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1.
为了研究黄淮海平原不同秸秆还田方式和施氮类型对夏玉米农田生态系统土壤呼吸的影响,于2010年6—10月,采用LI-COR-6400-09土壤气室连接红外线气体分析仪(IRGA)对玉米农田行间掩埋秸秆区的土壤呼吸作用进行了连续测定。结果表明,常规施肥下,玉米生育期内秸秆行间掩埋处理(ISFR)的平均土壤呼吸速率显著高于秸秆移除(NSFR)和秸秆覆盖(SFR)处理(P<0.05)。秸秆行间掩埋配合施用化学氮肥处理中,配施50.4 kg(N).hm 2处理(ISF3)的平均土壤呼吸速率为(178.85±46.60)mg(C).m 2.h 1,显著高于配施33.6 kg(N).hm 2处理(ISF2)的(124.11±23.18)mg(C).m 2.h 1(P<0.05)。秸秆行间掩埋配合施用鸡粪处理中,鸡粪施用量为33.6kg(N).hm 2(ISOM2)处理的平均土壤呼吸速率为(208.08±31.54)mg(C).m 2.h 1,施用16.8 kg(N).hm 2(ISOM1)和50.4 kg(N).hm 2(ISOM3)处理的为(135.07±21.97)mg(C).m 2.h 1、(171.43±43.31)mg(C).m 2.h 1,相比ISOM2处理,ISOM1和ISOM3处理的平均土壤呼吸速率降低了35.09%和17.61%。ISOM2处理玉米季CO2排放累积量为499.39 g(C).m 2,显著高于ISF2处理的297.86 g(C).m 2。秸秆行间掩埋配合施用化学氮肥对土壤呼吸速率的影响小于配合施用鸡粪的影响,配合施用16%总氮的鸡粪,即33.6 kg(N).hm 2时C/N比最适宜土壤微生物的代谢活动。  相似文献   

2.
CO2浓度升高对三江平原湿地土壤碳氮含量的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
利用开顶箱薰气室(open-top chamber,OTC),设置正常大气CO2浓度(ambient CO2)和高CO2浓度(elevated CO2,700μmol/mol)2个水平和不施氮(NN,0g/m2),常氮(MN,5g/m2)和高氮(HN,15g/m2)3个氮素水平,研究了CO2浓度升高对三江平原草甸小叶章湿地(Calamagrostis angustifolia)土壤碳氮含量的影响。结果表明,CO2浓度升高连续运行两个生长季后,湿地土壤总有机碳含量没有显著变化,不同N处理增加了0.5%~1.8%。CO2浓度升高,土壤总氮含量总体呈下降趋势。就各生长期平均值而言,CO2浓度升高使土壤NH4+—N的含量分别降低了8.2%(NN),8.9%(MN)和9.7%(HN)。CO2浓度升高使不同N处理的土壤NO3-—N含量也呈降低趋势,其中高氮水平(HN)降低最多,降幅为9.6%。土壤有效态氮是控制植物对高CO2浓度响应的关键因素。  相似文献   

3.
研究模拟氮沉降下凋落物分解特征对其持水性的影响,旨在为氮沉降背景下森林生态系统养分循环和水分循环相关研究提供理论依据。以滇中高原常绿阔叶林和高山栎林为研究对象,在野外开展模拟氮沉降下凋落叶、枝原位分解研究试验,设置0(对照CK),10(低氮LN),20(中氮MN),25(高氮HN) g/(m2·a)N共4种处理,利用尼龙网袋法和室内浸泡法,探究不同处理下凋落叶、枝质量残留率、持水量和持水率及吸水速率变化特征。结果表明:(1) 2种林分凋落叶、枝质量残留率随分解时间延长而减少;与CK质量残留率相比,LN处理2种林分凋落叶、枝无显著影响(p>0.05),MN和HN处理使常绿阔叶林凋落叶分解第16,19,23,24个月和HN处理高山栎林凋落叶分解第16个月分别增加5.05%~7.45%,7.88%~8.62%,4.72%。(2)与CK分解95%所需时间相比,LN处理使常绿阔叶林凋落叶、枝和高山栎林凋落枝分别增加0.549,0.366,0.402年,高山栎林凋落叶则减少1.011年,MN和HN处理使2种林分落叶、枝增加0.236~3.638年。(3)分解时间和氮沉降...  相似文献   

