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1.
采用热重法对甜高粱茎秆残渣四个样品(原生物质、盐酸酸洗、3%氯化钾加入及10%氯化钾加入)的热解动力学进行了研究。结果表明4个样品的热解可分为4个阶段,随着升温速率的提高,主反应区热重曲线和微分热重曲线都向高温方向移动,热解最大速率以及相对应的温度随之提高;盐酸酸洗有利于挥发分的生成,一定量氯化钾的参与可以提高炭产量。Satava机理函数推断法得出原生物质和氯化钾加入的甜高粱茎秆残渣热解符合Zhuralev-Lesakin-Tempelman方程-三维扩散;酸洗甜高粱茎秆残渣热解符合Valensi方程-二维扩散,圆柱形对称。 相似文献
2.
Evolution of organic matter and nitrogen during co-composting of olive mill wastewater with solid organic wastes 总被引:7,自引:0,他引:7
C. Paredes A. Roig M. P. Bernal M. A. Sánchez-Monedero J. Cegarra 《Biology and Fertility of Soils》2000,32(3):222-227
Four olive mill wastewater (OMW) composts, prepared with three N-rich organic wastes and two different bulking agents, were
studied in a pilot plant using the Rutgers system. Organic matter (OM) losses during composting followed a first-order kinetic
equation in all the piles, the slowest being the OM mineralisation rate in the pile using maize straw (MS). The highest N
losses through NH3 volatilisation occurred in the mixtures which had a low initial C/N ratio and high pH values during the process. Such losses
were reduced considerably when MS was used as the bulking agent instead of cotton waste (CW). N fixation activity increased
during the bio-oxidative phase before falling during maturation. This N fixation capacity was higher in piles with a lower
NH4
+-N concentration. Only the composts prepared with OMW, CW and poultry manure or sewage sludge reached water-soluble organic
C (CW) and NH4
+-N concentrations and CW/Norg and NH4
+/NO3
– ratios within the established limits which indicate a good degree of compost maturity. Increases in the cation-exchange capacity,
the percentage of humic acid-like C and the polymerisation ratio revealed that the OM had been humified during composting.
The germination index indicated the reduction of phytotoxicity during composting.
Received: 14 June 1999 相似文献
3.
采用正交试验设计,探索不同的液固比、pH值、温度和混合酶配比对甜高粱秆渣的水解情况,并在此基础上研究了混合酶对经漆酶和高压蒸汽预处理的甜高粱秆渣的水解情况。结果表明,混合酶水解的最佳条件为液固比11∶1、pH值3.6、30℃、果胶酶∶纤维素酶∶半纤维素酶=1∶1∶2,该条件下的水解效率要好于纤维素酶单独的水解效率,经漆酶和高压蒸汽预处理的甜高粱秆渣的酶解效率得到显著提高,浸润于不同溶液中的甜高粱秆渣经高压蒸汽预处理并酶解,其葡萄糖收率有所不同,且在溶液中加入KMnO4后再进行高压蒸汽处理,能进一步提高葡萄糖收率。 相似文献
4.
为了研究NaCl胁迫下氮肥对甜高粱种子萌发及芽苗生长和生理特性的影响,探索提高甜高粱耐盐能力的措施,室内设置不同盐分浓度、不同氮源及浓度条件下甜高粱萌芽试验。结果表明:NaCl胁迫和不同氮源对甜高粱发芽和芽苗生长的影响各有不同。NaCl浓度对甜高粱种子萌发有显著影响,在甜高粱芽苗生长阶段,通过提高保护酶活性和渗透调节物质而增强耐盐伤害能力是有限的。100 mmol.L 1NaCl胁迫下,根系POD活性最低,而叶片MDA积累量、可溶性糖含量、POD活性最高,受盐害程度最大。没有盐胁迫情况下增加不同氮源及氮量对甜高粱根叶生理特性的影响差异显著,当氮浓度在20 mmol.L 1时,细胞受伤害程度最低,生长最好。不同形态氮源对甜高粱发芽和幼苗生长的影响差异明显,NH4Cl的促进效果优于KNO3。在100mmol.L 1的NaCl胁迫下,施加铵态氮或硝态氮源均可以增强甜高粱芽苗期的POD活性,减少MDA积累,从而缓解盐胁迫带来的伤害。研究表明采取适当的氮肥调控措施可以提高甜高粱的耐盐能力。 相似文献
5.
