光屏蔽对化细菌在光屏蔽水凝上固定不动的光抑制的影响
Kento Nishi1, Ryota Endo2, Tatsushi Matsuyama2
1Faculty of Science and Engineering, Soka University, 1-236 Tangi-machi, Hachioji, Tokyo 192-8577, Japan
概括
一种新型的防光水凝有效地保护化细菌免受光阻,即使在强光下,也能在废水处理中有效地去除氨. 优化碳黑度是实际应用的关键.
科学领域:
- 环境微生物学环境微生物学
- 生物技术是生物技术.
- 污水处理 污水处理 污水处理
背景情况:
- 微藻化细菌联盟提供了高能效的除,不需要空气.
- 化细菌的光抑制限制了它们的应用,特别是在暴露在光线下.
- 防光水凝是减轻光阻的潜在解决方案.
研究的目的:
- 为了评估不同度的碳黑 (CB) 水凝的屏蔽效果.
- 为了优化CB度,在化细菌中有效减轻光抑制.
- 为了将通过水凝的光传输与化活性相关联.
主要方法:
- 制造具有不同CB度 (0.1%至0.5%) 的防光水凝.
- 测量光线通过水凝层的传输.
- 实验和理论光传输值的比较.
- 在不同的光强度下评估化活性.
主要成果:
- 将CB度从0.1%增加到0.5%将光传输率从13%降低到2.5% (厚度为1毫米).
- 化活动与基于光传输的理论预测密切匹配.
- 观察到高达1600μmol光子m-2 s-1的光抑制的有效缓解.
结论:
- 开发的防光水凝有效地保护化细菌免受光阻.
- 基于光传输数据,可以根据光抑制缓解的理论预测.
- 优化的水凝显示出对户外废水处理应用的希望.
相关概念视频
Surface Membrane Barriers
The skin and mucous membranes serve as the primary line of defense against pathogens by providing both physical and chemical protection. These barriers are essential in preventing the entry and establishment of microbes, thereby maintaining the integrity of the host.
The outer layer of the skin, the epidermis, is a robust barrier comprising layers of closely packed keratinized cells. This dense arrangement prevents microbes from penetrating the body. The periodic shedding of epidermal cells...
The outer layer of the skin, the epidermis, is a robust barrier comprising layers of closely packed keratinized cells. This dense arrangement prevents microbes from penetrating the body. The periodic shedding of epidermal cells...
Physical Methods for Controlling Microbial Growth: Radiation and Filtration
Radiation and filtration are essential tools for microbial control, targeting microorganisms through distinct mechanisms. Radiation eliminates microbes by damaging their DNA, either killing them or inhibiting their growth. Based on wavelength, radiation is classified into two types: nonionizing and ionizing radiation.Non-ionizing radiation, such as UV radiation (200–400 nm), is absorbed by DNA, causing defects that effectively disinfect surfaces, air, and water, including safety cabinets.
Chemical Agents for Microbial Control
Chemicals play important roles in controlling microbial growth by targeting microbial structures and functions as sanitizers, antiseptics, disinfectants, and sterilants.Alcohols are commonly used sanitizers, effectively disrupting lipid membranes, which compromises cell integrity. They are also used as antiseptics and disinfectants due to their rapid action and versatility.Phenols and their derivatives phenolics , known for denaturing proteins and disrupting cell membranes, are particularly...
Biological Methods for Microbial Control
Biological agents offer an effective means of controlling microbial growth by leveraging natural processes like predation, competition, and the secretion of antimicrobial substances.Predatory bacteria such as Bdellovibrio species target and kill pathogens like Salmonella and E. coli. They are widely used in poultry farms to control infections. Myxococcus species help combat plant-pathogenic fungi. These naturally occurring predators serve as eco-friendly alternatives to chemical pesticides and...
Antimicrobial Effectiveness
The effectiveness of antimicrobial agents depends on various factors influencing their ability to eliminate microbial populations. Larger microbial populations require more time for complete eradication, emphasizing the importance of population size analysis when evaluating antimicrobial efficacy.Microbial resistance to antimicrobial agents varies significantly. Highly resilient microorganisms include endospores, gram-negative bacteria, and non-enveloped viruses, while prions are exceptionally...
Inhibitors of Gram-positive Cell Wall Synthesis
Bacterial cell walls are typically rigid structures composed mainly of peptidoglycan, a mesh-like polymer that provides mechanical strength and maintains cell shape. The synthesis of peptidoglycan is a crucial process in bacterial growth and serves as a primary target for many antibiotics.Mechanism of Action of Beta-Lactam AntibioticsBeta-lactam antibiotics, such as penicillin, inhibit peptidoglycan synthesis in actively growing cells. These antibiotics share a characteristic four-membered...


