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    • 4. 发明申请
    • Wireless Well Fluid Extraction Monitoring System
    • 无线井液萃取监测系统
    • US20150308257A1
    • 2015-10-29
    • US14737124
    • 2015-06-11
    • James N. McCoyDieter J. BeckerDarius K. Hathiram
    • James N. McCoyDieter J. BeckerDarius K. Hathiram
    • E21B47/00E21B47/12
    • E21B47/0007E21B47/0008E21B47/122E21B47/18
    • A system for wirelessly monitoring a well fluid extraction process, which operates in conjunction with a host computer. The system includes a wireless base that has a base radio and a communication port to interface with the host computer. The system also has a first remote with a first remote radio that communicates with the base radio using a radio protocol. The first remote also has a first sensor interface that can receive a first sensor signal. The first remote digitally samples the first sensor signal at a predetermined sampling rate, and then communicates first sampled data to the wireless base through the radio protocol. A host software application, which executes on the host computer, receives the first sampled data from the wireless base communication port.
    • 一种用于无线监测与主计算机结合操作的井液提取过程的系统。 该系统包括具有基本无线电和与主计算机接口的通信端口的无线基站。 系统还具有第一遥控器,其具有使用无线电协议与基站无线电通信的第一远程无线电。 第一遥控器还具有可接收第一传感器信号的第一传感器接口。 第一遥控器以预定采样率对第一传感器信号进行数字采样,然后通过无线电协议将第一采样数据传送到无线基站。 在主计算机上执行的主机软件应用从无线基站通信端口接收第一采样数据。
    • 6. 发明授权
    • Process for purification of waste waters accumulated from pulp
production, particularly from chlorine bleaching of pulp
    • 净化从纸浆生产中积累的废水的方法,特别是纸浆的氯漂白
    • US4490257A
    • 1984-12-25
    • US582487
    • 1984-02-22
    • Dieter J. Becker
    • Dieter J. Becker
    • C02F1/467C02F1/54C02F1/66C02F3/00C02F9/00C02F1/46
    • C02F9/00C02F1/4674C02F1/54C02F1/66C02F2103/28C02F3/00Y10S210/928
    • There is disclosed a process for purification of waste waters accumulating from the production of pulp, particularly from chlorine bleaching of pulp, which comprises the combination of the following steps:(a) release of solid particles from the waste water in a series-connected, mechanical purification stage,(b) introduction of the pre-cleaned waste water into an electrolysis installation, wherein the waste water is subjected to constant movement during an anodic oxidation treatment, and an electric potential differential is plotted between the electrodes and the pH of the waste water is set and maintained at approximately 1 to 6.5 in a known manner,(c) transfer of the waste water thus treated from stage (b) into a flocculation (sedimentation) zone, in which an aqueous solution of a powerful cationic polyelectrolyte is fed to the waste water at room temperature and under constant movement, and the pH is set and maintained at 1 to 6.5, and flocculation of colloids and suspended components occurs,(d) transfer of the waste water thus treated together with the flocculated products from stage (c) into another zone, in which the flocculated products are separated out,(e) neutralization of the waste water which is freed of the flocculated products, and(f) transfer of the neutralized waste water into an activated sludge installation, in which, with addition of additive nutrient materials, suitable microorganisms cause biological decomposition of the organic products still present in the waste water, whereupon the waste water which is thus clarified is discharged into a receiving stream.
    • 公开了一种净化从纸浆生产中积聚的废水的方法,特别是从纸浆的氯漂白中提取的方法,其包括以下步骤的组合:(a)将来自废水的固体颗粒从串联连接, 机械净化阶段,(b)将预清洗的废水引入电解装置,其中废水在阳极氧化处理期间经受恒定运动,并且在电极之间绘制电位差, 以已知的方式将废水固化并保持在约1至6.5,(c)将由(b)阶段处理的废水转移到絮凝(沉淀)区,其中强力阳离子聚电解质的水溶液为 在室温和恒定运动下进料到废水中,pH值保持在1〜6.5,胶体和悬浮液的絮凝 发生污染,(d)将这样处理的废水与来自阶段(c)的絮凝产物一起转移到其中分离出絮凝产物的另一区域,(e)中和无絮凝的废水 产品,和(f)将中和废水转移到活性污泥装置中,其中通过添加添加剂营养物质,合适的微生物引起仍然存在于废水中的有机产物的生物分解,因此废水 这样澄清就被排放到接收流中。
    • 7. 发明授权
    • Wireless well fluid extraction monitoring system
    • 无线井液萃取监测系统
    • US09080438B1
    • 2015-07-14
    • US13437125
    • 2012-04-02
    • James N. McCoyDieter J. BeckerDaraius K. Hathiram
    • James N. McCoyDieter J. BeckerDaraius K. Hathiram
    • E21B47/18
    • E21B47/0007E21B47/0008E21B47/122E21B47/18
    • A system for wirelessly monitoring a well fluid extraction process, which operates in conjunction with a host computer. The system includes a wireless base that has a base radio and a communication port to interface with the host computer. The system also has a first remote with a first remote radio that communicates with the base radio using a radio protocol. The first remote also has a first sensor interface that can receive a first sensor signal. The first remote digitally samples the first sensor signal at a predetermined sampling rate, and then communicates first sampled data to the wireless base through the radio protocol. A host software application, which executes on the host computer, receives the first sampled data from the wireless base communication port.
    • 一种用于无线监测与主计算机结合操作的井液提取过程的系统。 该系统包括具有基本无线电和与主计算机接口的通信端口的无线基站。 系统还具有第一遥控器,其具有使用无线电协议与基站无线电通信的第一远程无线电。 第一遥控器还具有可接收第一传感器信号的第一传感器接口。 第一遥控器以预定采样率对第一传感器信号进行数字采样,然后通过无线电协议将第一采样数据传送到无线基站。 在主计算机上执行的主机软件应用从无线基站通信端口接收第一采样数据。