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Parasites may accumulate in spleens of asymptomatic individuals infected with malaria

Malaria, a disease caused mainly by the parasites Plasmodium falciparum and Plasmodium vivax, is associated with over 400,000 deaths each year. Previously, the spleen was assumed to mostly play a role in parasite destruction, as it eliminates malaria parasites after antimalarial treatment. A study published by Steven Kho and Nicholas Anstey at Menzies School of Health Research, Australia, and international colleagues, suggests that in chronic P. vivax infections, malaria parasites survive and replicate via a previously undetected lifecycle within the spleen. ....

France General , Steven Kho , Royal Society Wolfson Research , Wellcome Trust Grant , Research Article , Melinda Gates Foundation , French Institut National De La Sant , Australian National Health , Research Council Program Grant , Australian Department Of Foreign Affairs , Health Outcomes , Sauver La Vie Foundation , University Of Paris , Singapore National Medical Research Council , Nicholas Anstey , Menzies School , Health Research , Medical Research Council , Program Grant , Improving Health Outcomes , Tropical North , Australian Centre , Research Excellence , Malaria Elimination , Paris Ile De France Region , Evie Foundation ,

Cyclic distillation: A novel enhanced technology for processing hydrocarbons and derivatives


Cyclic distillation: A novel enhanced technology for processing hydrocarbons and derivatives
Distillation is the most widespread separation method in history.
Distillation is the most widespread separation method in history.1 Despite its simplicity and flexibility, distillation remains a very energy-inefficient process. Novel distillation concepts based on process intensification (PI) principles can deliver major advantages in terms of significantly lower energy use and reduced capital costs while improving ecological efficiency.
The PI concept has been around since the mid-20th century, but has received more attention in the last two decades. The objective of PI is to design substantially smaller plants while improving their operational safety, environmental performance and energy efficiency. The Rapid Advancement in Process Intensification Depl ....

United Kingdom , Ukraine General , New Delhi , Saudi Arabia , Olesja Bedryk , Hoogewerff Jongerenprijs , Vladimirn Maleta , Anton Tony , Chemie Ingenieur Technik , Aleksandr Shevchenko , Purification Technology , Research Fellow Of Royal Society , Maleta Cyclic Distillation , University Of Manchester , Industrial Engineering Chemistry Research , Journal Of Chemical Technology , National University Of Food Technology , Us Department Of Energy , Royal Society Wolfson Research Merit Award , National University Of Food Technologies , Kiev Institute Of Food Industry , Rapid Advancement , Process Intensification Deployment , Eco Scandic , Royal Society Wolfson Research Merit , Chemical Technology ,