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基于PLC的烟草制丝线加料机控制系统自动加水功能改造 被引量:2
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作者 张辉 徐蓉蓉 《甘肃科技》 2013年第9期17-19,共3页
叶片加料机控制系统是烟草制丝线的重要组成部分。但传统的叶片加料机控制系统在烟叶保湿功能上存在短板,即单纯的叶片加料机出口水分仪反馈及蒸汽喷施系统不能适应气候条件的变化。为有效地提高烟叶的保润控制能力,适应西北地区的干燥... 叶片加料机控制系统是烟草制丝线的重要组成部分。但传统的叶片加料机控制系统在烟叶保湿功能上存在短板,即单纯的叶片加料机出口水分仪反馈及蒸汽喷施系统不能适应气候条件的变化。为有效地提高烟叶的保润控制能力,适应西北地区的干燥气候条件,降低生产成本,笔者通过对叶片加料机控制系统进行深入研究后,提出了采用计算机直接数字控制技术(DDC),引入前馈-反馈控制技术相结合的全新理念,进行自动加水功能控制系统技术改造,并取得了良好效果。该控制系统改造设计对卷烟企业,特别是内陆卷烟企业完善控制系统具有较强的参考性,对有添加剂精准控制要求的工业企业优化生产线控制也能提供借鉴。 展开更多
关键词 烟草 料机 加水功能
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The interactive effects of nitrogen addition and increased precipitation on gross ecosystem productivity in an alpine meadow 被引量:1
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作者 Ruo-Nan Shen Yang-Jian Zhang +6 位作者 Jun-Tao Zhu Ning Chen Yao Chen Guang Zhao Yi-Xuan Zhu Ze Tang Wen-Yu Li 《Journal of Plant Ecology》 SCIE CSCD 2022年第1期168-179,共12页
The ecological consequences of precipitation change and increased atmospheric nitrogen(N)deposition have profound impacts on ecosystem CO2 exchange in grassland ecosystems.Water and N can largely influence grassland p... The ecological consequences of precipitation change and increased atmospheric nitrogen(N)deposition have profound impacts on ecosystem CO2 exchange in grassland ecosystems.Water and N can largely influence grassland productivity,community composition and ecosystem functions.However,the influences of water and N addition on the ecosystem CO2 exchange of alpine grassland ecosystems remain unclear.A field manipulative experiment with water and N additions was conducted in an alpine meadow on the Tibetan Plateau over 4 years with contrasting precipitation patterns.There were four treatments:control(Ctrl),N addition(N),water addition(W)and N and water addition(NW),each replicated three times.N addition,but not water addition,increased gross ecosystem productivity(GEP),plant biomass,community cover and community-weighted mean height.The responses of ecosystem CO2 exchange to water and N addition varied between the wet and dry years.Water addition had a positive effect on net ecosystem carbon exchange(NEE)due to a larger increase in GEP than in ecosystem respiration(ER)only in the dry year.On the contrary,N addition significantly enhanced ecosystem CO2 exchange only in the wet year.The increased GEP in N addition was attributed to the larger increase in NEE than ER.Moreover,N addition stimulated NEE mainly through increasing the cover of dominant species.Our observations highlight the important roles of precipitation and dominant species in regulating ecosystem CO2 exchange response to global environmental change in alpine grasslands. 展开更多
关键词 ecosystem CO2 exchange water addition nitrogen addition plant functional groups alpine grassland
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