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Transcripts For CNNW CNN 20240706

hello and a warm welcome to our viewers joining us in the united states and all around the world. i m bianca nobilo. i m max foster. he s likely meeting with leaders on tuesday, setting up another showdown on debt limits. we shouldn t be here. the united states border patrol has experienced a 50% drop in the number of encounters. this is not a democrat or republican problem. this is an american problem. master of the optics. standing with all of the european leaders, ukraine taking its place in the european bloc. live from london, this is cnn newsroom. with max foster and bianca nobilo. it is monday, may the 15th. 9:00 a.m. here in the uk where ukraine s president zelenskyy is meeting with the prime minister, mr. zelenskyy is fresh off a weekend of stops at european capitals to meet with other key allies. france and germany publicly pledged addition al military ai. the uk s package will include air defense missiles and air attack with a range of 200

NH3 and greenhouse gas emissions during co-composting of lignite and p by Yun Cao, Mei Bai et al

Ammonia (NH3) and greenhouse gas (GHG) emissions are substantial contributors to C and N loss in composting. Lignite can increase N retention by absorbing (Formula presented.) and NH3. However, the effects of co-composting on NH3 and GHG emissions in view of closing nutrient cycle are still poorly investigated. In the study, poultry litter was composted without (CK) or with lignite (T1) or dewatered lignite (T2), and their respective composts (Formula presented.) Com CK, Com T1, and Com T2) were tested in a soil incubation to assess NH3 and GHG emission during composting and following soil utilization. The cumulative NH3 flux in T1 and T2 were reduced by 39.3% and 50.2%, while N2O emissions were increased by 7.5 and 15.6 times, relative to CK. The total GHG emission in T2 was reduced by 16.8% compared to CK. Lignite addition significantly increased nitrification and denitrification as evidenced by the increased abundances of amoA, amoB, nirK, and nirS. The increased reduction on NH3 em

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