甜高粱茎汁及茎渣同步糖化发酵工艺优化 总被引:1,自引:2,他引:1
为了提高甜高粱秸秆乙醇生产中茎汁和茎渣的利用,以甜高粱茎汁及其渣为发酵原料,对茎汁茎渣混合原料同步糖化乙醇发酵的工艺条件进行优化研究。采用Plackett-Burman(PB)筛选设计试验筛选出影响甜高粱茎秆渣汁同步糖化乙醇发酵的显著因素。采用响应面法建立了同步糖化发酵乙醇生产的乙醇产量数学模型。根据该模型进行了工艺参数的优化,以乙醇产量为指标,试验所得甜高粱茎秆渣汁同步糖化化乙醇发酵的优化工艺条件为:发酵温度36.58℃,混合纤维素酶添加量=23.5(FBU/m L)/35.25(CBU/m L),甜高粱渣汁质量体积比为8.2%,理论预测乙醇产量为89.2%,在此条件下进行验证试验,乙醇产量为88.98%,平均质量浓度,验证了数学模型的有效性,为提高甜高粱茎汁及茎渣混合原料同步糖化发酵产乙醇和提高发酵效率提供参考。 相似文献
6.
为实现生物质甜高粱渣的青贮强化预处理和能源化利用,该研究探究了不同添加剂对其青贮质量和酶解糖化效果的影响。试验设置对照组(CK组)、植物乳杆菌组(L组)、纤维复合酶组(E组)和复合添加剂组(LE组),系统考察甜高粱渣在21 d青贮预处理期间的营养成分、木质纤维组分和发酵品质的动态变化,采用隶属函数法评价青贮质量,利用高通量测序技术分析青贮预处理过程的微生物菌群动态演绎。结合酶解糖化性能评价青贮预处理作用的强化效果,从而筛选适宜的添加剂。结果表明:青贮预处理后甜高粱渣的粗蛋白、淀粉、中性洗涤纤维、酸性洗涤纤维、半纤维素和纤维素等能量组分含量显著高于原料(P<0.05)。青贮21d时,3个添加剂组的干物质、可溶性碳水化合物和粗蛋白含量显著高于CK组(P<0.05),综纤维素含量显著低于CK组(P<0.05),且E组的干物质含量最高,L组的粗蛋白含量最高,E组和LE组的可溶性碳水化合物含量最高。青贮预处理期间,3 个添加剂组的pH值均低于4.2,L组的乳酸和乙酸含量明显高于CK组(P<0.05),E组的乳酸/乙酸和乳酸/总有机酸比值显著高于CK组(P<0.05)。隶属函数法综合评价E组的青贮发酵质量最高。微生物菌群结果显示,甜高粱渣经青贮预处理后,3个添加剂组的细菌菌群丰富度和多样性都明显下降,门水平细菌主要以变形菌为主,属水平细菌主要包含肠杆菌、泛菌、明串珠菌、魏斯氏菌、拉恩氏菌和葡糖杆菌等,这些微生物与青贮质量密切相关。甜高粱渣经青贮预处理后的还原糖得率显著提升,尤其E组得率比原料提高了117%。结合成本效益法分析,利用纤维复合酶对甜高粱渣进行青贮强化处理的E组纯收益最高,较甜高粱渣原料提高了近三倍。总之,单独添加纤维复合酶不仅能明显改善甜高粱渣的青贮发酵质量,实现稳定保存,还能使其青贮预处理作用得到强化,进而提高甜高粱渣的生物降解性能,是一种经济合理、技术可行的青贮预处理强化方法。 相似文献
7.
