DANH MỤC SẢN PHẨM

XỬ LÝ NƯỚC CẤP _ ABV PROJECT BRAZIL _ 170.000m3/ngày

10/26/2016
bởi John Doe

XỬ LÝ NƯỚC CẤP TỪ NƯỚC SÔNG _ 170.000m3/ngày

Alto da Boa Vista (ABV) drinking water plant in São Paulo, Brazil.

 

Chủ Đầu Tư  : 
Địa điểm dự án : Sao Paulo _ Brazil
Công suất Q = 170.0000 m3/ngàyđêm.
Công nghệ áp dụng   : Công nghệ Màng KOCH PURON HF
Nguồn gốc  : Xử lý nước cấp sinh hoạt từ nước sông
Năm thực hiện : 2015

Koch Membrane Systems PURON® HF Selected for Drinking Water Plant Expansion in São Paulo, Brazil

Published Date: March 12, 2015

Download PDF Version

Wilmington, Massachusetts (February, 2015) – Koch Membrane Systems, Inc. (KMS), world-class developer and manufacturer of innovative membranes and membrane filtration systems, announced today that is has been selected to provide its PURON® HF (High Flow) reinforced hollow fiber ultrafiltration system for the expansion of the Alto da Boa Vista (ABV) drinking water plant in São Paulo, Brazil.

ABV is an existing drinking water treatment plant called “ETA Eng. Rodolfo José da Costa e Silva” located in the Alto da Boa Vista neighborhood of São Paulo. The plant produces drinking water using conventional technology (coagulation, flocculation, sedimentation, sand filtration and chlorine disinfection) for a population of more than five million people in the metropolitan area of São Paulo. In 2014, the plant installed and started-up the first ultrafiltration drinking water system in South America which also utilized KMS’ PURON® HF membranes. The new project was initiated to double the treatment capacity of the existing ultrafiltration system from 23 MGD (3600 m3/hr) to 46 MGD (7200 m3/hr).

Raw feed water is drawn from the Guarapiranga Reservoir located approximately 20 km from the treatment plant. During dry seasons when a high concentration of algae is present in the reservoir, water may be drawn from the existing clarifiers as an additional source of supply. The high concentration of algae during these periods has historically posed a challenge for the sand filters, limiting production capacity. The ability of the PURON HF ultrafiltration system to handle high solids loads will help to alleviate this problem.

The benefits of hollow fiber ultrafiltration have been demonstrated at the site through the successful operation of the initial plant which was started-up in a matter of weeks in 2014. As during the first phase, SABESP has contracted with Centroprojekt do Brasil to engineer and install the facility.“Given the ongoing drought conditions in Sao Paulo and other areas of Brazil, the availability of safe drinking water for the growing population is a critical issue for the city and the country as a whole” said Sergio Ribeiro, Commercial Director – South America for Koch Membrane Systems. “At the same time as demand is increasing, so are the requirements for water quality. Concurrently, water treatment facilities are forced to draw on more challenging raw water sources. Given this combination of challenges, the PURON® reinforced hollow fiber with its high solids tolerance and robust operations capability is an ideal solution.”

XỬ LÝ NƯỚC THẢI _ AQUAPOLO BRAZIL _ 86.400m3/ngày

10/26/2016
bởi John Doe

XỬ LÝ NƯỚC THẢI _ AQUAPOLO BRAZIL _ 86.400m3/ngày

 

Chủ Đầu Tư  : 
Địa điểm dự án : Sao Paulo _ Brazil
Công suất Q = 86.4000 m3/ngàyđêm.
Công nghệ áp dụng   : Công nghệ Màng MBR KOCH
Nguồn gốc nước thải : Nước thải sinh hoạt.
Năm thực hiện : 2012

Aquapolo Ambiental Water Reuse Project

Overview

Aquapolo Ambiental is a water reuse venture created by Foz do Brasil (Odebrecht Organization) and Sabesp, a Brazilian state-owned utility that provides water and sewage services for residential, commercial, and industrial use in the municipalities of the state of São Paulo. The Aquapolo project was initiated to address new government regulations to restrict industrial use of potable water in São Paulo and is the largest industrial water reuse project in the Southern Hemisphere. Aquapolo will supply the Capuava Petrochemical Complex of Mauá, located in São Paulo’s ABC region, thereby conserving enough drinking water to continuously supply a population of 300,000 people.

The Challenge

To build a treatment plant capable of meeting São Paulo’s pressing demand for industrial reuse water.

