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LINKING CROP WATER PRODUCTIVITY TO SOIL PHYSICAL, CHEMICAL AND MICROBIAL PROPERTIES
《农业科学与工程前沿(英文)》 2021年 第8卷 第4期 页码 545-558 doi: 10.15302/J-FASE -2020349
Agriculture uses a large proportion of global and regional water resources. Due to the rapid increase of population in the world, the increasing competition for water resources has led to an urgent need in increasing crop water productivity for agricultural sustainability. As the medium for crop growth, soils and their properties are important in affecting crop water productivity. This review examines the effects of soil physical, chemical, and microbial properties on crop water productivity and the quantitative relationships between them. A comprehensive view of these relationships may provide important insights for soil and water management in arable land for agriculture in the future.
关键词: crop water productivity crop yield soil chemical properties soil microbial properties soil physical properties water consumption
La ZHUO, Arjen Y. HOEKSTRA
《农业科学与工程前沿(英文)》 2017年 第4卷 第2期 页码 185-194 doi: 10.15302/J-FASE-2017149
关键词: field management irrigation efficiency water footprint water productivity water use efficiency
Modelling and analysis of FMS productivity variables by ISM, SEM and GTMA approach
null
《机械工程前沿(英文)》 2014年 第9卷 第3期 页码 218-232 doi: 10.1007/s11465-014-0309-7
Productivity has often been cited as a key factor in a flexible manufacturing system (FMS) performance, and actions to increase it are said to improve profitability and the wage earning capacity of employees. Improving productivity is seen as a key issue for survival and success in the long term of a manufacturing system. The purpose of this paper is to make a model and analysis of the productivity variables of FMS. This study was performed by different approaches viz. interpretive structural modelling (ISM), structural equation modelling (SEM), graph theory and matrix approach (GTMA) and a cross-sectional survey within manufacturing firms in India. ISM has been used to develop a model of productivity variables, and then it has been analyzed. Exploratory factor analysis (EFA) and confirmatory factor analysis (CFA) are powerful statistical techniques. CFA is carried by SEM. EFA is applied to extract the factors in FMS by the statistical package for social sciences (SPSS 20) software and confirming these factors by CFA through analysis of moment structures (AMOS 20) software. The twenty productivity variables are identified through literature and four factors extracted, which involves the productivity of FMS. The four factors are people, quality, machine and flexibility. SEM using AMOS 20 was used to perform the first order four-factor structures. GTMA is a multiple attribute decision making (MADM) methodology used to find intensity/quantification of productivity variables in an organization. The FMS productivity index has purposed to intensify the factors which affect FMS.
Jingjing WANG,Feng HUANG,Baoguo LI
《农业科学与工程前沿(英文)》 2015年 第2卷 第4期 页码 295-310 doi: 10.15302/J-FASE-2015074
关键词: AquaCrop summer maize soil water balance water productivity
黄峰,杜太生,王素芬,梅旭荣,龚道枝,陈源泉,康绍忠
《中国工程科学》 2019年 第21卷 第5期 页码 28-37 doi: 10.15302/J-SSCAE-2019.05.024
华北地区是我国重要的粮食和农产品生产基地,对保障国家的粮食和食物安全至关重要。华北用仅占全国6% 的水资源支撑了占全国18% 的耕地并生产出占全国23% 的粮食。但这个巨大成就是以极大的资源环境和生态成本为代价的。本文回顾华北粮食生产和用水的历史性成就,总结现在面临的主要问题和挑战,然后应用国际水资源研究界广泛应用的农业用水管理的综合分析框架,系统分析1998—2015 年华北地区水资源、农业用水以及用水效率和水分生产力,在此基础上尝试提出了未来保障华北地区食物安全的战略和政策途径。
