GYPSUM BOARD

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The global gypsum board market size was estimated at USD 40.87 billion in 2019 and is expected to expand at a CAGR of 11.9% in terms of revenue, from 2020 to 2027. Growing demand from the residential construction sector coupled with increasing consumer spending on advanced construction materials is expected to drive the growth. Accelerating growth of construction industry across the major economies, such as China, India, Brazil, Mexico, South Africa, and Russia is expected to support the market growth. In addition, growing innovative construction applications of gypsum board are likely to provide growth opportunities.

Pradhan Mantri Awas Yojana (PMAY) is an initiative in which affordable housing will be provided to the urban poor with a target of building 20 million affordable houses by 31 March 2022. Such initiative by governments towards economical and affordable housing is all set to stroke the gypsum board market with abundant demand.

In the recent years, Gypsum Association member companies are producing specialty products for targeting industrial application segment. Some of the products are exterior gypsum sheathing, abuse-resistant and impact-resistant gypsum panels, mold and moisture resistant panels and, gypsum shaft liner. Due to such immense credibility along with easy and fast installation compared to the traditional plasters, gypsum boards are employed globally in various heavy operational facilities.

Gypsum Material Characteristics

Whether raw, natural, synthetic, or even recycled, it is often desirable to further process gypsum before use, particularly in the case of agricultural applications. When processing any material, it is important to recognize key characteristics that will affect manufacturing operations and the final product generated. Even commonly processed minerals such as gypsum require testing on a case-by-case basis to ensure quality results.

The following list outlines key material characteristics that affect gypsum processing.

Abrasive

Mined gypsum is a somewhat abrasive material. As a result, robust equipment must be used when processing gypsum. Rotary dryers are an ideal solution for many types of ore, as they are rugged pieces of equipment, easily customized with heavy-duty linings that defend against erosion. Customizations can be made to other processing equipment as well, in order to protect against abrasion, and prolong equipment life. No matter what the equipment, keeping gypsum’s abrasive nature in mind during design is a must.

Dust and Clumps

When granulated properly, pelletized gypsum is much easier to handle than its raw, powdered counterpart. However, clumping and dusting issues may occur when drying and pelletizing powdered gypsum. In order to avoid such problems, processing equipment should be customized to accommodate.

Raw Material Description

Gypsum has been known for centuries and is one of the oldest building materials in the world. The earliest use of gypsum discovered was in Anatolia around 6000 B.C. Later, in about 3700 B.C., gypsum was used on the interiors of the great pyramids in Egypt. One of the early uses of gypsum in building construction appears to have occurred in 3700 B.C. when the Egyptians used gypsum blocks and plaster applied over woven straw lath in the building of the pyramid of Cheops.

As a testimony to the strength and durability of gypsum, some of this construction is still intact and viewable, including walls decorated with murals composed of tinted plaster. For centuries now, gypsum has played a crucial role in construction. American settlers recognized gypsum’s potential use as plaster and as a soil amendment. Modern gypsum board has as its predecessor a product called “Sackett Board,” a composite material that was made of layers of thin plaster placed between four plies of wool felt paper. Sackett Board was patented in 1894 by Augustine Sackett, the man generally considered to be the grandfather of the gypsum board manufacturing industry.

The wallboard is approximately 92% gypsum (calcium sulfate dihydrate CaSO4 2H2O), 7% paper, and 1% impurities and additives. Gypsum is found in every continent of the world and is one of the most widely used minerals.

Gypsum board – a part replacement to wood

Due to obvious reasons, wood has been extensively used in the construction of buildings in Bhutan for flooring, paneling, insulation and various other purposes. In the today’s context, wood is increasingly becoming scarce and costly. Some of the applications of wood viz for insulation, ceiling, partition, paneling, etc need to be replaced by alternative materials. Gypsum board offers an alternative to wood for applications like ceiling, insulation and partition. Besides, gypsum board is a modern material of construction used extensively in the construction and finishing of the buildings. Gypsum board is often called drywall, wallboard, or plasterboard.

? It consist of a noncombustible core, composed primarily of gypsum, and a thick paper surfacing on the face, back and long edges.

? They can be faced with a variety of different materials, including paper and fiberglass mats.

? It differs from other panel building products, such as plywood, hardboard, and fiberboard, because of its noncombustible core and paper facers.

? Gypsum wall board creates a continuous surface suitable for most types of interior decoration.

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Description

INTRODUCTION
GYPSUM MATERIAL CHARACTERISTICS
ABRASIVE
DUST AND CLUMPS
RAW MATERIAL DESCRIPTION
GYPSUM BOARD-A PART REPLACEMENT TO WOOD
CHEMISTRY OF GYPSUM BOARD
TYPES OF GYPSUM BOARD
CONSTRUCTION MATERIAL
DEFINITION AND CATEGORIES OF GYPSUM BOARD
ADVANTAGES OF GYPSUM BOARD
AREAS OF APPLICATIONS
GYPSUM BOARD – STANDARDS & QUALITY CONTROL
CHEMICAL COMPOSITION – GYPSUM
PLANT & MACHINERY REQUIREMENTS
MARKET OVERVIEW
MANUFACTURING TECHNOLOGY FOR GYPSUM BOARD
PROCESS FLOW DIAGRAM
COMPARISON OF PRODUCTS / MANUFACTURING TECHNOLOGIES
PRODUCT SPECIFICATION
MACHINERY LIST
SUPPLIERS OF RAW MATERIALS
LIST OF GYPSUM BOARD DEALERS
SUPPLIERS OF PLANT AND MACHINERY
MACHINERY PHOTOGRAPHS
RAW MATERIAL PHOTOGRAPHS
PRODUCT PHOTOGRAPHS
GENERATION AND MANAGEMENT OF WASTES
ANTICIPATED ENVIRONMENTAL IMPACTS
MITIGATION MEASURES (PROPOSED)
HEALTH SAFETY & ENVIRONMENT
SAFETY & OCCUPATIONAL MEASURE

APPENDIX – A:

01. PLANT ECONOMICS
02. LAND & BUILDING
03. PLANT AND MACHINERY
04. OTHER FIXED ASSESTS
05. FIXED CAPITAL
06. RAW MATERIAL
07. SALARY AND WAGES
08. UTILITIES AND OVERHEADS
09. TOTAL WORKING CAPITAL
10. TOTAL CAPITAL INVESTMENT
11. COST OF PRODUCTION
12. TURN OVER/ANNUM
13. BREAK EVEN POINT
14. RESOURCES FOR FINANCE
15. INSTALMENT PAYABLE IN 5 YEARS
16. DEPRECIATION CHART FOR 5 YEARS
17. PROFIT ANALYSIS FOR 5 YEARS
18. PROJECTED BALANCE SHEET FOR (5 YEARS)

Additional information

Plant Capacity

240 Ton/Day

Land & Building

(4500 sq.mt.)

Plant & Machinery

US$ 990000

Rate of Return

65%

Break Even Point

27%