4.
黔中喀斯特地区不同林型春季土壤呼吸研究   总被引:3,自引:0,他引:3  
采用LI-6400便携式光合测定系统及土壤呼吸叶室6400-09对黔中喀斯特地区5种林型的土壤呼吸速率进行了测定和分析.结果表明,土壤呼吸速率日动态均呈单峰型;马尾松林土壤呼吸速率的昼夜变化值比阔叶林平均高0.91 CO2 μmol/(m2·s),其中凋落物部分平均高1.50 CO2 μmol/(m2·s);呼吸速率日均值为马尾松林(4.41 μmol/m2·s)>柏木林(3.55 μmol/m2·s)>阔叶林(3.49 μmol/m2·s)>灌木林(3.32 μmol/m2·s)>针阔混交林(3.05 μmol/m2·s);呼吸速率日极差与El呼吸速率平均值的比值为马尾松林(40.56%)>灌木林(23.91%)>针阔混交林(23.29%)>阔叶林(18.46%)>柏木林(13.70%);凋落物占土壤呼吸速率的比重为马尾松林>针阔混交林>灌木林>柏木林>阔叶林;土壤呼吸速率与5 cm土温关联较大;土壤湿度与土壤呼吸速率值呈负相关.  相似文献   

5.
氮添加对马尾松人工林凋落物分解及其微生物活性的影响   总被引:1,自引:0,他引:1  
对马尾松人工林凋落物进行了12个月的模拟氮沉降试验[对照CK,0 kg N/(hm~2·a)]、低氮[(LN,50 kg N/(hm~2·a)]、中氮[MN,100 kg N/(hm~2·a)]和高氮[HN,150 kg N/(hm~2·a)],研究了凋落物分解特征、土壤微生物活性及其对模拟氮沉降的响应。结果表明:(1)随着氮浓度的增加,马尾松凋落物的分解系数呈先增加后降低趋势,MN处理下马尾松凋落物的分解系数达到最高,之后有所下降;与对照相比,LN,MN,HN凋落物分解系数分别增加了15.36%,56.89%和12.97%;(2)模拟氮沉降促进了微生物量碳、氮、磷,相同月份微生物量碳、氮、磷均随着氮浓度的增加呈先增加后降低趋势,在MN处理下微生物量碳、氮、磷达到最大,HN处理下微生物量碳、氮、磷有所降低;(3)模拟氮沉降增加了大部分土壤酶的活性,HN处理下有所抑制,土壤中与碳(纤维素酶、纤维二糖水解酶、β-葡萄糖苷酶和β-木糖苷酶)、氮(硝酸还原酶)、磷(酸性磷酸酶和碱性磷酸酶)元素循环相关的酶均随着时间的增加呈增加趋势,相同月份在MN处理下达到最大,HN处理下有所降低。(4)不同氮处理下土壤微生物活度、微生物代谢熵、自养呼吸、异养呼吸、总呼吸变化趋势基本保持一致,随着时间的增加呈增加趋势,相同月份在MN处理下达到最大,HN处理下有所降低;(5)相关性分析表明纤维素酶、β-葡萄糖苷酶、β-木糖苷酶、硝酸还原酶与凋落物分解系数呈显著正相关(p0.05),土壤微生物量碳、氮、微生物活度、微生物代谢熵和微生物总呼吸与凋落物分解系数呈显著正相关;PCA排序表明:土壤微生物呼吸和土壤微生物代谢熵很大程度上反映了其微生物特性,其中土壤碳循环酶、微生物活度、土壤微生物代谢熵对凋落物分解贡献最大。  相似文献   

6.
通过野外氮沉降模拟试验,研究了氮沉降对亚热带森林(罗浮栲、杉木和浙江桂)土壤速效磷和速效钾的影响,试验处理设置为对照[CK,0 kg/(hm2.a)]、低氮[LN,(30 kg/(hm2.a)]和高氮[HN,100 kg/(hm2.a)]。结果表明,长期氮沉降作用下,罗浮栲和杉木土壤速效磷的含量和速效磷/速效钾值皆随氮沉降水平提高而增加,而浙江桂土壤速效磷和速效磷/速效钾值则随氮沉降水平提高而减小;氮沉降对土壤速效钾有淋失作用(LN>HN),但影响不显著,各处理之间的速效钾含量差异小;不同森林土壤之间的速效磷或速效钾含量差异较大;保留凋落物与去除凋落物处理之间的试验结果呈显著正相关性。  相似文献   

