Flycatchers time their arrival with insect emergence
June 4, 2026
The air above the wetlands near Geneva Township carries a different energy in early summer. Close your eyes and listen for the sharp snap of beaks closing on invisible prey. Eastern kingbirds perch on the tallest dead snags, launching themselves into the air with sudden purpose before returning to the same branch. Their white-tipped tails flash against the green backdrop of breaking oak and maple leaves.These aerial hunters have timed their arrival precisely. Beneath the water's surface, mayfly and caddisfly larvae that have spent months or even years developing are now climbing toward the light. The water temperature has reached the threshold that triggers their final transformation. They emerge in waves, their delicate wings still soft as they struggle free from their larval cases. For a brief window, the air fills with insects that have never flown before, their flight patterns erratic and vulnerable.Eastern wood-pewees hunt from lower perches in the mid-canopy, their plaintive calls carrying through the humid air. Unlike the aggressive kingbirds above, pewees make shorter flights, picking off smaller midges and gnats with surgical precision. They return to the same perch repeatedly, their bills clicking shut on each capture. The two species divide the airspace between them, kingbirds claiming the open sky above the treeline while pewees work the shadowed spaces beneath. Both are feeding young now, their breeding cycles synchronized with this abundance. A single wood-pewee may catch three hundred insects in a day during peak emergence, carrying beakfuls of protein back to nestlings that demand food every twenty minutes from dawn to dusk.The emergence itself happens in pulses tied to water temperature and daylight hours. Caddisflies emerge at dusk, their tent-shaped wings catching the last light as they rise from the water in clouds. Mayflies often emerge at dawn, their brief adult lives measured in hours rather than days. Midges emerge throughout the day in smaller numbers, providing a steady food source between the larger hatches. The flycatchers read these patterns, positioning themselves where the insects will be thickest, their hunting territories overlapping with the emergence zones of different species. Listen for that sharp snap again, somewhere in the canopy above you, as another insect completes its ancient journey from water to air to waiting beak.
Barn swallows hunt the season's insects
June 25, 2026
Out over the 64th Street Grassland, the barn swallows are working. Not perched, not resting — moving, continuously, in long arcing passes that drop low over the grass and wheel back up toward the tree line. Early summer is the most demanding period of the year for them, and the air here is full of what they need.Barn swallows are aerial insectivores, which means they catch everything they eat on the wing. They do not hover or wait. They fly through concentrations of insects and take them one at a time, bill snapping shut mid-air, and then they continue. A pair with nestlings will make several hundred feeding trips per day. The nest — a half-cup of mud and grass, fixed to a beam or rafter in a barn or outbuilding — holds four or five chicks that are growing fast and need protein in volume. Both adults feed them, and both adults spend the longest days of the year doing almost nothing else.What makes early summer the right moment for this is the insects. Aquatic insects are emerging from the standing water and slow streams near Geneva Township in numbers that peak right now. Mayflies crawl out of the water as winged adults after spending a year or more as aquatic larvae. Caddisflies do the same, rising from stream gravel and pond margins. Midges and other small flies emerge in masses from the surface, sometimes thick enough to be visible as a haze over the water at dusk. These are not random events. Each species has its own emergence window, triggered by water temperature and day length, and early summer stacks several of them at once. For the swallows, this is the richest stretch of the year.Barn swallows are built for this kind of foraging. The tail is long and deeply forked, which gives them fine control at speed — they can redirect quickly when an insect changes course, and they can fly efficiently for hours without tiring. The bill is short and wide, which opens into a broad gape, better for intercepting insects in flight than for picking them off a surface. When you watch one hunting low over a field, the flight path looks irregular, but it is tracking real things: a midge column, a rising caddisfly, a cluster of gnats near a wet depression in the grass. The swallow adjusts its line to what the air holds.The grassland itself matters here. Open ground with nearby water is the core of their habitat in this region. The 64th Street Grassland sits within a landscape that still has both. Bobolinks and savannah sparrows nest in the grass below, and killdeer move across the open patches at ground level, but the swallows occupy the airspace above all of it. They are not competing with those birds for food or space. They are using a different part of the same place.
Low water and mercury violations converge downstream
July 13, 2026
Stream flow has dropped to 60 cubic feet per second — a ninety-fold decline from the 460 cubic feet per second recorded just weeks ago. At such austere levels, the chemistry of the water shifts. Mercury, which lingers in sediment and driftwood, begins to methylate: bacteria convert it into an organic form that fish absorb readily, concentrating as it moves up the food chain to herons and other predators.During this vulnerable season, the treatment plant has exceeded its mercury permit limit for four consecutive quarters, with nineteen percent over the threshold in the most recent month alone. The prior three quarters show a troubling pattern: exceedances of 16, 27, and 38 percent. Nearby stream reaches are federally listed as impaired — a designation that reflects precisely this kind of cumulative stress, where low flow amplifies the toxicity of discharges that might be manageable at higher water levels.