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931.
基于云南昭通1958−2019年逐日气象观测数据、1978−2018年苹果种植统计数据和2010−2018年果园生产调查和观测数据,采用线性趋势分析、逐级订正等方法,探讨云南昭通苹果最大可能生育期内农业气候资源和农业气象灾害的变化特征,估算当地气候生产潜力,以高效合理利用农业气候资源、科学布局苹果产业。结果表明:(1)1958−2019年,云南昭通无霜期、稳定通过10℃的持续时间分别显著增加3.5d和4.5d,理论上能满足苹果生育所需,但昭通苹果花芽膨大期与终霜日和稳定通过10℃起始日期不匹配,成熟期与初霜日和稳定通过10℃终止日期不匹配。(2)根据云南昭通2010−2018年苹果实际生育期,明确了当地苹果最大可能生育期为稳定通过3℃起始日期−稳定通过13℃终止日期。1958−2019年,云南昭通苹果最大可能生育期内平均最低气温、平均气温和平均最高气温分别为11.8、16.1和22.6℃,分别以0.1、0.04和0.05℃·10a−1的速率增加;气温日较差平均为10.89℃,以0.2℃·10a−1的速率减少。降水量和日照时数分别以1.0mm·10a−1和6.7h·10a−1的速率减少。(3)过去62a,云南昭通苹果花期低温发生风险较低,不是当地苹果生长期内的主要农业气象灾害,连阴雨发生风险较高,且主要分布在苹果关键生育期6−9月。(4)在当地气候背景下,苹果最高理论产量约为94t·hm−2,光温、气候生产潜力分别占光合生产潜力的83.0%和76.0%,研究期内昭通果园实际产量仅为光合生产潜力的35.0%,统计产量仅为光合生产潜力的10.0%。随着技术进步和品种选育,果园实际产量与生产潜力的差距逐渐缩小。云南昭通气象条件能充分满足苹果生长发育,通过合理、高效栽植技术应用及对农业气候资源的充分挖掘,可进一步提高苹果产量,提升品质。  相似文献   
932.
Intensive vegetable production in greenhouses has rapidly expanded in China since the 1990s and increased to 1.3 million ha of farmland by 2016, which is the highest in the world. We conducted an 11‐year greenhouse vegetable production experiment from 2002 to 2013 to observe soil organic carbon (SOC) dynamics under three management systems, i.e., conventional (CON), integrated (ING), and intensive organic (ORG) farming. Soil samples (0–20 and 20–40 cm depth) were collected in 2002 and 2013 and separated into four particle‐size fractions, i.e., coarse sand (> 250 µm), fine sand (250–53 µm), silt (53–2 µm), and clay (< 2 µm). The SOC contents and δ13C values of the whole soil and the four particle‐size fractions were analyzed. After 11 years of vegetable farming, ORG and ING significantly increased SOC stocks (0–20 cm) by 4008 ± 36.6 and 2880 ± 365 kg C ha?1 y?1, respectively, 8.1‐ and 5.8‐times that of CON (494 ± 42.6 kg C ha?1 y?1). The SOC stock increase in ORG at 20–40 cm depth was 245 ± 66.4 kg C ha?1 y?1, significantly higher than in ING (66 ± 13.4 kg C ha?1 y?1) and CON (109 ± 44.8 kg C ha?1 y?1). Analyses of 13C revealed a significant increase in newly produced SOC in both soil layers in ORG. However, the carbon conversion efficiency (CE: increased organic carbon in soil divided by organic carbon input) was lower in ORG (14.4%–21.7%) than in ING (18.2%–27.4%). Among the four particle‐sizes in the 0–20 cm layer, the silt fraction exhibited the largest proportion of increase in SOC content (57.8% and 55.4% of the SOC increase in ORG and ING, respectively). A similar trend was detected in the 20–40 cm soil layer. Over all, intensive organic (ORG) vegetable production increases soil organic carbon but with a lower carbon conversion efficiency than integrated (ING) management.  相似文献   
933.
