(0、15、22.5和30 t/hm2)对新垦龟裂碱土碱化度、总碱度、pH值、全盐及盐分离子分布特征、油葵出苗生长及产量的影响。结果表明:在淋洗水量4 500 m3/hm2和施用糠醛渣(22.5 t/hm2)的条件下,土壤0~20 cm深的pH值由初始的9.65降到了7.6(P<0.05),碱化度、总碱度和全盐分别下降了60.2%、39.2%和69.1%,油葵产量3 195.8 kg/hm2,碱土改良效果明显,表明适当的脱硫石膏、糠醛渣、淋洗量可降低土壤盐分增加油葵产量。结果可为新垦龟裂碱地的改良利用、水盐调控提供依据。  相似文献   

10.
[目的]筛选出最适宜宁夏回族自治区银北灌区盐碱地水稻生长的土壤结构改良剂施用量,为中国同类型地区盐碱地的改良应用提供科学依据。[方法]设置田间定位试验,研究银北灌区龟裂碱土在施用不同剂量土壤结构改良剂(0,150,270,375kg/hm~2)与统一施用定量脱硫石膏(22.5t/hm~2)对土壤基本理化性质及水稻生长的影响。[结果]在施用不同剂量结构改良剂后,0—20cm土层的土层容重、全盐量和pH值呈降低趋势,总孔隙度和水稳性团聚体则呈增加趋势。在0—20cm土层,各处理改良效果均较显著,当深度大于40cm时,所有处理的改良效果不明显。施加改良剂增加了水稻的成活率、株高和产量,且各处理间均差异显著(p0.05)。[结论]脱硫石膏与结构改良剂配合施用能显著改善龟裂碱土理化性状,促进水稻成长。综合考虑经济因素,脱硫石膏(22.5t/hm~2)+土壤结构改良剂(270kg/hm~2)的施用量效果最佳。  相似文献   

11.
为了靶向消减根区土壤盐碱障碍和定向培育健康沃土,在内蒙古河套灌区开展田间小区试验,设置沙土覆盖种植孔(S)、条施生物炭+沙土覆盖种植孔(B+S)、条施生物炭+脱硫石膏覆盖种植孔(B+G)3个处理,对比分析0~20 cm和>20~40 cm土层土壤质量及向日葵产量差异。结果表明:根区施用生物炭和脱硫石膏改变了0~40 cm土壤水溶性离子组成,主要表现为增加Ca2+含量而降低Na+含量。与S处理相比,B+S和B+G处理显著降低了0~40 cm土壤钠吸附比(Sodium adsorption ratio,SAR)和>20~40 cm土层pH值,增大了土壤脱盐率(Ds);B+S和B+G处理还增加了0~40 cm土壤有机质(OM)、硝态氮(NO3--N)、有效磷(AP)和速效钾(AK)含量,为向日葵出苗和生长提供了良好的土壤环境。此外,B+S和B+G处理通过调理盐碱指标(SAR,Ds,Ca2+和Mg2+)和肥力水平(AK,NO3--N和OM)来提高土壤质量,二者基于全数据集的土壤质量指数(SQI)比S处理分别增大了35.7%和88.5%。但相比之下,B+G处理在这两个方面的作用效果要优于B+S处理,因而获得了最高籽粒产量。可见,在根区条施生物炭和脱硫石膏覆盖种植孔相结合可提高盐碱地土壤质量和向日葵产量,为河套灌区盐碱地改良利用提供技术支撑。  相似文献   

12.
Lysimeter experiments were conducted with sandy‐clay‐loam soil to study the efficiency of two amendments in reclaiming saline‐sodic soil using moderately saline and SAR (sodium‐adsorption ratio) irrigation water. Gypsum obtained from industrial phosphate by‐products and reagent grade Ca chloride were applied to packed soil columns and irrigated with moderately saline (ECe = 2.16 dS m–1), moderate‐SAR water (SAR = 4.8). Gypsum was mixed with soil prior to irrigation at application rates of 5, 10, 15, 20, 25, and 32 Mg ha–1, and Ca chloride was dissolved directly in leaching water at application rates of 4.25, 8.5, 12.75, 17.0, and 21.25 Mg ha–1, respectively. The highest application rate in both amendments resulted in 96% reduction of total Na in soil. The hydraulic conductivity (HC) of soils receiving gypsum increased in all treatments. The highest HC value of 6.8 mm h–1 was obtained in the highest application rate (32 Mg ha–1), whereas the lowest value of 5.2 mm h–1 was observed with the control treatment. Both amendments were efficient in reducing soil salinity and sodicity (exchangeable‐sodium percentage, ESP); however, Ca chloride was more effective than gypsum as a reclaiming material. Exchangeable Na and soluble salts were reduced with gypsum application by 82% and 96%, and by 86% and 93% with Ca chloride application, respectively. Exchangeable Ca increased with increasing amendment rate. Results of this study revealed that sodium was removed during cation‐exchange reactions mostly when the SAR of effluent water was at maximum with subsequent passage of 3 to 4 pore volumes. Gypsum efficiently reduced soil ESP, soil EC, leaching water, and costs, therefore, an application rate of 20 Mg ha–1 of gypsum with 3 to 4 pore volumes of leaching water is recommended for reclaiming the studied soil.  相似文献   