7.
研究森林土壤团聚体酶活性对氮沉降的响应差异以及团聚体酶活性的影响因素,以滇中亚高山云南松林和华山松林为研究对象,于2020年6月至2021年5月通过野外模拟氮沉降试验,设置对照[CK,0 g/(m2·a)N]、低氮[LN,10 g/(m2·a)N]、中氮[MN,20 g/(m2·a)N]、高氮[HN,25 g/(m2·a)N],分别采集旱季(2021年2月)和雨季(2020年8月)的土壤样品,分析土壤团聚体中脲酶(Ure)、蔗糖酶(Inv)和酸性磷酸酶(AP)的变化特征,以及与环境因子的交互作用,阐明不同筛分方式下土壤团聚体酶活性对氮沉降的响应特征。结果表明:(1)氮沉降对2种林分下土壤团聚体的分布未造成显著影响,而不同筛分方式则影响显著;不同氮沉降水平下,土壤团聚体中3种酶活性均表现出LN促进,MN与HN抑制;(2)与干筛法相比,湿筛法下土壤团聚体中酶活性均有显著下降,Inv和Ure的团聚体酶活性的降幅均在20%以上,AP的降幅可达57.55%;(3)土壤干筛、湿筛团聚体酶活性的几何平均数(GMe...  相似文献   

8.
在杉木人工林中开展模拟氮沉降试验,设计N0(对照)、N1(60kg N/hm2.a)、N2(120kg N/hm2.a)和N3(240kg N/hm2.a)4种氮沉降水平。通过连续7年的处理后,研究外加氮源对土壤可溶性有机碳及微生物量碳的影响及与土壤酶活性的关系。相同N沉降处理下,土壤有机碳、可溶性有机碳和微生物量碳均随土层加深而降低。氮沉降对土壤有机碳具有促进作用,中-低氮沉降(N1、N2)增加幅度大,高氮沉降(N3)增加幅度小。低氮(N1)处理促进土壤微生物生物量C增加,而中、高氮(N2、N3)则抑制;各氮沉降处理土壤可溶性有机碳含量从高到低的顺序为:N3、N2>N1>N0。40-60cm土壤微生物量碳与蔗糖酶、纤维素酶呈极显著正相关关系,与淀粉酶、多酚氧化酶、过氧化物酶呈极显著负相关关系;除40-60cm土层的β-葡糖苷酶外,各层土壤可溶性有机碳与土壤蔗糖酶、纤维素酶和β-葡糖苷酶活性呈极显著正相关关系,与淀粉酶、多酚氧化酶和过氧化物酶呈极显著负相关关系。因此,氮沉降增加将会对土壤碳累积与分解过程产生较大的影响。  相似文献   

9.
模拟氮沉降对森林土壤酚类物质和可溶性糖含量的影响   总被引:2,自引:0,他引:2  
采用野外原位试验模拟氮沉降,研究其对福建建瓯万木林自然保护区杉木林(CUL)、浙江桂(CIC)和罗浮栲林(CAF)3种林分土壤多酚、单宁和可溶性糖含量的影响。每个林分设置对照(CK,0 kg/(hm2·a))、低氮(LN,30 kg/(hm2·a))和高氮(HN,100 kg/(hm2·a))3个处理。结果表明:针叶杉木林土壤多酚含量最高,单宁和可溶性糖含量最低,且均与另两个阔叶树种林分差异显著。杉木和罗浮栲林土壤多酚含量随着氮添加量的增加而显著降低,浙江桂多酚受HN处理影响不大,仅LN处理显著降低49.4%。氮沉降主要表现为降低土壤单宁含量,LN处理分别显著降低杉木林、浙江桂和罗浮栲林单宁含量43.5%、70.0%和79.5%;而HN处理仅降低阔叶林土壤单宁含量。然而,氮沉降增加土壤可溶性糖含量,与对照处理相比,LN处理分别显著增加杉木、浙江桂和罗浮栲林土壤可溶性糖48.8%、19.2%和19.8%。各林分凋落物中多酚、单宁和可溶性糖含量受氮沉降的影响不显著。  相似文献   