小麦秸秆长度、覆盖量对坡面产流产沙的影响   总被引:1,自引:0,他引:1  
为定量研究小麦秸秆覆盖对坡面产沙产流过程及减水减沙效益的影响,采用室内人工模拟降雨试验,研究在降雨强度为90 mm/h时,不同秸秆长度和秸秆覆盖量下的坡面产流产沙特征和产流产沙过程规律,结果表明:(1)在相同秸秆长度下,随秸秆覆盖量增加,产流量产沙量极显著减少(p0.01)。相同覆盖量水平下随秸秆长度增加,产流量显著增加(p0.05),在4.5 t/hm~2覆盖量下产沙量极显著增加(p0.01)。(2)秸秆覆盖坡面的初始产流时间较裸露坡面延迟6.23倍,产流量平均下降19.5%,产沙量下降31.6%。覆盖措施通过保护土壤的结构有效抑制了细沟侵蚀过程向切沟侵蚀发展。产流产沙过程受秸秆长度和覆盖量的交互作用影响,交互效应对产流过程的影响更突出。(3)随覆盖量增加,减水减沙效益极显著增加(p0.01);随长度增加,减水减沙效益分别减少为17.26%,27.97%。不同覆盖条件下的坡面产流量、产沙量和减水、减沙效益均与秸秆长度、秸秆覆盖量呈二元线性关系。(4)在当前试验条件下,当秸秆长度为3~5 cm,覆盖量为4.5 t/hm~2时达到最优减水减沙效益。  相似文献   
934.
Optimal management practices for nitrogen (N) fertilization is well defined for corn (Zea mays) cultivated during summer (“summer” corn), but not for corn cultivated during the fall (“fall” corn) in the tropics. Two experiments were carried out to evaluate N rates (50, 100, 200, and 300 kg N ha?1), N application timing (pre-planting – PP, V2–V3, and V5–V6) and N split application, once (at PP, V3, and V6), two (at V3+ V6) and three times (at PP+ V3+ V6) in corn cultivated during summer (2014/2015) and fall (2015/2016). Data on corn grain yield (CGY), weight of 1000-grains, leaf N content and values of soil-plant analyses development (SPAD) were collected and analyzed using univariate, multivariate (principal component analysis, PCA) and regression analysis. Results showed that corn growth was affected by N rates and splitting. Corn cultivated during summer presented higher CGY and weight-1000 g than corn cultivated during the fall. The highest yields were obtained with higher N rates on “summer” corn (125 kg N ha?1) than “fall” corn (50 kg N ha?1). Split N-application at vegetative growth stages, V3+ V6, or PP+ V2+ V6, provided higher yields for “summer” corn, while only PP application was a reliable period of N fertilization for “fall” corn. The finding is that corn cultivated during the fall presented a lower response to N and no obvious advantages to split N fertilization when compared to corn cultivated during summer. These optimal management practices for N fertilization in corn production in the tropics depend on soil water availability.  相似文献   
935.
Field experiments were conducted to study soil properties, soil enzymes activities, water use efficiency (WUE) and crop productivity after six years of soya bean straw mulching in the semi‐arid conditions of China. The experiment included four treatments: CK (Control), N (240 kg N ha‐1), H (soya bean straw mulching at half rate 700 kg ha‐1 with 240 kg N ha‐1) and F (soya bean straw mulching at full rate 1,400 kg ha‐1 with 240 kg N ha‐1). Soil organic carbon (SOC), soil labile organic carbon (LOC), soil available N (AN), available P (AP) and enzyme activities were analysed after wheat harvesting in 2016 and 2017. Results show that straw amounts had positive effects on the soil fertility indices being higher for treatment F. The SOC, LOC, AN, AP and enzyme activities (i.e. saccharase, urease and alkaline phosphatase) were in the order of F > H > N > CK. High wheat grain yield and WUE were observed for F treatment. A total of six years mulching along with 240 kg ha‐1 nitrogen fertilizer application is sufficient for wheat yield stability and improving soil properties except urease activities in the semi‐arid condition of China. However, the straw mulching amount should be further studied with minimum nitrogen fertilizer for an environment‐friendly and effective approach for improving the soil biological properties with adequate crop production on a sustainable basis in the semi‐arid region of China.  相似文献   
936.
