Water Treatment

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The Experts below are selected from a list of 324 Experts worldwide ranked by ideXlab platform

Jerry L. Anderson - One of the best experts on this subject based on the ideXlab platform.

Ambo Takanori - One of the best experts on this subject based on the ideXlab platform.

  • iron reduction catalyst and Water Treatment device and Water Treatment method which is efficient in Water Treatment using a fenton reaction accompanied by a reduction reaction of ferric ions
    2018
    Co-Authors: Minagawa Masakazu, Ambo Takanori
    Abstract:

    The present invention provides an efficient Water Treatment method in Water Treatment using a Fenton reaction accompanied by a reduction reaction of ferric ions. The present invention provides an iron reduction catalyst and Water Treatment device that can be used in an efficient Water Treatment process. An iron reduction catalyst for use in an oxidation step, wherein the oxidation step utilizes a drainage containing an oxiding pollutant to carry out the Fenton reaction, and oxidizes an oxidized pollutant. The iron reduction catalyst satisfies the following condition (A). (A): With respect to the sum of the peak value areas of the elements detected by X-ray photoelectron spectroscopy of the iron reduction catalyst, the oxygen atom concentration calculated as a ratio of the peak value area of O1s is 0.01 mol% or more and 9.0 mol% or less.

  • activated carbon for use with fenton reaction Water Treatment method and Water Treatment apparatus using the same
    2018
    Co-Authors: Minagawa Masakazu, Ambo Takanori
    Abstract:

    The present invention provides an efficient Water Treatment method for use in the Water Treatment using Fenton reaction accompanied by the reduction of ferrous ion. In addition, the present qa Water Treatment apparatus. According to the present invention, the iron reducing catalyst is used in an oxidation process in which a Fenton reaction is conducted using drained Water containing oxidizable contaminants to oxidize the oxidizable contaminants, and the iron reducing catalyst satisfies the following condition (A): a concentration of oxygen atoms, calculated as a ratio of the peak area of O1s to the total sum of peak areas of elements detected according to photoelectron spectroscopic measurement of the iron reducing catalyst, is 0.01 mol% or more and 9.0 mol% or less.

Edward D.schroeder - One of the best experts on this subject based on the ideXlab platform.

A. A. Salamov - One of the best experts on this subject based on the ideXlab platform.

Ravi Kishore Kodali - One of the best experts on this subject based on the ideXlab platform.

  • Smart waste Water Treatment
    2017 IEEE Region 10 Symposium (TENSYMP), 2017
    Co-Authors: Ravi Kishore Kodali
    Abstract:

    Water being a vital resource for the life on earth is under a serious threat of scarcity with the increase in population. There is always a need to recycle and reuse the waste Water in order to meet the demand for Water. This paper depicts the need for waste Water Treatment and also compares centralized and decentralized way of waste Water Treatment. It presents design and automation of waste Water Treatment plant. To keep the waste Water Treatment plant running certain parameters must be monitored regularly. Hence different sensors at different stages of Treatment plant can be used. This paper depicts the urgency of waste Water Treatment due to rapid growth in urbanization and provides efficient solution through automation of waste Water Treatment plant.