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1.
聚丙烯酰胺对磷素在土壤中吸附-解吸的影响   总被引:6,自引:0,他引:6  
聚丙烯酰胺(PAM)在农业上作为扰侵蚀剂、保水剂被广泛应用,但施用后对土壤养分保持和释放的影响研究较少。本文采用向土壤(塿土)中添加不同比例(0.1%,0.2%,0.4%占土壤的比例)的PAM溶液,通过磷素等温吸附解吸试验,探讨了PAM对磷素在土壤中吸附和解吸的影响。结果表明。和原土样相比.土壤经PAM处理后抑制了土壤对磷的物理吸附,导致吸附量减小.最大吸附量(Xm)降低,而对磷素在土壤中的化学吸附影响较小.被吸附磷尤其是物理吸附磷的解吸率升高。  相似文献   

2.
不同外源氮对石灰性土壤硝化作用的影响及其动力学分析   总被引:1,自引:0,他引:1  
为了揭示外源氮源对石灰性土壤硝化作用的影响机理,以钙积半干润均腐土(Cal-Ustic Isohumasols)为材料,采用室内培养方法研究了不同添加量和不同氮源对土壤硝化作用的影响,并建立了对应的硝化模型。结果表明,NH4+-N消耗速率和NO3--N增加速率呈S曲线变化,NH4+-N消耗速率高于NO3--N增加速率。氮素添加量与NH4+-N消耗速率和NO3--N增加速率呈正相关,硝化菌外的因子对NH4+-N和NO3--N的吸收与NH4+-N添加量呈正相关;不同氮素添加量对硝化作用影响程度不同,当氮素添加量为N 75 mg /kg,干土时,硝化作用较彻底。SO42-可加快硝化作用速率,同时也可改变其他因子对NH4+-N和NO3--N的利用。  相似文献   

3.
氮磷肥对黑土浅层土壤氮素累积和移动的影响   总被引:9,自引:0,他引:9  
利用D饱和最优设计研究了氮磷肥对黑土浅层土壤氮素累积和移动的影响,结果表明,氮磷肥对NO-3 -N含量的影响随着土层的加深逐渐减弱,并且施用尿素的NO-3 -N累积大于施用硝铵。在降雨高峰期存在NH+4 -N向下层土壤的移动,其移动时间滞后于NO-3 -N。尿素施入土壤后对NH+4 -N的累积无明显影响,对NO-3 -N的累积有促进作用。而不同用量的NH+4 -N肥的施入则促进了NH+4 -N的移动和累积。因此黑土玉米农田生态系统氮素做追肥时尿素和硝铵相比尿素更易造成地下水的硝酸盐污染。黑土玉米农田生态系统在作物拔节前期向土壤中施入氮素,将造成这一时期NO-3 -N对地下水的短期污染。  相似文献   

4.
砒砂岩改良风沙土对磷的吸附特性影响研究   总被引:2,自引:0,他引:2  
【目的】适量砒砂岩能有效改良风沙土的吸水和保水特性,但对于砒砂岩改良风沙土的养分有效性尚不清楚。本文研究了不同用量的砒砂岩改良风沙土对磷吸附特性的影响,以期为评价改良土壤对磷的吸附特性,揭示改良土壤对磷的吸附机理和指导磷肥合理施用提供依据。【方法】本试验设计了砒砂岩和风沙土0∶100(L)、10∶90(LS1)、25∶75(LS2)、50∶50(LS3)、75∶25(LS4)、90∶10(LS5)和100∶0(S)(烘干质量比)7个不同比例的改良模式。研究了在25℃下砒砂岩不同添加量改良风沙土的磷吸附动力学和等温吸附特征,并应用吸附动力学模型和等温吸附模型进行参数拟合,以揭示改良土壤对磷的吸附机理,同时分析了砒砂岩添加比例与改良土壤中磷的最大吸附量的关系。【结果】1)同一初始浓度下,随着吸附时间的延长,改良土壤对磷的吸附量呈增大趋势,24 h后逐渐达到平衡。2)吸附时间一定的情况下,随着磷初始浓度的增大,改良土壤对磷的吸附量逐渐增大,直到接近或达到吸附最大值。3)风沙土对磷的吸附量大于砒砂岩的吸附量,改良土壤中随着砒砂岩添加比例的增加,土壤对磷的吸附量呈减小趋势。4)风沙土、砒砂岩和改良土壤对磷的吸附动力学曲线符合准二级动力学模型。等温吸附曲线以Langmuir模型的拟合效果最优。5)风沙土、砒砂岩和改良土壤对磷的吸附属于均质的单层吸附,由膜扩散和颗粒内扩散共同控制吸附反应速率,吸附机理主要是化学吸附和离子交换。6)改良土壤对磷的最大吸附量随砒砂岩添加比例的增加呈线性减小关系。在生产实践中,可通过测定砒砂岩和风沙土对磷的最大吸附量及风沙土中砒砂岩的添加比例来对改良土壤中磷的最大吸附量进行预测。【结论】砒砂岩可显著减小风沙土对磷的吸附固定,增加施入磷肥的有效性。所以当改良土壤恢复植被以后,磷肥施用初期,砒砂岩添加比例较大的改良土壤中,磷素的肥效较好。但随着植物的生长利用,各改良土壤中吸附磷素的释放效果以及磷肥肥效的持续性有待进一步研究。  相似文献   

