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    • 1. 发明授权
    • Water treatment method by catalyzing ozone with a persulfate
    • 用过硫酸盐催化臭氧的水处理方法
    • US09169141B2
    • 2015-10-27
    • US14118660
    • 2012-05-15
    • Jun MaJin JiangSuyan PangYi YangJuntao Zhu
    • Jun MaJin JiangSuyan PangYi YangJuntao Zhu
    • C02F1/72C02F1/78
    • C02F1/722C02F1/725C02F1/78
    • A water treatment method by catalyzing ozone with a persulfate comprises the following steps: introducing the ozone into an ozone contact reactor filled with water to be treated; at the same time putting the persulfate into the reactor, wherein a stirring state is kept in the water treatment process. The method solves the problems of difficulty in the ionization of hydrogen peroxide, low capability in inducing the decomposition of the ozone, high hydrogen peroxide residues and inconvenience of hydrogen peroxide transportation and storage existing in the conventional water treatment method for catalyzing the ozone by using the hydrogen peroxide. Hydroxyl radicals and sulfate free radicals with strong oxidizing properties, which are generated by catalyzing ozone with the persulfate, are oxidized to remove pollution, so that the method has the advantages of high catalytic capability, high oxidative degradation efficiency, wide pH application range, a small amount of catalyst residues, convenience of operation and the like, and can be applied in mass production.
    • 通过用过硫酸盐催化臭氧的水处理方法包括以下步骤:将臭氧引入填充有待处理水的臭氧接触反应器中; 同时将过硫酸盐放入反应器中,其中在水处理过程中保持搅拌状态。 该方法解决了常规水处理方法中存在的过氧化氢离子化难以引起臭氧分解能力低,过氧化氢残留量高,过氧化氢运输和储存不便等问题。 过氧化氢。 通过催化臭氧与过硫酸盐生成的具有强氧化性质的羟基和硫酸根自由基被氧化以除去污染物,因此该方法具有催化能力高,氧化降解效率高,pH适用范围广, 催化剂残渣少,操作方便等优点,可以批量生产。
    • 4. 发明申请
    • Water Treatment Method by Catalyzing Ozone with a Persulfate
    • 用过硫酸盐催化臭氧的水处理方法
    • US20140091046A1
    • 2014-04-03
    • US14118660
    • 2012-05-15
    • Jun MaJin JiangSuyan PangYi YangJuntao Zhu
    • Jun MaJin JiangSuyan PangYi YangJuntao Zhu
    • C02F1/72
    • C02F1/722C02F1/725C02F1/78
    • A water treatment method by catalyzing ozone with a persulfate comprises the following steps: introducing the ozone into an ozone contact reactor filled with water to be treated; at the same time putting the persulfate into the reactor, wherein a stirring state is kept in the water treatment process. The method solves the problems of difficulty in the ionization of hydrogen peroxide, low capability in inducing the decomposition of the ozone, high hydrogen peroxide residues and inconvenience of hydrogen peroxide transportation and storage existing in the conventional water treatment method for catalyzing the ozone by using the hydrogen peroxide. Hydroxyl radicals and sulfate free radicals with strong oxidizing properties, which are generated by catalyzing ozone with the persulfate, are oxidized to remove pollution, so that the method has the advantages of high catalytic capability, high oxidative degradation efficiency, wide pH application range, a small amount of catalyst residues, convenience of operation and the like, and can be applied in mass production.
    • 通过用过硫酸盐催化臭氧的水处理方法包括以下步骤:将臭氧引入填充有待处理水的臭氧接触反应器中; 同时将过硫酸盐放入反应器中,其中在水处理过程中保持搅拌状态。 该方法解决了常规水处理方法中存在的过氧化氢离子化难以引起臭氧分解能力低,过氧化氢残留量高,过氧化氢运输和储存不便等问题。 过氧化氢。 通过催化臭氧与过硫酸盐生成的具有强氧化性质的羟基和硫酸根自由基被氧化以除去污染物,因此该方法具有催化能力高,氧化降解效率高,pH适用范围广, 催化剂残渣少,操作方便等优点,可以批量生产。
    • 8. 发明授权
    • Performance monitor, evaluation and diagnosis system for wireless sensor networks
    • 无线传感器网络的性能监控,评估和诊断系统
    • US09473954B2
    • 2016-10-18
    • US13915105
    • 2013-06-11
    • Jin JiangQuan Wang
    • Jin JiangQuan Wang
    • H04W24/02H04W24/04H04W84/18
    • H04W24/02H04W24/04H04W84/18
    • A method of evaluating and diagnosing performance of an operating wireless sensor network without disturbing or burdening the network is disclosed. The operating wireless sensor network includes a plurality of operational nodes. A system, which comprises a plurality of detecting nodes and a performance evaluation and diagnosis platform, is provided in order to implement the present method. After time synchronization, the detecting node is connected with an operational node. After the detecting node estimates MAC or network layer address of its corresponding operational node, it will capture any transmission of or around the operational node, and upload captured packets to the evaluation and diagnosis platform. The evaluation and diagnosis platform produce a report by analyzing the acquired information from all detecting nodes.
    • 公开了一种评估和诊断操作无线传感器网络性能的方法,而不会对网络造成干扰或负担。 操作无线传感器网络包括多个操作节点。 提供了一种包括多个检测节点和性能评估和诊断平台的系统,以实现本方法。 在时间同步之后,检​​测节点与操作节点连接。 在检测节点估计其对应的运营节点的MAC或网络层地址后,将捕获运营节点的任何传输,并将捕获的数据包上传到评估和诊断平台。 评估和诊断平台通过分析来自所有检测节点的获取信息来生成报告。
    • 9. 发明授权
    • Method and system to validate wired sensors
    • 验证有线传感器的方法和系统
    • US09280516B2
    • 2016-03-08
    • US13440339
    • 2012-04-05
    • Jin JiangQingfeng Li
    • Jin JiangQingfeng Li
    • G06F17/00H04L29/08H04Q9/00H04W4/00H04W24/04H04W84/18
    • G06F17/00H04L67/12H04Q9/00H04Q2209/30H04Q2209/40H04Q2209/86H04W4/38H04W24/04H04W84/18
    • The present invention provides a method and system using wireless sensors to validate wired sensors used in applications where the requirements on the reliability of wired sensors are stringent. A computing means periodically collects measurements for each variable from the wired and wireless sensors and compares them against an expected value. The expected value is a weighted average of all the measurements for a variable, in which the weight assigned to the measurement from each sensor is determined according to both its reliability and accuracy. As such, measurements are compared with the corresponding expected value for a particular variable. If the difference between a measurement and its corresponding expected value is found to be unacceptable, the validation computer will generate a corresponding alert. Application examples include 1) validating wired sensors used in safety shutdown systems for industrial facilities and 2) validating wired sensors used to monitor storage tanks.
    • 本发明提供一种使用无线传感器来验证有线传感器的方法和系统,其用于对有线传感器的可靠性要求严格的应用中。 计算装置周期性地从有线和无线传感器收集每个变量的测量值,并将其与期望值进行比较。 期望值是对于变量的所有测量的加权平均值,其中根据其可靠性和精度来确定从每个传感器分配给测量的权重。 因此,将测量值与特定变量的相应预期值进行比较。 如果发现测量值与其对应的期望值之间的差异是不可接受的,则验证计算机将产生相应的警报。 应用实例包括:1)验证工业设施安全停机系统中使用的有线传感器; 2)验证用于监控储罐的有线传感器。