The Solution

Koch Membrane Systems, Inc. (KMS), a leading supplier of wastewater treatment systems, provided PURON® membrane bioreactor (MBR) modules as well as MegaMagnum® reverse osmosis (RO) membranes, system design and controls, and after-market support and service for the Aquapolo project. KMS was chosen for its superior technical support and biological design, the availability of MBR and RO pilot plants, its vast experience with water-recycling projects, and ability to meet an extremely accelerated delivery schedule.

KMS conducted a comprehensive feasibility study to identify the most cost-effective strategy to upgrade the existing plant infrastructure and concluded that membrane bioreactor (MBR) technology with a Tertiary Membrane Bioreactor (TMBR) system was the best solution for the new facility.

“Koch Membrane Systems’ willingness to work with us as our technological partner was a key factor in our decision to award them the contract,” said Emyr Diniz Costa, Senior Project Director at Odebrecht. “They offered a comprehensive engineering solution and dedicated extensive pre-engineering man-hours to produce the most reliable design and the state-of-the art technology for our project. The availability of a pilot plant convinced us their solution was the best one.”

 

The Treatment Plant

In total, the Aquapolo project encompasses the construction of new a pretreatment step, installation of a chemical dosing system, and the construction of a 700 lps TMBR utilizing 94,500 m2 of membrane area. The TMBR offers lower operating costs, lower process risk, greenfield design, and negligible interaction with current plant operations and equipment.

The TMBR is a polishing MBR process. It will treat water coming from the existing secondary clarifiers and further treat it in a newly built biological step using membranes as the final separation process. Some of the TMBR effluent will be further treated by RO membranes to meet conductivity goals for water reuse.

The TMBR pilot demonstrated that the submerged membranes benefited from the optimized biological system. Average flux rates of >25 L/m2h were achieved and daily maintenance cleaning was found to enhance the UF performance. Recovery cleaning returned the UF membrane to the original process permeability. A standard RO pilot also was used to simulate the RO design concept of the proposed full scale system for 200 L/s feed water. The pilot trials were setup in three well-defined phases, a simple batch mode, a modified batch mode and a continuous mode. The RO system was able to produce an excellent water quality.

XỬ LÝ NƯỚC THẢI _ THE GRAND HỒ TRÀM _ 3800m3/ngày

10/26/2016
bởi John Doe

XỬ LÝ NƯỚC THẢI _ THE GRAND HỒ TRÀM _ 3800m3/ngày

 

Chủ Đầu Tư  : The Grand Ho Tram Strip
Địa điểm dự án : Bà Rịa Vũng Tàu
Công suất Q = 3800 m3/ngàyđêm.
Công nghệ áp dụng   : Công nghệ Màng MBR KOCH
Nguồn gốc nước thải : Nước thải sinh hoạt.
Năm thực hiện : 2012

XỬ LÝ NƯỚC THẢI _ KHÁCH SẠN PARK HYATT SÀI GÒN 500m3/ngày

10/26/2016
bởi John Doe

XỬ LÝ NƯỚC THẢI _ KHÁCH SẠN PARK HYATT SÀI GÒN

 CÔNG SUẤT: 500m3/ngày

 

Chủ Đầu Tư  : Khách sạn Park Hyatt Sài Gòn
Địa điểm dự án : Tp. HCM
Công suất Q = 500 m3/ngàyđêm.
Công nghệ áp dụng   : Công nghệ Màng MBR KOCH
Nguồn gốc nước thải : Nước thải sinh hoạt.
Năm thực hiện : 2014

XỬ LÝ NƯỚC THẢI _ LAGUNA LĂNG CÔ _ 2400m3/ngày

10/26/2016
bởi John Doe

XỬ LÝ NƯỚC THẢI _ LAGUNA LĂNG CÔ _ 2400m3/ngày

Chủ Đầu Tư  : Laguna Lăng Cô
Địa điểm dự án : Thừa Thiên Huế
Công suất Q = 2400 m3/ngàyđêm.
Công nghệ áp dụng   : Công nghệ Màng MBR KOCH
Nguồn gốc nước thải : Nước thải sinh hoạt.
Năm thực hiện : 2012

Bình luận

[url=http://skotch-lenta05.ru/]scotch купить[/url]
[url=http://skotch-lenta05.ru/]scotch купить[/url]
[url=http://skotch-lenta05.ru/]scotch купить[/url]
[url=http://skotch-lenta05.ru/]scotch купить[/url]
can erectile dysfunction be mental [url=https://www.icsp-hyderabad.com/forums/users/blpedmundz/#]erectile master [/url]
what erectile dysfunction pill is the best new drugs for ed
erectile booster method scam https://umaco.de/to-ensure-that-you-to-be-successful-in-online-order-medicine-listed-below-are-5-invaluable-things-to-know/
Greetings my name is Matthew D'Agati.
Solar power the most promising and efficient types of renewable energy, and it's also rapidly gaining popularity as a primary source of energy at work. In the near future, the likelihood is that solar power would be the dominant energy source on the job, as increasing numbers of companies and organizations adopt this clean and sustainable energy source. In this specific article, we are going to discuss why you should switch to renewable energy sources such as for instance solar energy at the earliest opportunity, and just how this transition can benefit businesses therefore the environment.