5.
不同施氮水平对深层包气带土壤氮素淋溶累积的影响   总被引:18,自引:6,他引:12  
为研究深层包气带土壤中氮素的迁移规律,采用田间小区试验,研究了不同施氮水平(142.5、285和427.5kg/hm2)对夏玉米种植期间0~500cm包气带土壤中氮素淋溶累积的影响。结果表明,不同施氮水平对NO3--N、NH4+-N和总氮有显著影响,施氮越多,NO3--N、NH4+-N和总氮在土壤中的淋溶累积也就越多,夏玉米生育期间土壤中氮素的淋溶累积含量随着夏玉米生长逐渐减少。在0~200cm土层中,收获后不同施肥水平土壤中NO3--N和总氮累积量随施氮量增加而增多,285kg/hm2施氮水平NH4+-N累积量最多,427.5kg/hm2施氮水平NH4+-N累积量最少,但相差不超过0.1kg/hm2,收获后土壤中氮素累积量有损失。夏玉米生育期间不同施氮水平对土壤NO3--N、NH4+-N和总氮的影响深度主要为0~145cm。粉砂壤土中氮素更易累积,砂质壤土中氮素较易随水分淋溶至下层。142.5kg/hm2施氮水平可有效减少NO3--N在土壤中的淋溶损失,降低土壤中NH4+-N和总氮的含量,对地下水构成的潜在污染风险最小。北京地区地下水埋深较深,NO3--N不易淋溶至地下水,但长期大量施用氮肥、田间土壤大孔隙的存在等会加速NO3--N向深层土壤迁移,对地下水水质构成威胁。  相似文献   

6.
坡缕石包膜对尿素氮行为的影响   总被引:2,自引:1,他引:2  
采用静态吸收和土柱淋溶试验方法,分析对比了3种不同用量坡缕石包膜尿素与普通尿素施入土壤后对尿素氮行为的影响,结果表明:在土壤中施用坡缕石包膜尿素较普通尿素减少10.38%~26.24%的氨挥发损失,减少5.88%~27.74%的氮素(NO3--N+NH4+-N)淋溶损失,20%的坡缕石包膜尿素能显著提高土柱土壤NH4+-N含量,3种坡缕石包膜尿素都能极显著提高土柱土壤NO3--N含量.坡缕石包膜后能减少尿素氨的挥发,降低NH4+-N和NO3--N的淋失,提高土壤NH4+-N和NO3--N含量,以20%的坡缕石包膜尿素的综合生态效应最好.  相似文献   

7.
氮肥对水稻不同生长期土壤不同深度氮素渗漏的影响   总被引:5,自引:2,他引:3  
陈贵  陈莹  施卫明 《土壤》2013,45(5):809-814
为了探明太湖地区氮肥施用对水稻不同生长期稻田土壤氮素渗漏的影响,利用渗漏管进行了原位监测。结果表明:①土壤各层(20 ~ 40、40 ~ 60、60 ~ 80和80 ~ 120 cm)渗漏液中铵态氮(NH4+-N)的平均浓度在水稻分蘖期较高,而硝态氮(-N)和全氮(TN-N)的平均浓度则在苗期相对较高。渗漏液中NH4+-N和TN-N浓度随土壤深度增加基本呈降低趋势。②以土壤80 ~ 120 cm深处渗漏量为进入地下水的氮素渗漏量,发现TN-N渗漏量占施肥量的比例为1.69% ~ 2.04%。分蘖期的NH4+-N渗漏量相对较多,而苗期-N和TN-N相对较多,总TN-N渗漏量中NH4+-N和-N基本无差异。③氮肥用量增加降了氮肥利用效率,加剧了土壤各层氮素渗漏风险。当施氮量由N 200增至270 kg/hm2时,氮肥表观利用率下降7.14%,下渗至地下水中的TN-N增加12.3%。  相似文献   

