Get to know Acidithiobacillus better with 2 real example sentences.
Acidithiobacillus in a sentence
Context around Acidithiobacillus
- Average sentence length in these examples: 27.5 words
- Position in the sentence: 0 start, 2 middle, 0 end
- Sentence types: 2 statements, 0 questions, 0 exclamations
Corpus analysis for Acidithiobacillus
- In this selection, "acidithiobacillus" usually appears in the middle of the sentence. The average example has 27.5 words, and this corpus slice is mostly made up of statements.
- Around the word, spp and bacteria stand out and add context to how "acidithiobacillus" is used.
- Recognizable usage signals include action of acidithiobacillus bacteria which and colonized by acidithiobacillus spp has. That gives this page its own corpus information beyond isolated example sentences.
- By corpus frequency, "acidithiobacillus" sits close to words such as aabc, aacr and aacsb, which helps place it inside the broader word index.
Example types with acidithiobacillus
The same corpus examples are grouped by length and sentence type, making it easier to see the contexts in which the word appears:
This process is hastened by the action of Acidithiobacillus bacteria which oxidize the pyrite to produce ferrous iron and sulfate. (20 words)
Bioleaching of non-sulfidic ores by layering of waste sulfides and elemental sulfur, colonized by Acidithiobacillus spp., has been accomplished, which provides a strategy for accelerated leaching of materials that do not contain sulfide minerals. (35 words)
Bioleaching of non-sulfidic ores by layering of waste sulfides and elemental sulfur, colonized by Acidithiobacillus spp., has been accomplished, which provides a strategy for accelerated leaching of materials that do not contain sulfide minerals. (35 words)
This process is hastened by the action of Acidithiobacillus bacteria which oxidize the pyrite to produce ferrous iron and sulfate. (20 words)
Example sentences (2)
Bioleaching of non-sulfidic ores by layering of waste sulfides and elemental sulfur, colonized by Acidithiobacillus spp., has been accomplished, which provides a strategy for accelerated leaching of materials that do not contain sulfide minerals.
This process is hastened by the action of Acidithiobacillus bacteria which oxidize the pyrite to produce ferrous iron and sulfate.