10.
氮肥与有机肥配施对设施土壤呼吸的影响   总被引:3,自引:1,他引:2  
《土壤通报》2017,(1):146-154
依托设施番茄栽培连续3年田间施肥定位试验,利用田间原位土壤呼吸测定法,研究了施氮量0、187.5、375.0、562.5 kg hm~(-2)(N0、N1、N2、N3)及氮肥与有机肥(M:75000 kg hm~(-2))配施(MN0、MN1、MN2、MN3)对土壤日呼吸速率的动态变化和累积呼吸量的影响,并分析了影响土壤呼吸的因素。结果表明:在番茄生长期内,各处理土壤日呼吸速率的动态变化趋势基本一致,番茄生长前期,各施肥处理土壤日呼吸速率较小且变动较小,生长64 d后,各施肥处理土壤日呼吸速率随生长天数的延长呈快速增加趋势,82 d时达最大峰值,之后则呈现下降趋势,但仍维持较高的数值;与单施氮肥处理相比,氮肥与有机肥配施可提高土壤日呼吸速率,并极显著提高土壤呼吸累积量(P<0.01),在施氮处理中,N1处理土壤呼吸累积量显著高于其它4个处理,而氮肥与有机肥配施处理中,施氮量对土壤呼吸累积量影响不显著。各处理5 cm、10 cm、15 cm处土壤温度与土壤日呼吸速率之间均呈显著指数相关性(P<0.05或P<0.01),敏感系数Q10值均随土层深度的增加呈增大趋势,其中,N1(187.5 kg hm~(-2))和MN1处理土壤日呼吸速率对温度的敏感性较强;表层(0~10 cm)土壤容重、pH值和有机碳含量与土壤呼吸累积量之间均有显著线性关系(P<0.05)。本试验条件下,连续有机肥与氮肥配施,可显著提高土壤呼吸,促进CO2排放。  相似文献   

11.
低氮和干旱胁迫对富士和秦冠生长及氮素利用的影响   总被引:2,自引:2,他引:0  
【目的】以富士(Fuji)、 秦冠(Qinguan)嫁接在平邑甜茶(Malus hupehensis Rehd.)上的当年生盆栽苗为试验材料,采用砂培方法,研究了缺氮胁迫和干旱对富士和秦冠生长情况、 光合参数、 植株各部位氮磷钾含量及氮素利用效率的影响,分析比较了低氮干旱条件下富士和秦冠生长及氮素利用的差异,以期为果树生产高效肥水利用提供理论指导。【方法】试验共设四个处理: 正常氮正常水(ZZ)、 低氮正常水(DZ)、 正常氮干旱(ZG)、 低氮干旱(DG)。氮素和水分均设置两个水平,分别为正常氮(6 mmol/L NO-3-N)、 低氮(0.3 mmol/LNO-3-N)、 正常供水(保持盆中砂子相对含水量为饱和含水量的80%~85%)、 干旱处理(保持盆中砂子相对含水量为饱和含水量的60%~65%)。【结果】富士和秦冠的生物量(茎和叶)、 株高茎粗等生长指标以及光合速率、 气孔导度、 蒸腾速率均为正常氮正常水(ZZ)>低氮正常水(DZ)>正常氮干旱(ZG)>低氮干旱(DG),并且相对应处理下秦冠的以上指标均高于富士;正常供水下,缺氮处理使富士、 秦冠的根冠比比正常氮处理均有所增加,富士提高了2.05%,秦冠提高了22.40%。富士和秦冠的氮、 磷、 钾含量均表现出正常氮正常水(ZZ)>低氮正常水(DZ)>正常氮干旱(ZG)>低氮干旱(DG); 氮、 钾元素含量在植株各部位的分布顺序依次是叶>根>茎,磷元素则是根>叶>茎;光合氮素利用效率(PNUE)和氮素利用效率表现为秦冠处理之间差异极显著,富士处理之间差异不显著;秦冠的PNUE和NUE明显高于富士,在低氮正常水(DZ)处理下,秦冠氮肥利用率比富士高42.07%,在低氮干旱(DG)处理下高64.14%;低氮胁迫下富士和秦冠的NUE显著提高,并且秦冠提高的幅度高于富士。【结论】施用氮肥能够显著提高富士与秦冠的干物质量,同等水肥条件下,秦冠生长优于富士;水分亏缺会减少叶片对氮的吸收,干旱条件下适度增施氮肥,可提高果树的抗旱能力;低氮干旱胁迫下秦冠的生长指标、 光合指标及氮素利用效率指标均优于富士,表现出较强的抗低氮干旱胁迫的能力。  相似文献   