8.
为改善砂质土壤持水状况,设计了由作物秸秆、膨润土和聚丙烯酰胺(PAM)配制的改良材料,以重庆市分布面积较大的冷沙黄泥为研究对象,采用恒定水头入渗双环法,研究了秸秆改良材料对砂质土壤饱和导水率的影响。结果表明,施用秸秆改良材料能增加砂质土壤的饱和导水率,并且随着施用剂量的增大,土壤饱和导水率逐渐增加;随土培时间的延长土样饱和导水率均出现了先增大后减小的趋势,当土培时间为60 d时土样饱和导水率达到最大值;添加麦秆改良材料(质量分数为10 g/kg,配方中PAM质量分数为2%)的土样,在培养60 d后其饱和导水率是对照组的4.97倍,对砂质土壤改良效果最明显。可见,秸秆改良材料可以改善砂质土壤持水状况,对砂质土壤具有改良作用。  相似文献   

9.
铵态氮肥对黄土高原典型土壤氮素激发效应的影响   总被引:1,自引:0,他引:1  
以黄土高原从北向南不同地区典型土壤类为对象,采用Bremner淹水培养法,研究铵态氮肥对黄土高原典型土壤氮素的激发效应。结果表明,在测定NH4+-N的激发效应时,只有考虑粘土矿物对有机氮矿化产物或者添加NH4+-N的固定,才可获得可靠结果。在培养20 d和60 d时,NH4+-N对不同土类氮素激发效应存在极显著和显著的影响(P≤0.01和0.05);培养40 d时,尽管不同土类氮素激发效应也存在很大差异,但统计检验不显著。从整体评价,NH4+-N对土垫旱耕人为土和黄土正常新成土表现出正的激发效应,而对干润砂质新成土表现出负的激发效应,对简育干润均腐土在培养20 d和40 d时无激发效应,而在培养60 d时,表现出显著的负激发效应。结果还看出,在培养40 d和60 d时,NH4+-N对农田土壤表现出负激发效应,对林地和裸地土壤表现出正激发效应,而草地土壤在培养40 d时为正激发效应;培养20 d和60 d时无激发效应。添加有机物料在培养20 d和40 d时对激发效应的影响不显著(P=0.0872和0.1641),培养时间延长至60 d时影响显著(P=0.049)。添加紫花苜蓿(Medicago sativa)后,NH4+-N在培养40 d时表现出正的激发效应,而添加长芒草(Stipa bungeana Trin.)却在培养20、40和60 d时均表现出负的激发效应,不添加有机物料在培养20、40和60 d时均无激发效应。  相似文献   

10.
氮在紫色土中的移动和水稻氮素利用率的研究   总被引:12,自引:2,他引:10  
利用养分渗漏池研究了紫色土中氮肥品种、用量对氮素移动、淋失和水稻氮肥利用率的影响。结果表明:淹水期间淋失的氮素基本形态是NH4+-N,主要分布在土壤表层,并随时间而下移;NH4+-N 淋失量与降雨量呈显著正相关;氯化铵促进了NH4+-N 的淋失,但其氮肥利用率比尿素高8 个百分点,说明水稻上可酌施含氯化肥;增施氮肥增加了NH4+-N 的淋失量,减少了氮肥利用率,建议水稻施氮控制在150kg/hm2。  相似文献   