Carbon and nitrogen sequestration and soil aggregation under sorghum cropping sequences 总被引:7,自引:0,他引:7
Management practices, such as no tillage (NT) and intensive cropping, have potential to increase C and N sequestration in agricultural soils. The objectives of this study were to investigate the impacts of conventional tillage (CT), NT, and cropping intensity on soil organic C (SOC) and N (SON) sequestration and on distribution within aggregate-size fractions in a central Texas soil after 20 years of treatment imposition. Tillage regime and cropping sequence significantly impacted both SOC and SON sequestration. At 0–5 cm, NT increased SOC storage compared to CT by 33% and 97% and SON storage by 25% and 117% for a sorghum/wheat/soybean (SWS) rotation and a continuous sorghum monoculture, respectively. Total SOC and SON storage at both 0–5 and 5–15 cm was greater for SWS than continuous sorghum regardless of tillage regime. The majority of SOC and SON storage at 0–5 cm was observed in 250-m to 2-mm aggregates, and at 5–15 cm, in the >2-mm and 250-m to 2-mm fractions. Averaged across cropping sequences at 0–5 cm, NT increased SOC storage compared to CT by 212%, 96%, 0%, and 31%, and SON storage by 122%, 92%, 0%, and 37% in >2-mm, 250-m to 2-mm, 53- to 250-m, and <53-m aggregate-size fractions. No tillage and increased cropping intensity improved soil fertility by increasing soil organic matter levels and potential nutrient supply to crops. 相似文献
8.
《Communications in Soil Science and Plant Analysis》2012,43(7):693-706
Abstract In spite of a high N requirement, sweet sorghum hasn't shown a consistent response to N fertilization. This research was designed to study the effect of N fertilization on sweet sorghum as affected by rates and time of N application. Five experiments were conducted under field conditions, where 0, 50, 100 and 150 kg N/ha were applied at sowing, and 35, 40, 55, 60 and 80 days after plant emergence. The soil had textures varying from sandy loam to clay, and organic matter contents from 0.67% to 1.9%. The highest yields were observed when N was applied early in the season, showing that for sweet sorghum, sidedressing with N is not necessary. All the N can be applied at planting time, which allows the highest fertilizer use efficiency. On the other hand, late applications of N fertilizer (after 40 days), when the floral primordia is already visible, has little effect on stalk or grain yield. In this situation, a double or triple rate had to be applied to overcome the low efficiency of N utilization. There was no great advantage in splitting the sidedressed N rate. On the other hand, it was impossible to link the response to N to soil analysis as performed in most of Brazilian laboratories. 相似文献
9.
逆境补偿效应在作物中普遍存在,对作物生长发育与产量产生重要的影响。为阐明土壤盐度降低后甜高粱的补偿生长效应,本研究采用盆栽方法,将甜高粱拔节期的土壤含盐量设置3个梯度:5 g×kg~(-1)(高盐处理)、由5 g×kg~(-1)降低到2 g×kg~(-1)(盐度降低处理)、2 g×kg~(-1)(低盐对照),测定2个甜高粱品种地上部器官(茎秆、叶片、叶鞘)干物质生长速率与积累,以及盐离子(Na~+、Cl~-、K~+)在不同器官的含量。结果表明:高盐处理甜高粱地上部干物质增长速率一直显著低于对照;土壤盐度降低后,各器官干物质生长速率明显升高,并超过对照,产生了超补偿效应。成熟期高盐处理株高与地上部干物质大幅下降;土壤盐度降低后‘辽甜1号’的株高与地上部干物质较低盐对照分别下降7.69%和33.21%,而‘中科甜3号’的株高和地上部干物质重与对照没有差异。高盐处理后各器官干物质中Na+和Cl-含量较对照大幅度提高,K+含量增加幅度较小。土壤盐分降低后的35 d,甜高粱Na+和Cl-在各器官中含量虽仍高于对照,但比高盐处理已大幅下降;茎秆与叶鞘K+的含量较对照有小幅提高,而叶片K+含量与对照无显著差异。本研究表明:甜高粱盐胁迫降低后离子毒害减轻、生长速率加快直至超过对照,耐盐甜高粱品种补偿效应尤为明显,成熟期干物质产量可与对照相当。本研究结果可为盐碱地甜高粱栽培提供理论依据。 相似文献
10.
