Burner Grates

Lift out when cool.

Grates should be washed regularly and, of course, after spillovers. Wash

them in hot, soapy water and rinse with clean water. After cleaning, dry them thoroughly by putting them in a warm oven for a few minutes. Don’t put the grates back on the range while they are wet. When replacing the grates, be sure they’re positioned securely over the burners.

To prevent rusting on cast iron grates, apply a light coating of cooking oil on the bottom of the grates.

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To get rid of burned-on food, place the grates

in a covered container (or plastic bag) with 1/4 cup ammonia to loosen the soil. Let sit overnight

(or approximately 12 hours), then scrub with a soap-filled scouring pad if necessary. Rinse grates thoroughly and dry completely before replacing them on the range top.

Although they’re durable, the grates will gradually lose their shine, regardless of the best care you can give them. This is due to their continual exposure to high temperatures. You will notice this sooner with lighter color grates.

Do not operate a burner for an extended period of time without cookware on the grate. The finish on the grate may chip without cookware to absorb the heat.

CAUTION: Do not clean the grates in a dishwasher or in a self-cleaning oven.

Cooktop Surface

To avoid damaging the porcelain enamel surface of the cooktop and to prevent it from becoming dull,

clean up spills right away. Foods with a

lot of acid (tomatoes,

sauerkraut, fruit juices, etc.) or foods with high sugar content could cause a dull spot if allowed to set.

When the surface has cooled, wash and rinse. For other spills such as fat spatterings, etc., wash with soap and water once the surface has cooled. Then rinse and polish with a dry cloth.

Be careful when you clean the cooktop because the area over the pilot will be hot (on models with standing pilots).

Do not store flammable materials in an oven or near the cooktop. Do not store or use combustible materials, gasoline or other flammable vapors and liquids in the vicinity of this or any other appliance.

Oven Bottom

The oven bottom has a porcelain enamel finish. To make cleaning easier, protect the oven bottom from excessive spillovers by placing a cookie sheet on the shelf below the shelf you are cooking on. This is particularly important when baking a fruit pie or other foods with a high acid content. Hot fruit fillings or other foods that are highly acidic (such

as tomatoes, sauerkraut, and sauces with vinegar or lemon juice) may cause pitting and damage to the porcelain enamel surface and should be wiped up immediately.

We don’t recommend using aluminum foil on the oven bottom. It can affect air flow if the holes are blocked and it can concentrate heat at the bottom of the oven, resulting in poor baking performance.

If a spillover does occur on the oven bottom, allow the oven to cool first. Remove the oven bottom for easier clean-up and to prevent damage to the continuous cleaning oven coating (on some models).

Frequent wipings with mild soap and water (particularly after cooking meat) will prolong the time between major cleanings. Rinse thoroughly. Soap left on the oven bottom can cause stains.

For heavy soil, use an abrasive cleaner or a soap- filled steel wool pad. A commercial oven cleaner may also be used, following the package directions.

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Care and Cleaning

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GE JGBS02, LGB128 installation instructions Burner Grates, Cooktop Surface, Oven Bottom

JGBS02, LGB128 specifications

The GE LGB128 and JGBS02 are two advanced gas turbine models that represent the cutting edge of power generation technology. These turbines are engineered by General Electric, a leader in energy solutions. Both models are designed to enhance efficiency, reduce emissions, and provide reliable power for various applications.

The GE LGB128 is a robust gas turbine characterized by its modular design, which simplifies maintenance and installation processes. This turbine is known for its high efficiency, with a thermal efficiency rating that can reach above 60%. The LGB128 utilizes advanced aerodynamics in its compressor and turbine sections, optimizing performance across a wide range of operating conditions.

One of the key features of the LGB128 is its use of advanced materials and coatings that enhance durability and performance. The turbine blades are crafted from state-of-the-art alloys that can withstand extremely high temperatures, ensuring longevity and reliability. Furthermore, the LGB128 is equipped with sophisticated control systems that leverage machine learning algorithms, enabling real-time optimization of operation and maintenance schedules.

On the other hand, the GE JGBS02 gas turbine is recognized for its versatility and adaptability in various power generation applications. This model is particularly notable for its ability to utilize multiple fuel sources, including natural gas and biogas, which gives it a significant advantage in sustainability. The JGBS02 incorporates advanced combustion technologies that minimize nitrogen oxide (NOx) emissions, making it an environmentally friendly choice for both industrial and utility-scale power generation.

A prominent characteristic of the JGBS02 is its compact design, allowing for flexible installation in limited spaces. This feature is crucial for projects where space is a constraint. Additionally, the turbine is equipped with an intelligent monitoring system that continuously assesses performance metrics, providing operators with valuable insights into efficiency and potential maintenance needs.

Both the LGB128 and JGBS02 are designed to provide reliable performance in today's demanding energy landscape. Their capabilities make them suitable for various applications, including combined cycle power plants and peak shaving operations. As the world pivots toward cleaner energy solutions, these GE turbines embody the technological advancements necessary for fostering a sustainable future in power generation. With their commitment to efficiency, durability, and environmental responsibility, the LGB128 and JGBS02 stand at the forefront of modern energy technology.