
硅酸锂 - 百度百科
硅酸锂是金属 锂 与 硅酸 根结构和形成的化合物,商品名称锂水玻璃。 多数是利用 氢氧化锂 法将 硅酸钠 与 硫酸 反应,生成 水合硅酸 与 硫酸钠,取其水合硅酸与氢氧化锂反应,生成硅酸锂和水,制得硅酸锂产品。 [1] 无臭、无味透明液体。 呈弱碱性,pH值在11左右。 产品相对密度和黏度随产品型号而不同,相对密度在1.16~1.19之间 (25 ℃)。 溶于水及碱性溶液,不溶于醇及有机溶剂。 与酸作用游离出凝胶。 有自干性,溶液水分蒸发后,能生成一种不溶于水的干膜,具有水不可逆性 …
Lithium orthosilicate - Wikipedia
Lithium orthosilicate is a compound with the chemical formula Li 4 SiO 4. It is a white ceramic compound, which melts congruently at a temperature of 1,258 °C (2,296 °F). [1]
硅酸锂(LI4SIO4)_化工百科 - ChemBK
中文名:正硅酸锂,英文名:LITHIUM ORTHOSILICATE,CAS:13453-84-4,化学式:Li4O4Si,分子量:119.85,密度:2.326,熔点:1255°C,沸点:1256°C,折射率:1.594-1.614,MSDS.
mp-11737: Li4SiO4 (triclinic, P-1, 2)
Li4SiO4 is Aluminum carbonitride-like structured and crystallizes in the triclinic P-1 space group. The structure is three-dimensional. there are four inequivalent Li1+ sites.
From Spent Lithium-Ion Batteries to Low-Cost Li4SiO4 Sorbent for …
2022年4月18日 · The use of spent lithium-ion batteries (LIBs) to prepare low-cost Li4SiO4 sorbents promotes the recovery of LIBs and the development of CO2 adsorption.
正硅酸锂 | 13453-84-4 - ChemicalBook
ChemicalBook 为您提供正硅酸锂 (13453-84-4)的化学性质,熔点,沸点,密度,分子式,分子量,物理性质,毒性,结构式,海关编码等信息,同时您还可以浏览正硅酸锂 (13453-84-4)产品的价格,供应商,贸易商,生产企业和生产厂家,最后正硅酸锂 (13453-84-4)的中文,英文,用途,CAS,上下游产品信息可能也是您需要的。
正硅酸锂 LI4SIO4 - ChemicalBook
ChemicalBook 致力于为化学行业用户提供正硅酸锂 LI4SIO4的性质、化学式、分子式、比重、密度,同时也包括正硅酸锂 LI4SIO4的沸点、熔点、MSDS、用途、作用、毒性、价格、生产厂家、用途、上游原料、下游产品等信息。
High-performance Li4SiO4 sorbents prepared from solid waste for …
2023年12月1日 · The results show that the BR-Li 4 SiO 4 sorbent exhibited excellent CO 2 capture capacity and cycling stability at 675 °C, maintaining a stable capacity of 0.28 g/g under 100% CO 2 after 30 cycles. BR-Li 4 SiO 4 also demonstrated significantly reduced costs and a superior microstructure compared to R-Li 4 SiO 4 and P-Li 4 SiO 4.
Preliminary investigation of Li4SiO4 pebbles structural performance
2021年6月1日 · In this paper we investigate experimentally and numerically the mechanical performance of Li 4 SiO 4 pebbles, which were produced by drip casting technology at room temperature.
Simplifying and Optimizing Li4SiO4 Preparation from Spent …
2023年9月10日 · However, the process of recycling spent LiFePO 4 batteries to synthesize Li 4 SiO 4 sorbents still needs to be well investigated. This work proposes to simplify the preparation scheme by combing precipitation, Na doping, and synthesis processes and further optimizing the key variables of pH, Na 2 CO 3 ratio, and heating rate.