甜玉米/白三叶草秸秆还田的碳氮矿化研究 总被引:4,自引:0,他引:4
豆科/禾本科作物间套作后进行秸秆还田能补充土壤养分,缓解集约化农业生产对环境的压力.根据田间甜玉米/白三叶草套种各作物的秸秆产量,在恒温恒湿条件下进行室内培养,探讨秸秆不同方式还田后土壤微生物量碳、微生物量氮、呼吸产生的CO2和矿化产生的无机氮的变化规律.研究发现,各施肥处理的土壤微生物量碳、微生物量氮均在培养前期出现峰值,后期平稳降低;甜玉米秸秆和白三叶草绿肥同时还田的土壤微生物量碳、微生物量氮在各培养时期均最大,峰值分别达529.57 mg·kg-1和75.50 mg·kg-1,土壤呼吸产生的CO2最多;白三叶草绿肥单独还田有利于土壤无机氮的释放,培养第26 d 无机氮达到最大值,为29.81 mg·kg-1,之后一直在对照处理的1.60倍以上,第80 d达到2.48倍;甜玉米秸秆单独还田不利于土壤无机氮的释放,培养的第26 d至结束,甜玉米秸秆处理的无机氮为对照的13%~53%,最大为7.51 mg·kg-1;甜玉米秸秆配施尿素,短期内不利于土壤无机氮矿化.结果表明,施用有机物料能引起土壤有机质的短期快速转化,甜玉米秸秆和白三叶草绿肥配施有利于维持较大基数的土壤微生物量,单施白三叶草绿肥土壤微生物活性强,最有利于土壤速效氮的释放. 相似文献
11.
除氨菌系对牛粪堆肥氮素转化的影响 总被引:1,自引:0,他引:1
为了减轻牛粪堆肥过程中NH3释放对环境的污染及氮素损失,在牛粪堆肥时添加除氨菌系,研究其对氮素形态转化的影响。加除氨菌系处理的NH4+-N、NH3较对照分别降低20.47%和61.21%,全氮、NO3--N较对照分别提高11.63%和65.01%,酸解有机氮、氨基酸态氮、酰胺态氮和氨基糖态氮含量分别提高12.42%、11.26%、16.92%和19.51%。表明除氨菌系在牛粪堆肥过程中,能够固定NH4+-N向有机氮各组分转化,减少NH3挥发,具有较好的保氮作用。 相似文献
12.
发酵玉米芯或甘蔗渣基质的黄瓜育苗效果 总被引:13,自引:4,他引:13
该文以完全发酵后的玉米芯/甘蔗渣为原料,添加不同体积的草炭、蛭石进行混合配比后的复合基质作为黄瓜育苗基质,黄瓜品种中农26为试验材料,以商品育苗基质作为对照。探讨使用玉米芯、甘蔗渣复合基质时对黄瓜育苗的影响,旨在分别选出适合黄瓜幼苗生长的较优处理。试验结果表明:处理T4(玉米芯:蛭石:草炭体积比=1:1:1)和处理T6(甘蔗渣:蛭石体积比=1:1)复合基质基本符合黄瓜育苗基质的要求,并且处理T6的株高(22.17 cm)、处理T4和处理T6的茎粗(分别为4.03和3.97 mm)显著高于对照,与此同时处理T4和处理T6的地上鲜质量(分别为5.01和4.63 g),地上干质量(分别0.94和1.19 g)等生长指标与对照无显著差异,同时处理T6其综合评价系数为0.712高于对照及其他处理,而处理T4综合评价系数优于含有玉米芯的其他处理并且与对照差异不明显,所以处理T6和处理T4可以作为黄瓜育苗基质使用。 相似文献
13.
