Optical Sorter Market report for 2018 - 2024 – companies, applications, products and more
Category: #Technology  By Rahul Varpe  Date: 2021-03-29
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Optical Sorter Market report for 2018 - 2024 – companies, applications, products and more

Optical Sorter Market is expected to exceed USD 3 billion by 2024. Rising improvements in the field of detection technologies will drive the industrial demand. Automated sorting solutions are experiencing a high adoption in several sectors. These optical sorters allow the companies to detect the quality of the products with maximum accuracy and reliability. They help in separating different grades of materials from the waste stream using several sensing methods. The sensing technologies that are widely used in the optical sorter market include inductive metal detectors, high-resolution color cameras, and X-ray fluorescence. These technologies detect the molecular structure and identify the defects present in the products thereby rejecting it from the slot.

NIR sorting machines are witnessing a high growth in the optical sorter market owing to their rising adoption in the pharmaceutical industry. The technology provides effective detection of the quality of medicines and helps in sorting out the defective ones. It uses infrared radiations to analyze the chemical composition of the products and decides the quality of the drugs that should be provided to the patients. Increased accuracy and efficiency in quality inspection techniques propel the demand for NIR-based machines in the optical sorter market. Rising applications of these machines for polymer separation will drive the industrial growth. Industrial wastes are mixed with several types of polymers, which include HDPE, LDPE, PVC, and PP. NIR technology detects the chemical structure of these materials and separates them from waste materials.

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Applications of these machines in waste recycling are expected to drive the optical sorter market. The recycling operations allow the industries to recover the materials and resources that are used in their production. Waste recycling technique involves the collection, separation, and processing operations. Several government authorities are spreading awareness about the waste recycling process thereby driving the optical sorter market growth. For instance, the U.S. GSA (General Services Administration) works with the regulatory bodies for promoting the waste reduction and recycling operations in the country.

Belt sorting systems are experiencing a high adoption in the optical sorter market owing to the increased efficiency of the machines in performing the separation process. These systems consist of a conveyor belt that guides the defective materials to the detection zones. Applications of these systems for the sorting of fruits, vegetables, and nuts are expected to propel their demand in the optical sorter market. These systems handle a wide range of the product types, which make them ideal for diversified sorting operations.

The Asia Pacific optical sorter market is expected to witness a high growth owing to the rising demand for the separators in the mining industry. Manufacturers are providing advanced hyperspectral imaging technology that is a highly efficient solution for the detection of the quality of the minerals. Such technologies are helping the companies in reducing the time and efforts spent by the workers in separating the minerals from their ore deposits. The heterogeneity of the deposit of the ore makes it difficult for the industry to sort the minerals from the deposit. Manufacturers in the optical sorter market are providing intelligent solutions to the mining industry to detect the crystalline structure of the materials and separate them from the ore deposits. For instance, Metso Corporation provides bulk ore sorting technology to improve the profitability and sustainability in the business operations.

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Key players operating in the optical sorter market are Binder GmbH, A/S Cimbria, Buhler AG, CP Manufacturing, Key Technology, Inc., Newtec Corporation, Satake Corporation, Steinert GmbH, Tomra Systems ASA, Sesotec GmbH, Raytec Vision S.P.A., Pellenc ST, National Recovery Technologies, Allgaier Werke GmbH, and Greefa. These players are competing based on the demands from various industrial sectors. They are targeting their products in food & mining industries where a high demand for the machines is being witnessed. Technological advancements and innovations in the optical sorter market are the major strategies adopted by the players for attracting a wide customer base.

Table Of Content

Chapter 1    Methodology & Scope

1.1     Methodology

1.1.1   Initial data exploration

1.1.2   Statistical model and forecast

1.1.3   Industry insights and validation

1.1.4   Definition and forecast parameters

1.1.4.1   Definitions

1.1.4.2   Methodology and forecast parameters

1.2     Data Sources

1.2.1   Secondary

1.2.2   Primary

Chapter 2    Executive Summary

2.1     Optical sorter industry 3600 synopsis, 2013 - 2024

2.1.1   Business trends

2.1.2   Regional trends

2.1.3   Product trends

2.1.4   Platform trends

2.1.5   Application trends

Chapter 3    Optical Sorter Industry Insights

3.1     Industry segmentation

3.2     Industry landscape, 2013 – 2024

3.2.1   Global smart sensor industry landscape, 2013 – 2024

3.2.2   Global laser technology industry landscape, 2013 – 2024

3.3     Industry ecosystem analysis

3.3.1   Vendor matrix

3.4     Technological and innovation landscape

3.4.1   Fiber sorting technology

3.4.2   Wire and color sorting technologies

3.4.3   Smart sensors

3.5     Regulatory landscape

3.5.1   North America

3.5.1.1   Occupational Health and Safety Act (OHSA)

3.5.1.2   The California Integrated Waste Management Act of 1989

3.5.1.3   Electronics Management Program (North Carolina Environmental Quality)

3.5.2   Europe

3.5.2.1   General Food Regulations 2004, UK

3.5.2.2   International Solid Waste Association (ISWA)

3.5.2.3   The Environmental Permitting (England and Wales) (Amendment) Regulations

3.5.2.4   The Waste Electrical and Electronic Equipment Directive (WEEE Directive)

3.5.3   Asia Pacific

3.5.3.1   Municipal Solid Waste Management (MSWM)

3.5.3.2   The Hazardous Wastes (Management, Handling, and Transboundary Movement) Rules, 2008

3.5.3.3   Municipal Solid Wastes (MSW Japan)

3.5.4   Latin America

3.5.4.1   National Solid Waste Policy (Brazil)

3.5.4.2   Extended Producer Responsibility Law

3.5.5   MEA

3.5.5.1   Council for Scientific and Industrial Research (CSIR)

3.5.5.2   National Environmental Management: WASTE ACT 59 OF 2008

3.6     Industry impact forces

3.6.1   Growth drivers

3.6.1.1   High demand for optical sorters from the U.S and European food industry

3.6.1.2   Presence of stringent regulations for food safety in Europe

3.6.1.3   Rising cost of labor in Europe and Asia Pacific

3.6.1.4   Rising adoption of digital sorting technologies in China and Japan

3.6.1.5   Adoption of the technology in waste recycling plants in Latin America and MEA

3.6.2   Industry pitfalls & challenges

3.6.2.1   High initial capital investment and maintenance costs

3.6.2.2   Difficulties in sorting plastic waste

3.7     Growth potential analysis

3.8     Porter’s analysis

3.9     Competitive landscape, 2017

3.9.1   Company market share analysis

3.9.2   Strategy dashboard

3.10   PESTEL analysis

About Author

Rahul Varpe    

Rahul Varpe

Rahul Varpe currently writes for Technology Magazine. A communication Engineering graduate by education, Rahul started his journey in as a freelancer writer along with regular jobs. Rahul has a prior experience in writing as well as marketing of services and products ...

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