Yingjun ZHANG, Wenjie LU, Hao ZHANG, Jiqiong ZHOU, Yue SHEN
《农业科学与工程前沿(英文)》 2018年 第5卷 第1期 页码 57-63 doi: 10.15302/J-FASE-2017192
关键词: diversity fertilizing grassland management practice grazing mowing productivity reseeding
THE 4C APPROACH AS A WAY TO UNDERSTAND SPECIES INTERACTIONS DETERMINING INTERCROPPING PRODUCTIVITY
《农业科学与工程前沿(英文)》 2021年 第8卷 第3期 页码 387-399 doi: 10.15302/J-FASE-2021414
Modern agriculture needs to develop transition pathways toward agroecological, resilient and sustainable farming systems. One key pathway for such agroecological intensification is the diversification of cropping systems using intercropping and notably cereal-grain legume mixtures. Such mixtures or intercrops have the potential to increase and stabilize yields and improve cereal grain protein concentration in comparison to sole crops. Species mixtures are complex and the 4C approach is both a pedagogical and scientific way to represent the combination of four joint effects of Competition, Complementarity, Cooperation, and Compensation as processes or effects occurring simultaneously and dynamically between species over the whole cropping cycle. Competition is when plants have fairly similar requirements for abiotic resources in space and time, the result of all processes that occur when one species has a greater ability to use limiting resources (e.g., nutrients, water, space, light) than others. Complementarity is when plants grown together have different requirements for abiotic resources in space, time or form. Cooperation is when the modification of the environment by one species is beneficial to the other(s). Compensation is when the failure of one species is compensated by the other(s) because they differ in their sensitivity to abiotic stress. The 4C approach allows to assess the performance of arable intercropping versus classical sole cropping through understanding the use of abiotic resources.
关键词: compensation competition complementarity cooperation interspecific interactions land equivalent ratio light nutrients species mixtures water
Strain and process engineering toward continuous industrial fermentation
《化学科学与工程前沿(英文)》 2023年 第17卷 第10期 页码 1336-1353 doi: 10.1007/s11705-022-2284-6
关键词: continuous fermentation productivity contamination strain degeneration metabolic engineering
Peter E.D. LOVE, Hanbin LUO
《工程管理前沿(英文)》 2018年 第5卷 第3期 页码 285-288 doi: 10.15302/J-FEM-2018205
Yang Yu,Ting Hua,Liding Chen,Zhiqiang Zhang,Paulo Pereira,
《工程(英文)》 doi: 10.1016/j.eng.2023.07.012
关键词: Vegetation greenness Vegetation productivity Rainfall use efficiency Sensitivity Yellow River Basin
孙思琦,陈永喆,王聪,胡庆芳,吕一河
《中国工程科学》 2022年 第24卷 第5期 页码 97-106 doi: 10.15302/J-SSCAE-2022.05.012
近年来,华北地区实施了一系列生态保护与恢复工程,植被生态状况发生了显著变化;探究区域植被恢复对水循环过程及水资源供需平衡的影响,对于完善生态恢复策略、实现区域水资源可持续利用十分重要。本文采用皮尔逊相关系数和莫兰指数,结合多源水参量数据进行综合性分析,阐释了植被和不同水参量的时空变化情况,甄别了植被保育与恢复下的水资源变化响应,进而探讨了华北地区水资源与植被恢复的权衡关系。研究结果表明,华北地区的生态保护与恢复工程成效显著,植被净初级生产力的增速约为恢复工程区外的2.3 倍;植被的扩张与蒸散量表现出空间与时间上的强相关性;植被恢复引起的蒸散量提高是引起水储量赤字或显著降低的主要原因。为此建议,华北地区可完善生态恢复策略,在植被保育与恢复过程中考虑水资源的限制作用;以自然恢复方式为主,促进生态恢复的可持续性、水资源的可利用性。
侯扶江,王春梅,娄珊宁,侯向阳,呼天明
《中国工程科学》 2016年 第18卷 第1期 页码 80-93 doi: 10.15302/J-SSCAE-2016.01.011
分析我国草原植物生产和动物生产,比较国内外草原生产力。结果表明,在过去的30余年中,我国一部分草原产草量下降,局部变化不显著。世界草原对畜产品生产的贡献率为40.08 %,中等收入国家为67.35 %。全球24.1 %的牛肉和31.9 %的羊肉来自草原,低收入国家草原载畜量分别高出高收入国家和中等收入国家87.4 %和66.4 %,畜产品生产分别只有两者的37.3 %和71.9 %。适宜的放牧利用,可使我国的草原生产能力达到6.35×109畜产品单位(APU);全国草原单纯依靠放牧每年可产肉2.959×106 t,占全国肉类总产量的3.5 %,占全国牛羊肉总产量的27.4 %。通过草原畜牧业的现代化转型可接近高收入国家水平,增产潜力约为50 %~200 %。