减量施氮与间作大豆对华南地区甜玉米农田氮平衡的影响 总被引:3,自引:1,他引:3
本文在广东广州华南农业大学试验中心,通过大田定位试验(2015—2016年两年4季)对比了两种施氮水平[减量施氮(300 kg·hm~(-2),N1)和常规施氮(360 kg·hm~(-2),N2)]、3种种植模式[甜玉米单作(SS)、甜玉米//大豆2∶3间作(S2B3)、甜玉米//大豆2∶4间作(S2B4)]农田生态系统的氮素输入、输出和平衡状况,旨在为减少化学氮肥投入水平,提高氮素利用效率,在华南地区发展环境友好型的玉米可持续生产模式提供科学依据。结果表明:1)减量施氮与甜玉米//大豆间作降低了系统氮素总输入量,大豆固氮和秸秆还田降低了化肥氮输入的比重,与常规施氮相比,减量施氮下SS、S2B3和S2B4的化肥氮输入占年均氮素总输入的比例分别下降3.24%、3.64%和3.77%。2)间作大豆增加了系统籽粒氮素累积量,N1和N2处理甜玉米//大豆间作的年均籽粒氮素累积量分别是单作甜玉米的2.43倍和2.18倍;减量施氮与甜玉米//大豆间作能降低甜玉米农田氮素损失,N1和N2处理甜玉米//大豆间作的年均氨挥发量分别比单作甜玉米低39.02%和27.26%;间作甜玉米的氮淋溶量比单作低13.85%。3)减量施氮与间作大豆显著降低了系统氮素盈余量,S2B3-N1、S2B3-N2和S2B4-N1、S2B4-N2年均氮素盈余量分别为71.03 kg·hm~(-2)、133.7 kg·hm~(-2)和42.87 kg·hm~(-2)、100.64 kg·hm~(-2),分别比SS处理N1和N2的平均值减少81.27%、64.75%和88.69%、73.47%。因此,减量施氮甜玉米//大豆间作模式能维持系统作物产量、减少生产成本、降低环境污染风险,具有较高的经济和生态效益。 相似文献
14.
Jose G. Guzman Chad B. Godsey Gary M. Pierzynski David A. Whitney Ray E. Lamond 《Soil & Tillage Research》2006,91(1-2):199-206
Long-term tillage and nitrogen (N) management practices can have a profound impact on soil properties and nutrient availability. A great deal of research evaluating tillage and N applications on soil chemical properties has been conducted with continuous corn (Zea Mays L.) throughout the Midwest, but not on continuous grain sorghum (Sorghum bicolor (L.) Moench). The objective of this experiment was to examine the long-term effects of tillage and nitrogen applications on soil physical and chemical properties at different depths after 23 years of continuous sorghum under no-till (NT) and conventional till (CT) (fall chisel-field cultivation prior to planting) systems. Ammonium nitrate (AN), urea, and a slow release form of urea were surface broadcast at rates of 34, 67, and 135 kg N ha−1. Soil samples were taken to a depth of 15 cm and separated into 2.5 cm increments. As a result of lime applied to the soil surface, soil pH in the NT and CT plots decreased with depth, ranging from 6.9 to 5.7 in the NT plots and from 6.5 to 5.9 in the CT plots. Bray-1 extractable P and NH4OAc extractable K was 20 and 49 mg kg−1 higher, respectively, in the surface 2.5 cm of NT compared to CT. Extractable Ca was not greatly influenced by tillage but extractable Mg was higher for CT compared to NT below 2.5 cm. Organic carbon (OC) under NT was significantly higher in the surface 7.5 cm of soil compared to CT. Averaged across N rates, NT had 2.7 Mg ha−1 more C than CT in the surface 7.5 cm of soil. Bulk density (Δb) of the CT was lower at 1.07 g cm−3 while Δb of NT plots was 1.13 g cm−3. This study demonstrated the effect tillage has on the distribution and concentration of certain chemical soil properties. 相似文献
15.
