John Albanese, leader of the Australian Labor Party, was sworn in as Australia's new prime minister. After his victory, Albanese said he would "make a big change" in the country's climate policy.
"We now have an opportunity to end the 'climate wars' in Australia," he said. "Australian businesses understand that doing the right thing on climate is good for our economy and good for jobs, and I hope Australia will join the global effort on climate change," Albanese said Australia would engage with other countries to change policies when it came to tackling climate change.
In addition, Albanese’s Labor Party has proposed a more ambitious plan to cut emissions by 43 percent from 2005 levels by 2030, the report said. However, Labor is not currently planning to phase out coal use or halt new coal mining projects.
The climate issue was a major concern of voters in Australia's general election. Mr. Morrison, the former prime minister, was criticized for failing to direct the response to repeated bushfires in 2019 and 2020.
SBS has reported that According to the latest Climate Change Performance Index of 64 countries released at the 2021 United Nations Climate Change Conference (COP26), Australia's climate policy ranks at the bottom of all countries, and is one of the world's worst performers in three aspects of emissions, renewable energy, and energy use. Australia ranks 52nd in renewable energy, 54th in energy use, and 56th in emissions.
It is predicted that the prices of many other commodities like the nitride powder would increase in the next few days.
Nitrides are binary compounds of nitrogen with other elements, including metallic nitrides, nonmetallic nitrides, and ammonia (which is customarily excluded from nitrides as a special substance).
Metal nitrides are compounds of metal elements with nitrogen. Most of them are insoluble in water, high thermal stability, can be used as high temperature insulating materials, such as titanium nitride, tantalum nitride, vanadium nitride and so on. A few are hydrolyzed completely in water to form metal hydroxide and release ammonia, such as magnesium nitride, aluminum nitride and so on.
Many metal nitride and non-metal nitride have high hardness, high melting point, high chemical stability, wear resistance, corrosion resistance and other characteristics. The hardness of some of these nitrides, such as cubic boron nitride and wurtzite boron nitride, has approached or even exceeded that of diamond. However, diamond cannot be widely used in many industrial fields because its carbon structure is unstable in high temperature environment, and it is easy to react with oxygen and combine with iron. Therefore, people focus on nitride.
Unlike oxides, most nitrides do not occur in nature but are synthetic products.
Aluminum nitride (AlN), for example, is a diamond-like nitride first synthesized in 1877. It can withstand 2200℃ high temperature, and the strength decreases slowly with the increase of temperature, has good thermal conductivity, thermal expansion coefficient is small, so it is a good heat resistant impact material. Aluminum nitride is an ideal crucible material for casting pure iron, aluminum or aluminum alloys because of its strong resistance to molten metal erosion. Aluminum nitride is also an electrical insulator with good dielectric properties and can be used as electrical components. It has high heat transfer ability and is widely used in microelectronic components. In addition, aluminum nitride is also used in optoelectronic engineering, including as an inducible layer in optical storage interfaces and electronic substrates, as a wafer carrier with high thermal conductivity, and for military applications.
For example, manganese nitride, as an alloy additive of nitrogen and manganese, is mainly used in the production of special alloy steel, high strength steel, stainless steel, heat-resistant steel and other products, especially in the transportation of oil and gas large diameter steel pipe and shipbuilding and automobile high strength steel, showing a good market prospect. Nitrogen can improve the strength and plasticity of steel, expand the austenite zone (austenite is a structure that can exist stably at a high temperature of more than 727℃, with special physical properties), refine grain, and improve machining performance. Manganese nitride can replace part of nickel to reduce the cost. It is characterized by high content of main elements, low content of harmful impurities such as phosphorus, and high utilization rate of nitrogen after adding into the melt.
At present, many metal nitrides have formed a series of products, including manganese nitride, vanadium nitrogen alloy (vanadium nitride, V(cN)), titanium and chromium nitride (Ti(cN), Cr(cN)), titanium nitride, gallium nitride, indium nitride and so on. The nanostructure of indium nitride is the basic material for developing related quantum devices.
There are also some important nonmetallic nitrides, such as boron nitride (BN), triphosphorus pentaitride (P3N5), trisilicon tetrachitride (Si3N4) and so on, their thermal stability is relatively high, each with its own characteristics.
Silicon nitride, especially hot-pressed silicon nitride, is one of the hardest substances in the world. It is very high-temperature resistant, and its strength can stay the same even under the high temperature of 1200℃. After heating it will not melt into a melt body, until 1900℃ it will decompose. It has amazing chemical-corrosion resistance properties, it is resistant to almost all inorganic acid and some caustic soda solution, also can withstand a lot of organic acid corrosion; It is also a kind of high performance electrical insulation material.
Cubic boron nitride is an excellent lubricant. Hexagonal boron nitride can be used to make turning tools and drills because of its high hardness. Silicon nitride, boron nitride, silicon nitride can also be used to produce high-performance ceramics.
Although wurtzite boron nitride is difficult to make into large structures in experimental environments, the granular, high-temperature-resistant nitride superhard material can be coated on missiles, tanks, burrows, body armor and even kitchen knives.
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