关键词: 草原生产力 产草量 放牧 载畜量 畜产品单位(APU)
Engineering and Philosophy of Engineering
Rui-yu Yin,Bo-cong Li
《工程管理前沿(英文)》 2014年 第1卷 第2期 页码 140-146 doi: 10.15302/J-FEM-2014021
关键词: engineering philosophy of engineering engineering ontology productivity engineering value
《农业科学与工程前沿(英文)》 2022年 第9卷 第2期 页码 284-294 doi: 10.15302/J-FASE-2021435
Bioenergy, currently the largest renewable energy source in the EU (64% of the total renewable energy consumption), has sparked great interest to meet the 32% renewable resources for the 2030 bioeconomy goal. The design of innovative cropping systems informed by bioeconomy imperatives requires the evaluate of the effects of introducing crops for bioenergy into conventional crop rotations. This study aimed to assess the impacts of changes in conventional cropping systems in mixed dairy cattle farms redesigned to introduce bioenergy crops either by increasing the biomass production through an increase of cover crops, while keeping main feed/food crops, or by substituting food crops with an increase of the crop rotation length. The assessment is based on the comparison between conventional and innovative systems oriented to feed and biogas production, with and without tillage, to evaluate their agri-environmental performances (biomass production, nitrogen fertilization autonomy, greenhouse gas emissions and biogas production). The result showed higher values in the biogas cropping system than in the conventional and feed ones for all indicators, biomass productivity (27% and 20% higher, respectively), nitrogen fertilization autonomy (26% and 73% higher, respectively), methanogenic potential (77% and 41% higher, respectively) and greenhouse gas emissions (15% and 3% higher, respectively). There were no negative impacts of no-till compared to the tillage practice, for all tested variables. The biogas cropping system showed a better potential in terms of agri-environmental performance, although its greenhouse gas emissions were higher. Consequently, it would be appropriate to undertake a multicriteria assessment integrating agri-environmental, economic and social performances.
Proposing a “lean and green” framework for equipment cost analysis in construction
Ming LU, Nicolas DIAZ, Monjurul HASAN
《工程管理前沿(英文)》 2019年 第6卷 第3期 页码 384-394 doi: 10.1007/s42524-019-0033-4
关键词: green construction lean construction equipment simulation earthwork construction sustainability productivity
标题 作者 时间 类型 操作
The effect of different agricultural management practices on irrigation efficiency, water use efficiencyand green and blue water footprint
La ZHUO, Arjen Y. HOEKSTRA
期刊论文
Quantitative analysis of yield and soil water balance for summer maize on the piedmont of the North China
Jingjing WANG,Feng HUANG,Baoguo LI
期刊论文
Grassland management practices in Chinese steppes impact productivity, diversity and the relationship
Yingjun ZHANG, Wenjie LU, Hao ZHANG, Jiqiong ZHOU, Yue SHEN
期刊论文
THE 4C APPROACH AS A WAY TO UNDERSTAND SPECIES INTERACTIONS DETERMINING INTERCROPPING PRODUCTIVITY
期刊论文
Systems thinking in construction: Improving the productivity and performance of infrastructure projects
Peter E.D. LOVE, Hanbin LUO
期刊论文
Divergent Changes in Vegetation Greenness, Productivity, and Rainfall Use Efficiency Are Characteristic
Yang Yu,Ting Hua,Liding Chen,Zhiqiang Zhang,Paulo Pereira,
期刊论文
AGRI-ENVIRONMENTAL ASSESSMENT OF CONVENTIONAL AND ALTERNATIVE BIOENERGY CROPPING SYSTEMS PROMOTING BIOMASS PRODUCTIVITY
期刊论文