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    • 4. 发明授权
    • Method for effectively controlling harmful organisms in large-scale culture of microalgae
    • 有效控制微藻大规模培养中有害生物的方法
    • US08759073B2
    • 2014-06-24
    • US13386895
    • 2010-07-26
    • Huiling WangWeijing MaXinxin MaMinsheng Liu
    • Huiling WangWeijing MaXinxin MaMinsheng Liu
    • C12N1/12
    • C12N1/12C12N1/38
    • A method for effectively controlling harmful organisms in the large-scale culture of microalgae comprises the following steps: (1) determining the harmful organism species causing contamination to the microalgae in culture, and the acid and alkali tolerance levels of said harmful organism species; and (2) adjusting the pH value of the microalgae culture system according to the different acid and alkali tolerance levels of the harmful organisms; when the harmful organisms are determined to be killed or inhibited effectively, adjusting the pH value back to be suitable for the normal growth of the microalgae. After the treatment, common harmful protozoa in the culturing processes of most microalgae (green algae, blue algae and variegated algae) can be controlled effectively, and the method is also effective on certain miscellaneous algae contamination.
    • 一种有效控制微藻大规模培养中有害生物的方法,包括以下步骤:(1)确定造成微生物培养物污染的有害生物物种,以及所述有害生物物种的耐酸碱性水平; 和(2)根据有害生物的耐酸碱耐受性水平调整微藻培养体系的pH值; 当有害生物被确定为有效杀死或抑制时,将pH值调整回适合于微藻的正常生长。 处理后,可以有效控制大多数微藻(绿藻,蓝藻和杂色藻类)培养过程中常见的有害原生动物,该方法对某些杂种藻类污染也有效。
    • 5. 发明授权
    • System energy efficiency controller in smart energy network, control method thereof, and control method for terminal device
    • 智能能源网络系统能效控制器及其控制方法及终端设备控制方法
    • US09436169B2
    • 2016-09-06
    • US13884963
    • 2011-11-04
    • Zhongxue GanShenglong DongQizhi Cai
    • Zhongxue GanShenglong DongQizhi Cai
    • G05B15/02G06Q50/06G06Q10/06H02J13/00
    • G05B15/02G06Q10/06313G06Q50/06H02J13/0079Y02B70/3216Y02E40/76Y02E60/74Y02P80/114Y04S10/30Y04S10/545Y04S20/221
    • A system energy efficiency controller in a smart energy network, a control method thereof, and a control method for a terminal device. The system energy efficiency controller includes a control decision module, a storage module, a power clock module, an internal communication module, and an external communication module. The storage module is connected to the control decision module, and stores temporary and permanent information data in the operation process of the storage system. The power clock module provides an internal clock, achieving timing synchronization of processors on the controller. The internal communication module provides two-way communication between the system energy efficiency controller and control implementation units of multiple terminal devices. The external communication module provides two-way communication between the system energy efficiency controller and a local optimizer. The multiple terminal devices include at least one of the terminal devices for the stages of energy production, storage, application and regeneration.
    • 智能能源网络中的系统能量效率控制器,其控制方法和终端设备的控制方法。 系统能效控制器包括控制决策模块,存储模块,电源时钟模块,内部通信模块和外部通信模块。 存储模块连接到控制决策模块,并将临时和永久信息数据存储在存储系统的操作过程中。 电源时钟模块提供内部时钟,实现控制器上处理器的时序同步。 内部通信模块提供系统节能控制器与多个终端设备的控制实现单元之间的双向通信。 外部通信模块提供系统能效控制器和本地优化器之间的双向通信。 多个终端设备包括用于能量产生,存储,应用和再生的阶段的终端设备中的至少一个。
    • 7. 发明申请
    • SMART ENERGY NETWORK FOR ACHIEVING OPTIMUM UTILIZATION OF ENERGY AND METHOD FOR PROVIDING ENERGY TRADING AND SERVICE
    • 实现能源最佳利用的智能能源网络和提供能源贸易和服务的方法
    • US20130238158A1
    • 2013-09-12
    • US13695403
    • 2011-04-29
    • Zhongxue GanBinshen MengZhengjian LiuAn WeiQing TangFan Zhang
    • Zhongxue GanBinshen MengZhengjian LiuAn WeiQing TangFan Zhang
    • G06F1/32
    • G06F1/3203G06Q10/04G06Q50/06
    • There discloses a ubiquitous energy network for optimum utilization of energy, which includes nodes connected by an interconnected network architecture of virtual pipelines transferring a ubiquitous energy flow, with the ubiquitous energy flow being transferred among the nodes bi-directionally. The node includes a system energy efficiency controller, and at least one of other nodes, an energy generation device, an energy storage device, an energy utilization device, and an energy regeneration device connected to the controller. The controller controls the input and output of the ubiquitous energy flow of the at least one of the other nodes, the energy generation device, the energy storage device, the energy utilization device, the energy regeneration device. Furthermore, the node, an access terminal, a virtual tag, and the virtual pipeline of the ubiquitous energy network, and a server and method for providing energy transaction and service by the ubiquitous energy network are disclosed.
