Biodegradability is a key indicator of the extent to which organic pollutants in wastewater can be effectively degraded and utilized by microorganisms.
B/C ratio greater than 0.3 indicates that wastewater is relatively easy to biochemically treat.
B/C ratio between 0.1 and 0.3 indicates average biodegradability.
B/C ratio less than 0.1 indicates that the wastewater is difficult to biodegrade and requires pretreatment measures.
Increasing the B/C ratio of wastewater is crucial for optimizing existing biological treatment processes, reducing overall treatment costs, and improving pollutant removal efficiency.
Ultraviolet Advanced Oxidation Processes (UV-AOPs) utilize ultraviolet radiation of specific wavelengths to directly degrade pollutants, or in synergistic action with oxidants (such as hydrogen peroxide (H2O2) or ozone (O3)), to generate highly reactive free radicals (primarily hydroxyl radicals, OH) with strong oxidative potential, thereby transforming and degrading organic pollutants in water.
The photochemical oxidation process converts long chains into shorter ones, breaking them down into readily biodegradable small molecules, alcohols, and carboxylic acids. The production of oxygen-containing intermediates increases significantly during the reaction. These intermediates contain one or more -O, COOH-, or =O functional groups. They typically exhibit higher bioavailability than the original organic compounds and are detoxified. Therefore, photochemical oxidation significantly improves the biodegradability of recalcitrant organic compounds in nearly all applications.
Using appropriate oxidants or catalysts to complement the photochemical reaction can achieve COD/TOC degradation and improve the biodegradability of wastewater.
Trends in Important UV Oxidation Parameters:
1. Chain scission and ring opening of macromolecular organic compounds
2. Introduction and transformation of functional groups
3. Detoxification/reduction of toxic and hazardous substances
4. Generation of bioavailable substrates
CLEAR中压紫外
ONYX-Clear-SZ管道式中压紫外消毒器,采用中压多谱段紫外灯,不仅实现DNA/RNA的破坏,同时破坏其细胞内的酶及蛋白质,杀菌更为彻底。用于消毒杀菌和降解水中亚硝基二甲胺、1,4-二噁烷、内分泌干扰物(EDCs)、残留农药、蓝藻毒素、GSM(土臭素)和2-MIB(二甲基异茨醇)等有毒微污染物质。
另外,将O3、H2O2等氧化剂与紫外光结合,如UV-O3、UV-H2O2等工艺,可以用于处理污水中CC14、多氨联苯等难降解物质和有机物的氧化去除。
MOL板式臭氧发生器
ONYX-MOL板式臭氧发生器采用模块化设计,根据产气量可积木式(Blocks)拼装,结构紧凑。
采用高纯度铝基陶瓷电极,超强抗氧化微弧氧化工艺,系统性能稳定可靠,超低衰减率。均匀微间隙高频放电,高效节能20~35%,臭氧浓度0~240mg/L可调,节氧高达40%。
电源上电自启动设计,全程无需人为干预。运行过程自我检测诊断,异常处理及智能恢复,运行状态边缘计算与云服务协调。
中压UV-Oxidation紫外光氧化
中压紫外光氧化(MPUV-Oxidation)是一种高级氧化技术,利用紫外光(UV) 激发氧化剂产生强氧化性自由基(主要是·OH羟基自由基),高效降解水中的有机污染物。具有无垃圾生产方式(无二次污染)、具有广谱性(适合大部分废水的处理)、有效处理难降解废水和高浓度废水(最高300000 mg/L COD)、生物利用率能得到很大的提高(最高达接近100%)等突出特点,可广泛应用于工业废水预处理、深度处理领域。
Address:北京市海淀区上地信息路11号彩虹大厦北楼一层东110室
Telephone:010-82890788
Email:services@onyxepi.com