11.
戴云山自然保护区森林土壤氮转化特点研究   总被引:3,自引:1,他引:2  
袁磊  李文周  陈文伟  张金波  蔡祖聪 《土壤》2017,49(2):240-247
利用~(15)N稳定同位素成对标记法并结合MCMC数值模型,研究了戴云山国家级自然保护区天然毛竹林(BF)及其邻近黄山松–杉木林(NF)土壤氮素初级转化速率,以评估该地区森林生态系统土壤氮状态,并分析其保氮机制。结果表明:BF土壤NH_4~+-N的总产生速率(以N量计,13.16μg/(g×d))是NF土壤的2倍(6.25μg/(g×d)),其中黏土矿物对NH_4~+-N的解吸作用是BF产生NH_4~+-N的主要过程(55%),而NF主要以有机氮的矿化作用为主(56%)。BF土壤氮素初级矿化速率为5.56μg/(g×d),显著高于NF的3.40μg/(g×d)。土壤氮素初级矿化速率与土壤全氮含量显著正相关(P0.05),而与C/N比表现显著负相关(P0.05)。BF与NF土壤NH_4~+-N总产生量的90%均被土壤微生物的同化作用以及黏土矿物的吸附作用所消耗。两种土壤的硝化作用微弱,BF土壤总硝化速率(以N量计,0.23μg/(g×d))与NF土壤(0.26μg/(g×d))相差不大。两种林地土壤硝化作用均以有机氮的异养硝化为主,自养硝化过程可忽略不计。BF与NF土壤中NO_3~–-N消耗速率均超过了产生速率,表明BF与NF土壤均能有效降低NO_3~–-N的潜在淋失风险,其中BF土壤中NO_3~–-N的消耗以微生物的同化作用为主(58%),而NF土壤以NO_3~–-N异化还原为NH_4~+-N过程为主(68%)。戴云山国家级自然保护区两种亚热带森林土壤的氮转化过程均以NH_4~+-N转化为主,产生的绝大多数NH_4~+-N会迅速通过微生物对NH_4~+-N的同化作用以及黏土矿物对NH_4~+-N的吸附作用固持到有机氮库中;自养硝化过程微弱,使得无机氮主要以NH_4~+-N的形式保存于土壤中,同时酸性土壤环境有效削弱了NH_4~+-N的挥发损失。此外,相对较高的NO_3~–-N微生物同化速率以及异化还原为NH_4~+-N速率,进一步有效降低了NO_3~–-N的淋溶损失以及反硝化作用的气态损失风险,使该地区森林土壤能够在多雨的条件下有效保持氮素,满足植物的生长需求。  相似文献   

12.
冻融作用对农田土壤可溶性氮组分的影响   总被引:2,自引:1,他引:1  
田路路  隽英华  刘艳  孙文涛  程淑芳 《土壤》2017,49(3):512-518
为了解非生长季农田土壤氮素转化过程,采用室内冻融模拟培养试验研究了不同冻融温度和冻融循环次数对东北4种典型农田土壤(棕壤、褐土、草甸土、黑土)可溶性氮组分含量的影响。结果表明:随着冻结温度降低,4种农田土壤可溶性无机氮(DIN,NO_3~–-N+NH_4~+-N)、可溶性有机氮(DON)和可溶性全氮(DTN)含量均显著增加。随着融化温度升高,除NH_4~+-N含量显著升高外,4种农田土壤NO_3~–-N、DON和DTN含量的变化行为受冻结温度和土壤类型的协同影响。随着冻融循环次数增加,棕壤和褐土NO_3~–-N、NH_4~+-N、DON和DTN含量均显著增加;草甸土NO_3~–-N、DON和DTN含量均显著增加,而NH_4~+-N含量显著降低;黑土NO_3~–-N和NH_4~+-N含量均显著降低,而DON和DTN含量则先升高后降低。不同类型土壤受冻融作用影响的响应能力不同,其大小顺序为褐土棕壤、草甸土黑土。可见,冻融作用促进了土壤氮素转化,有利于土壤有效氮的累积,为春季作物生长提供足够的氮素,但同时也增加了土壤氮素流失风险。  相似文献   

13.
稻草还田与施氮水平对土壤氮素供应和水稻产量的影响   总被引:3,自引:0,他引:3  
比较研究了3年定位试验后稻草还田和施N水平对红壤双季稻作系统土壤供N能力、水稻吸N特征和水稻生产的影响。结果表明:头年晚稻草秋季还田对来年早稻土壤NH4+-N和作物吸N量的提高具有促进作用,而早稻新鲜稻草还田使晚稻土壤NH4+-N和作物吸N量均略低于移走稻草处理。稻草还田处理3年后,土壤可矿化N与移走稻草处理相比提高了35.4%~53.9%,且水稻各生育期干物质生产量均高于移走稻草处理,稻谷增产率达4.0%~4.7%。施用N肥可以显著增加土壤NH4+-N和可矿化N含量,且随着N肥用量的增加,水稻植株的累积吸N量和系统生产力(地上干物质量和产量)均显著的增加,建议N(全年施N量185 kg hm-2)和习惯N(全年施N量265 kg hm-2)处理相对于无N处理的增产率分别为35.2%和45.3%,而N肥的吸收利用效率分别为27%和25%,农学产量效益分别为每公斤纯N增产谷粒12.7 kg和11.4 kg。  相似文献   

