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Chemical FIBC
Created with Pixso. 1000kg Carbon Granules Chemical FIBC With 170gsm Black Coated Fabric

1000kg Carbon Granules Chemical FIBC With 170gsm Black Coated Fabric

Brand Name: SINOPACK
Model Number: SINA26011
MOQ: 1000PCS
Price: Negotiable
Delivery Time: 30dAYS
Payment Terms: T/T
Detail Information
Place of Origin:
CHINA
Name:
Carbon Granules Chemical FIBC
Bag Size:
100 × 100 × 120 Cm
Safe Working Load:
1000 Kg
Warp Fabric Strength:
≥1470 N
Weft Fabric Strength:
≥1470 N
Body Fabric:
170 G/m² Black Coated Fabric
Filling Spout:
φ40 × 45 Cm
Discharge Spout:
φ40 × 70 Cm
Lifting Belts:
4 Pcs, 7.5 × 170 Cm
Nternal Baffles:
4 Pcs, 53 × 100 Cm
Application:
Carbon Granule Bulk Packaging, Storage And Transportation
Packaging Details:
1.1*1.1*1.3 PALLET
Supply Ability:
20000 pcs in one month
Highlight:

1000kg Chemical FIBC

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Carbon Granules Chemical FIBC

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170gsm fibc big bag

Product Description

Product Introduction

This 1000kg Carbon Granules Chemical FIBC is designed primarily for bulk packaging, storage, transportation and downstream discharge of carbon granules.

The bag measures 100 × 100 × 120cm with a rated load of 1000kg. The body uses 170gsm black coated fabric with minimum warp and weft fabric strength of ≥1470N.

Four 53 × 100cm internal baffles are installed inside the bag, each with four 10 × 30cm oval openings. A top filling structure, bottom discharge structure and four black lifting belts support carbon granule handling from production and filling through storage, transportation and final discharge.

Problem

Bulk packaging of carbon granules involves more than simply achieving a 1000kg load.

After filling, carbon granules spread inside the flexible bag and may cause significant lateral expansion, affecting warehouse arrangement and handling space.

Carbon granules may also pass through production, screening, filling, lifting, storage, transportation and downstream unloading.

The FIBC therefore needs to address bag shape, filling, handling and discharge as part of the same packaging process.

Solution

This Chemical FIBC combines a 100 × 100 × 120cm bag body with a rated load of 1000kg and 170gsm black coated fabric. Four 53 × 100cm internal baffles provide restraint against excessive lateral expansion, while four 10 × 30cm oval openings in each baffle maintain passages for carbon granule movement inside the bag. A φ40 × 45cm top filling structure supports centralized loading, a φ40 × 70cm bottom discharge structure provides a defined unloading path, and four 7.5 × 170cm black lifting belts support full-bag handling.

Specification

Parameter Specification
Product Name Carbon Granules Chemical FIBC
Bag Size 100 × 100 × 120cm
Rated Load 1000kg
Body Fabric 170gsm Black Coated Fabric
Warp Fabric Strength ≥1470N
Weft Fabric Strength ≥1470N
Filling Spout φ40 × 45cm
Discharge Spout φ40 × 70cm
Spout Fabric 90gsm Black Coated Fabric
Lifting Belts 4 pcs, 7.5 × 170cm
Internal Baffles 4 pcs, 53 × 100cm
Baffle Openings 4 pcs per Baffle, 10 × 30cm Oval
Application Carbon Granule Bulk Packaging

Baffle Structure

Four 53 × 100cm internal baffles are installed inside the bag.

Each baffle contains four 10 × 30cm oval openings.

The baffles provide restraint against excessive lateral expansion after carbon granules are filled, while the openings maintain passages for material movement between different sections of the bag.

This structure is particularly relevant where filled-bag shape, warehouse arrangement and transportation space are important.

Filling & Discharge

The top uses a φ40 × 45cm filling structure with 90gsm black coated spout fabric.

The bottom uses a φ40 × 70cm discharge structure, also using 90gsm black coated fabric.

The top filling arrangement supports centralized loading after carbon production or screening, while the bottom discharge structure allows the granules to be transferred into hoppers, conveyors or downstream receiving systems.

Lifting & Handling

The bag is equipped with four 7.5 × 170cm black soft lifting belts.

The belts are positioned between the main body panels and sewn together with the bag structure.

They support full-bag lifting and transfer after carbon granule filling.

Actual handling should still be checked against forklift dimensions, lifting equipment, lifting height and available operating space.

Application

This Chemical FIBC is mainly intended for bulk packaging, storage and industrial logistics of carbon granules.

Typical applications may include:

  • Granular activated carbon packaging, subject to confirmation of the actual material and application requirements.
  • Coal-based granular carbon packaging after carbon production or screening.
  • Coconut-shell granular carbon packaging for industrial bulk storage and transportation.
  • Pelletized carbon and similar carbon granule materials according to actual particle size and flowability.
  • Industrial filtration carbon packaging for supply to water-treatment, air-purification, filtration-material and other industrial users.

The 170gsm black coated body forms the main packaging structure, while the four internal baffles help restrain excessive lateral expansion during storage and bulk transportation.

The top filling structure supports centralized loading at the production site, while the bottom discharge structure provides a defined outlet for transferring carbon granules into hoppers, conveyors or downstream handling equipment.

Final configuration should be confirmed according to the actual carbon type, particle size, bulk density and flowability.

FAQ

1. What is this Chemical FIBC mainly used for?

It is mainly designed for 1000kg-class bulk packaging, storage and transportation of carbon granules.

2. Can it be used for granular activated carbon?

It can be evaluated according to the actual activated-carbon particle size, bulk density, flowability and packaging requirements.

The supplied production sheet identifies the product as a carbon-granule bag, so activated-carbon suitability should be confirmed for the actual material.

3. Why are internal baffles used?

They help restrain excessive lateral expansion after filling and improve control of the filled-bag profile.