The initial & most important good reason why it is vital to change to renewable energy sources may be the environmental impact. Making use of fossil fuels, such as for example coal, oil, and natural gas, could be the main reason behind air pollution, greenhouse gas emissions, and climate change. These emissions have a profound effect on environmental surroundings, causing severe climate conditions, rising sea levels, along with other environmental hazards. By adopting solar technology, companies and organizations often helps reduce their carbon footprint and subscribe to a cleaner, more sustainable future.

Another essential reason to change to solar technology may be the cost benefits it gives. Solar power panels can handle generating electricity for businesses, reducing or eliminating the necessity for traditional types of energy. This will end up in significant savings on energy bills, particularly in areas with a high energy costs. Furthermore, there are numerous government incentives and tax credits offered to companies that adopt solar power, rendering it much more cost-effective and affordable.

The technology behind solar power is simple and easy, yet highly effective. Solar energy panels are made of photovoltaic (PV) cells, which convert sunlight into electricity. This electricity may then be kept in batteries or fed straight into the electrical grid, with respect to the specific system design. So that you can maximize the many benefits of solar technology, it's important to design a custom system that is tailored to your unique energy needs and requirements. This can make sure that you have the best components set up, such as the appropriate quantity of solar power panels and also the right sort of batteries, to optimize your power efficiency and value savings.

One of many important aspects in designing a custom solar technology system is comprehending the different sorts of solar power panels and their performance characteristics. There are 2 main kinds of solar power panels – monocrystalline and polycrystalline – each featuring its own advantages and disadvantages. Monocrystalline solar energy panels are manufactured from an individual, high-quality crystal, helping to make them more effective and sturdy. However, also they are more expensive than polycrystalline panels, which are produced from multiple, lower-quality crystals.

In addition to financial savings and environmental benefits, switching to solar power may also provide companies and organizations with a competitive advantage. Businesses that adopt solar technology have emerged as environmentally conscious and energy-efficient, and also this can really help increase their reputation and competitiveness. Furthermore, companies that adopt solar power will benefit from increased profitability, since they are able to reduce their energy costs and enhance their important thing.

It's also important to note that the technology behind solar power is rapidly advancing, and new advancements are increasingly being made all the time. For instance, the efficiency of solar power panels is continually increasing, allowing for more energy to be generated from a smaller quantity of panels. In addition, new innovations, such as for example floating solar panel systems and solar panel systems which can be incorporated into building materials, are making it simpler and much more cost-effective to look at solar power.

In closing, the continuing future of energy on the job is poised to be dominated by solar technology as well as its several advantages. From financial savings and environmental sustainability to technological advancements and increased competitiveness, some great benefits of adopting solar power are unmistakeable. By investing in this neat and renewable energy source, businesses usually takes a dynamic role in reducing their carbon footprint, cutting energy costs, and securing their place in a sustainable future. The transition to solar power is not only necessary for the environmental surroundings but in addition for the commercial well-being of businesses. The earlier companies adopt this technology, the higher equipped they'll be to handle the difficulties of a rapidly changing energy landscape.

Should you want to determine more about your topic check a website: [url=https://www.calameo.com/books/0069968962693d3bb61ed[color=black_url]https://www.researchgate.net/scientific-contributions/Matthew-F-Pech-56081101haverhill install solarpanel[/color][/url]

[url=https://xn----7sbbajqthmir8bngi.xn--p1ai/venkleksta/]венклекста инструкция[/url] - венетоклакс аптеки в наличии, mounjaro где купить
https://andreytretyakov.ru/

[url=https://xn----7sbbajqthmir8bngi.xn--p1ai/pakslovid-paxlovid-nirmatrelvir/]Паксловид от ковид[/url] - Фраксипарин инструкция, мунжаро купить с доставкой

[url=https://www.riosart.gallery/johann-stenglin?lang=et]online painting sale[/url] - vasarely, rios
Bài viết mới

Thông tin liên hệ

Văn phòng giao dịch: 

Địa chỉ: Số 46 Đường số 52, KDC Bình Phú, P.10, Q. 6, Tp.HCM

Điện thoại: 028. 350 11 997 

Hotline: 0972.799.995

Email: info@hanhtrinhxanh.com.vn