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41.
Yi Zhao Shuxia Wu Roland Bol Mansoor Ahmed Bughio Wenliang Wu Yecui Hu Fanqiao Meng 《植物养料与土壤学杂志》2020,183(2):155-168
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
42.
Specific ion effects (Hofmeister effects) have recently attracted the attention of soil scientists, and it has been found that ionic non-classic polarization plays an important role in the specific ion effect in soil. However, this explanation cannot be applied to H+. The aim of this work was to characterize the specific ion effect of H+ on variably charged soil (yellow soil) colloid aggregation. The total average aggregation (TAA) rate, critical coagulation concentration (CCC), activation energy, and zeta potential were used to characterize and compare the specific ion effects of H+, K+, and Na+. Results showed that strong specific ion effects of H+, K+, and Na+ existed in variably charged soil colloid aggregation. The TAA rate, CCC, and activation energy were sensitive to H+, and the addition of a small amount of H+ changed the TAA rate, CCC, and activation energy markedly. The zeta potential results indicated that the specific ion effects of H+, K+, and Na+ on soil colloid aggregation were caused by the specific ion effects of H+, K+, and Na+ on the soil electric field strength. In addition, the origin of the specific ion effect for H+ was its chemical adsorption onto surfaces, while those for alkali cations were non-classic polarization. This study indicated that H+, which occurs naturally in variably charged soils, will dominate variably charged soil colloid aggregation. 相似文献
43.
基于DTW距离的拖拉机传动轴载荷样本长度计算方法 总被引:2,自引:2,他引:0
针对工程领域载荷样本长度确定方法对农业机械载荷适用性较差的问题,提出了一种基于动态时间扭曲(DTW,Dynamic Time Warping)距离计算载荷样本长度的方法。首先,运用无线扭矩传感器获取犁耕作业下拖拉机传动轴的动态载荷,结合传动轴犁耕作业下的载荷特点,划分作业工况;再将作业循环叠加并经过归一化处理后进行DTW距离计算,确定传动轴载荷样本长度;最后,计算参数外推中均值混合正态分布函数的拟合参数相对误差。结果表明,运用DTW距离方法确定的载荷样本长度,能够使均值双正态分布函数拟合得到的参数相对误差保证在10%以内。近似均值精度估计法和均值曲线拟合法的拟合参数相对误差最大值分别为126.06%和80.62%,而基于DTW距离计算方法的拟合参数相对误差最大值为5.43%,验证了基于DTW距离的载荷样本长度计算方法的适用性。研究结果可为拖拉机传动轴田间试验载荷样本长度确定提供参考。 相似文献
44.
45.
Dandan Zhu Jianglin Zhang Zheng Wang Rizwan Khan Muhammad Jianwei Lu Xiaokun Li 《Soil Use and Management》2019,35(3):503-510
Data from 147 field trials were collected to study the influence of straw incorporation on soil potassium (K) under an intensive rice–oilseed rape rotation system, while pot experiments were conducted to evaluate the effects of rice straw incorporation on soil K availability. A significant correlation was observed between the soil available K and the relative yield (RRY) and the relative K uptake (RKU) of oilseed rape, with R2 values ranging from 0.07 to 0.08 and from 0.10 to 0.11, respectively, when data were fitted to a logarithmic equation model. In approximately 30% of trials, RRY reached 90%, while soil test available K values were below the critical limit, indicating that soil K values at the time of sampling (within 1 week of rice harvest) underestimated the actual soil K supply capacity. The pot experiment results showed that soil available K was affected by straw incorporation and soil type in the fallow period. The NH4OAc‐K and NaBPh4‐K concentrations of soils increased at first, and then, plateaued after 28 days. Straw incorporation significantly influenced the critical soil K concentration, which is important for making accurate K fertilizer recommendation. These results suggested that straw K should be seriously considered in making K fertilizer recommendations. Extending the sampling time from 1 to 3 weeks after the harvesting of rice to stabilize the effects of straw incorporation may help achieve a more accurate evaluation of soil available K. 相似文献
46.
