Project general port Vinalines official groundbreaking Hau Giang

Project general port Vinalines official groundbreaking Hau Giang
25/09/2015 09:18:02
(HG) - the morning of 24-9, at Song Hau Industrial Zone, Chau Thanh district, Hau Giang, General Maritime Corporation Vietnam (Vinalines) held a ground-breaking project in Hau Giang General Port Vinalines - period paragraph 1 of the project of maritime services - Hau Giang port.
 
Deputies performed groundbreaking ceremonies at the ceremony. Picture: KIM ARTICLE
 
Port Project Synthetic Hau Giang Vinalines built on land with an area 87,1ha, total investment of 398.9 billion. Combined port is focused on building 01 berths capable of receiving ships of up to 20,000 tons (DWT). Mining output capacity of the port at about 1 million tons / year. Maritime service area is planned construction of depots, houses and workshops, road, synchronous infrastructure serving terminal operators. Port Project Synthetic Hau Giang Vinalines going into operation will meet the needs of customers through the reception area of ​​the port, creating a maritime service area - modern seaport, dynamic; assuming the role of connection with the road corridor of the Mekong Delta to the South East region and the whole country. Hau Giang Port Vinalines general construction stage 1, stage 1 from 9-2015 to 9-2016 month, is expected to put into operation in May 10-2016. From May 1-2019 to 12-2019, construction step 2 - Phase 1. 2020 will be officially put into operation complete phase 1 of the project.
 
Tran Cong Chanh, Deputy Secretary of Party Committee, Chairman, said: Although this work by the Corporation invested Vinalines but leaders are determined Hau Giang Province is one of the special projects the provincial. So the next time, the provincial Party Committee, People's Committee of Hau Giang province will do its responsibilities, directing the departments, sectors and localities to continue to support, in close collaboration with investors, units construction to complete works on schedule, quality and highest efficiency.
 
KIM ARTICLE