12.
Laser-induced breakdown spectroscopy (LIBS) is a new technique for the analysis of plant material. This study investigates the application of LIBS to pasture-based plant samples. The LIBS measurements were obtained from pelletized pasture samples (100 samples) that had been also analyzed by inductively coupled plasma–optical emission spectroscopy (ICP-OES) following microwave digestion for calibration and comparison purposes. Comparisons for elements sodium (Na), potassium (K), magnesium (Mg), calcium (Ca), manganese (Mn), iron (Fe), copper (Cu), zinc (Zn), boron (B), phosphorus (P), and sulfur (S) showed that LIBS could be used for almost all the standard profile total elements with concentrations down to low mg/kg levels (observed error of Na: 0.024 percent, K: 0.18 percent, Mg: 0.016 percent, Ca: 0.073 percent, P: 0.017 percent, Mn: 31 mg/kg, Fe: 150 mg/kg, Zn: 6.6 mg/kg, and B: 1.1 mg/kg). Elemental analysis at less than mg/kg levels was not possible using LIBS. The elements S and Cu were particularly difficult to analyze with reliability using LIBS at the concentration levels found in the plant samples. Replacing microwave digestion and subsequent ICP analysis with a direct analysis of dried plant samples using LIBS has the potential to improve the productivity and reduce the cost of testing.  相似文献   

13.
正The Center for Agricultural Resources Research(CARR),the Institute of Genetics and Developmental Biology(IGDB),Chinese Academy of Sciences,invites applicants for several research group leader positions.CARR is one of the research organizations in Chinese Academy of Sciences(CAS).We seek nominations and applications from individuals who have expertise and a record of accomplishment in research areas related to ecology,agro-hydrology,  相似文献   

14.
“Wicked” problems are those that are complex and that change when solutions are applied. Many conflicts in conservation fall into this category. The study approached the problem of how to constrain the apparent wickedness of a problem in the conservation management of a species by using simple empirical indicators to carry out iterative assessment of the risk to a population and to document how this risk evolves in relation to the addition of new data and the implementation of management actions. Effects of high levels of uncertainty within data and also concerning population structure were examined through stochastic simulation and by exploration of scenarios. Historical trends in the example used, the Steller sea lion, showed rapid declines in abundance in some regions during the 1980s. The current total population is 130,000-150,000 Steller sea lions through Alaska and British Columbia and this number has been stable since about 1990 in spite of regional differences in population dynamics. Regional differences in the sequence of changes in the number of pups and non-pups, suggested that an internal re-distribution of juveniles could have happened between 1980 and 1990. Current productivity also appears close to the long-term mean. Stochastic population projection using various scenarios showed that, based upon this history, the risk of extinction for the population has declined and is below reasonable thresholds for considering the population to be endangered. The trends in risk suggest that management actions taken since 1990 have probably been effective. Consequently, the conservation management objectives for the Steller sea lion are probably being met. The approach provides a mechanism, based upon experience and scenario analysis, for exploring future policy options and may help to constrain the debate amongst stakeholders about the cost-benefit trade-offs associated with different options.  相似文献   