14.
人工湿地基质对铵氮的动力学吸附研究   总被引:5,自引:0,他引:5  
Constructed wetlands (CWs) are engineered systems that utilize natural systems including wetland vegetations,soils,and their associated microbial assemblages to assist in treating wastewater.The kinetic adsorption of ammonium nitrogen (NH4+-N) by CW substrate materials such as blast furnace slag (BFS),zeolite,ceramsite,vermiculite,gravel,paddy soil,red soil,and turf,was investigated using batch experiments and kinetic adsorption isotherms.Both Freundlich and Langmuir isotherms could adequately predict the NH4+-N adsorption process.The maximum adsorption capacities of NH4+-N,estimated from the Langmuir isotherm,ranked as:zeolite (33 333.33 mg kg-1) > turf (29 274.01 mg kg-1) > BFS (5 000 mg kg-1) > vermiculite (3 333.33 mg kg-1) > gravel (769.23 mg kg-1) > paddy soil (588.24 mg kg-1) > red soil (555.56 mg kg-1) > ceramsite (107.53 mg kg-1).Some properties of the substrate materials,including bulk density,specific gravity,hydraulic conductivity,uniformity coefficient (K60),curvature coefficient (Cc),organic matter,pH,exchangeable (or active) Cu,Fe,Zn and Mn,total Cu,and Fe,Mn,Zn,Cd,Pb and Ca,had negative correlations with NH4+-N adsorption.Other properties of the substrate materials like particle diameter values of D10,D30 and D60 (the diameters of particle sizes of a substrate material at which 10%,30% and 60%,respectively,of the particles pass through the sieve based on the accumulative frequency),cation exchange capacity (CEC),exchangeable (or active) Ca and Mg,and total K and Mg had positive correlations with NH4+-N adsorption.In addition,active K and Na as well as the total Na had significant positive correlations with NH4+-N adsorption.This information would be useful for selection of suitable substrate materials for CWs.  相似文献   

15.
湿地土壤NH4+吸附解吸对冻融循环的响应   总被引:3,自引:0,他引:3  
Nitrogen (N) cycling in boreal peatland ecosystems may be influenced in important ways by freeze-thaw cycles (FTCs).Adsorption and desorption of ammonium ions (NH + 4) were examined in a controlled laboratory experiment for soils sampled from palustrine wetland,riverine wetland,and farmland reclaimed from natural wetland in response to the number of FTCs.The results indicate that freeze-thaw significantly increased the adsorption capacity of NH + 4 and reduced the desorption potential of NH + 4 in the wetland soils.There were significant differences in the NH + 4 adsorption amount between the soils with and without freeze-thaw treatment.The adsorption amount of NH + 4 increased with increasing FTCs.The palustrine wetland soil had a greater adsorption capacity and a weaker desorption potential of NH + 4 than the riverine wetland soil because of the significantly higher clay content and cation exchange capacity (CEC) of the riverine wetland soil.Because of the altered soil physical and chemical properties and hydroperiods,the adsorption capacity of NH + 4 was smaller in the farmland soil than in the wetland soils,while the desorption potential of the farmland soil was higher than that of the wetland soils.Thus,wetland reclamation would decrease adsorption capacity and increase desorption potential of NH + 4,which could result in N loss from the farmland soil.FTCs might mitigate N loss from soils and reduce the risk of water pollution in downstream ecosystems.  相似文献   

