Single-use plastic waste has been a major environmental issue in the world and many countries are encouraging the adoption of bioplastics, especially for packaging materials. Polylactic acid is a bio-based, compostable and wholly recyclable biopolymer that is produced from renewable feedstocks, such as sugar cane. The technologies required to enable the production process for this material have been developed and optimized by Sulzer. They have been designed to help industry meet the increasing global demand for high-performance, more sustainable products in an economically viable way.

Balrampur Chini Mills Limited is one of India’s leading sugar producers with a crushing capacity of 80’000 tonnes per day spread across ten plants. The company has a strong sustainability ethos; they are already the largest producer of bioethanol for fuel in India and they also use waste products from the sugar mills for power generation. The introduction of this new bioplastic manufacturing capability is the next step in the company’s journey to Net Zero. In essence, it will strengthen the company’s efforts to continuously improve its resource efficiency and environmental footprint.

Playing a key role in the realization of the plant, Sulzer will deliver the manufacturing technologies for the key process stages including lactide synthesis, lactide purification and polymerization. As the leading global supplier of key equipment for bioplastics production, Sulzer’s expertise is used in most PLA manufacturing plants in the world. Once this latest plant is complete, the company’s field service experts will also be on-hand to support the commissioning and start-up procedures. 

Projects like this exemplify Sulzer’s focus on supporting essential industries that can contribute to a more prosperous economy and sustainable society. In addition to supporting the company’s sustainability goals, the new bioplastics plant will provide further diversification for the sugar producer, adding to its bioethanol and power generation schemes. Since the sugar market is heavily regulated and exports carefully managed, the potential for increasing margins is limited. In contrast, the demand for bioplastics is growing rapidly as more applications look to take advantage of the environmental benefits and reduced energy costs in production.

Avantika Saraogi, Executive Director, BCML, explains: “The integration of a cutting-edge and globally first PLA plant to process right from sugarcane to bioplastic in one location will make a major contribution to our sustainability portfolio, which is very important for our corporate goals. The attractive commercial proposition also offers us an excellent opportunity for further diversification with an excellent market for our end-product. Sulzer has a proven record in delivering the bioplastic production technology needed to optimize this plant and we are confident in the success of this project.”

Sulzer Chemtech Division President Uwe Boltersdorf said: “We strategically aim to support industrialists in executing projects more professionally, thereby enhancing both economic and sustainable performance. The construction of India’s first fully integrated bioplastics plant highlights the tangible benefits available to clients who want to diversify their revenue streams and make a positive contribution to reducing plastic pollutants. We look forward to working with BCML and other forward-thinking clients as we continue to strive to deliver improved energy efficiency, raw material efficiency and higher yields.”

This document may contain forward-looking statements including, but not limited to, projections of financial developments, market activity, or future performance of products and solutions containing risks and uncertainties. These forward-looking statements are subject to change based on known or unknown risks and various other factors that could cause actual results or performance to differ materially from the statements made herein.

Explore more

  • Enabling a low carbon society
    We invest continuously in R&D and use our expertise to address environmental challenges with a wide variety of cleantech solutions in areas like water, circularity or renewable applications.

  • Polylactic acid (PLA)
    PLA is the most promising biopolymer based on renewable feedstock, with global capacity expected to grow from 0.1 Mta today to 2 Mta over the next few years. In cooperation with Purac, Sulzer has developed a new process to convert lactides to PLA. This is available as a complete, skid-mounted unit.

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