15.
Nutrient distributions under no tillage (NT) compared with conventional disk-and-bed tillage (CT) management in the warm, humid region of the southeastern USA need to be assessed so that future placement, quantity, and type of fertilizers can be altered, if necessary, to efficiently match crop demands. We determined soil-profile distributions of pH, N, P, S, K, Ca, Mg, Na, Zn, Fe, Mn, and Cu to a depth of 0.9 m at the end of 8.5 years of continuous CT and NT management on a Weswood silty clay loam (fine, mixed, thermic Fluventic Ustochrept) in southcentral Texas. Most dramatic changes occurred within the 0–0.05 m depth, where soil under NT had lower pH, Fe, and Cu than under CT, but greater P, K, Zn, and Mn. Greater P and K under NT than under CT also occurred below the till-zone (0.15–0.3 m). At a depth of 0–0.3 m, soil under NT contained greater amounts of extractable P, K, Zn, Fe, Mn, and Cu than under CT. Nitrogen fertilization had little effect on nutrient distributions, except resulting in greater extractable K at 0–0.05 m and greater nitrate at 0–0.15 m. Few changes in soil-profile distributions were observed for extractable S, Ca, Mg, and Na. Long-term continuous use of NT on this fine-textured, high-fertility (except for N) soil had no apparent adverse effects on nutrient distributions relative to CT, but enhanced conservation and availability of P, K, Zn, Fe, Mn, and Cu near the soil surface where crop roots proliferate.  相似文献   

16.
The responses of tallgrass prairie plant communities and ecosystem processes to fire and grazing are well characterized. However, responses of invertebrate consumer groups, and particularly soil-dwelling organisms, to these disturbances are not well known. At Konza Prairie Biological Station, we sampled soil macroinvertebrates in 1994 and 1999 as part of a long-term experiment designed to examine the effects and interactions of annual fire, mowing, and fertilization (N and P) on prairie soil communities and processes. For nearly all taxa, in both years, responses were characterized by significant treatment interactions, but some general patterns were evident. Introduced European earthworms (Aporrectodea spp. and Octolasion spp.) were most abundant in plots where fire was excluded, and the proportion of the total earthworm community consisting of introduced earthworms was greater in unburned, unmowed, and fertilized plots. Nymphs of two Cicada genera were collected (Cicadetta spp. and Tibicen spp.). Cicadetta nymphs were more abundant in burned plots, but mowing reduced their abundance. Tibicen nymphs were collected almost exclusively from unburned plots. Treatment effects on herbivorous beetle larvae (Scarabaeidae, Elateridae, and Curculionidae) were variable, but nutrient additions (N or P) usually resulted in greater densities, whereas mowing usually resulted in lower densities. Our results suggest that departures from historical disturbance regimes (i.e. frequent fire and grazing) may render soils more susceptible to increased numbers of European earthworms, and that interactions between fire, aboveground biomass removal, and vegetation responses affect the structure and composition of invertebrate communities in tallgrass prairie soils.  相似文献   

17.
Abstract

A 3-year study was carried out to investigate quality parameters in 14 tree fruit and berry species grown in southern Norway. The species were blueberry, apple, aronia, sour cherry, sweet cherry, red raspberry, strawberry, blackcurrant, gooseberry, red currant and elderberry, harvested along with wild bilberry, cloudberry and lingonberry. Significant differences between species were identified for all quality parameters. The coefficient of variation between species was lowest for pH (12.5%), dry matter (18.9%) and soluble solids (25.3%), followed by titratable acids (59.3%), total phenolics (83.8%), antioxidant capacity FRAP (85.7%) and antiradical power by the DPPH-assay (97.8%), total monomeric anthocyanins (132%) and ascorbic acid (137%). Average coefficient of variation within species were lower and ranged from 4 (pH) to 62% (ascorbic acid). Only the FRAP values were significantly affected by harvesting year with lower levels in 2004 than in 2005 and 2006. There were significant interactions between species and harvesting year for dry matter, soluble solids, pH, ascorbic acid and FRAP. The results indicate generic ranges in composition within species independent upon growing location and climate, and the composition of the tree fruits and berries is not likely to deviate from these ranges. It is concluded that desirable composition of tree fruits and berries and their products should primarily be achieved by selection among species rather than searching fors broadened variation within individual species.  相似文献   

