In recent years, the domestic demand for environmental pollution prevention and control has increased by a large margin, which has led to the growth of environmental protection machinery manufacturing industry. The average annual industrial output value of the whole industry has increased by more than 15%, and some key enterprises have increased by as high as 37%. Among them, the output of water pollution prevention and control equipment increased by 6 times in 2006 compared with that of the previous year. The output of solid waste treatment equipment increased by 31.18%. The output of environmental monitoring equipment reversed the negative growth in 2005. Only the output of air pollution control equipment was 19.64%. %Negative growth. At the same time, the export of environmental protection equipment maintained rapid growth, but the import amount was still greater than the export value.
The current hot spots in the domestic environmental protection market are: urban sewage treatment equipment, recycled water (recycled water) reuse equipment, coal-fired flue gas desulfurization and denitrification equipment, municipal solid waste treatment equipment, and hazardous waste (including medical waste) treatment equipment. In addition, with the advancement of circular economy, the development of technical resources for comprehensive utilization of resources will accelerate and become a new area with great potential for environmental protection machinery manufacturing. Recycling of waste household appliances and electronic products, control of micro-pollution of drinking water, control of volatile organic pollution, prevention of soil pollution, and many areas of clean production will be new development opportunities for environmental protection machinery.
In the coming period, the chemical environmental protection equipment manufacturing industry should increase the development and promotion of corresponding technical equipment in a targeted manner. This will not only meet the general trend of building green chemicals in China, but also provide a new huge space for the further development of the company itself.
Compared with industrial developed countries, there are still large gaps in China's chemical environmental protection technologies, mainly manifested in high-concentration, hard-to-biochemical organic wastewater treatment technologies, incineration technologies, research and application of high-efficiency strains for biochemical treatment, and monitoring. Instrumentation and so on. Because the pollutants discharged from chemical production vary widely, it is difficult to control them with one or two methods. As an important content of chemical environmental protection technologies, the performance of major domestic chemical environmental protection equipment needs to be further optimized. In addition, the chemical environmental protection equipment manufacturing industry also needs to increase the proportion of high-tech products and complete sets of major technical equipment, advance key technology innovations, and develop urgently needed, high-efficiency and low-cost environmental protection technology and equipment for the chemical industry.
Among the environmental protection equipment encouraged by the government in the future, the major related to the chemical industry are:
Dry flue gas desulfurization equipment, the main indicators and technical requirements for calcium and sulfur than <1.4, desulfurization rate ≥ 75%, suitable for industrial furnace kiln flue gas treatment; high temperature and high speed bag filter, the highest applicable temperature of 250 °C, dust Efficiency ≥ 99%, filter bag normal life of ≥ 2 years, filter wind speed ≥ 1.5 m / min, suitable for dust control of flue gas; bag type dust collector efficient energy-saving cleaning equipment, air leakage rate <1%, temperature> 200 °C; Efficient electrostatic precipitator, processing air volume from 30,000 to 1 million cubic meters per hour, dust removal efficiency ≥ 99%, export dust concentration ≤ 50 mg/m3, suitable for dust control of flue gas; electrostatic precipitator on-site sampling and quantitative analysis equipment, The highest applicable temperature is 350°C, accuracy is 2%, and it has overall mobile function.
Sewage treatment rotary ladder grid, grid spacing 3 ~ 40 mm, design water depth <3 m, gingival speed 2 ~ 3 m / min, pollution rate than the bar fixed grid increased by 20%, than similar foreign products Cost reduction of 40% to 50%; Swirl type sand removal equipment, sand removal rate of 85% to 95%, suitable for industrial wastewater treatment; oil recovery machine, oil drag line speed 18 ~ 20 m / min, oil absorption capacity ≥ 12 tons/hour, recovery oil content of floating oil<15%; high efficiency air flotation equipment, micro bubble diameter ≤1 micron, dissolved gas utilization rate close to 100%, adsorption value up to 12 kg/m3 at 0.3 MPa working pressure , Separable concentration of several hundred to tens of thousands of milligrams / liter of wastewater suspension, the corresponding energy consumption of 0.1 ~ 0.2 kWh / cubic meter, wastewater treatment capacity of 10 ~ 200 cubic meters / hour; wind aerator (aerator); Suspension chain pulse wave aeration device; High-concentration non-biodegradable organic wastewater treatment complete sets of equipment, the treated water quality can reach the national or local emission standards; Sequential Batch Activated Sludge Process (SBR) reactor, mixed liquid suspended solids is 4000 ~10000 mg/L, reaction time is 4 to 6 hours, suitable for industrial wastewater treatment The internal circulation three-phase biological fluidized bed reactor adopts a porous carrier and has good mechanical strength, the cost performance is higher than that of the general carrier, the circulation fluidization is uniform, and the fluidization power consumption is lower than that of a traditional fluidized bed, and is suitable for industrial wastewater treatment; New ozone generator, unit energy consumption when oxidizing raw materials is ≤15 kWh/kg oxygen, unit energy consumption when air is used as raw material is ≤25 kWh/kg oxygen, overall manufacturing cost is reduced by 30% to 50% compared to existing products, equipment The volume is reduced by more than half, and an ozone gas flow with an ozone content of more than 10% can be produced, which is suitable for waste water treatment.
Solid waste treatment equipment; Circulating fluidized bed boiler, evaporation capacity ≥75 tons/hour, combustion efficiency ≥95%, desulfurization efficiency at 85%, calcium/sulfur less than 2~28, continuous operation time greater than 4000 hours, suitable for poor quality Coal and coal gangue, stone coal, petroleum coke, garbage, biomass fuel utilization and treatment; low nitrogen oxide burners, reduce nitrogen oxide emissions by more than 40%, boilers do not oil the minimum load rate of 40% to 55 %, suitable for pulverized coal boilers; waste heat boilers, dust removal rate ≥ 90%, can greatly reduce the original emptying of thermal pollution, suitable for waste heat and dust treatment facilities with emptying; energy-saving fan, water pump; energy-saving transformers; wind power Units; solar power equipment; fly ash dry separation equipment; waste rubber cracking carbon black and fuel oil complete sets of equipment.
It is understood that the chemical industry is one of the major industrial pollution. According to the 2006 Environmental Statistics Annual Report issued by the State Environmental Protection Administration, chemical wastewater discharge accounts for 19% of the total industrial wastewater discharge in the country, ranking first; exhaust emissions account for 7% of total national emissions, ranking No. Three; Solid waste production and emissions accounted for 7% and 1.6% of total solid waste production and emissions, ranking fourth; sulfur dioxide emissions ranked third; dust, dust emissions ranked fourth The number of cyanide, petroleum, sulfide, and arsenic emissions ranked the first; suspended solids and mercury emissions ranked second; volatile phenols and lead emissions ranked third. Environmental issues have, to varying degrees, constrained the sustainable development of the chemical industry.

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