13.
脱硫石膏施用下宁夏盐化碱土水盐运移特征   总被引:4,自引:1,他引:3       下载免费PDF全文
为定量描述脱硫石膏施用下盐化碱土土壤剖面盐分与淋洗水量的关系,通过室内土柱淋洗试验开展了脱硫石膏施用下不同淋洗水量对宁夏盐化碱土水盐运移影响的研究。结果表明:施用脱硫石膏对增加水分入渗和降低0—20cm土层土壤pH、盐分含量产生了积极影响,土壤脱盐率84.39%~95.41%,但较大水量的淋洗有可能会加剧土壤碱化。连续淋洗条件下,最大脱盐深度位于60—80cm土层。脱硫石膏施用下,0—20cm土层Cl~-、Na~+溶脱率随淋洗水量的增加变化不大,低淋洗水量下,SO_4~(2-)溶脱率低于Na~+和Cl~-,高淋洗水量下,3种离子溶脱率接近;20—40cm土层主要盐分离子溶脱率由大到小依次为Cl~-、SO_4~(2-)、Na~+,各离子脱盐率随淋洗水量的增加先增加较快后趋于平缓。当淋洗水量达到60cm时,SO_4~(2-)和Na~+在80—100cm土层累积,Cl~-则运移至100cm土层以下。  相似文献   

14.
The effects of wheat, potato, sunflower, and rape residues and calcite were evaluated in soil that received sodic water. These materials were added to a sandy‐loam soil at a rate of 5%, after which the treated soils were incubated for 1 month at field‐capacity moisture and a temperature of 25°C–30°C. Column leaching experiments using treated soils were then conducted under saturated conditions using water with three sodium‐adsorption ratios (SAR) (0, 10, 40) with a constant ionic strength (50 mmol L–1). The results indicated that the application of plant residues to soils caused an increase in cation‐exchange capacity and exchangeable cations. Leaching experiments indicated that the addition of plant amendments led to increased Na+ leaching and decrease in exchangeable‐sodium percentage (ESP). The ESP of the control soil, after leaching with solutions with an SAR of 10 and 40, increased significantly, but the level of sodification in soils treated with plant residue was lower. Such decreases of soil ESP were greatly affected by the type of plant residues, with the order of: potato‐treated soil > sunflower‐treated soil > rape‐treated soil > wheat‐treated soil > calcite‐treated soil > control soil.  相似文献   

15.
Salt and sodicity of saline-alkali soil adversely affect the construction of ecological landscapes and negatively impact crop production. The reclamation potential of biochar (BC, wheat straw biochar applied at 1% by weight), gypsum (G, 0.4% by weight), and gypsum coupled with biochar (GBC) was examined in this laboratory-based study by evaluating their effects on a saline-alkali soil (silt loam) with no amendment as a control (CK). Saline ice and fresh water (simulated rainfall) were leached through soil columns to investigate changes in salt content, sodium adsorption ratio (SAR), alkalinity, and pH of the leachate and the soil. Results showed that saturated water content and field water capacity (FWC) significantly increased by 4.4% and 5.6%, respectively, in the BC treatment after a short incubation time. Co-application of biochar and gypsum (GBC) increased soil saturated hydraulic conductivity (Ks) by 58.4%, which was also significantly higher than the sole addition. Electrical conductivity (EC) of the leachate decreased sharply after saline ice leaching; subsequent freshwater leaching accelerated the removal of the rest of the salts, irrespective of the amendment application. However, the application of gypsum (G and GB) significantly enhanced the removal of exchangeable Na+ and reduced leachate SAR. After leaching, the soil salt content decreased significantly for all treatments. The application of gypsum resulted in a significantly lower soil pH, exchangeable sodium percentage (ESP), SAR, and alkalinity values than those recorded for the CK and BC treatments. These results demonstrated that the co-application of gypsum and biochar could improve saline-alkali soil hydraulic conductivity and decrease leaching-induced sodicity over a short period.  相似文献   

