On June 17, the first China Bioindustry Conference hosted by the China Petroleum and Chemical Industry Association held the Bioenergy and Biomaterials Forum in Shijiazhuang, Hebei Province. The domestic and foreign experts, scholars and entrepreneurs at the conference unanimously believed that human society has multiple solutions to the demand for renewable energy, but biomass is the only renewable source of carbon-based fuels and chemicals, and the development of bioenergy will greatly increase. Promote the post-petrochemical era.
Meng Quansheng, vice president of the China Petroleum and Chemical Industry Association, said that the development of biomass and other renewable energy resources must be protected by resources, supported by technology, combined with promoting energy conservation and consumption reduction, and responding to global climate change, it is necessary to adhere to the following five principles. : First, adjust measures to local conditions, make rational arrangements, orderly develop, plan scientifically, and coordinate raw materials; do not use cultivated land; do not consume large amounts of food; second, take effective measures to cultivate a sustainable and stable renewable energy market and improve the market environment for alternative energy sources; It is necessary to adhere to the project planning to introduce environmental assessments and incorporate environmental capacity into the project's planning, without destroying the ecological environment. Fourth, we must select suitable technologies for development, select technologies that meet the requirements for the diversity of raw materials in China, and break through the technological and economic bottlenecks; Financial investment, the implementation of tax incentives, focus on supporting renewable energy science and technology research, application demonstration and industrial development.
The meeting also pointed out that biotechnology is one of the most promising areas for high-tech development in China. Compared with traditional chemical engineering, biochemical reaction conditions are mild, low energy consumption, good selectivity, high yield, low investment, low pollution, and can produce products that are difficult to produce by traditional chemical methods. It is predicted that by 2010, 10% to 20% of the processes in the chemical industry will be replaced by biotechnological processes.
Meng Quansheng, vice president of the China Petroleum and Chemical Industry Association, said that the development of biomass and other renewable energy resources must be protected by resources, supported by technology, combined with promoting energy conservation and consumption reduction, and responding to global climate change, it is necessary to adhere to the following five principles. : First, adjust measures to local conditions, make rational arrangements, orderly develop, plan scientifically, and coordinate raw materials; do not use cultivated land; do not consume large amounts of food; second, take effective measures to cultivate a sustainable and stable renewable energy market and improve the market environment for alternative energy sources; It is necessary to adhere to the project planning to introduce environmental assessments and incorporate environmental capacity into the project's planning, without destroying the ecological environment. Fourth, we must select suitable technologies for development, select technologies that meet the requirements for the diversity of raw materials in China, and break through the technological and economic bottlenecks; Financial investment, the implementation of tax incentives, focus on supporting renewable energy science and technology research, application demonstration and industrial development.
The meeting also pointed out that biotechnology is one of the most promising areas for high-tech development in China. Compared with traditional chemical engineering, biochemical reaction conditions are mild, low energy consumption, good selectivity, high yield, low investment, low pollution, and can produce products that are difficult to produce by traditional chemical methods. It is predicted that by 2010, 10% to 20% of the processes in the chemical industry will be replaced by biotechnological processes.
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