The total ammonia nitrogen (TAN) removal efficiency and bacterial community composition of bioflocs with <50-μm particle size, > 50-μm particle size and un-sieved bioflocs were investigated in the current study. The initial ratio of dissolved organic carbon to TAN (DOC/TAN) in the three groups were about 14:1. No significant difference was found in the removal rate of TAN, average concentrations of TAN and nitrite nitrogen among the three groups (P > 0.05). The C/N (w/w) ratio of the > 50-μm bioflocs was significantly higher than those of the other groups. No significant differences were found in the crude protein content in the bioflocs among the three groups. The development of the bacterial community compositions of the bioflocs was analyzed by Illumina MiSeq sequencing analyses. Most OTUs were shared among the three groups at all the sampled time points. With the increase in the relative abundance of phylum Firmicutes, that of phylum Proteobacteria, Chorolexi, and Bacteroidetes decreased in all the three groups. The phylum Firmicutes and genus Bacillus were predominant in all the sampled time points. At the end of the experiment, genus Bacillus accounted for 81% in the < 50-μm group, 82% in the > 50-μm group, and 75% in the un-sieved group. 相似文献
47.
通过数学理论分析,推出了梯形明渠的临界水深和正常水深高精度解析计算式,并与现有文献相关计算式进行了对比分析。结果表明,新推出的临界水深计算式相对误差小于0.3%;当梯形明渠坡比0.1~7时,新推出的正常水深初值计解析算公式相对误差一般小于3%;另外,给出了收敛速度更快的正常水深迭计算公式,且在m1时正常水深计算公式在初值迭代一次后其误差均小于0.5%。新推出的梯形明渠临界水深和正常水深解析计算式方便简捷、精度可靠。 相似文献
48.
不同木屑颗粒度对工厂化压块香菇生长的影响 总被引:1,自引:0,他引:1
以香菇(Lentinula edodes)工厂化生产品种沪香F2为供试菌株,以香菇生产常用配方(78%木屑,20%麸皮,2%石膏)为基础培养料,以菌丝生长速度、子实体产量、单菇重、出菇期、生物学效率以及菇型等为筛选指标,考察不同木屑颗粒度配比对工厂化压块条件下香菇生产的影响。结果表明:颗粒度组合M3(K1∶1.5mm以下,K2∶1.5~3.0mm,K3∶3.0~8.0mm;K1∶K2∶K3=1∶1∶1)的菌丝生长速度最快[(5.2±0.8)mm/d],单菇重最大[(27.1±1.0)g],产量较高[(178.7±3.6)g],菇型好,第一潮菇生物转化率可达到40.8%,生产周期可控制在100d以内,适合于在工厂化条件下应用。 相似文献
49.
普通菜豆籽粒大小与形状的QTL定位 总被引:1,自引:0,他引:1
普通菜豆是世界上最重要的食用豆类作物之一,其籽粒大小和形状与产量及外观品质密切相关。本研究以来自安第斯基因库的大粒品种龙270709和来自中美基因库的小粒品种F5910配置杂交组合,获得的F2分离群体分别在哈尔滨大田与北京昌平温室种植,对百粒重、粒长、粒宽、粒厚、长宽比和长厚比6个籽粒性状进行了相关性分析和QTL定位。相关性分析表明,百粒重与粒长、粒宽、粒厚、长宽比、长厚比5个衡量籽粒大小和形状的性状均显著正相关。利用基于完备区间作图方法的Ici Mapping 4.1进行QTL定位,哈尔滨环境下定位到38个与百粒重、粒长、粒宽、粒厚、长宽比、长厚比相关的QTL,表型贡献率介于2.39%~17.37%之间,分布在除第1染色体外的其余10条染色体上;北京昌平环境下定位到21个上述性状的QTL,表型贡献率介于5.92%~22.53%之间,分布在第1、第3、第6、第7、第8、第9和第11染色体上。其中,百粒重QTLSW7与SW7’,SW6.1与SW6’,粒长QTLSL6.1与SL6.1’,粒厚QTLSH11与SH11’在2个环境下的标记区间重叠或者重合,SW7、SW6.1、SL6.1、SW6’和SL6.1’的表型贡献率在10%以上。 相似文献
50.
为测定陕西、川北地区核桃主栽品种对溃疡病的抗性差异,本文通过和针刺接种法,对11个核桃良种栽培品种1年生枝条进行了抗Botryosphaeria的初步评估;在此基础上,对其中抗性较强的5个品种,采用打孔法接种2年生枝条进一步进行了抗性测定和评估。结果表明“清香”和“香玲”对溃疡病的抗病性强,“鲁光”、“西林3号”和“西洛”对溃疡病的抗病性弱。核桃品种抗病性差异与接种方式和时间有关,但抗病品种清香和香玲抗性表现稳定。该研究结果为核桃引种栽培提供了依据。 相似文献