16.
祁连山哈溪林区移植前后土壤氮对比研究   总被引:1,自引:0,他引:1  
研究不同海拔梯度森林土壤氮的分布特征,对于合理利用森林资源、改善森林的生态功能都有重要意义。采用封顶埋管法,对祁连山东段哈溪林区不同海拔梯度和不同植被类型的土壤氮进行了研究。结果表明:(1)海拔2 650m青海云杉林土壤的初始TN,NH_4~+-N和NO_3~--N含量均最低,海拔2 950 m青海云杉林土壤的初始TN,NH_4~+-N和NO_3~--N含量均最高;各海拔梯度青海云杉林土壤经培养后,其TN,NH_4~+-N和NO_3~--N含量均减小。(2)就不同植被类型而言,青海云杉林土壤TN,NH_4~+-N和NO_3~--N含量均最高,草地和灌丛土壤TN,NH_4~+-N和NO_3~--N含量较低,且二者差异不大。草地和灌丛土壤培养后TN和NH_4~+-N含量显著升高,NO_3~--N含量变化不大。(3)某一海拔青海云杉林土壤移植到其他海拔青海云杉林培养后,土壤TN,NH_4~+-N和NO_3~--N含量变化不大;不同植被类型之间土壤相互移植培养后,土壤TN,NH_4~+-N和NO_3~--N含量变化明显,不同植被类型对土壤氮的含量差异显著。  相似文献   

17.
Plants show different growth responses to N sources supplied with either NH4+ or NO3-.The uptake of different N sources also affects the rhizosphere pH and therefore the bioavailability of soil phosphorus,particularly in alkaline soils.The plant growth,P uptake,and P availability in the rhizosphere of oat (Arena nuda L.) grown in hydroponics and in soil culture were investigated under supply with sole NH4+-N,sole NO3--N,or a combination.Sole NO3-fed oat plants accumulated more biomass than sole NH4+-fed ones.The highest biomass accumulation was observed when N was supplied with both NH4+-N and NO3--N.Growth of the plant root increased with the proportion of NO3-in the cultural medium.Better root growth and higher root/shoot ratio were consistently observed in NO3--fed plants.However,root vigor was the highest when N was supplied with NO3-+NH4+.NH4+ supply reduced the rhizosphere pH but did not affect P uptake by plants grown in soils with CaHPO4 added as P source.No P deficiency was observed,and plant P concentrations were generally above 2 g kg-1.P uptake was increased when N was supplied partly or solely as NO3--N,similarly as biomass accumulation.The results suggested that oat was an NO3-prcferring plant,and NO3--N was essential for plant growth and the maintenance of root absorption capacity.N supply with NH4+-N did not improve P nutrition,which was most likely due to the absence of P deficiency.  相似文献   

18.
Plants show different growth responses to N sources supplied with either NH4+ or NO3-. The uptake of different N sources also affects the rhizosphere pH and therefore the bioavailability of soil phosphorus, particularly in alkaline soils. The plant growth, P uptake, and P availability in the rhizosphere of oat (Avena nuda L.) grown in hydroponics and in soil culture were investigated under supply with sole NH4+-N, sole NO3--N, or a combination. Sole NO3--fed oat plants accumulated more biomass than sole NH4+-fed ones. The highest biomass accumulation was observed when N was suppliedw ith both NH4+-N and NO3--N. Growth of the plant root increased with the proportion of NO3- in the cultural medium. Better root growth and higher root/shoot ratio were consistently observed in NO3--fed plants. However, root vigor was the highest when N was supplied with NO3-+NH4+. NH4+ supply reduced the rhizosphere pH but did not affect P uptake by plants grown in soils with CaHPO4 added as P source. No P deficiency was observed, and plant P concentrations were generally above 2 g kg-1. P uptake was increased when N was supplied partly or solely as NO3--N, similarly as biomass accumulation. The results suggested that oat was an NO3--preferring plant, and NO3--N was essential for plant growth and the maintenance of root absorption capacity. N supply with NH4+-N did not improve P nutrition, which was most likely due to the absence of P deficiency.  相似文献   

19.
土壤供氮能力指标研究   总被引:25,自引:5,他引:25  
本文对国内外土壤供氮能力指标的研究进行了论述 ,作者根据自己的研究结果认为 :在土壤起始NO- 3 N含量较高时 ,用KCl煮沸浸取出的一定深度土壤的NO- 3 N就可作为土壤供氮能力指标 ,反映出当前土壤的供氮能力 .而在土壤起始NO- 3 N含量较低或考虑到起始NO- 3 N的影响后 ,1mol/LNaOH扩散出的NH+ 4 N或KCl煮沸法在酸性土壤上浸取出的NH+ 4 N则是较好的土壤供氮能力指标 ,反映了土壤潜在的供氮能力  相似文献   

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