16.
Burying a straw layer and applying flue gas desulphurization(FGD)gypsum are effective practices to ameliorate soil salinization or alkalization and to increase crop yield;however,little information exists on the effects of such integration in saline-alkali soils.A soil column experiment was conducted to investigate the effects of a straw layer plus FGD gypsum on soil salinity and alkalinity.We placed a straw layer(5 cm thick)at a depth of 30 cm and mixed FGD gypsum into the 0–20 cm soil layer at application rates of 7.5,15.0,22.5,and 30.0 t ha^-1,with no straw layer and FGD gypsum as a control(CK).The soil water content in the 0–30 cm soil layer was significantly higher(>7.8%)in the treated soil profiles after infiltration than in the CK,but decreased after evaporation.The electrical conductivity(EC)of the 10–30 cm soil layer was 230.2%and 104.9%higher in the treated soil profiles than in the CK after infiltration and evaporation,respectively,and increased with increasing rates of FGD gypsum application,with Ca^2+and SO4^2-being the main dissolved salts.Compared to those in the CK,the concentrations of Na^+,Cl^-,and HCO3-decreased in the treated soil profiles at depths above 55 cm,but the other soluble ions increased,after infiltration.A similar trend occurred after evaporation for all soluble ions except for HCO3-.The p H and exchangeable sodium percentage in the treated soil profiles were significantly lower than those in the CK over the entire profile,and decreased with increasing FGD gypsum application rates.Therefore,the incorporation of a straw layer plus FGD gypsum can reduce salinity and alkalinity,but the quantity of FGD gypsum should be controlled in saline-alkali soils.  相似文献   

17.
有机-无机复合改良剂对滨海盐碱地的改良效应研究   总被引:5,自引:0,他引:5  
针对河北中捷农场滨海盐碱地所具有的盐碱化程度高、单盐毒害突出的特点,选取园林废弃物堆肥和惰化产品,并结合磷石膏对该地区的土壤进行改良研究.以大田条件下的实际应用为基础,设置不同处理,进行田间对比试验,定期取样,对土壤盐分指标进行测定分析.结果表明:1)施入有机改良剂和磷石膏,既能有效降低土壤pH值,又能避免单独施人磷石膏后,土壤pH值变化过大,对植物产生不利影响.2)从单因素试验分析,土壤的SAR随着有机改良剂和磷石膏施入量的提高而显著降低,磷石膏的改良效果优于有机改良剂;从2种改良剂的交互作用来看,有机-无机改良剂配施的效果优于改良剂的单施效果.3)随着有机-无机改良剂施人量的增加,土壤中的C1-质量分数呈显著降低,而SO42-质量分数呈显著增加趋势.4)根据试验结果,推荐施入1 kg/m2的磷石膏及5%的有机改良剂(体积比,约3.35 kg/m2),能够取得较好的改良效果,此时的改良成本约为6.70元/m2.研究结果以期为滨海盐碱地区城市绿化,提供理论依据.  相似文献   

18.
脱硫石膏施用下宁夏龟裂碱土水盐运移特征   总被引:1,自引:0,他引:1  
通过室内土柱淋洗试验,开展了脱硫石膏施用下不同淋洗水量对宁夏龟裂碱土水盐运移影响的研究,结果表明:脱硫石膏施用下龟裂碱土随着入渗时间的增加,湿润锋深度和累积入渗水量呈先急剧增加再缓慢增加的趋势;0~20 cm土层土壤pH值、碱化度和全盐量均有较大幅度的降低;连续淋洗条件下,最大脱盐深度位于40~60 cm土层;0~40 cm土层,随入渗水量的增加土壤脱盐率缓慢增加,其中0~20 cm土层处理1到处理4土壤脱盐率分别为79.72%、89.88%、91.93%和92.22%;随淋洗水量的增加,0~20 cm土层主要盐分离子易于溶脱的顺序为Mg2+>Cl->SO2-4>Na+> HCO3-, Mg2+溶脱率最大,可达到100%,20~40 cm土层主要盐分离子易于溶脱的顺序为Na+>Cl->Mg2+, Na+溶脱率最大,可达到91.42%, HCO3-和SO2-4含量则先增加后降低,0~40 cm土层Na+、 Cl-、 Mg2+随淋洗水量的增加淋洗效果更为明显。  相似文献   

19.
分析了在华北平原的河北潮土和山西褐土上连续13年施用钾肥和秸秆还田下的大田作物产量和耕层土壤钾素状况。结果表明,在施用氮磷肥基础上长期施钾和秸秆还田能增加小麦和玉米产量,各施钾处理产量与氮磷处理差异显著。两定位点钾肥和秸秆还田的效应不尽相同;小麦年际间各处理产量变异(CV≤13%)小于玉米(CV14%),河北潮土上的玉米增产效果高于小麦。与山西单作制度相比,河北轮作制度下土壤钾素支出大。秸秆还田和施用钾肥较只施氮磷肥可不同程度提高河北潮土和山西褐土0-20和20-40 cm两土层水溶性钾 (河北0-20 cm平均提高5.8 mg/kg,山西16.9 mg/kg,下同)、非特殊吸附钾(21.2 mg/kg,35.9 mg/kg)、非交换性钾(75.1 mg/kg,57.5 mg/kg)、矿物钾(0.03%,0.01%)及全钾含量;降低矿物钾比例的同时提高其余几种形态钾的比例。随土层加深,除矿物钾外,其余形态钾含量和比例均下降,特殊吸附钾不受施钾措施和土层深度的影响。直接施用钾肥效果优于秸秆还田,且两种措施对上层土壤各形态钾的影响效果大于下层土。  相似文献   

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