HARDWARE LIST

PART #.

QTY.

KEY #.

DESCRIPTION

84

2

10209010007

BUSHING Φ21.5mm*Φ12mm*14mm

85

1

71751020

"L" PULLEY CABLE PLATE

86

3

71751021

"L" PULLEY CABLE PLATE

87

4

10114000070

PRESS ARM BRONZE BUSHING

88

15/20

 

WEIGHT STACK PLATE 10lbs

92

1

10301080810

P2 LOGO

93

1

10202140004

PLASTIC BUSHING

94

2

70566072

PULLEY SPACER

95

1

10201010210

HEX HEAD BOLT 12mm*135mm PARTIAL THREAD

96

1

10201150009

NYLON LOCK NUT 12mm

97

1

10201130040

WASHER 12mm

98

5

10201010187

HEX HEAD BOLT 10mm*110mm PARTIAL THREAD

99

2

10201020091

ALLEN HEAD BOLT 10mm*20mm

100

2

10114000007

BRONZE BUSHING

101

4

10201130037

WASHER 10mm

102

2

10201190009

SPRING LOCK WASHER 6mm

103

1

10212010071

SHORT CABLE 700mm

104

1

10212010074

HIGH PULLEY CABLE 4260mm

105

1

10212010096

BACK PULL PULLEY CABLE 3340mm

106

1

10212010094

FUNCTION TRAINING ARM PULLEY CABLE 5900mm

107

1

10212010095

LOW PULLE CABLE 2670mm

61

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Image 61
Powerline P2X manual Pulley Cable Plate

P2X specifications

Powerline P2X, or Power-to-X, represents an innovative technological framework that converts electrical energy into various forms of energy carriers or fuels, harnessing renewable energy sources. This approach addresses urgent energy challenges by promoting sustainability, enhancing energy efficiency, and enabling the integration of variable renewable energies like wind and solar.

One of the primary features of Powerline P2X is its versatility in transforming electricity into multiple usable forms. The most notable conversions involve producing hydrogen through the process of electrolysis. By utilizing surplus renewable electricity, electrolysis splits water into hydrogen and oxygen, providing a clean fuel source that can be stored and transported. Furthermore, hydrogen can serve as a precursor for producing synthetic fuels, chemicals, and even fertilizers, thereby expanding its applicability across industries.

In addition to hydrogen production, Powerline P2X can facilitate the creation of synthetic natural gas (SNG) through methanation processes, where hydrogen reacts with carbon dioxide (CO2) to produce methane. This enables a circular economy where CO2 emitted from industrial processes can be reused, significantly reducing greenhouse gas emissions. Furthermore, the production of liquid hydrocarbons via the Fischer-Tropsch synthesis provides a means for creating high-energy-density fuels that are compatible with existing infrastructure, such as internal combustion engines.

The integration of Powerline P2X systems requires robust technology infrastructure. Key technologies include advanced electrolysis systems, CO2 capture and conversion units, and energy storage solutions. These components work together to optimize efficiency and ensure a reliable supply of energy. Moreover, smart grid technology plays a crucial role in coordinating power generation and consumption, facilitating real-time management of renewable energy feeds, and ensuring stability within the grid.

Another remarkable characteristic of Powerline P2X is its potential for energy decentralization. By allowing local energy systems to produce fuels and energy carriers, communities can bolster their energy independence and resilience, thereby reducing reliance on fossil fuels and external energy supplies. Furthermore, this decentralized approach allows for more localized economic development through job creation in emerging sectors such as hydrogen production and synthetic fuel manufacturing.

In summary, Powerline P2X stands out as a transformative solution within the energy landscape, leveraging advanced technologies to create a sustainable energy ecosystem. By bridging the gap between renewable energy generation and various energy applications, it paves the way for a cleaner, more efficient, and greener future. This innovative framework illustrates the synergies possible between energy production, consumption, and environmental responsibility, marking a significant step towards achieving global climate goals.