18.
Potassium (K) fixation and release in soil are important factors in the long-term sustainability of a cropping system. Changes in K concentration and characteristics of K fixation and release in rhizosphere and nonrhizosphere soils in the rapeseed (Brassica napus L.)–rice (Oryza sativa L.) rotation were investigated using a rhizobox system. The concentrations of different forms of K in both rhizosphere and nonrhizosphere soils decreased with plants compared to without plants, regardless of K fertilizer application. Potassium uptake by crops mainly came from the rhizosphere soil. In the treatment without K fertilizer (–K), the main form of K supplied by the soil to the crops was 1.0 mol L?1 nitric acid (HNO3) nonextractable K, followed by nonexchangeable K, and then exchangeable K. In the treatment with K fertilizer (+K), the main K forms supplied by the soil to the crops were exchangeable K and nonexchangeable K. The amount and rate of K fixation after one cycle of the rapeseed–rice rotation was greater in rhizosphere soil than in nonrhizosphere soil. The amount and rate of K fixation of soil in the +K treatment were significantly less than in the –K treatment. The cumulative amounts of K released with 1.0 mol L?1 ammonium acetate (NH4OAc) and 1.0 mol L?1 HNO3 extraction increased with the increasing numbers of extractions, but the K-releasing power of soil by successive extraction decreased gradually and finally became almost constant. The release of K was less in rhizosphere soil than in nonrhizosphere soil. The release of K in the +K treatment was similar to that in the –K treatment in rhizosphere soil, but the K release in nonrhizosphere soil was greater with the +K than the –K treatment. Overall, the information obtained in this study will be helpful in formulating more precise K fertilizer recommendations for certain soils.  相似文献   

19.
Biologically enhanced dissolution offers a method to speed removal of chlorinated solvent dense non-aqueous-phase liquid (DNAPL) sources such as tetrachloroethene (PCE) and trichoroethene (TCE) from aquifers. Bioremediation is accomplished by adding an electron donor to the source zone where fermentation to intermediates leading to acetic acid and hydrogen results. The hydrogen and possibly acetic acid are used by dehalogenating bacteria to convert PCE and TCE to ethene and hydrochloric acid. Reductive dehalogenation is thus an acid forming process, and sufficient alkalinity must be present to maintain a near neutral pH. The bicarbonate alkalinity required to maintain pH above 6.5 is a function of the electron donor: 800 mg/L of bicarbonate alkalinity is sufficient to achieve about 1.2 mM TCE dechlorination with glucose, 1.7 mM with lactate, and a much higher 3.3 mM with formate. Laboratory studies indicate that in mixed culture, formate can be used as an electron donor for complete conversion to ethene, contrary to pure cultures studies indicating it cannot. Various strategies can be used to add electron donor to an aquifer for DNAPL dehalogenation while minimizing pH problems and excessive electron donor usage, including use of injection-extraction wells, dual recirculation wells, and nested injection-extraction wells.  相似文献   

20.
To evaluate the feasibility of long-term desert reforestation technology of mixed vegetation, cardon cactus (Pachycereus pringlei) seedlings from indoor and outdoor nurseries were planted in the field adjacent to one seedling of potential legume nurse trees: mesquite amargo (Prosopis articulata), yellow palo verde (Parkinsonia microphylla), and blue palo verde (Parkinsonia florida). Some of the planting holes were also supplemented with common dairy compost. Additionally, the combinations of legume tree–cactus were inoculated with either a consortium of desert arbuscular mycorrhizal (AM) fungi, plant growth promoting bacteria (PGPB; the diazotroph Azospirillum brasilense Cd, and the phosphate solubilizer Paenibacillus sp.), or a mixture of all. The field experiments were evaluated periodically during 30 months for survival and growth. Cardons reared in an outdoor screen house survived better in the field than those reared in a controlled growth chamber and hardened later outdoors. Association with any legume nurse tree increased survival and enhanced growth of untreated cardons. For cardons growing alone, application of either compost, AM fungi, and all the treatments combined increased survival. For these plants, no treatment affected plant growth during the first 3 months after transplanting. Later, all treatments, except for AM fungi, enhanced plant growth. However, only 2 years after transplanting the enhanced growth effect of AM fungi was also significant. In the presence of the legume nurse trees, transient positive effects on cardon growth were recorded. General evaluation after 30 months of cultivation showed that the treatments positively affected cardon growth when growing alone or in combination only with mesquite amargo but not with the other two legume trees. This study proposes that young legume trees have the capacity to enhance survival and growth of cardon cactus, depending on the legume cactus combination. Additional treatments such as compost or PGPB can either amplify the effect or else attenuate it.  相似文献   

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