Summary A field experiment was conducted for 3 years to determine whether increasing extractable soil P levels would affect vesicular-arbuscular mycorrhizae (VAM) of maize (Zea mays L.) and the subsequent uptake of P and production of dry matter. Five levels of extractable soil P were established on an Aquic Dystrochrept soil with high and low NK fertilization. The results show that as extractable soil-P levels increase the vesicular-arbuscular mycorrhizae of maize decrease, but P concentrations in both leaf and root tissue increase. There was a significant interaction between the extractable soil-P levels and NK treatment. At the low soil-P level NK fertilization increased mycorrhizae, while at the high soil-P levels NK fertilization reduced mycorrhizae. Dry-matter production generally paralleled extractable soil-P levels from 1.0 mg P kg–1 to a maximum at 10 mg P kg–1 soil (by ammonium acetate, pH 4.8). The reduction in vesicular-arbuscular mycorrhizae at the highest levels of extractable soil P apparently was not critical to either P uptake or dry-matter production.Scientific contribution No. 1196 Storrs Agricultural Experiment Station  相似文献   
937.
田林老山中山杉木人工林生产力及营养元素循环的研究   总被引:3,自引:0,他引:3  
广西田林县老山林场中山区气候冷凉潮湿,土壤肥力较高,能满足杉木速生要求。17年生杉木人工林乔木层的生物量达138.46t/ha,平均净生产量为8.15t/ha·a,与杉木中心产区相当。乔木层对N,P,K,Ca,Mg5种营养元素的吸收量为224.04kg/ha·a,其中42.3%存留在林木层,42.5%通过凋落物,15.2%通过降雨淋洗归还土壤。通过凋落物归还是N,P,Ca,Mg归还的主要途径,K的归还主要通过降雨淋洗;K,Ca,Mg的循环系数较大,分别达到0.58,0.68和0.60;N,P相对较小,分别为0.48和0.33。林木正处于生长旺盛阶段,杉木对5种营养元素的吸收量、存留量和归还量以及循环系数都有较高水平,生物量积累也较大。  相似文献   
938.
半干旱黄土区沙棘的水分生理生态与形态解剖学特性研究   总被引:6,自引:0,他引:6  
李代琼 《水土保持研究》1998,5(1):97-102,125
1986~1997年在半干旱黄土区的陕西吴旗、安塞县和宁夏固原县,对沙棘进行了蒸腾、净初级生产量、土壤水分等生理生态和形态解剖学特性研究。试验结果表明:沙棘每生产lg地上干物质,总耗水量为711~829g,其中蒸腾耗水量为551~654g,该地区荒山植被生产lg地上干物质蒸腾耗水量为343~709g,总耗水量却达2540~4501g。水分利用效率为1.21~1.53g/(m2·mm),是荒山植被的3.1~6.4倍。沙棘水分利用效率较高,水分生产潜力较大。观察沙棘叶、根具有耐大气干旱、耐高温和水湿的形态解剖学特性,说明沙棘有较强的生态适应性。因而在半干旱黄土区的荒山、荒沟,营造沙棘林,能有效利用水土资源,这是快速治理荒山,提高土地生产力的有效途径之一。  相似文献   
939.
砖红壤施用中量、微量元素对甘蔗产量与糖分的效应   总被引:10,自引:1,他引:10  
郭荣发  陈爱珠 《土壤》2004,36(3):323-326,330
在雷州半岛玄武岩发育的种植甘蔗砖红壤上施用Ca、Mg、B、Mo、Fe、Cu、Zn肥料,探究这些中量与微量元素对甘蔗的产量与糖分的效应。结果表明:Ca、Mg、B、Mo肥对甘蔗有显著增产效应,而Fe肥具有显著减产效应。B、Mo、Fe、Cu肥能显著提高甘蔗含糖量,而Mg肥具有降低甘蔗糖分的效应。Ca、B、Mo3种肥料相互配施的增产或增糖效果均不优于单施的效果。从对甘蔗产量和含糖量综合效果看,甘蔗施用B、Mo、Ca肥分别能产生显著经济效益。因此,在玄武岩发育砖红壤上种植甘蔗,建议施用Mo、B、Ca肥。  相似文献   
940.
回顾了国内外流域侵蚀产沙模型的发展过程 ,对各类产流产沙模型的特点进行了比较。介绍了物理成因模型的概念及当前研究工作中存在的问题  相似文献   
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