[...]Waging am See, Germany HUBER Sludge Thickener excels for its operating reliability and energy efficiency with thickening primary and surplus sludge in automatic mode! In summer 2015, Gemeindewerke Waging (municipal utilities) in the Bavarian Chiemgau district were desperately looking for an energy-efficient, high-performance sludge thickening plant. They wanted a new energy-efficient and well-proven technical solution to replace their old centrifuge which consumed too much energy. Before they decided to buy a new system they tested a HUBER Disc Thickener S-DISC installed in a tank on their sewage[...]
[...]Access door for the field of potable water supply, especially in areas where flooding is likely Exterior door, flood proof up to a water gauge of 6.5 ft. / 2 m, opening to the outside (pressure side), ready for installation, single-leaf, double skinned, completely made from 1.4307 stainless steel (AISI 304 L). The door and the frame closing flush. The door leaf has a thickness of 57 mm, with 3 mm sheet thickness on both the pressurized and non-pressurized sides. It is insulated with injected, CFC-free polyurethane hard foam and features a longitudinally ground surface finish. The door is equipped[...]
[...]Berching, Germany Not only for critical wastewater but also as an alternative to overloaded aeration tanks and secondary settling tanks of municipal and industrial wastewater treatment plants Secondary settling tanks have to manage the important task of separating activated sludge. With diameters of sometimes more than 50 metres, most of them are horizontal flow systems. The sludge can settle inside while the virtually solids-free clear water runs off through a channel. The control and monitoring of such separation stages is still done visually in most cases through cyclic visibility depth [...]
[...]Fold-back entrance aid, made of 1.4307 (AISI 304 L) stainless steel For safety access ladders with 11.8 in., 15.7 in., 19.6 in. / 300 mm, 400 mm, 500 mm width. In accordance with DIN 3620. Note: The 3.6 ft. / 1.1 m projection required by DIN 19572 is not achieved with this design variant of the entrance aid. Completely shielded arc welded, acid-treated in a pickling bath and passivated. Options: 1.4404 (AISI 316 L) stainless steel[...]
[...]Fold-back, extensible entrance aid designed and certified in accordance with DIN 19572 standards, ensuring safety and reliability. Made of 1.4307 (AISI 304 L) stainless steel, for safety access ladders with 11.8 in., 15.7 in., 19.6 in. / 300 mm, 400 mm, 500 mm width. The fold-back, collapsible entrance aid EH KV is designed for ease of use and operator convenience. It is vertically folded upward and extended when in use, providing a reliable handhold. Thanks to its extensible design, it is simple to operate and user-friendly for the operating personnel. After use, the EH KV entrance aid is retracted[...]
[...]Dharan, Saudi Arabia Section 1 There are different types of grit traps: longitudinal grit traps (unaerated or aerated) and circular grit traps. Circular grit traps are subdivided into two subcategories: simple hydraulic units and Vortex plants which, independent of the flow rate, keep constant the rotary speed of the wastewater within the grit trap. Four of such VORTEX grit trap plants, which we call VORMAX, were put into operation in Dharan a year ago. The VORMAX units certainly cannot complain about too little sand there in Saudi Arabia, the country of sand. A HUBER Fine Screen STEP SCREEN® SSV[...]
[...]Berching/Berlin - The ”board ship“ of German Water Partnership (GWP) has set sail for another four years: On Tuesday, 5 July, the 18th general meeting of GWP took place in Berlin on the seminar ship “Orca ten Broke“. Georg Huber, shareholder and CEO of HUBER SE, was elected to the GWP board for another term of office and thus for the next four years. Term of office 2022 – 2026: new board unanimously elected After the official welcome by GWP Board Chair Gunda Röstel and the activity report 2021, in which the management outlined the activities of the last as well as the current year and looked ahead[...]
[...]Munich, Germany A total of 1,816.6 million hectolitres beer were produced worldwide in 2008. Assuming an average fresh water consumption of 400 litres for one hectolitre beer, this means a fresh water consumption of 726.6 million m³. About one third of the fresh water, however, could be replaced with service water as it is not necessary to use highest drinking water quality in all production areas. A part of the saving potential of 240 million m³ water can only be exploited with the use of new technical solutions. Under a research project of the Bavarian Research Foundation and in cooperation [...]