Operating Instructions Safety Instructions

About the ice and water dispenser.

Ice Storage Drawer on Dispenser Models

Rotate

To remove:

Set the icemaker power switch to the

O (off) position. Pull the drawer straight out and then lift past the stop position.

To replace:

Drive

When replacing the drawer, be sure to

Mechanism

press it firmly into place. If it does not go all the way back, remove it and rotate the drive mechanism 1/4 turn. Then push the drawer back again.

Care and cleaning of the refrigerator.

Troubleshooting Tips Installation Instructions

Dispenser drip area.

Cleaning the Outside

The dispenser drip area, (on some models) beneath the grille, should be wiped dry. Water left in this area may leave deposits. Remove the deposits by adding undiluted vinegar to the well. Soak until the deposits disappear or become loose enough to rinse away.

The dispenser cradle (on some models). Before cleaning, lock the dispenser by pressing and holding the LOCK CONTROL pad for 3 seconds. Clean with warm water and baking soda solution—about a tablespoon (15 ml) of baking soda to

a quart (1 liter) of water. Rinse thoroughly and wipe dry.

The door handles and trim. Clean with a cloth dampened with soapy water. Dry with a soft cloth.

The stainless steel panels and door handles (on some models) can be cleaned with a commercially available stainless steel cleaner such as Stainless Steel Magic.

Stainless Steel Magic is available at Ace, True Value, Servistar, HWI and other leading stores. It is also available through GE Parts and Accessories, 800.626.2002. Order part number WX10X15.

Do not use appliance wax or polish on the stainless steel.

Keep the outside clean. Wipe with a clean cloth lightly dampened with kitchen appliance wax or mild liquid dish detergent. Dry and polish with a clean, soft cloth.

Do not wipe the refrigerator with a soiled dish cloth or wet towel. These may leave a residue that can erode the paint. Do not use scouring pads, powdered cleaners, bleach or cleaners containing bleach because these products can scratch and weaken the paint finish.

Consumer Support

Cleaning the Inside

To help prevent odors, leave an open box of baking soda in the fresh food and freezer compartments.

Unplug the refrigerator before cleaning. If this is not practical, wring excess moisture out of sponge or cloth when cleaning around switches, lights or controls.

Use warm water and baking soda solution— about a tablespoon (15 ml) of baking soda to a quart (1 liter) of water. This both cleans and neutralizes odors. Rinse and wipe dry.

14

Use of any cleaning solution other than that which is recommended, especially those that contain petroleum distillates, can crack or damage the interior of the refrigerator.

Avoid cleaning cold glass shelves with hot water because the extreme temperature difference may cause them to break. Handle glass shelves carefully. Bumping tempered glass can cause

it to shatter.

Do not wash any plastic refrigerator parts in the dishwasher.

Page 14
Image 14
GE 23, 25 About the ice and water dispenser, Care and cleaning of the refrigerator, Cleaning the Outside

23, 25 specifications

The GE 23 and GE 25 are groundbreaking gas turbine models developed by General Electric, targeting the rapidly evolving energy market with high efficiency and reliability. Both models are integral components of GE’s gas turbine portfolio, designed specifically for a broad range of applications, including power generation and industrial use.

The GE 23 is characterized by its compact design, making it suitable for both small-scale and large-scale applications. With a power output ranging from 23 to 30 megawatts, the GE 23 is equipped with advanced aerodynamics and combustion technologies that significantly enhance its overall performance. One of the standout features of the GE 23 is its ability to offer flexible operation, allowing it to adapt to changing energy demands while minimizing emissions. This flexibility is facilitated by its advanced control systems that ensure optimal performance in varying operational conditions.

In contrast, the GE 25 is designed for larger-scale power generation, delivering outputs of up to 30 megawatts. This model incorporates the latest advancements in material science, providing improved durability and operational lifespan. The GE 25 utilizes high-efficiency blades made from advanced alloys that can withstand extreme temperatures, contributing to improved thermal efficiency. Moreover, the GE 25 features advanced digital controls and monitoring systems, enabling real-time performance optimization and predictive maintenance.

Both turbines employ advanced combustion technology to achieve reduced NOx emissions, aligning with environmental regulations and sustainability goals. These technologies are complemented by GE’s commitment to integrating renewable energy sources into the power grid, enhancing the flexibility of operations.

The GE 23 and GE 25 boast remarkable reliability and lower operational costs, attributed to their simplified maintenance processes and robust design. They are equipped with modular components that facilitate easier serviceability, enabling operators to minimize downtime and optimize their power generation capabilities.

Additionally, the incorporation of advanced digital analytics into both models allows for enhanced performance tracking and system diagnostics, ensuring that operators can maximize efficiency and mitigate risks.

In conclusion, the GE 23 and GE 25 represent the pinnacle of gas turbine technology, combining efficiency, flexibility, and reliability. Their innovative features and commitment to sustainability make them formidable choices for power generation in the modern energy landscape. As global energy demands continue to rise, these models are poised to play a vital role in shaping the future of energy production.