A. Mando M. Bonzi M.C.S. Wopereis F. Lompo L. Stroosnijder 《Soil Use and Management》2005,21(4):396-401
Abstract. Knowledge of changes in soil organic matter (SOM) fractions resulting from agricultural practice is important for decision‐making at farm level because of the contrasting effects of different SOM fractions on soils. A long‐term trial sited under Sudano‐Sahelian conditions was used to assess the effect of organic and inorganic fertilization on SOM fractions and sorghum performance. Sorghum straw and kraal manure were applied annually at 10 t ha?1, with and without urea at 60 kg N ha?1. The other treatments included fallowing, a control (no fertilization), and inorganic fertilization only (urea, 60 kg N ha?1). Fallowing gave significantly larger soil organic carbon and nitrogen (N) levels than any other treatment. Total soil SOM and N concentrations increased in the following order: urea only < straw < control < straw+urea < manure with or without urea < fallow. Farming had an adverse effect on SOM and N status; however, this mostly affected the fraction of SOM >0.053 mm (particulate organic matter, POM). The POM concentrations in the control, straw and urea‐only treatments were about one‐half of the POM concentrations in the fallow treatment. POM concentrations increased in the following order: urea only < control < straw with or without urea < manure with or without urea < fallow. The fraction of SOM <0.053 mm (fine organic matter, FOM) was greater than POM in all plots except in fallow and manure+urea plots. Total N concentration followed the same trend as SOM, but cultivation led to a decline in both POM‐N and FOM‐N. Crop yield was greatest in the manure plots and lowest in the straw, control and urea‐only plots. Results indicate that under Sudano‐Sahelian conditions, SOM, POM and FOM fractions and crop performance were better maintained using organic materials with a low C/N ratio (manure) than with organic material with a high C/N ratio (straw). Urea improved the effect of straw on crop yield and SOM concentration. 相似文献
16.
甜高粱耐盐材料的筛选及芽苗期耐盐性相关分析 总被引:13,自引:0,他引:13
在0、200mmol·L-1NaCl盐浓度下对39个甜高粱材料进行了耐盐性鉴定,并探讨了甜高粱耐盐指标的相关性,以初步筛选的耐盐级别不同的10个甜高粱材料为对象,研究了0、70mmol·L-1、140mmol·L-1、210mmol·L-1NaCl盐浓度对甜高粱芽苗期形态指标及其盐害率的影响,最后利用盐害率的隶属函数值综合评价了10个甜高粱材料的耐盐性。结果发现,"丽欧"、"泰斯"耐盐性最强,"BJK236"、"Mer-72-2"对盐胁迫较敏感。盐胁迫下甜高粱发芽率、发芽指数、发芽势、活力指数、芽长、根长、芽鲜重、根鲜重8个指标均与对照差异显著(P0.05)。随着盐浓度增加,这8项指标的盐害率增大,且与盐浓度均极显著相关(P0.01);其中随着盐浓度的增大,发芽相对盐害率与发芽势、发芽指数、活力指数盐害率的相关性越来越大,由显著相关(P0.05)到极显著相关(P0.01)。综合评价10个甜高粱材料耐盐强弱顺序为:"泰斯""甜132""BJK19""BJK156""考利""吉甜3""威利""凯勒""戴尔""吉甜2"。 相似文献
17.
