Energy-saving and emission-reducing pharmaceutical industry is a top priority

With the implementation of the new emission standards for the pharmaceutical industry on August 1, 2008, and the impact of the international financial crisis on all walks of life, energy conservation and emission reduction have not only become a means for companies to generate income, but also a three-dimensional representation of corporate social responsibility.
The “International Conference on Energy-saving and Emission-reduction Technology Innovation in the National Pharmaceutical Industry” was held at Beijing Olympic Sports Hotel from November 28th to 29th, 2008. Professionals from more than 70 pharmaceutical and equipment companies discussed the need for energy saving and emission reduction. Sex and new technologies and new processes that can be used.
The seminar was sponsored by China Association of Pharmaceutical Enterprise Management/China Association of Pharmaceutical Entrepreneurs and China Medical Information Society. The Deputy Director of Science and Technology Standards Department of the Ministry of Environmental Protection Yu Shufan attended the seminar and delivered a speech stating the necessity of energy conservation and emission reduction in the sustainable development of enterprises, and the support that the state and ministries and commissions will provide for energy conservation and emission reduction in policies and standards in the future. help. Director Zhang Shufang focused on 9 measures to promote energy conservation and emission reduction, including implementing green GDP, combining total emission and concentration indicators as environmental protection inspection standards, conducting regional environmental assessments to control investment and construction, carrying out environmental protection awards, and ecological compensation measures. Caused widespread concern in the participating companies.
Wang Luguang, director of the State Environmental Protection Pharmaceutical Wastewater Pollution Control Engineering Technology Center, analyzed the construction of the “Pharmaceutical Industry Water Pollutant Emission Standard” and the pharmaceutical industry water pollution prevention and control technology evaluation system. Wu Guangxia, researcher and director of the Water Pollution Control Technology Research Office of the Research Center for Eco-Environmental Sciences at the Chinese Academy of Sciences, shared the "Practical Pharmaceutical Wastewater Treatment Technology." Eleven companies explained in detail the application of various membrane technologies in water treatment, the use of energy-saving equipment, and the actual cases of engineering companies in pharmaceutical companies.
Through many cases, it is not difficult to find that technological progress and process improvement are the key to reducing pollution emissions. With the development of membrane technology and engineering processes, treated water is cleaner and damage to the environment, water, and soil becomes even smaller.
It is worth mentioning that most of the enterprises in these cases are large-scale enterprises. For SMEs, it takes a large proportion of funds and manpower to invest in energy-saving and emission-reduction facilities. In the process of communicating with the participating engineering companies, engineers with on-site experience emphasized that in the treatment of pollutants, China not only lacks good construction workers, but also lacks skilled operators, which leads to the lack of good equipment. Good use. Therefore, in addition to the need to vigorously develop science and technology and technology, the cultivation of talents is more necessary.

Welding Rope

Tungsten carbide welding rope is a type of welding filler material that is used for hardfacing applications. It is made by combining tungsten carbide particles with a binding material, such as nickel or cobalt, to create a rope-like form.

Tungsten carbide is known for its exceptional hardness and wear resistance, making it ideal for applications where the welded surface needs to withstand extreme abrasion and impact. The welding rope is typically used in industries such as mining, oil and gas, construction, and agriculture.

When the tungsten carbide welding rope is heated during the welding process, the binding material melts and fuses the tungsten carbide particles to the base metal, creating a hard and durable surface. This helps to extend the lifespan of equipment and machinery by protecting it from wear and tear.

Tungsten carbide welding rope can be applied using various welding processes, including manual metal arc welding (MMA), gas tungsten arc welding (GTAW), and flux-cored arc welding (FCAW). The choice of welding process depends on the specific application and the equipment available.

Overall, tungsten carbide welding rope offers a cost-effective solution for protecting and repairing high-wear surfaces, making it a popular choice in industries where durability and longevity are essential.

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