    • 公开了一种无处不在的能量网络,用于能量的最佳利用,其中包括通过传播无处不在的能量流的虚拟管道的互连网络架构连接的节点,双向节点之间传播的无处不在的能量流。 节点包括系统能量效率控制器,以及其他节点中的至少一个,能量产生装置,能量存储装置,能量利用装置和连接到控制器的能量再生装置。 控制器控制其他节点中的至少一个,能量产生装置,能量存储装置,能量利用装置,能量再生装置的无处不在的能量流的输入和输出。 此外,公开了无处不在的能量网络的节点,接入终端,虚拟标签和虚拟管道,以及用于通过无处不在的能量网络提供能量交易和服务的服务器和方法。
    • 8. 发明申请
    • METHOD FOR EFFECTIVELY CONTROLLING HARMFUL ORGANISMS IN LARGE-SCALE CULTURE OF MICROALGAE
    • 有效控制微量元素大规模文化中有害生物体的方法
    • US20120184021A1
    • 2012-07-19
    • US13386895
    • 2010-07-26
    • Huiling WangWeijing MaXinxin MaMinsheng Liu
    • Huiling WangWeijing MaXinxin MaMinsheng Liu
    • C12N1/12
    • C12N1/12C12N1/38
    • A method for effectively controlling harmful organisms in the large-scale culture of microalgae comprises the following steps: (1) determining the harmful organism species causing contamination to the microalgae in culture, and the acid and alkali tolerance levels of said harmful organism species; and (2) adjusting the pH value of the microalgae culture system according to the different acid and alkali tolerance levels of the harmful organisms; when the harmful organisms are determined to be killed or inhibited effectively, adjusting the pH value back to be suitable for the normal growth of the microalgae. After the treatment, common harmful protozoa in the culturing processes of most microalgae (green algae, blue algae and variegated algae) can be controlled effectively, and the method is also effective on certain miscellaneous algae contamination.
    • 一种有效控制微藻大规模培养中有害生物的方法,包括以下步骤:(1)确定造成微生物培养物污染的有害生物物种,以及所述有害生物物种的耐酸碱性水平; 和(2)根据有害生物的耐酸碱耐受性水平调整微藻培养体系的pH值; 当有害生物被确定为有效杀死或抑制时,将pH值调整回适合于微藻的正常生长。 处理后,可以有效控制大多数微藻(绿藻,蓝藻和杂色藻类)培养过程中常见的有害原生动物,该方法对某些杂种藻类污染也有效。
    • 10. 发明申请
    • SYSTEM ENERGY EFFICIENCY CONTROLLER IN SMART ENERGY NETWORK, CONTROL METHOD THEREOF, AND CONTROL METHOD FOR TERMINAL DEVICE
    • 智能能源网络中的系统能源效率控制器及其控制方法及终端设备的控制方法
    • US20140148964A1
    • 2014-05-29
    • US13884963
    • 2011-11-04
    • Zhongxue GanShenglong DongQizhi Cai
    • Zhongxue GanShenglong DongQizhi Cai
    • G05B15/02
    • G05B15/02G06Q10/06313G06Q50/06H02J13/0079Y02B70/3216Y02E40/76Y02E60/74Y02P80/114Y04S10/30Y04S10/545Y04S20/221
    • A system energy efficiency controller in a smart energy network, a control method thereof, and a control method for a terminal device. The system energy efficiency controller includes a control decision module, a storage module, a power clock module, an internal communication module, and an external communication module. The storage module is connected to the control decision module, and stores temporary and permanent information data in the operation process of the storage system. The power clock module provides an internal clock, achieving timing synchronization of processors on the controller. The internal communication module provides two-way communication between the system energy efficiency controller and control implementation units of multiple terminal devices. The external communication module provides two-way communication between the system energy efficiency controller and a local optimizer. The multiple terminal devices include at least one of the terminal devices for the stages of energy production, storage, application and regeneration.
    • 智能能源网络中的系统能量效率控制器,其控制方法和终端设备的控制方法。 系统能效控制器包括控制决策模块,存储模块,电源时钟模块,内部通信模块和外部通信模块。 存储模块连接到控制决策模块,并将临时和永久信息数据存储在存储系统的操作过程中。 电源时钟模块提供内部时钟,实现控制器上处理器的时序同步。 内部通信模块提供系统节能控制器与多个终端设备的控制实现单元之间的双向通信。 外部通信模块提供系统能效控制器和本地优化器之间的双向通信。 多个终端设备包括用于能量产生,存储,应用和再生的阶段的终端设备中的至少一个。