T. B. RAMOS N. L. CASTANHEIRA M. C. GONALVES M. L. FERNANDES M. I. JANURIO M. E. LOURENO F. P. PIRES J. C. MARTINS 《土壤圈》2012,22(6):785-794
Soil salinization and non-point source pollution are among the most important and widespread environmental problems in European Mediterranean regions. Sweet sorghum (Sorghum bicolor (L.) Moench var. saccharatum) is a moderate to high salinity tolerant crop with low water and nutrient needs, seen as an alternative to grow in the water scarce regions. A three-year multifactorial study was conducted in southern Portugal to evaluate the combined effects of saline water and nitrogen application on the dry biomass (total, stems, and leaves), sugar content (total reducing sugars and sucrose contents), and sugar yield (here defined as the product of total reducing sugars and stems dry biomass) functions of sweet sorghum. Sorghum dry biomass and sugar yield showed diminishing returns for each incremental change of nitrogen. The use of saline irrigation waters also led to yield reduction. Exception was sucrose content which increased with increasing levels of sodium in the soil. Nitrogen need decreased as the amount of sodium applied increased. Stem dry biomass, sucrose content, and sugar yield progressively increased with progress in the experiment. The effect could be attributed to the increase of the amount of irrigation applied throughout the years, thus increasing the leaching fraction which promoted salt leaching from the root zone, reduced the salinity stress, increased plant transpiration, nitrogen uptake and biomass yield. 相似文献
18.
利用外源微生物进行牛粪高温好氧堆肥试验,研究堆肥过程中不同形态有机态氮组分的变化规律。结果表明,全氮与酸水解氮均呈下降趋势,与不加外源微生物处理相比,外源微生物处理只是加速全氮与酸水解氮含量的降低,并没有引起氮素过多的损失;氨基酸态氮呈现先降低后增加的趋势,堆肥结束时,外源微生物处理含量明显高于不加微生物处理;酰胺态氮与氨基糖态氮各处理含量都在升温期、高温期增加,然后随着堆肥温度的下降而降低,在腐熟期则呈现较平稳的走势。在堆肥的不同时期,外源微生物处理酰胺态氮含量明显低于不加微生物处理,而氨基糖态氮则相反。 相似文献
19.
能源作物甜高粱培育及能量转换技术研究 总被引:3,自引:0,他引:3
本文通过对选育的甜高粱杂交品种进行适应性种植试验,以及茎秆汁液发酵生产酒精的酒精转化试验,证明该品种具有杂交优势明显、生物产量高、发酵糖比例高、生长周期适宜、耐旱性较强、茎秆汁液酒精转化率高等特点。 相似文献
20.
氮肥用量对滨海滩涂区甘薯干物质积累、氮素效率和钾钠吸收的影响 总被引:8,自引:0,他引:8
我国沿海滩涂种植能源作物甘薯有广阔的前景。为确定苏北滩涂区甘薯适宜施氮量,比较了6个施氮水平下甘薯的成活率(SR)、商品率(CR)、蔓薯比(V/T)、干物质积累(DMA)、氮素累积值(NAV)、氮利用效率(NUE)、氮收获指数(NHI)及钾钠吸收的差异。结果表明:(1)施氮量与甘薯地上部分DMA和NAV均呈极显著正相关(P<0.01,余同),对地下部分NAV影响较小(P>0.05)。(2)与不施氮比较,施氮60 kg(N)·hm-2对甘薯的V/T、SR、NUE和NHI均无显著影响。(3)甘薯的CR、地下部分和块根DMA以及理论产量(NAV×NUE×NHI)均以施氮60 kg(N)·hm-2显著高于其他处理。施氮量超过60 kg(N)·hm-2,施氮量与甘薯的V/T值呈极显著正相关,与SR、CR、NUE、NHI、地下部分和块根DMA均呈极显著负相关。(4)甘薯对钾钠的吸收量均随施氮量的增加而增加,二者呈极显著正相关。甘薯地上部分钾钠含量均在施氮量为60 kg(N)·hm-2时达到最高值。施氮量对钾钠含量比没有影响。因此,苏北滩涂区甘薯适宜施氮量为60 kg(N)·hm-2。 相似文献