Products Description
HDPE (High-Density Polyethylene) geomembrane pond linersTo prevent leakage of liquids and chemicals into the surrounding environment, materials such as geomembranes and liners are widely used in fish farms and landfill dams. These materials act as a protective barrier, ensuring that waste fluids and toxins are contained within the designated area. This helps to safeguard the surrounding ecosystem and prevent any potential damage caused by the release of harmful substances. By implementing these measures, we can take proactive steps towards ensuring a cleaner and safer environment for all.

HDPE geomembrane pond linersAn environmentally conscious and economical approach to safeguarding landfill dams and fish farms is through the use of geotextiles. These materials form a protective layer that prevents soil erosion and ensures the structural integrity of the barrier. In addition, geotextiles are a sustainable solution that reduces waste and the impact on the environment. By employing geotextiles, we can create a reliable and long-lasting defense for our land and aquatic resources.

A landfill dam incorporates an HDPE liner as a protective measure between the surrounding soil and groundwater and the waste material. By doing so, the liner effectively prevents the release of harmful chemicals and pollutants into the environment. In addition, this liner is specifically designed to endure the immense weight and pressure exerted by the waste material and remain intact without any punctures or tears.
In a fish farm, an HDPE linerCreating a containment pond for fish involves the use of a liner, which serves multiple purposes. Firstly, the liner acts as a barrier, preventing water from permeating the surrounding soil and groundwater. Additionally, it plays a crucial role in maintaining a consistent water level and temperature within the pond. Moreover, the liner possesses excellent resistance to UV radiation and the various chemicals utilized in fish farming processes.
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HDPE Geomembrane is a thermoplastic polymer that is known for its strength, durability, and resistance to chemicals and UV radiation. It is also lightweight and easy to install, making it a popular choice for pond liners.HDPE geomembrane pond liners are available in a range of thicknesses, depending on the specific application. Thicker liners are generally used for landfill dams, while thinner liners are suitable for fish ponds.

The installation of an HDPE Landfill Dam Fish Farm Geomembrane Pond Liner involves several steps, including site preparation, liner placement, and welding. The liner is typically placed over a layer of sand or other protective material to prevent punctures and tears.
HDPE Landfill Dam Fish Farm Geomembrane Pond Liner are designed to provide long-term protection against leaks and other damage. They are resistant to weathering, chemical attack, and abrasion, and they have a lifespan of up to 30 years or more.
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HDPE Landfill Dam Fish Farm Geomembrane Pond Liner are also environmentally friendly, as they prevent the leakage of harmful chemicals and pollutants into the surrounding soil and groundwater. This helps to protect the ecosystem and preserve natural resources.
HDPE geomembrane pond liners are commonly used in a variety of applications, including wastewater treatment, mining operations, agricultural ponds, and recreational ponds.


Contact information
Phone: +86 18263827229
Envelope: elena@hdpetgm.com
Address:Mingtang Road No.59,Taishan Technology and Culture Industrial Park,Taishan District,Shandong,China.27100
Whatsapp: +86 18263827229

Elena

Elena

Geomembrane

Geotextile

Geogrid
| Test | Unit | Standard | Test Frequency | ||||||||||||
| Mechanical Properties | Thickness | mm | D5199 | 0.2 | 0.3 | 0.5 | 0.7 | 0.75 | 1.00 | 1.25 | 1.50 | 2.00 | 2.50 | 3.00 | Per roll |
| Density | g/cc | D1505/D792 | 0.94 | 90,000 kg | |||||||||||
| Tensile Properties | D 6693 | ||||||||||||||
| · yield strength | kN/m | Type IV | 3 | 5 | 7 | 10 | 11 | 15 | 18 | 22 | 29 | 37 | 44 | 9,000 kg | |
| · break strength | kN/m | 5 | 8 | 13 | 18 | 20 | 27 | 33 | 40 | 53 | 67 | 80 | |||
| · yield elongation | % | 12 | 12 | 12 | 12 | 12 | 12 | 12 | 12 | 12 | 12 | 12 | |||
| · break elongation | % | 700 | 700 | 700 | 700 | 700 | 700 | 700 | 700 | 700 | 700 | 700 | |||
| Tear Resistance | N | D 1004 | 25 | 38 | 62 | 87 | 93 | 125 | 156 | 187 | 249 | 311 | 374 | 20,000 kg | |
| Puncture Resistance | N | D 4833 | 64 | 96 | 160 | 224 | 240 | 320 | 400 | 480 | 640 | 800 | 960 | 20,000 kg | |
| Stress Crack Resistance | hr. | D 5397 | 500 hr. | per GRI GM-10 |
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| Carbon Black Content | % | D 4218 | 2.0-3.0% | 9,000 kg | |||||||||||
| Carbon Black Dispersion | D 5596 | For 10 different views: 9 in Categories 1 or 2 and 1 in Category 3 | 20,000 kg | ||||||||||||
| Reference Properties | Oxidative Induction Time | min | D 3895 | 100 min. | 90,000 kg | ||||||||||
| (a) Standard OIT | D 5885 | 400 min. | |||||||||||||
| (b) High Pressure OIT | |||||||||||||||
| Oven Aging at 85°C retained after 90 days |
% | D 5721 | 55% | per each | |||||||||||
| (a) Standard OIT - % | D 3895 | 80% | formulation | ||||||||||||
| (b) High Pressure OIT - % | D 5885 | ||||||||||||||
| UV Resistance | % | 50% | per each | ||||||||||||
| High Pressure OIT - % retained after 1600 hrs |
D 5885 | formulation | |||||||||||||
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